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基于可生物降解的胺改性接枝聚酯聚[乙烯基-3-(二乙氨基)-丙基氨基甲酸酯-共-(醋酸乙烯酯)-共-(乙烯醇)]-接枝聚(L-乳酸)的纳米胰岛素复合物:抗酶降解、与Caco-2细胞单层的相互作用、肽转运及细胞毒性

Nanosized insulin-complexes based on biodegradable amine-modified graft polyesters poly[vinyl-3-(diethylamino)-propylcarbamate-co-(vinyl acetate)-co-(vinyl alcohol)]-graft-poly(L-lactic acid): protection against enzymatic degradation, interaction with Caco-2 cell monolayers, peptide transport and cytotoxicity.

作者信息

Simon Michael, Behrens Isabel, Dailey Lea Anne, Wittmar Matthias, Kissel Thomas

机构信息

Department of Pharmaceutics and Biopharmacy, Philipps-Universität, Marburg, Germany.

出版信息

Eur J Pharm Biopharm. 2007 May;66(2):165-72. doi: 10.1016/j.ejpb.2006.10.009. Epub 2006 Oct 20.

Abstract

Non-parenteral insulin delivery by the oral route is limited by epithelial barriers and enzymatic degradation. Nanosized insulin-complexes based on amine modified comb-like polyesters were designed to overcome these barriers. Protection of insulin in nanocomplexes (NC) from enzymatic degradation was investigated. The interaction with enterocyte-like Caco-2 cells in terms of cytotoxicity, transport through and uptake in the cell layers was evaluated by measuring transepithelial electrical resistance (TEER), release of lactate dehydrogenase (LDH) and insulin transport. The protection capacity of NC and their interaction with Caco-2 cells varied strongly as a function of lactide-grafting (hydrophobicity). With increasing lactide-grafting (P(26) < or = P(26)-1(LL) < or = P(26)-2(LL)) NC protected up to 95% of the insulin against degradation by trypsin. Transport and uptake into cell monolayers increased with higher l-lactid grafting. About 25% of a 1.25mg/ml TRITC-insulin NC dispersion with P(26)-2(LL) was recovered in Caco-2 cells after 90 min. A concentration dependent cytotoxicity profile was observed showing elevated LDH release and decreased TEER values. The cytotoxicity correlates with the surfactant like character of the polymers, decreasing the surface tension to 46 mN/m for the amphiphilic P(26)-2(LL). The observed TEER decrease was reversible after 20 h, suggesting that the biodegradable comb-polyesters offer a promising approach to overcome mucosal barriers.

摘要

口服非肠道外胰岛素递送受到上皮屏障和酶降解的限制。基于胺修饰梳状聚酯的纳米胰岛素复合物旨在克服这些屏障。研究了纳米复合物(NC)中胰岛素免受酶降解的保护作用。通过测量跨上皮电阻(TEER)、乳酸脱氢酶(LDH)释放和胰岛素转运,评估了纳米复合物与肠上皮样Caco-2细胞在细胞毒性、通过细胞层的转运和摄取方面的相互作用。NC的保护能力及其与Caco-2细胞的相互作用随丙交酯接枝(疏水性)的变化而有很大差异。随着丙交酯接枝增加(P(26) ≤ P(26)-1(LL) ≤ P(26)-2(LL)),NC对胰岛素的保护率高达95%,使其免受胰蛋白酶降解。较高的L-丙交酯接枝使细胞单层的转运和摄取增加。90分钟后,在Caco-2细胞中回收了约25%的1.25mg/ml含P(26)-2(LL)的TRITC-胰岛素NC分散液。观察到浓度依赖性细胞毒性特征,表现为LDH释放增加和TEER值降低。细胞毒性与聚合物的表面活性剂样特性相关,两亲性P(26)-2(LL)可将表面张力降低至46 mN/m。观察到的TEER降低在20小时后是可逆的,这表明可生物降解的梳状聚酯为克服粘膜屏障提供了一种有前景的方法。

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