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羧化殼聚糖

    
BR,羧化度≥80%,粘度≤80cps

Chitosan

源葉
S11160 一鍵復制產品信息
9012-76-4
MFCD00161512
貨號 規格 價格 上海 北京 武漢 南京 購買數量
S11160-25g
BR,羧化度≥80%,粘度≤80cps ¥90.00 9 1 - 1
S11160-100g
BR,羧化度≥80%,粘度≤80cps ¥258.00 >10 1 2 1
S11160-500g
BR,羧化度≥80%,粘度≤80cps ¥980.00 >10 - 2 -
產品介紹 參考文獻(76篇) 質檢證書(COA) 摩爾濃度計算器 相關產品

產品介紹

外觀: 白色固體
溶解性: Souble  in  0.1  M  HCL
儲存條件: RT
用途: 殼聚糖是一種具生物相容性、抗細菌和能被生物降解的聚電解質,具有廣泛的生物醫藥和工業用途。它的化學性質和低毒性可作為藥物的組成部分、用于基因轉移系統、用作生物降解膜及作為組織工程中的骨架。
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(76篇)

71. [IF=4.9] Li Yaqun et al."Electromechanical response of fungus polysaccharide gel artificial muscle prepared from tremella fuciformis extract and carboxylated chitosan."CELLULOSE.2024 Jul;:1-12 70. [IF=10.7] Liang Zhang et al."Self-assembly technology engineering multi-functional slow-release packaging system with self-starting program for prolonged preservation of perishable products."FOOD HYDROCOLLOIDS".2024 Oct;155:110230 69. [IF=15.1] Shuyun Zhang et al."Dual response Hst1@CBTC hydrogel promoting diabetic wounds healing by improving mitochondrial autophagy and inhibiting ferroptosis via Nrf2/HO-1."CHEMICAL ENGINEERING JOURNAL".2024 May;:152358 68. [IF=15.1] Liang Zhang et al."Autonomous, temperature-enhanced oxidase-mimic multimodal antimicrobial film for prolonged preservation of perishable products."CHEMICAL ENGINEERING JOURNAL".2024 May;:152116 67. [IF=8.2] Enjuan Shi et al."Synergistic effect of chitosan and β-carotene in inhibiting MNU-induced retinitis pigmentosa."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES".2024 May;268:131671 66. [IF=5.8] Chenxin Liu et al."Intestinal Absorption of Nanoparticles to Reduce Oxidative Stress and Vasoconstriction for Treating Diabetic Nephropathy."ACS Biomaterials Science & Engineering".2024;XXXX(XXX):XXX-XXX 65. [IF=8.2] Yi-Xuan Li et al."Engineering of targeting antioxidant polypeptide nanopolyplexes for the treatment of acute lung injury."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Jan;254:127872 64. [IF=8.2] Shengsheng He et al."Construction of a dual-component hydrogel matrix for 3D biomimetic skin based on photo-crosslinked chondroitin sulfate/collagen."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Nov;:127940 63. [IF=8.2] Weijie Qi et al."Impact of soybean protein isolate concentration on chitosan-cellulose nanofiber edible films: Focus on structure and properties."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2023 Nov;:128185 62. [IF=8.8] Miao Hu et al."The aggregation behavior between soybean whey protein and polysaccharides of diverse structures and their implications in soybean isoflavone delivery."FOOD CHEMISTRY.2023 Nov;:138061 61. [IF=8.8] Liang Zhang et al."A tailored slow-release film with synergistic antibacterial and antioxidant activities for ultra-persistent preservation of perishable products."FOOD CHEMISTRY.2023 Jul;:136993 60. Shishir, Mohammad Rezaul Islam, et al. "Colonic delivery of pelargonidin-3-O-glucoside using pectin-chitosan-nanoliposome: Transport mechanism and bioactivity retention." International journal of biological macromolecules 159 (2020): 341-355.https://doi.or 59. Feng Xue, Mingzhe Zhao, Xinye Liu, Rui Chu, Ziyu Qiao, Chen Li, Benu Adhikari, Physicochemical properties of chitosan/zein/essential oil emulsion-based active films functionalized by polyphenols, Future Foods, Volume 3, 2021, 100033, ISSN 2666-8335, https: 58. Naymul Karim, Mohammad Rezaul Islam Shishir, Wei Chen, Surface decoration of neohesperidin-loaded nanoliposome using chitosan and pectin for improving stability and controlled release, International Journal of Biological Macromolecules, Volume 164, 2020, P 57. Shi, Xiujuan, et al. "A biomimetic sensor with signal enhancement of ferriferrous oxide-reduced graphene oxide nanocomposites for ultratrace levels quantification of methamidophos or omethoate in vegetables." Food Analytical Methods 10.4 (2017): 910-920.DO 56. Lu, J, Sun, Y, Waterhouse, GIN, Xu, Z. A voltammetric sensor based on the use of reduced graphene oxide and hollow gold nanoparticles for the quantification of methyl parathion and parathion in agricultural products. Adv Polym Technol. 2018; 37: 3629– 3638 55. Yao, Yunzhen, et al. "Antibacterial activity and physical properties of fish gelatin-chitosan edible films supplemented with D-Limonene." International Journal of Polymer Science 2017 (2017). 54. Dong, Zhenzhen, et al. "Biocompatible AIE material from natural resources: Chitosan and its multifunctional applications." Carbohydrate polymers 227 (2020): 115338.https://doi.org/10.1016/j.carbpol.2019.115338 53. Tang, Qinghua, et al. "Development of molecularly imprinted electrochemical sensors based on Fe 3 O 4@ MWNT-COOH/CS nanocomposite layers for detecting traces of acephate and trichlorfon." Analyst 139.24 (2014): 6406-6413.https://doi.org/10.1039/C4AN01514B 52. Hu, Chun, et al. "Effects of dynamic high-pressure microfluidization treatment on the functional and structural properties of potato protein isolate and its complex with chitosan." Food Research International 140 (2021): 109868.https://doi.org/10.1016/j.fo 51. He, Junbin, et al. "Enzymatic O‐Prenylation of Diverse Phenolic Compounds by a Permissive O‐Prenyltransferase from the Medicinal Mushroom Antrodia camphorata." Advanced Synthesis & Catalysis 362.3 (2020): 528-532.https://doi.org/10.1002/adsc.201901396 50. Gowd, Vemana, et al. "In vitro study of bioaccessibility, antioxidant, and α-glucosidase inhibitory effect of pelargonidin-3-O-glucoside after interacting with beta-lactoglobulin and chitosan/pectin." International journal of biological macromolecules 154 49. Qian, Chao, et al. "Injectable and self-healing polysaccharide-based hydrogel for pH-responsive drug release."?International journal of biological macromolecules?123 (2019): 140-148.https://doi.org/10.1016/j.ijbiomac.2018.11.048 48. Xu, Kaimeng, et al. "Isolation of nanocrystalline cellulose from rice straw and preparation of its biocomposites with chitosan: Physicochemical characterization and evaluation of interfacial compatibility."?Composites Science and Technology?154 (2018): 8-1 47. Minghu Zhao, Jiling Zhao, Zhen Huang, Shixing Wang, Libo Zhang, One pot preparation of magnetic chitosan-cystamine composites for selective recovery of Au(III) from the aqueous solution, International Journal of Biological Macromolecules, Volume 137, 2019, 46. Wu T , Li B , Wang W , Chen L , Li Z , Wang M , Zha Z , Lin Z , Xia H , Zhang T . Strontium-substituted hydroxyapatite grown on graphene oxide nanosheet-reinforced chitosan scaffold to promote bone regeneration. Biomater Sci. 2020 Aug 21;8(16):4603-4615. d 45. Huan Lei, Chenhui Zhu, Daidi Fan, Optimization of human-like collagen composite polysaccharide hydrogel dressing preparation using response surface for burn repair, Carbohydrate Polymers, Volume 239, 2020, 116249, ISSN 0144-8617, https://doi.org/10.1016/j. 44. Yang, Liupeng, et al. "Fabrication of sulfoxaflor‐loaded natural polysaccharide floating hydrogel microspheres against Nilaparvata lugens (Stal) in rice fields." Pest management science 76.9 (2020): 3046-3055.https://doi.org/10.1002/ps.5855 43. Yang, Liupeng, et al. "Fabrication of sulfoxaflor‐loaded natural polysaccharide floating hydrogel microspheres against Nilaparvata lugens (Stal) in rice fields." Pest management science 76.9 (2020): 3046-3055.https://doi.org/10.1002/ps.5855 42. Cai, Yawen, et al. "Fabrication of a phosphorylated graphene oxide–chitosan composite for highly effective and selective capture of U (VI)." Environmental Science: Nano 4.9 (2017): 1876-1886.https://doi.org/10.1039/C7EN00412E 41. Xu, Kaimeng, et al. "Green sustainable, facile nitrogen self-doped porous carbon derived from chitosan/cellulose nanocrystal biocomposites as a potential anode material for lithium-ion batteries." Journal of the Taiwan Institute of Chemical Engineers 109 ( 40. Donglin Han, Yuan Li, Xiangmei Liu, Bo Li, Yong Han, Yufeng Zheng, Kelvin Wai Kwok Yeung, Changyi Li, Zhenduo Cui, Yanqin Liang, Zhaoyang Li, Shengli Zhu, Xianbao Wang, Shuilin Wu, Rapid bacteria trapping and killing of metal-organic frameworks strengthene 39. 薛小旭,陳昌澤,顧國衛.聚丙烯酸改性磁性殼聚糖復合微球對藥物活性物的吸附[J].云南化工,2020,47(08):48-51. 38. 劉昊. 聚谷氨酸類3D細胞培養水凝膠的制備及檢測[D].河南大學,2020. 37. 陳韻潔,張宜明,龐林江,陸國權,成紀予,路興花,鄭劍.納米復合材料涂膜在甘薯保鮮中的應用及優化[J].包裝工程,2020,41(23):1-10. 36. 薛小旭,顧國衛,陳昌澤,胡曉東,許澤,謝啟發.改性殼聚糖磁性微球對鹽酸四環素的吸附研究[J].云南化工,2020,47(09):33-35. 35. 孟文博,連歡,趙翰卿,彭勇.復配乳化劑HLB值對殼聚糖精油復合膜物理和結構性能的影響[J].食品研究與開發,2021,42(01):42-47. 34. 馬銳,李元輝,羅燕,李麗怡琳,秦順義.殼聚糖硒對黃曲霉毒素B1小鼠血液指標和細胞因子的影響[J].中國畜禽種業,2020,16(10):165-166. 33. 王小松,馬磊,劉志穎,李托,朱瀚,劉東陽,沈其榮.貴州木霉NJAU4742幾丁質酶基因chi8的克隆、表達和酶學特性研究[J].南京農業大學學報,2021,44(01):111-118. 32. 劉若云,傅春妮,胡婷婷,鄭祉迅,秦順義.殼聚糖硒對飼喂黃曲霉毒素B_1小鼠生長及抗氧化功能的影響[J].養殖與飼料,2020,19(08):40-41. 31. 丘苑新,楊靜嫻,何娣,馬路凱,李影童.具有胃液pH值調節功能的餅干開發[J].食品研究與開發,2021,42(06):141-145. 30. 杜平,劉文,卿勇軍,姚曉艷,金陽,陳淮臣,何利.基于“藥輔合一”的中藥復方緩釋制劑研究——以芍藥甘草胃漂浮片為例[J].中藥材,2018,41(10):2403-2407. 29. 曉紅 田文靜 劉小飛 等. 乳酸菌微膠囊對有機酸鹽類青貯添加劑的耐受性研究[J]. 中國奶牛 2018 000(006):11-14. 28. 諶素華, 彭偉醒. 鮮切火龍果涂膜保鮮技術研究[J]. 農產品加工, 2018, 469(23):7-11. 27. 薛小旭,陳昌澤,顧國衛.聚丙烯酸改性磁性殼聚糖復合微球對藥物活性物的吸附[J].云南化工,2020,47(08):48-51. 26. 連歡, 石晶盈, 彭勇. 黃原膠對殼聚糖精油復合膜的性能及精油釋放的影響[J]. 食品工業科技, 2020, 041(010):178-183. 25. 袁靖琳, 陳燏, 韋翠蘭,等. 銳孔法制備水牛乳活性肽微膠囊工藝優化及體外釋放研究[J]. 食品工業科技, 2017, 38(008):227-232,238. 24. 王譽涵, 林家亮, 徐宏. 基于一種新型二茂鐵修飾方法的葡萄糖氧化酶電極研究[J]. 分析試驗室, 2018, 37(12):1380-1383. 23. 周莉 王曉瑞 平洋 等. 保加利亞乳桿菌微膠囊的制備及特性研究[J]. 食品工業科技 2020 v.41;No.451(11):194-199. 22. 荘媛, 趙勝男, 劉成琳, et al. 殼聚糖絮凝法用于天貝止咳口服液純化工藝研究[J]. 遼寧中醫藥大學學報, 2020, v.22;No.191(03):44-47. 21. 蔡雅雯, 陳磊, 楊世通,等. 膦酸化氧化石墨烯-殼聚糖復合材料對Eu(Ⅲ)的富集性能[J]. 中國科學:化學, 2019, v.49(01):49-62. 20. 肖力源, 張淑瑤, 周湘媛,等. 肉桂精油-玉米淀粉基抗菌膜的制備及其性能[J]. 食品科學, 2019, 040(002):40-45. 19. 韓紫音, 姜惠, 梁煥結,等. 竹醋液,殼聚糖和茶多酚對冷卻豬肉蛔復合保鮮研究[J]. 黑龍江畜牧獸醫, 2019(19). 18. 徐明悅, 李洪軍, 賀稚非,等. 玉米淀粉-殼聚糖可食膜對冷藏兔肉品質的影響[J]. 包裝工程, 2015, 036(015):34-39. 17. 關越鵬, 喻鵬. 水溶性殼聚糖對明膠溶液性能影響的研究[J]. 明膠科學與技術, 2013, 33(4). 16. 劉括,葉肖杏,張培,聶國朝,黃海燕.氧化石墨烯/殼聚糖復合保鮮劑對火龍果保鮮性能的影響[J].玉林師范學院學報,2019,40(05):77-83. 15. 劉括, 王成國, 聶國朝. 氧化石墨烯-殼聚糖復合保鮮劑對"六月紅"荔枝保鮮性能的研究[J]. 食品科技, 2019, 044(007):62-67. 14. 王雄, 劉明言. 新型殼聚糖/鋯復合球的制備及硼吸附性能[J]. 化工學報, 2018(2):848-857. 13. 尹秀清, 郎繁繁, 王如福,等. 復合澄清劑澄清食醋工藝的研究[J]. 中國釀造, 2019, 038(002):111-116. 12. 賴仰洲,高艷陽,李昭昭,龐冬梅.殼聚糖/竹葉提取物抗氧化復合膜的制備與性能研究[J].化工新型材料,2016,44(06):101-103. 11. 張盼. 可食性多糖基材抗菌包裝膜的制備及應用[D]. 天津科技大學, 2018. 10. 高艷陽, 賴仰洲, 李昭昭,等. 基于茶多酚的殼聚糖基抗氧化復合膜的制備與性能研究[J]. 化工新型材料, 2016(6期):178-180. 9. 金晶,李群芳,張升暉.基于納米鉑-單壁碳納米管-殼聚糖的癌胚抗原電化學阻抗型免疫傳感研究[J].分析試驗室,2016,35(04):373-377. 8. 宮璽, 馮家俊, 李康. 基于氧化石墨烯-Nafion修飾的玻碳電極檢測血中辛弗林[J]. 海峽藥學, 2019, 31(04):40-44. 7. 徐明悅 李洪軍 賀稚非 甘奕 王珊 余力 王兆明.響應面試驗優化玉米淀粉-殼聚糖可食膜的制備工藝[J].食品科學 2015 36(16):38-43. 6. 王芳 鄧啟 段偉麗 等. 響應面法優化復合澄清劑對藍莓果酒的澄清效果[J]. 中國食品學報 2016 16(008):149-158. 5. 姚沛琳 馬慶蘭 黃悅 等. 含乳酸菌馬鈴薯淀粉膜的制備及抑菌性研究[J]. 廊坊師范學院學報(自然科學版) 2019 v.19;No.92(02):75-78+82. 4. 高景然 邱堅 馮凈. 劍川縣海門口遺址飽水古木殼聚糖法加固處理[J]. 西部林業科學 2017 46(003):37-43. 3. 魏嵬 李國榮. 分層多功能層層自組裝肝素表面修飾技術★◆[J]. 中國組織工程研究 2013年16期 2973-2980頁 ISTIC PKU CA 2013. 2. 段強 高強 張朝正 等. 從棉子糖腸球菌發酵液中提取γ-氨基丁酸的初步研究[J]. 食品科技 2012 000(012):217-222. 1. 劉括 聶國朝 盧蔚瑩 等. VC/殼聚糖復合涂膜對荔枝常溫保鮮性能的研究[J]. 玉林師范學院學報 2018 039(002):49-55.

質檢證書(COA)

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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)

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