中文名 | 羧甲基壳聚糖 |
英文名 | Carboxymethyl chitosan |
别名 | 羧甲基壳聚糖 |
英文别名 | Carboxymethylchitosan Carboxymethyl chitosan N-Carboxymethylchitosan |
CAS | 83512-85-0 |
存储条件 | Room Temprature |
参考资料 展开查看 | 1. 康小虎 白志山 王炳捷 杨晓勇.APTES改性羧甲基壳聚糖微球对铅离子吸附性能及机理研究[J].功能材料 2019 50(08):8161-8169. 2. 刘举慧 赵峰 郭建峰. pH敏感性叶酸修饰羧甲基壳聚糖/CaCO3混合纳米球作为药物载体的研究[J]. 现代化工 2018 038(004):135-138. 3. 童艳萍 肖艳.双重动态化学键交联水凝胶的制备及性能[J].功能高分子学报 2020 33(03):305-312. 4. 王汀, 丘晓琳, 卢立新,等. 多孔凝胶基碳纳米定形相变材料的制备与表征[J]. 精细化工, 2019, 36(11). 5. 王汀,丘晓琳,卢立新,周兵林.用于储能的复合定形相变材料的制备与性能研究[J].能源化工,2019,40(03):1-6. 6. 王钦, 沈凯, 王胜男,等. 盐酸川芎嗪羧甲基壳聚糖丝素蛋白微球的制备和体外释放特性. 7. 胡晓飞, 刘善新, 苏酩. 祛瘀消瘿颗粒水提液羧甲基壳聚糖絮凝工艺的优化[J]. 中成药, 2016, 38(011):2497-2499. 8. 李继城, 孔松芝, 李东东,等. 罗非鱼皮胶原蛋白肽在润肤霜中的应用及性能评价[J]. 食品工业科技, 2018. 9. 蓝梧涛, 吴雪辉, 章文. 油茶叶多酚纯化工艺优化及其对油脂的抗氧化作用[J]. 南方农业学报, 2019, 050(009):P.2058-2064. 10. 王钦,沈凯,王胜男,蔡亮亮.盐酸川芎嗪羧甲基壳聚糖丝素蛋白微球的制备和体外释放特性[J].中国药师,2020,23(08):1504-1509. 11. 汪凯. 口服次血红素六肽改善2型糖尿病肝脏胰岛素抵抗的机制研究[D].吉林大学,2020. 12. 王小松,马磊,刘志颖,李托,朱瀚,刘东阳,沈其荣.贵州木霉NJAU4742几丁质酶基因chi8的克隆、表达和酶学特性研究[J].南京农业大学学报,2021,44(01):111-118. 13. Jinfeng Mei, Siqi Mo, Hui Zhang, Xudong Zheng, Zhongyu Li, Removal of Sr(II) from water with highly-elastic carboxymethyl chitosan gel, International Journal of Biological Macromolecules, Volume 163, 2020, Pages 1097-1105, ISSN 0141-8130, https://doi.org/1 14. Feng, Song, et al. "Coumarin-Containing Light-Responsive Carboxymethyl Chitosan Micelles as Nanocarriers for Controlled Release of Pesticide." Polymers 12.10 (2020): 2268.https://doi.org/10.3390/polym12102268 15. Shaopeng Zhang, Yayi Dong, Zhen Yang, Weiben Yang, Jiaqing Wu, Chang Dong,Adsorption of pharmaceuticals on chitosan-based magnetic composite particles with core-brush topology,Chemical Engineering Journal,Volume 304,2016,Pages 325-334,ISSN 1385-8947, 16. 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 17. 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 18. [IF=6.953] Yingbei Huang et al."Preparation and evaluation of Bletilla striata polysaccharide/carboxymethyl chitosan/Carbomer 940 hydrogel for wound healing."Int J Biol Macromol. 2019 Jul;132:729 19. [IF=6.331] Z. Z. Ding et al."Simulation of ECM with silk and chitosan nanocomposite materials."J Mater Chem B. 2017 Jun;5(24):4789-4796 20. [IF=3.361] Dongjun Lv et al."Synthesis and color properties of novel polymeric dyes based on grafting of anthraquinone derivatives onto O-carboxymethyl chitosan."Rsc Adv. 2017 Jun;7(53):33494-33501 21. [IF=3.361] Dongjun Lv et al."Synthesis and color properties of novel polymeric dyes based on grafting of anthraquinone derivatives onto O-carboxymethyl chitosan."Rsc Adv. 2017 Jun;7(53):33494-33501 22. [IF=2.262] Yong Zhang et al."Ion imprinted adsorbent for the removal of Ni(II) from waste water: preparation, characterization, and adsorption."J Disper Sci Technol. 2019;40(12):1751-1760 23. [IF=18.808] Xiangyi Yin et al."Bio-Multifunctional Hydrogel Patches for Repairing Full-Thickness Abdominal Wall Defects."Adv Funct Mater. 2021 Oct;31(41):2105614 24. [IF=10.041] Lin Zhang et al."Natural polymeric and peptide-loaded composite wound dressings for scar prevention."Appl Mater Today. 2021 Dec;25:101186 25. [IF=9.642] Chaofan Zheng et al."Structural design of magnetic biosorbents for the removal of ciprofloxacin from water."Bioresource Technol. 2020 Jan;296:122288 26. [IF=9.381] Yu Yang et al."Carboxymethyl β-cyclodextrin grafted carboxymethyl chitosan hydrogel-based microparticles for oral insulin delivery."Carbohyd Polym. 2020 Oct;246:116617 27. [IF=9.229] Guanghui Xi et al."Polysaccharide-Based Lotus Seedpod Surface-Like Porous Microsphere with Precise and Controllable Micromorphology for Ultrarapid Hemostasis."Acs Appl Mater Inter. 2019;11(50):46558–46571 28. [IF=9.078] Weiwang Qiu et al."Peptidoglycan-inspired peptide-modified injectable hydrogels with enhanced elimination capability of bacterial biofilm for chronic wound healing."Compos Part B-Eng. 2021 Dec;227:109402 29. [IF=7.991] Qinghua Wei et al."Atomic-scale and experimental investigation on the micro-structures and mechanical properties of PLA blending with CMC for additive manufacturing."Mater Design. 2019 Dec;183:108158 30. [IF=7.312] Shenghao Zhao et al."Innovative benign-to-design functionalized adsorbents from biomass for rapid azo-dyes separation."Sep Purif Technol. 2020 Jun;241:116633 31. [IF=6.953] Lei Ma et al."Synthesis and characterization of injectable self-healing hydrogels based on oxidized alginate-hybrid-hydroxyapatite nanoparticles and carboxymethyl chitosan."Int J Biol Macromol. 2020 Dec;165:1164 32. [IF=6.953] Jinfeng Mei et al."Removal of Sr(II) from water with highly-elastic carboxymethyl chitosan gel."Int J Biol Macromol. 2020 Nov;163:1097 33. [IF=5.923] Yu Cheng et al."Sponges of Carboxymethyl Chitosan Grafted with Collagen Peptides for Wound Healing."Int J Mol Sci. 2019 Jan;20(16):3890 34. [IF=4.845] Ruiquan Hou et al."Preparation of alginate–chitosan floating granules loaded with 2-methyl-4-chlorophenoxy acetic acid (MCPA) and their bioactivity on water hyacinth."Pest Manag Sci. 2021 Sep;77(9):3942-3951 35. [IF=4.539] Tao Tian et al."Facile fabrication of polyacrylic acid functionalized carboxymethyl chitosan microspheres for selective and efficient removal of Ni(II) from multicomponent wastewater."Colloid Surface A. 2020 Jul;597:124676 36. [IF=4.411] Zhe Jiang et al."One-Step Preparation of Chitosan-Based Magnetic Adsorbent and Its Application to the Adsorption of Inorganic Arsenic in Water."Molecules. 2021 Jan;26(6):1785 37. [IF=3.989] Yuanbo Wu et al."Polysaccharide-Based Lotus Seedpod Surface-Like Porous Microsphere as an Efficient Drug Carrier for Cancer Treatment."Cancer Manag Res. 2021; 13: 4067–4076 38. [IF=3.517] Jianfeng Guo et al."Efficient synthesis strategy of folate-modified carboxymethyl chitosan/CaCO3 hybrid nanospheres and their drug-carrying and sustained release properties."J Biomat Sci-Polym E. 2021;32(6):799-812 39. [IF=3.426] Song Feng et al."Coumarin-Containing Light-Responsive Carboxymethyl Chitosan Micelles as Nanocarriers for Controlled Release of Pesticide."Polymers-Basel. 2020 Oct;12(10):2268 40. [IF=2.571] Liupeng Yang et al."Fabricated chlorantraniliprole loaded chitosan/alginate hydrogel rings effectively control Spodoptera frugiperda in maize ears."Crop Prot. 2021 May;143:105539 41. [IF=6.4] Dan Zhao et al."Screening of Chitosan Derivatives-Carbon Dots Based on Antibacterial Activity and Application in Anti-Staphylococcus aureus Biofilm."Int J Nanomed. 2022 Mar;17:937-952 42. [IF=9.381] Yuanping Hao et al."Carboxymethyl chitosan-based hydrogels containing fibroblast growth factors for triggering diabetic wound healing."Carbohyd Polym. 2022 Jul;287:119336 43. [IF=3.361] Fushi Wang et al."Fabrication and functionalization of biocompatible carboxymethyl chitosan/gelatin membranes via anodic electrophoretic deposition."Rsc Adv. 2022 Feb;12(9):5677-5685 44. [IF=9.381] Hongli Mao et al."Multifunctional polysaccharide hydrogels for skin wound healing prepared by photoinitiator-free crosslinking."Carbohyd Polym. 2022 Jun;285:119254 45. [IF=2.744] Ning Yu et al."Healing effect of carboxymethyl chitosan-plantamajoside hydrogel on burn wound skin."Burns. 2022 Jan;: 46. [IF=4.952] Yue Dong et al."Oleogel-based Pickering emulsions stabilized by ovotransferrin–carboxymethyl chitosan nanoparticles for delivery of curcumin."Lwt Food Sci Technol. 2022 Mar;157:113121 47. [IF=6.953] Xinye Liu et al."Physicochemical properties of films produced using nanoemulsions stabilized by carboxymethyl chitosan-peptide conjugates and application in blueberry preservation."Int J Biol Macromol. 2022 Mar;202:26 48. [IF=6.953] Xinru Wu et al."Investigation of construction and characterization of carboxymethyl chitosan - sodium alginate nanoparticles to stabilize Pickering emulsion hydrogels for curcumin encapsulation and accelerating wound healing."INTERNATIONAL JOURNAL OF BIOLO 49. [IF=31.041] Yu Hao et al."Percutaneous implantation of ethanol fueled catalytic hydrogel suppresses tumor growth by triggering ferroptosis."Mater Today. 2022 Apr;: |
羧甲基壳聚糖是通过在壳聚糖分子中引入羧甲基基团而产生的衍生物。它具有许多特殊的性质和广泛的应用。
1. 性质:羧甲基壳聚糖具有良好的溶解性,可在水中迅速溶解。它具有一定的生物相容性、生物降解性和改性能力。此外,羧甲基壳聚糖还具有多功能性,如改善壳聚糖的稳定性、增强抗菌活性、减少毒性等。
2. 制法:羧甲基壳聚糖的制备通常通过在壳聚糖分子中引入羧甲基基团来实现。常用的方法是将壳聚糖与羧甲基化试剂(如氯乙酸甲酯)在碱性条件下反应,形成羧甲基壳聚糖。
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