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用于口服肽类药物递送的纳米结构脂质载体(NLCs):关于表面修饰的影响

Nanostructured Lipid Carriers (NLCs) for Oral Peptide Drug Delivery: About the Impact of Surface Decoration.

作者信息

Shahzadi Iram, Fürst Andrea, Knoll Patrick, Bernkop-Schnürch Andreas

机构信息

Center for Chemistry and Biomedicine, Department of Pharmaceutical Technology, Institute of Pharmacy, University of Innsbruck, Innrain 80-82, A-6020 Innsbruck, Austria.

出版信息

Pharmaceutics. 2021 Aug 22;13(8):1312. doi: 10.3390/pharmaceutics13081312.

Abstract

This study was aimed to evaluate the impact of surfactants used for nanostructured lipid carriers (NLCs) to provide enzymatic protection for incorporated peptides. Insulin as a model peptide was ion paired with sodium dodecyl sulfate to improve its lipophilicity. Three NLC formulations containing polyethylene glycol ester (PEG-ester), polyethylene glycol ether (PEG-ether), and polyglycerol ester (PG-ester) surfactants were prepared by solvent diffusion method. NLCs were characterized regarding particle size, polydispersity index, and zeta potential. Biocompatibility of NLCs was assessed on Caco-2 cells via resazurin assay. In vitro lipolysis study was performed using a standard lipid digestion method. Proteolytic studies were performed in simulated gastric fluid containing pepsin and simulated intestinal fluid containing pancreatin. Lipophilicity of insulin in terms of log P was improved from -1.8 to 2.1. NLCs were in the size range of 64-217 nm with a polydispersity index of 0.2-0.5 and exhibited a negative surface charge. PG-ester NLCs were non-cytotoxic up to a concentration of 0.5%, PEG-ester NLCs up to a concentration of 0.25% and PEG-ether NLC up to a concentration of 0.125% (/). The lipolysis study showed the release of >90%, 70%, and 10% of free fatty acids from PEG-ester, PG-ester, and PEG-ether NLCs, respectively. Proteolysis results revealed the highest protective effect of PEG-ether NLCs followed by PG-ester and PEG-ester NLCs for incorporated insulin complex. Findings suggest that NLCs bearing substructures less susceptible to degrading enzymes on their surface can provide higher protection for incorporated peptides toward gastrointestinal proteases.

摘要

本研究旨在评估用于纳米结构脂质载体(NLC)的表面活性剂对包封肽的酶保护作用。以胰岛素作为模型肽,将其与十二烷基硫酸钠进行离子配对以提高其亲脂性。通过溶剂扩散法制备了三种含有聚乙二醇酯(PEG-酯)、聚乙二醇醚(PEG-醚)和聚甘油酯(PG-酯)表面活性剂的NLC制剂。对NLC的粒径、多分散指数和zeta电位进行了表征。通过刃天青试验在Caco-2细胞上评估了NLC的生物相容性。使用标准脂质消化方法进行体外脂解研究。在含有胃蛋白酶的模拟胃液和含有胰酶的模拟肠液中进行蛋白水解研究。胰岛素的亲脂性以log P计从-1.8提高到了2.1。NLC的粒径范围为64-217nm,多分散指数为0.2-0.5,且表面带负电荷。PG-酯NLC在浓度高达0.5%时无细胞毒性,PEG-酯NLC在浓度高达0.25%时无细胞毒性,PEG-醚NLC在浓度高达0.125%时无细胞毒性(/)。脂解研究表明,PEG-酯、PG-酯和PEG-醚NLC分别释放出>90%、70%和10%的游离脂肪酸。蛋白水解结果显示,PEG-醚NLC对包封的胰岛素复合物的保护作用最强,其次是PG-酯和PEG-酯NLC。研究结果表明,表面带有不易被降解酶作用的亚结构的NLC可以为包封的肽提供更高的胃肠道蛋白酶保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f79/8399745/6334124d2b23/pharmaceutics-13-01312-g001.jpg

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