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Characterisation and Evaluation of Trimesic Acid Derivatives as Disulphide Cross-Linked Polymers for Potential Colon Targeted Drug Delivery

机译:三聚体酸衍生物作为二硫化物交联聚合物用于潜在结肠靶向药物递送的表征和评估

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摘要

Discovery and use of biocompatible polymers offers great promise in the pharmaceutical field, particularly in drug delivery systems. Disulphide bonds, which commonly occur in peptides and proteins and have been used as drug-glutathione conjugates, are reductively cleaved in the colon. The intrinsic stability of a disulphide relative to thiol groups is determined by the redox potential of the environment. The objective of this study was to synthesise a trimesic acid-based disulphide cross-linked polymer that could potentially be used for targeted delivery to the colon. The monomer was synthesised by an amide coupling reaction between trimesic acid and (triphenylmethyl) thioethylamine using a two-step synthesis method. The s-trityl group was removed using a cocktail of trifluoroacetic acid and triethylsilane to expose the thiols in preparation for further polymerisation. The resulting polymers (P10, P15, P21, P25, and P51, generated using different molar ratios) were reduced after 1.5 h of reduction time. Scanning electron microscopy images of the polymers showed spherical, loose, or tight patterns depending on the molar ratio of polymerisation. These polymers also exhibited efficient dissolution under various gastrointestinal conditions. Of the five polymers tested, P10 and P15 appeared to be promising drug delivery vehicles for poorly soluble drugs, due to the hydrophobic nature of the polymers.
机译:生物相容性聚合物的发现和使用在制药领域,特别是在药物输送系统中,具有广阔的前景。通常在肽和蛋白质中出现的二硫键已被用作药物-谷胱甘肽的结合物,在结肠中被还原性切割。相对于硫醇基团的二硫化物的固有稳定性取决于环境的氧化还原电势。这项研究的目的是合成基于均苯三酸的二硫化物交联聚合物,该聚合物可潜在地用于靶向递送至结肠。使用两步合成方法,通过偏苯三酸和(三苯甲基)硫代乙胺之间的酰胺偶联反应来合成单体。使用三氟乙酸和三乙基硅烷的混合物除去s-三苯甲基以暴露硫醇,以准备进一步聚合。还原时间1.5小时后,还原所得聚合物(P10,P15,P21,P25和P51,使用不同的摩尔比生成)。聚合物的扫描电子显微镜图像显示球形,疏松或紧密的图案,这取决于聚合的摩尔比。这些聚合物在各种胃肠道条件下也表现出有效的溶解。在测试的五种聚合物中,由于聚合物的疏水性,P10和P15似乎是用于难溶性药物的有希望的药物递送载体。

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