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Application of Chitin and Chitosan Derivatives in the Pharmaceutical Field

机译:甲壳素和壳聚糖衍生物在医药领域的应用

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Chitin and chitosan derivatives are used as excipients and drug carriers in the pharmaceutical field. Their derivatization contributed to expansion of application and decrease toxicity. Chitosan is used as an excipient in oral dosage form. Chitosan tablet can exhibit a sustained drug release compared to commercial products. Films prepared using chitin or chitosan have been developed as wound dressings, oral mucoadhesive and water-resisting adhesive by virtue of their release characteristics and adhesion. Intratumoral administration of gadopentetic acid-chitosan complex nanoparticles (approximately 430 nm in diameter) has been more effective for gadolinium neutron-capture therapy compared with a group treated with the solution. Compared to intragastrical feeding with diphtheria toxoid (DT) in PBS, a strong enhancement of the systemic (IgG) and local (IgA) immune responses against DT has been observed in mice fed with DT loaded chitosan microparticles (approximately 4.7 µm in size). When DNA-loaded chitosan microspheres (1.15 - 1.28 μm) were intramuscularly administrated into mice, high ß-galactosidase and luciferase productions were obtained even after a long post-transfection period (12 weeks). N-Succinyl-chitosan (Suc-Chi) has been studied for cancer chemotherapy as a drug carrier and the conjugates of mitomycin C with Suc-Chi exhibited good antitumor activities against various tumors. Furthermore, trimethyl-chitosan and monocarboxymethyl-chitosan has been shown to be effective as intestinal absorption enhancers due to their physiological properties. Chitosan-thioglycolic acid conjugates has been found to be a promising candidate as scaffold material in tissue engineering due to their physicochemical properties. This review summarizes the application of chitin and chitosan derivatives for hospital preparations and drug carriers.
机译:几丁质和壳聚糖衍生物在制药领域用作赋形剂和药物载体。它们的衍生化有助于扩大应用范围并降低毒性。壳聚糖用作口服剂型的赋形剂。与商业产品相比,壳聚糖片剂可以展现出持续的药物释放。利用甲壳质或壳聚糖制备的薄膜由于其释放特性和粘附性而被开发为伤口敷料,口腔粘膜粘附剂和抗水粘合剂。与用该溶液处理的组相比,瘤内施用ado戊酸-壳聚糖复合纳米颗粒(直径约430 nm)对g中子俘获治疗更有效。与在PBS中用白喉类毒素(DT)进行胃内喂养相比,在喂食DT的壳聚糖微粒(大小约为4.7 µm)的小鼠中,观察到了对DT的全身(IgG)和局部(IgA)免疫应答的强烈增强。当将DNA负载的壳聚糖微球(1.15-1.28μm)肌肉内施用给小鼠时,即使经过很长的转染后时间(12周),仍可获得高β-半乳糖苷酶和荧光素酶的产生。已经研究了N-琥珀酰-壳聚糖(Suc-Chi)作为药物载体用于癌症化学疗法,丝裂霉素C与Suc-Chi的缀合物对各种肿瘤表现出良好的抗肿瘤活性。此外,由于三甲基壳聚糖和单羧甲基壳聚糖的生理特性,它们已被证明是有效的肠道吸收促进剂。壳聚糖-巯基乙酸共轭物因其理化性质而被认为是组织工程中支架材料的有前途的候选者。这篇综述总结了几丁质和壳聚糖衍生物在医院制剂和药物载体中的应用。

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