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具有 S-预激活硫醇基的糖胺聚糖壳聚糖可用于结合黏附性和药物递送。

S-preactivated thiolated glycol chitosan useful to combine mucoadhesion and drug delivery.

机构信息

Department of Pharmacy - Drug Sciences, University of Bari "Aldo Moro", Bari, Italy; Istituto Tumori IRCCS "Giovanni Paolo II", Bari, Italy.

Department of Pharmacy - Drug Sciences, University of Bari "Aldo Moro", Bari, Italy.

出版信息

Eur J Pharm Biopharm. 2018 Nov;132:103-111. doi: 10.1016/j.ejpb.2018.09.015. Epub 2018 Sep 22.

Abstract

This work describes S-preactivated N-acetylcysteine (NAC)- and glutathione (GSH)-glycol chitosan (GC) polymer conjugates engineered as potential mucoadhesive platform. Preactivated thiomers (GC-NAC-MNA, GC-GSH-MNA) were synthesized by bond formation between GC-NAC or GC-GSH and 2-mercaptonicotinic acid (MNA) used as ligand. The presence of protected thiol moieties on this new class of thiolated GC made them not subject to oxidation. The structural modifications of the resulting derivatives were confirmed by proton Nuclear Magnetic Resonance (H NMR) and Size Exclusion Chromatography (SEC). The conjugates displayed 91.2% and 90.1% of S-preactivation for GC-NAC-MNA and GC-GSH-MNA, respectively. The polymers were tested in ex-vivo and in vitro for their mucoadhesive properties and toxicity. The results showed that the preactivation of GC-NAC and GC-GSH increased their mucoadhesive abilities compared to their thiolated precursors by 1.4-, 4.4-fold in time of adhesion evaluated using rotating cylinder method, 1.6-, 1.5-fold in total work of adhesion (TWA) and 2.0-, 1.3-fold in maximum detachment force (MDA) determined using tensile studies, respectively. Moreover, water-uptake studies showed an improved in weight indicating water-uptake strongly dependent on derivations, before erosion occurred, whereas disintegration took place for the thiolated polymers within the first hour. The S-preactivated modification did not affect the cell viability of Caco2 cells exposed to the polymers. The release of the model drug sodium naproxen from tablets prepared with a lyophilized mixture of drug and polymer was studied via dissolution apparatus revealing that the preactivation on GC-GSH and GC-NAC involves a slowdown in the drug release rate. The results shown that the novel preactivated thiolated GC-derivatives can be considered promising excipients for the development of mucoadhesive drug delivery systems.

摘要

这项工作描述了 S-预激活的 N-乙酰半胱氨酸 (NAC)-和谷胱甘肽 (GSH)-乙二醇壳聚糖 (GC) 聚合物缀合物,这些缀合物被设计为潜在的黏附平台。预激活硫醚(GC-NAC-MNA、GC-GSH-MNA)是通过 GC-NAC 或 GC-GSH 与作为配体的 2-巯基烟酸(MNA)之间的键合形成的。由于新的硫代 GC 类中存在保护的巯基部分,因此它们不受氧化影响。通过质子核磁共振(H NMR)和尺寸排阻色谱(SEC)证实了所得衍生物的结构修饰。GC-NAC-MNA 和 GC-GSH-MNA 的 S-预激活率分别为 91.2%和 90.1%。将这些聚合物在离体和体外进行了黏附性能和毒性测试。结果表明,与巯基前体相比,GC-NAC 和 GC-GSH 的预激活增加了它们的黏附能力,使用旋转圆柱法评估的黏附时间分别增加了 1.4 倍和 4.4 倍,总黏附功(TWA)分别增加了 1.6 倍和 1.5 倍,最大分离力(MDA)分别增加了 2.0 倍和 1.3 倍。此外,吸水研究表明,在侵蚀发生之前,重量的增加表明水分吸收强烈依赖于衍生化,而巯基聚合物在第一个小时内就发生了崩解。S-预激活修饰不影响暴露于聚合物的 Caco2 细胞的细胞活力。通过溶解装置研究了以冻干的药物和聚合物混合物为原料制备的片剂中模型药物萘普生钠的释放,结果表明,GC-GSH 和 GC-NAC 的预激活涉及药物释放速率的减慢。结果表明,新型预激活的硫代 GC 衍生物可用作开发黏附性药物传递系统的有前途的赋形剂。

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