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首页> 外文期刊>Molecular pharmaceutics >Liquid Degradable Poly(trimethylene-carbonate-co-5-hydroxy-trimethylene carbonate): An Injectable Drug Delivery Vehicle for Acid-Sensitive Drugs
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Liquid Degradable Poly(trimethylene-carbonate-co-5-hydroxy-trimethylene carbonate): An Injectable Drug Delivery Vehicle for Acid-Sensitive Drugs

机译:液体可降解聚(三甲基 - 碳酸酯-CO-5-羟基三甲基碳酸酯):用于酸性敏感药物的可注射药物输送载体

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摘要

Liquid, injectable hydrophobic polymers have advantages as degradable drug delivery vehicles; however, polymers examined for this purpose to date form acidic degradation products that may damage acid-sensitive drugs. Herein, we report on a new viscous liquid vehicle, poly(trimethylene carbonate-co-5-hydroxy-dtrimethylene carbonate), which degrades through intramolecular cyclization producing glycerol, carbon dioxide, and water-soluble trimethylene carbonate. Copolymer degradation durations from weeks to months were achieved with the 5-hydroxy-trimethylene carbonate (HTMC) content of the oligomer having the greatest impact on the degradation rate, with oligomers possessing a higher HTMC content degrading fastest. The degradation products were non-cytotoxic towards 3T3 fibroblasts and RAW 264.7 macrophages. These copolymers can be injected manually through standard gauge needles and, importantly, during in vitro degradation, the microenvironmental pH within the oligomers remained near neutral. Complete and sustained release of the acid-sensitive protein vascular endothelial growth factor was achieved, with the protein remaining highly bioactive throughout the release period. These copolymers represent a promising formulation for local and sustained release of acid sensitive drugs.
机译:液体,可注射疏水性聚合物具有可降解的药物递送车辆的优点;然而,在此目的中检查的聚合物迄今为止可能破坏酸性敏感药物的酸性降解产物。在此,我们报告了一种新的粘性液体载体,聚(三甲基碳酸二碳酸酯-CO-5-羟基 - 二甲基 - 碳酸酯),其通过分子内环化生产甘油,二氧化碳和水溶性三甲基碳酸酯降低。通过对降解速率产生最大影响的5-羟基三甲基碳酸酯(HTMC)含量,使用具有较高的HTMC含量降低最快的寡聚体的5-羟基三甲基碳酸酯(HTMC)含量从数周达到几个月的降解持续时间。降解产物对3T3成纤维细胞和原料264.7巨噬细胞是非细胞毒性。这些共聚物可以通过标准规针手动注射,并且重要的是在体外降解期间,低聚物内的微环境pH保持在中性附近。完成且持续释放酸敏感蛋白血管内皮生长因子,蛋白质在整个释放期间保持高度生物活性。这些共聚物代表了有希望的局部和持续释放酸敏感药物的配方。

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