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利用二硫键热稳定外壳系统稳定胃肠道蛋白递释。

Gastrointestinal Tract Stabilized Protein Delivery Using Disulfide Thermostable Exoshell System.

机构信息

Yong Loo Lin School of Medicine, 14 Medical Drive, National University of Singapore, Singapore 117599, Singapore.

Genome Institute of Singapore, Agency for Science, Technology and Research (A*Star), Singapore 138672, Singapore.

出版信息

Int J Mol Sci. 2022 Aug 30;23(17):9856. doi: 10.3390/ijms23179856.

Abstract

Thermostable exoshells (tES) are engineered proteinaceous nanoparticles used for the rapid encapsulation of therapeutic proteins/enzymes, whereby the nanoplatform protects the payload from proteases and other denaturants. Given the significance of oral delivery as the preferred model for drug administration, we structurally improved the stability of tES through multiple inter-subunit disulfide linkages that were initially absent in the parent molecule. The disulfide-linked tES, as compared to tES, significantly stabilized the activity of encapsulated horseradish peroxidase (HRP) at acidic pH and against the primary human digestive enzymes, pepsin, and trypsin. Furthermore, the disulfide-linked tES (DS-tES) exhibited significant intestinal permeability as evaluated using Caco2 cells. In vivo bioluminescence assay showed that encapsulated Renilla luciferase (rluc) was ~3 times more stable in mice compared to the free enzyme. DS-tES collected mice feces had ~100 times more active enzyme in comparison to the control (free enzyme) after 24 h of oral administration, demonstrating strong intestinal stability. Taken together, the in vitro and in vivo results demonstrate the potential of DS-tES for intraluminal and systemic oral drug delivery applications.

摘要

热稳定外壳(tES)是一种经过工程设计的蛋白纳米颗粒,用于快速封装治疗性蛋白质/酶,纳米平台可保护有效载荷免受蛋白酶和其他变性剂的影响。鉴于口服给药作为首选药物给药模式的重要性,我们通过在原始分子中最初不存在的多个亚基间二硫键连接来结构性地提高 tES 的稳定性。与 tES 相比,二硫键连接的 tES 可显著稳定包封辣根过氧化物酶(HRP)在酸性 pH 值下以及针对主要人体消化酶胃蛋白酶和胰蛋白酶的活性。此外,用 Caco2 细胞评估发现,二硫键连接的 tES(DS-tES)具有显著的肠道通透性。体内生物发光测定表明,与游离酶相比,包封的海肾荧光素酶(rluc)在小鼠体内稳定约 3 倍。与对照(游离酶)相比,口服给药 24 小时后,DS-tES 收集的小鼠粪便中的活性酶高 100 倍,这表明其具有很强的肠道稳定性。综上所述,体外和体内结果表明 DS-tES 具有用于腔内和全身口服药物递送应用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b01/9456531/1bd569718738/ijms-23-09856-g001.jpg

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