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β-环糊精/二醛葡聚糖修饰的角蛋白纳米粒口服递药胰岛素。

β-Cyclodextrin/dialdehyde glucan-coated keratin nanoparticles for oral delivery of insulin.

机构信息

School of Chemistry and Chemical Engineering, Shihezi University/State Key Laboratory Incubation Base for Green Processing of Chemical Engineering, Shihezi 832003, China.

Key Laboratory of Agricultural Microorganisms and Drug & Fertilizer Creation, Shihezi 832003, China.

出版信息

Int J Biol Macromol. 2024 Sep;276(Pt 2):133805. doi: 10.1016/j.ijbiomac.2024.133805. Epub 2024 Jul 10.

DOI:10.1016/j.ijbiomac.2024.133805
PMID:38996885
Abstract

Successful oral insulin administration can considerably enhance the quality of life (QOL) of diabetes patients who must frequently take insulin injections. However, Oral insulin administration is seriously hampered by gastrointestinal enzymes, wide pH range, mucus and mucosal layers, which limit insulin oral bioavailability to ≤2 %. Herein, we developed a simple, inexpensive and safe dual β-cyclodextrin/dialdehyde glucan-coated keratin nanoparticle (β-CD-K-IN-DG). The resulted β-CD-K-IN-DG not only gave the ultra-high insulin loading (encapsulation efficiency (98.52 %)), but also protected insulin from acid and enzymatic degradation. This β-CD-K-IN-DG had a notable hypoglycemic effect, there was almost 80 % insulin release after 4 h of incubation under hyperglycemic conditions. Ex vivo results confirmed that β-CD-K-IN-DG possessed high mucus-penetration ability. Transepithelial transport and uptake mechanism studies revealed that bypass transport pathway and endocytosis promoted β-CD-K-IN-DG entered intestinal epithelial cells, thus increased the bioavailability of insulin (12.27 %). The improved stability of insulin during in vivo transport implied that β-CD-K-IN-DG might be a potential tool for the effective oral insulin administration.

摘要

成功的口服胰岛素给药可以极大地提高必须频繁注射胰岛素的糖尿病患者的生活质量(QOL)。然而,口服胰岛素给药受到胃肠道酶、宽 pH 值范围、粘液和粘膜层的严重阻碍,这将胰岛素的口服生物利用度限制在≤2%。在此,我们开发了一种简单、廉价和安全的双β-环糊精/二醛葡聚糖包被角蛋白纳米粒(β-CD-K-IN-DG)。所得的β-CD-K-IN-DG 不仅具有超高的胰岛素载药量(包封效率(98.52%)),而且还可以保护胰岛素免受酸和酶的降解。这种β-CD-K-IN-DG 具有显著的降血糖作用,在高血糖条件下孵育 4 小时后,几乎有 80%的胰岛素释放。离体结果证实了β-CD-K-IN-DG 具有很强的穿透粘液能力。跨上皮转运和摄取机制研究表明,旁路转运途径和内吞作用促进了β-CD-K-IN-DG 进入肠上皮细胞,从而提高了胰岛素的生物利用度(12.27%)。胰岛素在体内转运过程中的稳定性提高表明,β-CD-K-IN-DG 可能是一种有效的口服胰岛素给药的潜在工具。

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