玖玖资源网站,爆乳久久久,日韩精品乱码久久久蜜桃,精品呦国产一区二区三区,国产伦高清一区二区三区,sese一区二区,午夜精品福利一区二区三区,三级黄色网站久久免费
首頁
訂購/客服:400-666-5481
登錄
注冊
Toggle navigation
全部
生化試劑
酶和輔酶
酶
輔酶
酶底物
膠原酶
食品和乳品檢測用酶和輔酶
診斷試劑用酶和輔酶
蛋白質
植物源蛋白質
動物源蛋白質
蛋白質-重組蛋白
多肽
底物肽
激素肽與神經肽
多肽藥物遞送
藥物肽
β淀粉樣肽與微管蛋白肽
抗微生物肽
細胞黏附肽
化妝品肽
標記肽
肽表位
膠原蛋白肽分子量分布
大豆肽分子量分布
其它多肽
碳水化合物
單糖
二糖
寡糖
多糖
環糊精
纖維素
淀粉
氨基酸
20種天然氨基酸
FMOC保護氨基酸
BOC保護氨基酸
CBZ保護氨基酸
維生素
維生素
抗生素
抗生素
色素類
染料
指示劑
分離試劑
離子交換樹脂
大孔吸附樹脂
凝膠過濾填料
親和層析填料
疏水層析填料
緩沖劑
緩沖劑
動物激素
動物激素
表面活性劑
陽離子表面活性劑
陰離子表面活性劑
非離子表面活性劑
兩性離子表面活性劑
聚合物類
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
聚乙烯亞胺(PEI)
聚乳酸(PL)
聚乙烯醇(PVA)
脂肪酸系列
脂肪酸系列-有機酸
短鏈脂肪酸
中鏈脂肪酸
長鏈脂肪酸
反式脂肪酸
磷脂類
血制品
全血
紅細胞
血制品-血清
血漿
溶血活性實驗
其他生化試劑
其他生化試劑
抗體
抗體蛋白
抗體類
標準品
中藥標準品
黃酮及類黃酮
生物堿
甾體及甾體皂苷類
花青素類
醌類
酚類
糖類
標準品-維生素
標準品-有機酸
化學標準品
化學標準品
對照藥材
對照藥材
標準溶液
分析滴定液
儀器校準溶液
混合標準溶液
其他標準溶液
同位素標準品
氫標記
碳標記
氮標記
氧標記
混合標記
其它
有證標準物質
溯源標準品
溯源標準品
食品檢測
農殘標品
獸殘標品
抗氧化劑
食品檢測-防腐劑
食品檢測-著色劑
護色劑
營養強化劑
增味劑
甜味劑
食品用香料
食品檢測-真菌毒素
食品檢測-激素
食品檢測-脂肪酸
藥品檢測
化藥檢測
中藥及中成藥檢測
環境檢測
大氣
土質、土壤
水質
固廢
化妝品檢測
增白劑
化妝品檢測激素
化妝品檢測防腐劑
防曬劑
化妝品檢測著色劑
飼料檢測
飼料檢測-真菌毒素
飼料檢測-激素
飼料檢測-維生素
飼料檢測-脂肪酸
農殘
飼料檢測-抗生素
小分子化合物
小分子化合物溶液
小分子化合物溶液
信號通路
代謝
G蛋白偶聯受體
神經科學
細胞凋亡
表觀遺傳
蛋白酪氨酸激酶
微生物學
血管生成
細胞周期
離子通道
免疫與炎癥
DNA 損傷和修復
自噬
細胞骨架
干細胞
PI3K/Akt/mTOR 信號通路
蛋白酶體
MAPK 信號通路
JAK/STAT 信號通路
內分泌與激素
其他
化合物庫
抑制劑庫
激酶抑制劑庫
FDA批準的藥物庫
天然產物庫
生物活性化合物庫
酪氨酸激酶抑制劑庫
表觀遺傳學化合物庫
干細胞信號化合物庫
GPCR化合物庫
劍橋癌癥化合物庫
蛋白酶抑制劑庫
自噬化合物庫
離子通道配體庫
PI3K_Akt抑制劑庫
抗糖尿病化合物庫
抗癌化合物庫
抗感染化合物庫
凋亡化合物庫
MAPK抑制劑庫
高選擇性抑制劑庫
代謝化合物庫
靶點篩選
靶點篩選
蛋白&免疫
重組蛋白
重組蛋白-重組蛋白
蛋白提取和純化
蛋白提取和純化-裂解液
蛋白提取試劑盒
蛋白檢測
蛋白定量
蛋白定性
蛋白檢測-蛋白染色
蛋白電泳&Western blot
WB-裂解液
蛋白Marker
凝膠制備試劑盒
蛋白上樣緩沖液
WB-電泳緩沖液
封閉液
漂洗液
顯影液
蛋白預制膠
免疫檢測
免疫檢測
免疫組化
組織制備
抗原修復液
組織封閉
抗體稀釋
顯色與復染
特異性染色
封片劑
免疫其他相關試劑
免疫其他相關試劑
蛋白其他相關試劑
蛋白其他相關試劑
細胞生物學
感受態細胞
表達感受態細胞
克隆感受態細胞
酵母感受態細胞
發根農桿菌感受態細胞
根癌農桿菌感受態細胞
其他感受態細胞
細胞培養
基礎培養基
無血清培養基
平衡鹽溶液
細胞培養-血清
細胞生長因子
污染物清除劑
細胞凍存
細胞消化液
細胞分離
細胞裂解
分離液
免疫磁珠
酶抑制劑
細胞檢測
細胞檢測-細胞染色
細胞增殖與分化
細胞凋亡與自噬
細胞轉染
細胞轉染
抗生素溶液
抗生素溶液
其它細胞相關
其它細胞相關
分子生物學
核酸提取和純化
核酸提取和純化-裂解液
提取試劑盒
核酸電泳
DNA Marker
核酸電泳-電泳緩沖液
瓊脂糖
凝膠加樣緩沖液
核酸染料
核酸染料
PCR相關
聚合酶
擴增緩沖液
PCR Master Mix
三磷酸脫氧核糖核苷酸
核酸其他相關試劑
核酸其他相關試劑
染色液
HE染色
HE染色
微生物染色
微生物染色
植物染色
染色液-植物染色
骨組織染色
骨組織染色
結締組織染色
結締組織染色
碳水化合物染色
碳水化合物染色
金屬及鹽染色
金屬及鹽染色
脂類染色
脂類染色
神經染色
神經染色
色素染色
色素染色
酶類染色
酶類染色
細胞染色
染色液-細胞染色
蛋白染色
染色液-蛋白染色
核酸染色
核酸染色
其他染色液
其他染色液
常規溶液
人工模擬液
胃液
腸液
體液
汗液
唾液
血液
腦脊液
尿液
膽汁
緩沖液
PBS緩沖液
Tris-HCl緩沖液
檸檬酸鹽緩沖液
pH標準緩沖液
HEPES緩沖液
硼酸鹽緩沖液
乙酸鈉緩沖液
Tris-EDTA緩沖液
MOPS緩沖液
甘氨酸緩沖液
其他緩沖液
指示劑
酸堿指示劑
金屬指示劑
沉淀滴定指示劑
固定液
戊二醛固定液
多聚甲醛固定液
環保組織固定液
其它固定液
其他常規溶液
其他常規溶液
檢測試劑盒
氧化應激系列
氧化應激系列
ASA-GSH循環系列
ASA-GSH循環系列
土壤酶系列
土壤酶系列
氮代謝系列
氮代謝系列
碳水化合物系列
碳水化合物系列
光合作用系列
光合作用系列
細胞壁代謝系列
細胞壁代謝系列
脂肪酸系列
脂肪酸系列
苯丙烷代謝系列
苯丙烷代謝系列
脯氨酸代謝系列
脯氨酸代謝系列
醫學基礎代謝系列
醫學基礎代謝系列
呼吸與能量代謝途徑
呼吸與能量代謝途徑
三羧酸循環系列
三羧酸循環系列
糖酵解系列
糖酵解系列
糖異生途徑
糖異生途徑
磷酸戊糖途徑
磷酸戊糖途徑
其他檢測試劑盒
其他檢測試劑盒
化學類
砌塊
含氟砌塊
鹵代雜環
雜環砌塊
有機砌塊
配體
Buchwald 配體
手性配體
NHC配體及配合物
膦配體
催化劑
手性催化劑
有機催化劑
光催化劑
過渡金屬催化劑
交叉偶聯催化劑
加氫催化劑
烯烴復分解置換
Buchwald催化劑
無機催化劑
C-H活化催化劑
化學合成
手性助劑
有機金屬試劑
硼酸及其衍生物
格氏試劑
有機硅試劑
離子液體
C-C鍵形成試劑
偶聯試劑
鹵化試劑
氧化劑
保護和脫保護試劑
還原劑
香精香料
實驗室化學品
苛性堿和堿
酸
卡爾費休試劑
色譜和光譜試劑
衍生化試劑
溶劑
儀器分析試劑
金屬
鹽
分析色譜
材料科學
能源材料
燃料電池催化劑
電池材料
燃料電池膜與材料
硫族化物 (硫屬化物)
氧化物與陶瓷
高純鹽
高純金屬及合金
量子點
溶液和氣相沉積前驅體
太陽能材料
電子材料
磁性材料
無機和金屬納米材料
碳納米材料(碳納米管、石墨烯和富勒烯)
液晶
OFET和OPV材料
OLED和PLED材料
光子和光學材料
印刷電子材料
基板和預制電子器件
特種與智能聚合物
硅材料
電子化學品和蝕刻劑
自組裝和接觸印刷
生物醫學材料
生物醫用高分子
親水性高分子
疏水性高分子
聚乙二醇修飾劑 (PEGs和PEOs)
3D生物打印
聚合單體
聚合物微球和納米粒子
動物造模試劑
神經系統造模
癲癇模型
精神分裂癥模型
腦水腫模型
帕金森模型
呼吸系統造模
呼吸系統造模
皮膚相關造模
皮膚相關造模
耳鼻喉頭頸外造模
耳鼻喉頭頸外造模
泌尿系統造模
泌尿系統造模
免疫系統造模
免疫系統造模
內分泌系統造模
內分泌系統造模
生殖系統造模
生殖系統造模
消化系統造模
消化系統造模
循環系統造模
循環系統造模
眼科相關造模
眼科相關造模
運動系統造模
運動系統造模
植物應用
植物培養&遺傳轉化
植物凝膠
MS培養基
組培培養基
植物營養液
遺傳轉化試劑
培養基組分
植物流式試劑
植物組分及細胞器提取
酵母雜交&異源互補
完全培養基/Rich Media
缺陷培養基基礎/Minial Media Base
缺陷氨基酸混合物(DO)
缺陷培養基(SD/SC)
酵母雜交套裝
雜交試劑盒
轉化與鑒定
核酸蛋白提取
畢赤酵母蛋白表達
釀酒酵母表達
裂殖酵母培養
酵母衍生實驗
酵母表面展示
植物檢測試劑盒
植物檢測試劑盒-植物染色
植物檢測試劑盒-光合作用系列
植物代謝物檢測
透析袋
即用型
再生纖維素透析袋
纖維素透析袋
普通型
普通型
透析裝置
透析裝置
生化試劑
酶和輔酶
酶
輔酶
酶底物
膠原酶
食品和乳品檢測用酶和輔酶
診斷試劑用酶和輔酶
蛋白質
植物源蛋白質
動物源蛋白質
蛋白質-重組蛋白
多肽
底物肽
激素肽與神經肽
多肽藥物遞送
藥物肽
β淀粉樣肽與微管蛋白肽
抗微生物肽
查看更多
碳水化合物
單糖
二糖
寡糖
多糖
環糊精
纖維素
查看更多
氨基酸
20種天然氨基酸
FMOC保護氨基酸
BOC保護氨基酸
CBZ保護氨基酸
維生素
維生素
抗生素
抗生素
色素類
染料
指示劑
分離試劑
離子交換樹脂
大孔吸附樹脂
凝膠過濾填料
親和層析填料
疏水層析填料
緩沖劑
緩沖劑
動物激素
動物激素
表面活性劑
陽離子表面活性劑
陰離子表面活性劑
非離子表面活性劑
兩性離子表面活性劑
聚合物類
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
查看更多
脂肪酸系列
短鏈脂肪酸
中鏈脂肪酸
長鏈脂肪酸
反式脂肪酸
磷脂類
血制品
全血
紅細胞
血制品-血清
血漿
溶血活性實驗
其他生化試劑
其他生化試劑
抗體
抗體類
標準品
中藥標準品
黃酮及類黃酮
生物堿
萜類及其衍生物
甾體及甾體皂苷類
苯丙素類
花青素類
查看更多
化學標準品
化學標準品
對照藥材
對照藥材
標準溶液
分析滴定液
儀器校準溶液
混合標準溶液
其他標準溶液
同位素標準品
氫標記
碳標記
氮標記
氧標記
混合標記
其它
有證標準物質
溯源標準品
溯源標準品
食品檢測
農殘標品
獸殘標品
抗氧化劑
食品檢測-防腐劑
食品檢測-著色劑
護色劑
查看更多
藥品檢測
化藥檢測
中藥及中成藥檢測
環境檢測
大氣
土質、土壤
水質
固廢
化妝品檢測
增白劑
化妝品檢測激素
化妝品檢測防腐劑
防曬劑
化妝品檢測著色劑
飼料檢測
飼料檢測-真菌毒素
飼料檢測-激素
飼料檢測-維生素
飼料檢測-脂肪酸
農殘
飼料檢測-抗生素
小分子化合物
小分子化合物溶液
小分子化合物溶液
信號通路
代謝
G蛋白偶聯受體
神經科學
細胞凋亡
表觀遺傳
蛋白酪氨酸激酶
查看更多
化合物庫
抑制劑庫
激酶抑制劑庫
FDA批準的藥物庫
天然產物庫
生物活性化合物庫
酪氨酸激酶抑制劑庫
查看更多
靶點篩選
靶點篩選
蛋白&免疫
重組蛋白
重組蛋白-重組蛋白
蛋白提取和純化
蛋白提取和純化-裂解液
蛋白提取試劑盒
蛋白檢測
蛋白定量
蛋白定性
蛋白檢測-蛋白染色
蛋白電泳&Western blot
WB-裂解液
蛋白Marker
凝膠制備試劑盒
蛋白上樣緩沖液
WB-電泳緩沖液
封閉液
查看更多
免疫檢測
免疫檢測
免疫組化
組織制備
抗原修復液
組織封閉
抗體稀釋
顯色與復染
特異性染色
查看更多
免疫其他相關試劑
免疫其他相關試劑
蛋白其他相關試劑
蛋白其他相關試劑
細胞生物學
感受態細胞
表達感受態細胞
克隆感受態細胞
酵母感受態細胞
發根農桿菌感受態細胞
根癌農桿菌感受態細胞
其他感受態細胞
細胞培養
基礎培養基
無血清培養基
平衡鹽溶液
細胞培養-血清
細胞生長因子
污染物清除劑
查看更多
細胞分離
細胞裂解
分離液
免疫磁珠
酶抑制劑
細胞檢測
細胞檢測-細胞染色
細胞增殖與分化
細胞凋亡與自噬
細胞轉染
細胞轉染
抗生素溶液
抗生素溶液
其它細胞相關
其它細胞相關
分子生物學
核酸提取和純化
核酸提取和純化-裂解液
提取試劑盒
核酸電泳
DNA Marker
核酸電泳-電泳緩沖液
瓊脂糖
凝膠加樣緩沖液
核酸染料
核酸染料
PCR相關
聚合酶
擴增緩沖液
PCR Master Mix
三磷酸脫氧核糖核苷酸
核酸其他相關試劑
核酸其他相關試劑
服務與支持
技術支持
意見反饋
新聞中心
大包裝詢價
下載專區
快遞查詢
文獻引用
400-666-5481
首頁
>
標準品
>
中藥標準品
>
三萜及其苷類
>
人參皂苷Rb1
人參皂苷Rb1
分析標準品,HPLC≥98%
Ginsenoside Rb1
質檢下載
核磁下載
MSDS
品牌:
源葉
產品編號:
B21050
一鍵復制產品信息
CAS號:
41753-43-9
分子式:
C
5
4
H
9
2
O
2
3
分子量:
1109.29
MDL:
MFCD00133367
×
人參皂苷Rb1 分析標準品,HPLC≥98%
貨號
規格
價格
上海
北京
武漢
南京
購買數量
B21050-20mg
一口價
分析標準品,HPLC≥98%
¥80.00
B21050-20mg ¥80.00 現貨
271
10
>10
4
-
6
-
+
B21050-100mg
分析標準品,HPLC≥98%
¥420.00
B21050-100mg ¥420.00 現貨
59
6
>10
3
-
3
-
+
B21050-500mg
分析標準品,HPLC≥98%
¥1500.00
B21050-500mg ¥1500.00 現貨
12
>10
-
-
-
-
+
大包裝詢價
收藏產品
加入購物車
產品介紹
參考文獻(211篇)
質檢證書(COA)
摩爾濃度計算器
相關產品
產品介紹
熔點:
197-198°C
沸點:
1146°C at 760mmHg
比旋光度:
(c=0.91,甲醇)+12.42°
溶解性:
DMSO:80mg/ml
敏感性:
易吸潮
儲存條件:
2-8℃
注意:
部分產品我司僅能提供部分信息,我司不保證所提供信息的權威性,僅供客戶參考交流研究之用。
參考文獻(211篇)
211. [IF=5.9] Jing Tian et al."Mechanism Validation of the Saponins from American Ginseng in Antagonizing Chronic Heart Failure."Food Bioscience.2025 Jul;:107170
210. [IF=2.4] Peng Yidan et al."Chemical composition and transcriptomic analysis revealed the dynamic changes of saponins during the growth of Panax japonicus var. major."AoB Plants.2025 Jun;:
209. [IF=8.3] Yuxi Li et al."Tangshen Formula alleviates doxorubicin induced nephrotoxicity by regulating BAX crosstalk in podocyte."PHYTOMEDICINE.2025 Jun;:156858
208. [IF=8.5] Chengcheng Li et al."Cellulase hyperproduction Trichoderma reesei mutant strain BB8 for the bioextraction and bioconversion of ginsenoside from Panax notoginseng."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 Jun;:144984
207. [IF=3.8] Qin Wei et al."Target Identification of Ginsenosides Against Cognitive Impairment by Using Mass Spectrometry-Based Cellular Thermal Shift Assay (CETSA)."NEUROCHEMICAL RESEARCH.2025 Jun;50(3):1-17
206. [IF=4.7] Lu Zhang et al."An exploration of the protective effects of Ginsenoside Rb1 against acute lung injury using network pharmacology, molecular docking, molecular dynamics simulations, and in vivo experiments."INTERNATIONAL IMMUNOPHARMACOLOGY.2025 Jun;158:114
205. [IF=1.7] Jiang Yang et al."Ginsenoside Rb1 inhibits M1 macrophages-induced IGFBP2-mediated endothelial-mesenchymal transition to alleviate myocardial fibrosis in mice with chronic heart failure."IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL.2025 Jul;:1-14
204. [IF=4.8] Zhenni Yang et al."Ginsenoside Rb1 mitigates atherosclerosis in part through modulating FTO-mediated m6A RNA modification in NETs-induced endothelial activation."Frontiers in Pharmacology.2025 Jul;16:
203. [IF=4.7] Yi Zhou et al."Ginsenoside Rb1 Alleviates DSS-Induced Ulcerative Colitis by Protecting the Intestinal Barrier Through the Signal Network of VDR, PPARγ and NF-κB."Drug Design Development and Therapy.
202. [IF=4.4] Ye Qiu et al."Changes in the chemical composition and medicinal effects of black ginseng during processing."Frontiers in Pharmacology.2024 Nov;15:
201. [IF=3.3] Xue Chen et al."Role of IGF1/IGFR signaling pathway in neuroprotective effect of Shengmai Dihuang Decoction on CIH-induced cognitive impairment."Journal of Traditional and Complementary Medicine.2024 Nov;:
200. [IF=4] Di Yang et al."Multidimensional comparison of different specifications and grades of Sanqi (the root and rhizome of Panax notoginseng): Low saponin content is linked to high starch content."JOURNAL OF FOOD COMPOSITION AND ANALYSIS.2025 Mar;139:107139
199. [IF=6.2] Peng Yu et al."Ginsenosides 20R-Rg3 and Rg5 enriched black ginseng inhibits colorectal cancer tumor growth by activating the Akt/Bax/caspase-3 pathway and modulating gut microbiota in mice."Current Research in Food Science.2025 Jan;10:100978
198. [IF=4.9] Yao Fu et al."Delayed luminescence: An effective measurement for determining the growth ages of forest cultivated ginseng."MICROCHEMICAL JOURNAL.2025 Jan;:112921
197. [IF=6.7] Meng Zhang et al."Exploring the Anti-Fatigue Properties of Ginseng Stem and Leaf Saponins: Using UHPLC-MS Metabolomics and Neurotransmitter Analysis."PHYTOMEDICINE.2025 Feb;:156459
196. [IF=6] Qianju Sun et al."Investigation of the dynamic alteration in delayed luminescence property and their correlation with ginsenoside over the classical nine-cycle steaming and drying processing of black ginseng."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Feb;218:1
195. [IF=3.8] Saiya Chen et al."Molecular network strategies combined with MCnebula2 identify potential active compounds from steamed Polygonatum cyrtonema Hua."JOURNAL OF CHROMATOGRAPHY A.2025 Feb;:465779
194. [IF=2.8] Ruobing Bai et al."Total ginsenosides from wild ginseng improve immune regulation in a rat model of spleen qi deficiency by modulating fecal-bacteria-associated short-chain fatty acids and intestinal barrier integrity."JOURNAL OF CHROMATOGRAPHY B-ANALYTIC
193. [IF=7.7] Yiming Li et al."Protopanaxadiol (PPD)-type ginsenosides inhibit the key element of α-glucosidase - The glycosyl group."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 May;306:141843
192. [IF=4.9] Yanbing Pan et al."Simultaneous detection of tanshinone I and cryptotanshinone using a carbon fiber microelectrode based on gold–palladium composite network."MICROCHEMICAL JOURNAL.2025 Mar;:113378
191. [IF=6.8] Feiyan Chen et al."Identification of AIF1 as a protein target of notoginsenosides in brain tissue of mice with intracerebral hemorrhage based on hapten immunoaffinity fishing technique."Journal of Ginseng Research.2025 Apr;:
190. [IF=11.4] Keqin Lu et al."Synergistic potentiation of the anti-metastatic effect of a Ginseng-Salvia miltiorrhiza herbal pair and its biological ingredients via the suppression of CD62E-dependent neutrophil infiltration and NET formation."Journal of Advanced Resear
189. [IF=3.1] Ze-xuan Chen et al."Metabolite profiling of Shenhua compound in rats and pharmacokinetics study of four bioactive compounds with liquid chromatography combined with electrospray ionization tandem mass spectrometry."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL
188. [IF=4.4] Chaokai Yang et al."Xixin Decoction’s novel mechanism for alleviating Alzheimer’s disease cognitive dysfunction by modulating amyloid-β transport across the blood–brain barrier to reduce neuroinflammation."Frontiers in Pharmacology.2025 Jan;15:1508726
187. [IF=3.2] Chang Wang et al."Different processing methods affect the chemical composition and in vitro anti-tumor activity of ginseng."JOURNAL OF FOOD SCIENCE.2025 Jan;90(1):e17639
186. [IF=6.8] Yilin Wang et al."Involvement of Piezo 1 in inhibition of shear-induced platelet activation and arterial thrombosis by ginsenoside Rb1."BRITISH JOURNAL OF PHARMACOLOGY.2025 Feb;:
185. [IF=4.8] Cuiting Yang et al."Fermentation interactions and lipid-lowering potential of Monascus purpureus fermented Ginseng."Food Bioscience.2025 Apr;66:106260
184. [IF=2.3] Mengxue Hu et al."Red Ginseng Aqueous Extract Superior to White Ginseng Exhibited Anti-aging Property through IIS Signaling Pathway in Caenorhabditis elegans."CHEMISTRY & BIODIVERSITY.2025 Apr;:e202500604
183. [IF=2.9] Ning Xu et al."Water extract of ginseng alleviates parkinsonism in MPTP–induced Parkinson’s disease mice."PLoS One.2024 Sep;19(9):e0296424
182. [IF=3.4] Sethuraman Sathya et al."Comparison of chemical components and quality evaluation of Panax ginseng and its processed products from different habitats in Northeastern China."Biocatalysis and Agricultural Biotechnology.2024 Oct;61:103375
181. [IF=3.8] Chen Yue et al."Impact of ginsenoside Rb1 on gut microbiome and associated changes in pharmacokinetics in rats."Scientific Reports.2024 Sep;14(1):1-12
180. [IF=4.3] Wu Dehua et al."Temperature seasonality and soil phosphorus availability shape ginseng quality via regulating ginsenoside contents."BMC PLANT BIOLOGY.2024 Dec;24(1):1-12
179. [IF=8.5] Jiabao Feng et al."Analysis of sediment re-formation factors after ginseng beverage clarification based on XGBoost machine learning algorithm."FOOD CHEMISTRY.2024 Sep;:141304
178. [IF=4.8] Zhengchao Ji et al."Holistic quality assessment and monitoring of YiXinShu capsule based on three-dimensional fingerprints combined with quantitative analysis, antioxidant activity and chemometrics."JOURNAL OF ETHNOPHARMACOLOGY.2024 Dec;335:118630
177. [IF=3.5] Hong Yinan et al."Biotransformation of ginsenoside compound K using β-glucosidase in deep eutectic solvents."BIOPROCESS AND BIOSYSTEMS ENGINEERING.2024 Jun;:1-11
176. [IF=6.8] Yun Zhao et al."The plant extract PNS mitigates atherosclerosis via promoting Nrf2-mediated inhibition of ferroptosis through reducing USP2-mediated Keap1 deubiquitination."BRITISH JOURNAL OF PHARMACOLOGY.2024 Sep;:
175. [IF=2.8] Liang Liwen et al."Identification of Potential α-Glucosidase Inhibitors from American Ginseng Processed Products by UHPLC-Q-Orbitrap/MS and Molecular Docking."Food Biophysics.2024 Jun;:1-13
174. [IF=3.4] Yanqiu Zheng et al."WeiNaiAn capsule attenuates intestinal mucosal injury and regulates gut microbiome in indomethacin-induced rat."INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY.2024 Jun;:106609
173. [IF=4.1] Yue Gao et al."Biotransformation of Ginsenoside Rb1 to Ginsenoside Rd and 7 Rare Ginsenosides Using Irpex lacteus with HPLC-HRMS/MS Identification."ACS Omega".2024;XXXX(XXX):XXX-XXX
172. [IF=5.9] Jing Fang et al."Effects of soil microbial ecology on ginsenoside accumulation in Panax ginseng across different cultivation years."INDUSTRIAL CROPS AND PRODUCTS".2024 Sep;215:118637
171. [IF=7.5] Yujue Wang et al."Ginsenoside Rb1 mitigates acute catecholamine surge-induced myocardial injuries in part by suppressing STING-mediated macrophage activation."BIOMEDICINE & PHARMACOTHERAPY".2024 Jun;175:116794
170. [IF=2.7] Wenjie Su et al."Therapeutic effect of notoginseng saponins before and after fermentation on blood deficiency rats."Experimental and Therapeutic Medicine".2024 Apr;27(4):1-16
169. [IF=5.9] Yujuan Zhang et al."Physiological, biochemical and transcriptional analysis reveals the response mechanism of Panax quinquefolius to the stressors of drought and waterlogging."INDUSTRIAL CROPS AND PRODUCTS".2024 May;211:118235
168. [IF=6.3] Mengya Zhao et al."Methanol-involved heterogeneous transformation of ginsenoside Rb1 to rare ginsenosides using heteropolyacids embedded in mesoporous silica with HPLC-MS investigation."Journal of Ginseng Research".2024 Feb;:
167. [IF=8.6] Minghui Li et al."Natural deep eutectic solvents-based selective extraction of saponins from Panax notoginseng: Process optimization, chemical profiling, and bioactivities evaluation."SEPARATION AND PURIFICATION TECHNOLOGY".2024 Aug;341:126882
166. [IF=5.2] Yanbo Hu et al."Targeted preparation of six rare ginsenosides using two β-glucosidases from Bifidobacterium adolescentis."Food Bioscience".2024 Jun;59:104192
165. [IF=5.6] Bin Xu et al."Identification of ginsenoside components from adventitious root of ginseng and their hypoglycemic effects on T1DM mice: A network pharmacology and animal experiment study."Journal of Functional Foods".2024 May;116:106083
164. [IF=1.6] Dai Tingting et al."Prediction of molecular mechanism of processed ginseng in the treatment of heart failure based on network pharmacology and molecular docking technology."MEDICINE.2023 Dec;102(49):e36576
163. [IF=8.8] Haiyang Li et al."Research on rapid quality identification method of Panax notoginseng powder based on artificial intelligence sensory technology and multi-source information fusion technology."FOOD CHEMISTRY.2024 May;440:138210
162. [IF=17.1] Shihui Li et al."Supramolecular Integration of Multifunctional Nanomaterial by Mannose-Decorated Azocalixarene with Ginsenoside Rb1 for Synergistic Therapy of Rheumatoid Arthritis."ACS Nano.2023;17(24):25468–25482
161. [IF=4.1] Mengya Zhao et al."Heterogeneous Transformation of Ginsenoside Rb1 with Ethanol Using Heteropolyacid-Loaded Mesoporous Silica and Identification by HPLC-MS."ACS Omega.2023;8(45):43285–43294
160. [IF=4.6] Leqin Cheng et al."How to More Effectively Obtain Ginsenoside Rg5: Understanding Pathways of Conversion."MOLECULES.2023 Jan;28(21):7313
159. [IF=4.6] Kailu Zhou et al."Production of Gypenoside XVII from Ginsenoside Rb1 by Enzymatic Transformation and Their Anti-Inflammatory Activity In Vitro and In Vivo."MOLECULES.2023 Jan;28(19):7001
158. [IF=8.8] Shiying Luo et al."Spatial metabolomics method to reveal differential metabolomes in microregions of Panax quinquefolius roots by using ultra-performance liquid chromatography quadrupole/time of flight-mass spectrometry and desorption electrospray ionizati
157. [IF=3.1] Gan Chen et al."Metabolomics approach to growth-age discrimination in mountain-cultivated ginseng (Panax ginseng C. A. Meyer) using ultra-high-performance liquid chromatography coupled with quadrupole-time-of-flight mass spectrometry."JOURNAL OF SEPARATION
156. [IF=3.5] Zhu Cun et al."Integrated metabolome and transcriptome analysis reveals the regulatory mechanism of low nitrogen-driven biosynthesis of saponins and flavonoids in Panax notoginseng."GENE.2024 Jan;:148163
155. [IF=5.4] Yingqiu Shi et al."Effective constituents and protective effect of Mudan granules against Schwann cell injury."JOURNAL OF ETHNOPHARMACOLOGY.2024 Apr;323:117692
154. [IF=5.6] Ying Liu et al."Regulation of NAD+/NADH Redox Involves the Protective Effects of Ginsenoside Rb1 against Oxygen–Glucose Deprivation/Reoxygenation-Induced Astrocyte Lesions."INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES.2023 Jan;24(22):16059
153. [IF=2.9] Bai Yuxin et al."UHPLC–HRMS based saponins profiling of three morphological regions in American ginseng (Panax quinquefolium L.) and their correlation with the antioxidant activity."FOOD SCIENCE AND BIOTECHNOLOGY.2023 Nov;:1-12
152. [IF=4.6] Leqin Cheng et al."How to More Effectively Obtain Ginsenoside Rg5: Understanding Pathways of Conversion."MOLECULES.2023 Jan;28(21):7313
151. [IF=4.8] Guozhuang Zhang et al."Rhizosphere effects on the microbial community: Specificity and conservatism across geographically disjunct Panax species."APPLIED SOIL ECOLOGY.2023 Dec;192:105075
150. [IF=5.4] Chen Le-xin et al."Yi Qi Chu Tan Formula (YQCTF) inhibited the progress of lung cancer via regulating tumor-associated neutrophil: An integrated study of network pharmacology, proteomics and pharmacodynamics."JOURNAL OF ETHNOPHARMACOLOGY.2023 Aug;:116943
149. [IF=8.2] Zhenning Di et al."A Gellan Gum/Sodium Alginate-based gastric-protective hydrogel loaded with a combined herbal extract consisting of Panax notoginseng, Bletilla striata and Dendrobium officinale."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Oc
148. [IF=7.9] Zhang Guozhuang et al."Modules in robust but low-efficiency phyllosphere fungal networks drive saponin accumulation in leaves of different Panax species."Environmental Microbiome.2023 Dec;18(1):1-15
147. [IF=6.1] Yue-guang Mi et al."Comparative Characterization of the Ginsenosides from Six Panax Herbal Extracts and Their In Vitro Rat Gut Microbial Metabolites by Advanced Liquid Chromatography–Mass Spectrometry Approaches."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
146. [IF=4.546] Xu Ying et al."Panax notoginseng saponins inhibits NLRP3 inflammasome-mediated pyroptosis by downregulating lncRNA-ANRIL in cardiorenal syndrome type 4."Chinese Medicine.2023 Dec;18(1):1-13
145. [IF=3.2] Yuqing Xu et al."Optimization of Rare Ginsenosides and Antioxidant Activity Quality of Ginseng Jiaosu Based on Probiotic Strains and Fermentation Technology."JOURNAL OF FOOD QUALITY.2023;2023:5686929
144. [IF=5.735] Feiyan Chen et al."Discovery and validation of PURA as a transcription target of 20(S)-protopanaxadiol: Implications for the treatment of cognitive dysfunction."Journal of Ginseng Research.2023 Apr;:
143. [IF=6.388] He Zhang et al."Prevention effect of total ginsenosides and ginseng extract from Panax ginseng on cyclophosphamide-induced immunosuppression in mice."PHYTOTHERAPY RESEARCH.2023 Apr;:
142. [IF=1.193] Song Fengyuan et al."Preparation of solid dispersion of Dushen decoction and establishment of its evaluation method."CHINESE JOURNAL OF ANALYTICAL CHEMISTRY.2023 Mar;:100259
141. [IF=3.007] Xuanming Zhang et al."LC-MS analysis of ginsenosides in different parts of Panax quinquefolius and their potential for coronary disease improvement."PLANTA MEDICA.2023 Mar;0(AAM):
140. [IF=3.408] Ping Di et al."LED Light Irradiations Differentially Affect the Physiological Characteristics, Ginsenoside Content, and Expressions of Ginsenoside Biosynthetic Pathway Genes in Panax ginseng."Agriculture-Basel.2023 Apr;13(4):807
139. [IF=4.927] Junchen Liu et al."Anti-Inflammatory Activity of Panax notoginseng Flower Saponins Quantified Using LC/MS/MS."MOLECULES.2023 Jan;28(5):2416
138. [IF=5.561] Xueyan Yuan et al."Metabolite Fingerprinting for Identification of Panax ginseng Metabolites Using Internal Extractive Electrospray Ionization Mass Spectrometry."Foods.2023 Jan;12(6):1152
137. [IF=6.208] Long Chen et al."Ginsenoside Rb1 Improves Post-Cardiac Arrest Myocardial Stunning and Cerebral Outcomes by Regulating the Keap1/Nrf2 Pathway."INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES.2023 Jan;24(5):5059
136. [IF=6.212] Nanxi Zhang et al."Based on 1H NMR and LC-MS metabolomics reveals biomarkers with neuroprotective effects in multi-parts ginseng powder."Arabian Journal of Chemistry.2023 Jul;16:104840
135. [IF=6.656] Linying Xia et al."Panax notoginseng saponins normalises tumour blood vessels by inhibiting EphA2 gene expression to modulate the tumour microenvironment of breast cancer."PHYTOMEDICINE.2023 Mar;:154787
134. [IF=3.061] Zhu Cun et al."High nitrogen inhibits biomass and saponins accumulation in a medicinal plant Panax notoginseng."PeerJ.2023 Feb;11:e14933
133. [IF=3.945] Linlin Su et al."Development of SSR markers on the basis of the Panax notoginseng transcriptome for agronomic and biochemical trait association analyses."Journal of Applied Research on Medicinal and Aromatic Plants.2023 Apr;34:100475
132. [IF=5.195] Chao Meng et al."Complex components of Shengmai formula interact with organic cation transporter 2 (OCT2) in MDCK cells."JOURNAL OF ETHNOPHARMACOLOGY.2023 May;308:116278
131. [IF=8.025] Honghong Jiao et al."Genome-wide analysis of Panax MADS-box genes reveals role of PgMADS41 and PgMADS44 in modulation of root development and ginsenoside synthesis."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Apr;233:123648
130. [IF=14.026] Junyun Cheng et al."High-throughput transcriptional profiling of perturbations by Panax ginseng saponins and Panax notoginseng saponins using TCM-seq."Journal of Pharmaceutical Analysis.2023 Feb;:
129. [IF=4.927] Hong-Ping Wang et al."Comprehensive Identification of Ginsenosides in the Roots and Rhizomes of Panax ginseng Based on Their Molecular Features-Oriented Precursor Ions Selection and Targeted MS/MS Analysis."MOLECULES.2023 Jan;28(3):941
128. [IF=7.675] Siming Wang et al."Ginsenoside Rg1 Delays Chronological Aging in a Yeast Model via CDC19- and SDH2-Mediated Cellular Metabolism."Antioxidants.2023 Feb;12(2):296
127. [IF=4.478] Ren, Rongfan et al."Characterization of ginsenoside structural isomers from mixtures using in situ methylation with direct analysis in real-time ionization tandem mass spectrometry."ANALYTICAL AND BIOANALYTICAL CHEMISTRY.2022 Dec;:1-11
126. [IF=3.889] Hao Su et al."Ginsenoside Rb1 reduces oxidative/carbonyl stress damage and ameliorates inflammation in the lung of streptozotocin-induced diabetic rats."PHARMACEUTICAL BIOLOGY.
125. [IF=4.036] Hongping Wang et al."Improving natural products identification through molecular features-oriented precursor ion selection and targeted MS/MS analysis: a case study of Zhi-Ke-Yang-Yin capsule."RSC Advances.2022 Nov;12(51):33340-33347
124. [IF=0] Hong Kan et al."Identification of anti-inflammatory components in Panax ginseng of Sijunzi Decoction based on spectrum-effect relationship."Chinese Herbal Medicines.2022 Oct;:
123. [IF=1.698] Jinyan Wu et al."Chemical Identification and Antioxidant Screening of Bufei Yishen Formula using an Offline DPPH Ultrahigh-Performance Liquid Chromatography Q-Extractive Orbitrap MS/MS."International Journal of Analytical Chemistry.2022 Oct 15;2022:142380
122. [IF=4.126] Zheng Fei et al."Cloning and characterization of thermophilic endoglucanase and its application in the transformation of ginsenosides."AMB Express.2022 Dec;12(1):1-13
121. [IF=2.893] Zhong Peng et al."Characterization of a novel thermophilic beta-glucosidase from Thermotoga sp. and its application in the transformation of notoginsenoside R1."3 Biotech.2022 Nov;12(11):1-14
120. [IF=3.571] Jie Mei et al."Quality evaluation of Panax notoginseng (Burk.) F.H. Chen using supercritical fluid chromatography–mass spectrometry and chemical pattern recognition."JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS.2022 Nov;221:115029
119. [IF=5.168] Pan Wang et al."Discovery and characterization of novel ATP citrate lyase inhibitors from natural products by a luminescence-based assay."CHEMICO-BIOLOGICAL INTERACTIONS.2022 Nov;367:110199
118. [IF=5.846] Li-li Hong et al."Tentative exploration of pharmacodynamic substances: Pharmacological effects, chemical compositions, and multi-components pharmacokinetic characteristics of ESZWD in CHF-HKYd rats.."Frontiers in Cardiovascular Medicine.2022 Sep;9:913661-
117. [IF=5.988] Tiantian Liu et al."Study on the mechanism of American ginseng extract for treating type 2 diabetes mellitus based on metabolomics.."Frontiers in Pharmacology.2022 Sep;13:960050-960050
116. [IF=6.656] Yang Jin et al."Ginseng total saponins and Fuzi total alkaloids exert antidepressant-like effects in ovariectomized mice through BDNF-mTORC1, autophagy and peripheral metabolic pathways."PHYTOMEDICINE.2022 Sep;:154425
115. [IF=6.055] Baoyu Fu et al."Ginsenosides improve reproductive capability of aged female Drosophila through mechanism dependent on ecdysteroid receptor (ECR) and steroid signaling pathway."Frontiers in Endocrinology.2022; 13: 964069
114. [IF=3.024] Hongxi Chen et al."Strategy of combining offline 2D LC-MS with LC-DIA-MS/MS to accurately identify chemical compounds and for quality control of Dioscorea septemloba Thunb."PHYTOCHEMICAL ANALYSIS.2022 Jul;:
113. [IF=3.318] Hongda Sheng et al."Identification of bioactive ingredients from Babaodan using UPLC-QTOF-MS analysis combined with network pharmacology guided bioassays."JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES.2022 Aug;120
112. [IF=4.601] Mengying Shuai et al."Geographical origin of American ginseng (Panax quinquefolius L.) based on chemical composition combined with chemometric."JOURNAL OF CHROMATOGRAPHY A.2022 Aug;1676:463284
111. [IF=4.927] Huanxi Zhao et al."Enzymatic Biotransformation of Gypenoside XLIX into Gylongiposide I and Their Antiviral Roles against Enterovirus 71 In Vitro."MOLECULES.2022 Jan;27(13):4094
110. [IF=6.656] Mingrui Han et al."Single-cell transcriptomics reveals the natural product Shi-Bi-Man promotes hair regeneration by activating the FGF pathway in dermal papilla cells."PHYTOMEDICINE.2022 Jun;:154260
109. [IF=10.787] Xue-Chun Ni et al."Ginsenoside Rb1 inhibits astrocyte activation and promotes transfer of astrocytic mitochondria to neurons against ischemic stroke."Redox Biology.2022 Aug;54:102363
108. [IF=1.885] Guo Na et al."Comparison of the Saponins in Three Processed American Ginseng Products by Ultra-High Performance Liquid Chromatography-Quadrupole Orbitrap Tandem Mass Spectrometry and Multivariate Statistical Analysis."International Journal of Analytical Ch
107. [IF=6.576] Rensong Huang et al."Studies on Bioactive Components of Red Ginseng by UHPLC-MS and Its Effect on Lipid Metabolism of Type 2 Diabetes Mellitus."Frontiers in Nutrition. 2022; 9: 865070
106. [IF=6.576] Zhi-man Li et al."Transformation Mechanism of Rare Ginsenosides in American Ginseng by Different Processing Methods and Antitumour Effects."Frontiers in Nutrition. 2022; 9: 833859
105. [IF=5.34] Dong Shao et al."Identification of the active compounds and functional mechanisms of Jinshui Huanxian formula in pulmonary fibrosis by integrating serum pharmacochemistry with network pharmacology."PHYTOMEDICINE. 2022 Jul;102:154177
104. [IF=4.35] Di Qu et al."Analysis of Key Chemical Components in Aqueous Extract Sediments of Panax Ginseng at Different Ages."Foods. 2022 Jan;11(8):1161
103. [IF=5.811] He Zhang et al."Prevention Effect of Protopanaxadiol-Type Saponins Saponins and Protopanaxatriol-Type Saponins on Myelosuppression Mice Induced by Cyclophosphamide.."Frontiers in Pharmacology. 2022 Apr;13:845034-845034
102. [IF=6.06] Zhu Zhu et al."Target engagement of ginsenosides in mild cognitive impairment using mass spectrometry-based drug affinity responsive target stability."J Ginseng Res. 2021 Dec;:
101. [IF=3.373] Yu Yao et al."UPLC–MS/MS method for the determination of the herb composition of Tangshen formula and the in vivo pharmacokinetics of its metabolites in rat plasma."Phytochemical Analysis. 2021 Dec 14
100. [IF=7.514] Di Qu et al."Sediment formation and analysis of the main chemical components of aqueous extracts from different parts of ginseng roots."Food Chem. 2022 Jan;:132146
99. [IF=6.06] Qingxia Huang et al."Major ginsenosides from Panax ginseng promote aerobic cellular respiration and SIRT1-mediated mitochondrial biosynthesis in cardiomyocytes and neurons."J Ginseng Res. 2022 Feb;:
98. [IF=2.419] Yinping Jin et al."Dynamic changes of ginsenosides in Panax quinquefolius fruit at different development stages measured by UHPLC-Orbitrap MS."Rapid Communications In Mass Spectrometry. 2022 Feb 17
97. [IF=3.105] Zhao Yan et al.Protopanaxadiol and Protopanaxatriol Ginsenosides Can Protect Against Aconitine-induced Injury in H9c2 Cells by Maintaining Calcium Homeostasis and Activating the AKT Pathway.J Cardiovasc Pharm. 2021 Nov;78(5):e690-e702
96. [IF=4.411] Aftab Shaukat et al.Ginsenoside Rb1 Mitigates Escherichia coli Lipopolysaccharide-Induced Endometritis through TLR4-Mediated NF-κB Pathway.Molecules. 2021 Jan;26(23):7089
95. [IF=1.934] Zhang Chen et al."Biotransformation of ginsenoside Rc to Rd by endophytic bacterium Bacillus sp. G9y isolated from Panax quinquefolius."Anton Leeuw Int J G. 2021 Apr;114(4):437-444
94. [IF=2.408] Fang-Tong Li et al."In Vitro Effects of Ginseng and the Seed of Zizyphus jujuba var. spinosa on Gut Microbiota of Rats with Spleen Deficiency."Chem Biodivers. 2020 Sep;17(9):e2000199
93. [IF=2.914] Aftab Shaukat et al."Ginsenoside Rb 1: A novel therapeutic agent in Staphylococcus aureus-induced Acute Lung Injury with special reference to Oxidative stress and Apoptosis."Microb Pathogenesis. 2020 Jun;143:104109
92. [IF=2.914] Aftab Shaukat et al."Ginsenoside Rb1 ameliorates Staphylococcus aureus-induced Acute Lung Injury through attenuating NF-κB and MAPK activation."Microb Pathogenesis. 2019 Jul;132:302
91. [IF=3.21] Ma Zhu et al."Transformation of ginsenoside via deep eutectic solvents based on choline chloride as an enzymatic reaction medium."Bioproc Biosyst Eng. 2020 Jul;43(7):1195-1208
90. [IF=3.361] Yuhao Zhang et al."An integrated approach for structural characterization of Gui Ling Ji by traveling wave ion mobility mass spectrometry and molecular network."Rsc Adv. 2021 Apr;11(26):15546-15556
89. [IF=3.411] Yu Jingping et al."Comprehensive Quality Evaluation of American Ginseng for Different Parts and Abnormal Trait Based on the Major Ginsenoside Contents and Morphological Characteristics."Biomed Res Int. 2021;2021:8831080
88. [IF=3.503] Jiajia Dong et al."Comparative pharmacokinetic analysis of raw and steamed Panax notoginseng roots in rats by UPLC-MS/MS for simultaneously quantifying seven saponins."Pharm Biol. 2021;59(1):653-661
87. [IF=3.645] Mengmeng Jia et al."UHPLC coupled with mass spectrometry and chemometric analysis of Kang-Ai injection based on the chemical characterization, simultaneous quantification, and relative quantification of 47 herbal alkaloids and saponins."J Sep Sci. 2020 Ju
86. [IF=3.645] Hao Zhang et al."Preparing molecularly imprinted nanoparticles of saponins via cooperative imprinting strategy."J Sep Sci. 2020 Jun;43(11):2162-2171
85. [IF=3.647] Wenqi Jin et al."Ginsenoside Rd attenuates ACTH-induced corticosterone secretion by blocking the MC2R-cAMP/PKA/CREB pathway in Y1 mouse adrenocortical cells."Life Sci. 2020 Mar;245:117337
84. [IF=3.659] Zhang Sheng et al."Protective effect of Shenmai injection on doxorubicin-induced cardiotoxicity via regulation of inflammatory mediators."Bmc Complem Altern M. 2019 Dec;19(1):1-10
83. [IF=3.69] Xiaoping Wang et al."Baoyuan decoction ameliorates apoptosis via AT1-CARP signaling pathway in H9C2 cells and heart failure post-acute myocardial infarction rats."J Ethnopharmacol. 2020 Apr;252:112536
82. [IF=3.882] Kunpeng Yin et al."Lanthanide Metal–Organic Framework-Based Fluorescent Sensor Arrays to Discriminate and Quantify Ingredients of Natural Medicine."Langmuir. 2021;37(17):5321–5328
81. [IF=3.935] Ruimei Lin et al."Global identification and determination of the major constituents in Kai-Xin-San by ultra-performance liquid chromatography-quadrupole-Orbitrap mass spectrometry and gas chromatography-mass spectrometry."J Pharmaceut Biomed. 2021 Nov;206
80. [IF=3.978] Weina Li et al."Ginsenoside CK production by commercial snailase immobilized onto carboxylated chitosan-coated magnetic nanoparticles."Biochem Eng J. 2021 Oct;174:108119
79. [IF=4.142] Wang Chenxi et al."Rapid discovery of potential ADR compounds from injection of total saponins from Panax notoginseng using data-independent acquisition untargeted metabolomics."Analytical And Bioanalytical Chemistry. 2021 Oct 26
78. [IF=4.162] Weixin Hou et al."The Jieduan-Niwan (JDNW) Formula Ameliorates Hepatocyte Apoptosis: A Study of the Inhibition of E2F1-Mediated Apoptosis Signaling Pathways in Acute-on-Chronic Liver Failure (ACLF) Using Rats."Drug Des Dev Ther. 2021; 15: 3845–3862
77. [IF=4.36] Yongshen Ren et al."Anticoagulant active ingredients identification of total saponin extraction of different Panax medicinal plants based on grey relational analysis combined with UPLC-MS and molecular docking."J Ethnopharmacol. 2020 Oct;260:112955
76. [IF=4.411] Jianbo Chen et al."Neuroprotective Effects of Red Ginseng Saponins in Scopolamine-Treated Rats and Activity Screening Based on Pharmacokinetics."Molecules. 2019 Jan;24(11):2136
75. [IF=4.556] Meng Xu et al."Ginsenosides Rb1 and Rg1 Protect Primary Cultured Astrocytes against Oxygen-Glucose Deprivation/Reoxygenation-Induced Injury via Improving Mitochondrial Function."Int J Mol Sci. 2019 Jan;20(23):6086
74. [IF=4.667] Jing-Hua Zhang et al."Berberine and Ginsenoside Rb1 Ameliorate Depression-Like Behavior in Diabetic Rats."Am J Chinese Med. 2021 May;49(05):1195-1213
73. [IF=4.96] Manying Wang et al."20(S)-ginsenoside Rg3 promotes myoblast differentiation and protects against myotube atrophy via regulation of the Akt/mTOR/FoxO3 pathway."Biochem Pharmacol. 2020 Oct;180:114145
72. [IF=5.34] You-Ping Wu et al."Evidences for the mechanism of Shenmai injection antagonizing doxorubicin-induced cardiotoxicity."Phytomedicine. 2021 Jul;88:153597
71. [IF=5.34] Gui Zhou et al."Effects of Qing Chang Suppository Powder and its Ingredients on IL-17 Signal Pathway in HT-29 Cells and DSS-induced Mice."Phytomedicine. 2021 Jul;87:153573
70. [IF=5.396] Hui Wang et al."Ginsenoside extract from ginseng extends lifespan and health span in Caenorhabditis elegans."Food Funct. 2021 Aug;12(15):6793-6808
69. [IF=5.455] Yin Shi-Jun et al."Antithrombotic effect and action mechanism of Salvia miltiorrhiza and Panax notoginseng herbal pair on the zebrafish."Chin Med-Uk. 2020 Dec;15(1):1-10
68. [IF=5.878] Jianbo Chen et al."Protection by ginseng saponins against cyclophosphamide-induced liver injuries in rats by induction of cytochrome P450 expression and mediation of the l-arginine/nitric oxide pathway based on metabolomics."Phytother Res. 2021 Jun;35(6):
67. [IF=6.06] Zhenzhuo Li et al."Ginsenosides repair UVB-induced skin barrier damage in BALB/c hairless mice and HaCaT keratinocytes."J Ginseng Res. 2021 May;:
66. [IF=6.291] Shahid Ali Rajput et al."Ginsenoside Rb1 prevents deoxynivalenol-induced immune injury via alleviating oxidative stress and apoptosis in mice."Ecotox Environ Safe. 2021 Sep;220:112333
65. [IF=6.558] Qingqing Song et al."Binary code, a flexible tool for diagnostic metabolite sequencing of medicinal plants."Anal Chim Acta. 2019 Dec;1088:89
64. [IF=6.922] Shihua Wang et al."Dual Activity of Ginsenoside Rb1 in Hypertrophic Cardiomyocytes and Activated Macrophages: Implications for the Therapeutic Intervention of Cardiac Hypertrophy."J Inflamm Res. 2021; 14: 1789–1806
63. [IF=9.642] Xin Han et al."Biocatalytic production of compound K in a deep eutectic solvent based on choline chloride using a substrate fed-batch strategy."Bioresource Technol. 2020 Jun;305:123039
62. [IF=1.967] Meijia Li et al."Brain Concentration of Ginsenosides and Pharmacokinetics after Oral Administration of Mountain-cultivated Ginseng."J Chin Chem Soc-Taip. 2017 Apr;64(4):395-403
61. [IF=2.869] Qi Zhou et al."Ginsenoside Rg1 inhibits platelet activation and arterial thrombosis."Thromb Res. 2014 Jan;133:57
60. [IF=3.205] Naijing Li et al."Protective effects of ginsenosides Rg1 and Rb1 on an Alzheimer's disease mouse model: A metabolomics study."J Chromatogr B. 2015 Mar;985:54
59. [IF=3.47] Yaxin Zhang et al."Ginsenoside Rb1 Inhibits Doxorubicin-Triggered H9C2 Cell Apoptosis via Aryl Hydrocarbon Receptor."Biomol Ther. 2017 Mar; 25(2): 202–212
58. [IF=3.935] Shan-Shan Zhou et al."Synchronous characterization of carbohydrates and ginsenosides yields deeper insights into the processing chemistry of ginseng."J Pharmaceut Biomed. 2017 Oct;145:59
57. [IF=3.998] Bian Minjuan et al."Combination of ginsenoside Rb1 and Rd protects the retina against bright light-induced degeneration."Sci Rep-Uk. 2017 Jul;7(1):1-15
56. [IF=4.36] Bin Ma et al."Sulfur fumigation reducing systemic exposure of ginsenosides and weakening immunomodulatory activity of ginseng."J Ethnopharmacol. 2017 Jan;195:222
55. [IF=4.952] Jiali Chen et al."Ginsenosides and amino acids in flavored ginseng chips as affected by?food formulation and processing technology."Lwt Food Sci Technol. 2015 Jun;62:517
54. [IF=5.34] Shan-Shan Zhou et al."Stronger anti-obesity effect of white ginseng over red ginseng and the potential mechanisms involving chemically structural/compositional specificity to gut microbiota."Phytomedicine. 2020 Aug;74:152761
53. [IF=6.06] Yang Xiu et al."Simultaneous determination and difference evaluation of 14 ginsenosides in Panax ginseng roots cultivated in different areas and ages by high-performance liquid chromatography coupled with triple quadrupole mass spectrometer in the multipl
52. [IF=6.06] Jianbo Chen et al."Effects of processing method on the pharmacokinetics and tissue distribution of orally administered ginseng."J Ginseng Res. 2018 Jan;42:27
51. [IF=6.06] Jiahong Han et al."Compatibility effects of ginseng and Ligustrum lucidum Ait herb pair on hematopoietic recovery in mice with cyclophosphamide-induced myelosuppression and its material basis."J Ginseng Res. 2020 Mar;44:291
50. Jin, Wenqi, et al. "Ginsenoside Rd attenuates ACTH-induced corticosterone secretion by blocking the MC2R-cAMP/PKA/CREB pathway in Y1 mouse adrenocortical cells."?Life sciences?245 (2020): 117337.https://doi.org/10.1016/j.lfs.2020.117337
49. Yongshen Ren, Jiao Ai, Xinqiao Liu, Shuai Liang, Yao Zheng, Xin Deng, Yan Li, Jing Wang, Xukun Deng, Lin-Lin Chen, Anticoagulant active ingredients identification of total saponin extraction of different Panax medicinal plants based on grey relational anal
48. Chen, Jiali, et al. "Ginsenosides and amino acids in flavored ginseng chips as affected by food formulation and processing technology."?LWT-Food Science and Technology?62.1 (2015): 517-524.https://doi.org/10.1016/j.lwt.2014.10.047
47. Joo, Kyung-Mi, et al. "Pharmacokinetic study of ginsenoside Re with pure ginsenoside Re and ginseng berry extracts in mouse using ultra performance liquid chromatography/mass spectrometric method."?Journal of pharmaceutical and biomedical analysis?51.1 (20
46. Wang, Xiaoping, et al. "Baoyuan decoction ameliorates apoptosis via AT1-CARP signaling pathway in H9C2 cells and heart failure post-acute myocardial infarction rats." Journal of ethnopharmacology 252 (2020): 112536.https://doi.org/10.1016/j.jep.2019.112536
45. Yu, Jingping, et al. "Comprehensive Quality Evaluation of American Ginseng for Different Parts and Abnormal Trait Based on the Major Ginsenoside Contents and Morphological Characteristics." BioMed research international 2021 (2021).https://doi.org/10.1155/
44. Shaukat, Aftab, et al. "Ginsenoside Rb1 ameliorates Staphylococcus aureus-induced acute lung injury through attenuating NF-κB and MAPK activation." Microbial pathogenesis 132 (2019): 302-312.https://doi.org/10.1016/j.micpath.2019.05.003
43. Shaukat, Aftab, et al. "Ginsenoside Rb 1: A novel therapeutic agent in Staphylococcus aureus-induced Acute Lung Injury with special reference to Oxidative stress and Apoptosis." Microbial pathogenesis 143 (2020): 104109.https://doi.org/10.1016/j.micpath.20
42. Han, Xin, et al. "Biocatalytic production of compound K in a deep eutectic solvent based on choline chloride using a substrate fed-batch strategy." Bioresource technology 305 (2020): 123039.https://doi.org/10.1016/j.biortech.2020.123039
41. Bian, Minjuan, et al. "Combination of ginsenoside Rb1 and Rd protects the retina against bright light-induced degeneration." Scientific reports 7.1 (2017): 1-15.https://doi.org/10.1038/s41598-017-06471-x
40. Manying Wang, Jixiang Ren, Xuenan Chen, Jianzeng Liu, Xiaohao Xu, Xiangyan Li, Daqing Zhao, Liwei Sun, 20(S)-ginsenoside Rg3 promotes myoblast differentiation and protects against myotube atrophy via regulation of the Akt/mTOR/FoxO3 pathway, Biochemical Ph
39. 邵紫君,李志滿,于鵬程,陳建波,李珊珊,孫印石.氨基酸轉化三七花中稀有人參皂苷及提取液對脂多糖誘導的RAW264.7細胞活性的影響[J].中草藥,2021,52(03):702-710.
38. 張娜,黃鑫,郭云龍,越皓,劉淑瑩.基于UPLC-QQQ-MS多指標統計分析研究不同生境人參中皂苷分布[J].特產研究,2020,42(06):48-54.
37. 樂世俊,王文曉,高歡,任繼國,付瑞嘉,李佳佳,陳艷琰,唐于平.HPLC同時測定不同廠家丹七片中多個有效成分的含量[J].藥物分析雜志,2020,40(12):2236-2243.
36. 杜靜. 冠突散囊菌對中藥材三七成分的轉化及機理研究[D].貴州師范大學,2020.
35. 紀萬里,周澤華,王婷婷,安叡,梁琨,王新宏.基于UPLC-LTQ-Orbitrap-MS方法分析半夏瀉心湯化學成分[J].藥物分析雜志,2020,40(10):1736-1750.
34. 屈青松,林峰,趙崇妍,馬濤,宋帥,史新元.發酵乳桿菌發酵人參工藝優化及人參皂苷抗氧化活性測定[J].中成藥,2020,42(10):2738-2743.
33. 王艷,尉忠賢,李晶.HPLC法測定不同廠家振源片中人參皂苷的含量[J].西北藥學雜志,2020,35(05):669-673.
32. 屈文佳,賈天穎,王海麗,辛潔萍,王敏,白玉瑩,徐文娟,李向日.不同蒸制時間下紅參顏色及3種常見人參皂苷的轉化規律研究[J].北京中醫藥大學學報,2020,43(09):769-775.
31. 吳冬雪,王秋穎,王淑敏,陳思鍵,劉淑瑩,趙幻希,修洋.人參皂苷的仿生提取研究[J].分析試驗室,2021,40(02):145-149.
30. 夏晚霞, 張尚微, 葛亞中,等. 乳酸菌發酵轉化人參皂苷[J]. 現代食品科技, 2018, 34(09):136-142.
29. 李雪晴, 李麗, 劉秀峰,等. 三七皂苷的人腸道菌群體外代謝研究[J]. 藥物生物技術, 2017(03):34-39.
28. 楊林, 徐曉珍, 陳勁柏,等. UHPLC法同時測定參麥注射液中8種人參皂苷[J]. 中成藥, 2019.
27. 李燦, 唐利軍, 茹琴,等. 戒毒一號的高效液相色譜指紋圖譜研究[J]. 江漢大學學報(自然科學版), 2018, 46(05):471-476.
26. 趙昶靈, 楊生超, 陳中堅,等. 紫,綠三七的總花色苷和總皂苷含量及皂苷單體組成[J]. 中藥材, 2014, 37(10):1749-1753.
25. 苗瑞, 吳冬雪, 王秋穎,等. 基于多壁碳納米管的人參皂苷快速分離[J]. 高等學校化學學報, 2018.
24. 張初瑜 陳素紅 吳素香. 一測多評法測定復方人參片中的8種苷類成分[J]. 中國現代應用藥學 2018 35(05):90-96.
23. 張艷欣, 朱國琴, 王丹丹. 均勻設計法優化林下山參中人參皂苷提取工藝的研究[J]. 上海醫藥, 2019, 040(015):89-92.
22. 吳冬雪,劉淑瑩,陳思鍵,趙幻希,修洋,王淑敏.固相萃取結合高效液相色譜-三重四極桿質譜快速分離檢測益氣養血口服液中人參皂苷的新方法[J].分析測試學報,2020,39(07):867-873.
21. 方磊,陳紅,余曉斌.高轉化人參皂苷菌株篩選鑒定及發酵培養基優化[J].食品與發酵工業,2017,43(04):147-151.
20. 劉潤花, 孫雨, 倪詩婷,等. 高效液相色譜法測定消痞和胃膠囊中三七有效成分的含量[J]. 中南藥學, 2020, v.18;No.173(06):104-107.
19. 于穎超, 倪健, 陳功森,等. 芪箭顆粒中皂苷類成分與莫諾苷的指紋圖譜研究[J]. 中南藥學, 2019(12).
18. 吳雨佳, 王令充, 張雯,等. 生物黏附性三七總皂苷-白及多糖-海藻酸鈉復合微球的制備及表征[J]. 中草藥, 2019, v.50;No.655(20):49-56.
17. 張博, 孫秀麗, 郭云龍,等. 液質聯用技術分析不同產地不同年限人參的化學成分[J]. 中國實驗方劑學雜志, 2020年26卷8期, 206-212頁, ISTIC PKU CSCD CA, 2020.
16. 劉芳, 趙瀚森, 孫公偉,等. 基質輔助激光解析質譜成像可視化分析三七皂苷空間分布.
15. 鄭堯. 人參鮮藥干制/復水過程水分狀態與化學成分變化規律研究[J]. 中草藥 2019(14):3302-3312.
14. 孫孔春 吳樂艷 侯雯清 等. 云南省不同產地三七的成分分析[J]. 昆明醫科大學學報 2020 041(001):P.1-10.
13. 袁明洋 金司儀 黃壯 等. 不同粒度對三七粉主要有效成分體外溶出度的影響[J]. 食品安全質量檢測學報 2020 v.11(06):234-238.
12. 王燦燦 戴黎蓉 趙旻 等. UPLC法同時測定四君子湯中7種化學成分的含量[J]. 沈陽藥科大學學報 2018 v.35;No.271(08):639-645.
11. 張永 陳旭 丁越 等. HPLC法結合統計學方法研究復方丹參片中皂苷類成分[J]. 遼寧中醫雜志 2019 46(01):126-129.
10. 趙立春 劉繼永. Box-Behnken法優化人參皂苷Rg1 Re Rb1提取工藝[J]. 食品工業 2020(1).
9. 陳蕾,萬婉,劉艷,周青松.黃精有效成分提取測定的研究[J].赤峰學院學報(自然科學版),2019,35(09):37-39.
8. 楊道強, 陸勝民, 夏其樂,等. 靈芝酒浸提過程中主要功能成分的變化及抗氧化作用研究[J]. 食品與生物技術學報, 2016, 35(002):205-210.
7. 耿魁魁, 汝婷婷, 唐祺,等. 注射用血塞通調配技術正交優化及其在不同溶媒中穩定性考察[J]. 中國醫院藥學雜志, 2014.
6. 夏平友 張全 肖同梅 等. 以皂苷含量為指標優化冬瓜籽提取工藝[J]. 安徽科技學院學報 2019 v.33;No.146(01):47-51.
5. 崔金剛 王曉燕 熊敏琪 等. 人參皂苷Rg1與Rb1在心肌缺血復合腫瘤病理環境下的作用研究[J]. 上海中醫藥大學學報 2014 028(004):58-63.
4. 黃敏 陶星宇 賈寶輝 等. 人參皂苷Rb1調控內質網應激對膿毒癥小鼠重要臟器的保護作用[J]. 中國醫藥導報 2019(30).
3. 羅亮 趙炫仲 李昕珊 等. 人參皂苷Rb1注射對兔耳增生性瘢痕中PCNA表達的影響[J]. 中國美容醫學 2016 25(011):65-67.
2. 單鴛露 王良榮 葉玉柱 等. 人參皂甙Rb1對機械通氣大鼠肺組織NF-κB和iNOs表達的影響[J]. 浙江醫學 2019 41(06):513-516.
1. 徐宏平 賈寶輝 艾啟帆 等. 人參皂甙 Rb1對感染性休克大鼠重要器官的保護作用. 鄭州大學學報(醫學版) 2014.
質檢證書(COA)
輸入產品批號:
如何獲取質檢證書(COA)?
請輸入貨號和一個與之匹配的批號。
例如:
批號:JS298415 貨號:S20001-25g
在貨品標簽上如何找到貨號和批號?
點擊這里查看標簽示例
×
如何獲取質檢證書(COA)
摩爾濃度計算器
質量 (mg) = 濃度 (mM) x 體積 (mL) x 分子摩爾量 (g/mol)
質量
pg
ng
μg
mg
g
kg
=
濃度
fM
pM
nM
μM
mM
M
×
體積
nL
μL
mL
L
×
分子摩爾量
計算
重置
相關產品
擬人參皂苷F11,HPLC≥98%
產品編號:B20902
¥500.00
/ 20mg
擬人參皂苷Rh2,HPLC≥98%
產品編號:B20903
¥900.00
/ 5mg
擬人參皂苷RT5,HPLC≥98%
產品編號:B20904
¥1800.00
/ 20mg
人參二醇,HPLC≥98%
產品編號:B21040
¥90.00
/ 20mg
人參三醇,HPLC≥98%
產品編號:B21042
¥100.00
/ 20mg
人參皂苷Rg5,HPLC≥98%
產品編號:B21044
¥2500.00
/ 20mg
人參皂苷CK,HPLC≥98%
產品編號:B21045
¥720.00
/ 20mg
人參皂苷F1,HPLC≥98%
產品編號:B21046
¥800.00
/ 20mg
人參皂苷F2,HPLC≥98%
產品編號:B21047
¥810.00
/ 20mg
人參皂苷F3,HPLC≥98%
產品編號:B21048
¥700.00
/ 10mg
人參皂苷F4,HPLC≥98%
產品編號:B21049
¥3500.00
/ 10mg
人參皂苷Rb2,HPLC≥98%
產品編號:B21051
¥550.00
/ 20mg
人參皂苷Rb3,HPLC≥97%
產品編號:B21052
¥495.00
/ 20mg
人參皂苷Rc,HPLC≥98%
產品編號:B21053
¥315.00
/ 20mg
人參皂苷Rd,HPLC≥98%
產品編號:B21054
¥350.00
/ 20mg
人參皂苷Re,HPLC≥98%
產品編號:B21055
¥110.00
/ 20mg
人參皂苷Rf,HPLC≥98%
產品編號:B21056
¥1200.00
/ 20mg
人參皂苷Rg1,HPLC≥98%
產品編號:B21057
¥120.00
/ 20mg
人參皂苷Rg2,HPLC≥98%
產品編號:B21058
¥360.00
/ 20mg
人參皂苷Rg3,HPLC≥98%
產品編號:B21059
¥450.00
/ 20mg
服務支持
技術支持
大包裝詢價
快遞查詢
聯系我們
意見反饋
用戶支持
技術支持
大包裝詢價
說明書下載
質檢下載
質量與法規
訂購指南
快遞查詢
退換貨政策
付款方式
配送方式
運費說明
關于我們
公司簡介
資質榮譽
聯系我們
意見反饋
通用條款
聯系我們
電話:400-666-5481
傳真:021-55068248
地址:上海市松江區長塔路465號6幢
手機商城
微信公眾號
本公司的所有產品僅用于科學研究或者工業應用等非醫療目的,不可用于人類或動物的臨床診斷或治療,非藥用,非食用。
? 2005-2025 源葉生物 版權所有,并保留所有權利。ICP備案證書號:滬ICP備09098663號-9
上海工商
滬公網安備 31011702002021號
危險品化學品經營許可證(不帶存儲)
營業執照(三證合一)
回到首頁
0
購物車
在線咨詢
400-666-5481
北京
上海
天津
廣東
江蘇
浙江
山東
湖北
湖南
安徽
東北
西北
河南河北
江西廣西
福建海南
山西內蒙
四川重慶
云南貴州
客服熱線
400-666-5481
周一至周六:8:30-17:30
關注我們
掃一掃關注上海源葉微信公眾號
回到頂部
首頁
技術支持
購物車
會員
主站蜘蛛池模板:
滨海县
|
渝中区
|
大宁县
|
宣威市
|
秀山
|
司法
|
繁峙县
|
横峰县
|
子洲县
|
鹤庆县
|
温宿县
|
中山市
|
乐至县
|
余姚市
|
文昌市
|
若羌县
|
长寿区
|
宜城市
|
高州市
|
泸州市
|
贡觉县
|
合江县
|
中阳县
|
兴业县
|
安义县
|
玉门市
|
邛崃市
|
景洪市
|
武强县
|
台北市
|
建德市
|
济南市
|
辽阳市
|
义乌市
|
上杭县
|
克拉玛依市
|
茂名市
|
襄樊市
|
瑞安市
|
交口县
|
策勒县
|