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A Prospective Analysis of Co-Processed Non-Ionic Surfactants in Enhancing Permeability of a Model Hydrophilic Drug

机译:共处理非离子表面活性剂提高模型亲水性药物渗透性的前瞻性分析

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摘要

Paracellular route is a natural pathway for the transport of many hydrophilic drugs and macromolecules. The purpose of this study was to prospectively evaluate the ability of novel co-processed non-ionic surfactants to enhance the paracellular permeability of a model hydrophilic drug metformin using Caco-2 (human colonic adenocarcinoma) cell model. A three-tier screen was undertaken to evaluate the co-processed blends based on cytotoxicity, cellular integrity, and permeability coefficient. The relative contribution of the paracellular and the transcellular route in overall transport of metformin by co-processed blends was determined. Immunocytochemistry was conducted to determine the distribution of tight-junction protein claudin-1 after incubation with the co-processed blends. It was found that novel blends of Labrasol and Transcutol-P enhanced metformin permeability by approximately twofold with transient reduction in the transepithelia electrical resistance (TEER) and minimal cytotoxicity compared with the control, with the paracellular pathway as the major route of metformin transport. Maximum permeability of metformin (∼10-fold) was mediated by Tween-20 blends along with >75% reduction in the TEER which was irreversible over 24-h period. A shift in metformin transport from the paracellular to the transcellular route was observed with some Tween-20 blends. Immunocytochemical analysis revealed rearrangement of the cellular borders and fragmentation on treatment with Tween-20 blends. In conclusion, cytotoxicity, cellular integrity, and permeability of the hydrophilic drugs can be greatly influenced by the polyoxyethylene residues and medium chain fatty acids in the non-ionic surfactants at clinically relevant concentrations and therefore should be thoroughly investigated prior to their inclusion in formulations.
机译:细胞旁途径是许多亲水药物和大分子运输的天然途径。这项研究的目的是前瞻性评估新型共处理的非离子表面活性剂使用Caco-2(人类结肠腺癌)细胞模型增强亲水性药物二甲双胍模型的细胞旁通透性的能力。基于细胞毒性,细胞完整性和通透性系数,进行了三层筛选以评估共加工的混合物。确定了共处理的共混物在二甲双胍总体运输中细胞旁和跨细胞途径的相对贡献。与共加工的混合物孵育后,进行免疫细胞化学测定紧密连接蛋白claudin-1的分布。已经发现,与对照相比,Labrasol和Transcutol-P的新型混合物将二甲双胍的通透性提高了约两倍,并且与对照相比,跨上皮电阻(TEER)的瞬时降低和最小的细胞毒性,其中细胞旁途径是二甲双胍运输的主要途径。二甲双胍的最大渗透性(约10倍)由Tween-20共混物介导,TEER降低> 75%,这在24小时内不可逆。在一些Tween-20混合物中观察到二甲双胍运输从细胞旁途径转移到跨细胞途径。免疫细胞化学分析显示,在使用Tween-20共混物治疗时,细胞边界发生了重排并发生了碎片化。总之,非离子表面活性剂中临床相关浓度的聚氧乙烯残基和中链脂肪酸会极大地影响亲水性药物的细胞毒性,细胞完整性和通透性,因此在将它们纳入制剂之前应进行彻底研究。

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