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细胞穿透肽对治疗性肽和蛋白质经鼻及肠吸收的作用。

Efficiency of cell-penetrating peptides on the nasal and intestinal absorption of therapeutic peptides and proteins.

机构信息

Department of Pharmaceutics, Hoshi University, Shinagawa, Tokyo, Japan.

出版信息

Int J Pharm. 2009 Oct 20;381(1):49-55. doi: 10.1016/j.ijpharm.2009.07.022. Epub 2009 Jul 29.

DOI:10.1016/j.ijpharm.2009.07.022
PMID:19646515
Abstract

The purpose of our study was to investigate the potential of cell-penetrating peptides; penetratin as novel delivery vector, on the systemic absorption of therapeutic peptides and proteins across different mucosal administration sites. The absorption-enhancing feasibility of l- and d-penetratin (0.5mM) was used for glucagon-like peptide-1 (GLP-1), and exendin-4 as novel antidiabetic therapy, in addition to interferon-beta (IFN-beta) as protein biotherapeutic model from nasal and intestinal route of administration was evaluated as first time in rats. Nasal route is the most feasible for the delivery of therapeutic peptides coadministered with penetratin whereas the intestinal route appears to be more restricted. The absolute bioavailability (BA (%)) values depend on the physichochemical characters of drugs, stereoisomer character of penetratin, and site of administration. Penetratin significantly increased the nasal more than intestinal absorption of GLP-1 and exendin-4, as the BA for nasal and intestinal administration of GLP-1 was 15.9% and 5%, and for exendin-4 were 7.7% and 1.8%, respectively. Moreover, the BA of IFN-beta coadministered with penetratin was 11.1% and 0.17% for nasal and intestinal administration, respectively. From these findings, penetratin is a promising carrier for transmucosal delivery of therapeutic peptides and macromolecules as an alternative to conventional parenteral routes.

摘要

我们的研究目的是研究细胞穿透肽(Penetratin)作为新型递药载体,通过不同黏膜给药途径,对治疗性肽和蛋白质的全身吸收的潜在作用。我们首次在大鼠体内评估了 l-和 d-穿透肽(0.5mM)对作为新型抗糖尿病治疗药物的胰高血糖素样肽-1(GLP-1)和 exendin-4 的吸收增强作用,以及作为蛋白生物治疗模型的干扰素-β(IFN-β),通过鼻内和肠道途径给药。鼻内途径是递送与穿透肽共给药的治疗性肽的最可行途径,而肠道途径似乎受到更多限制。绝对生物利用度(BA(%))值取决于药物的理化特性、穿透肽的立体异构体特性和给药部位。穿透肽显著增加了 GLP-1 和 exendin-4 的鼻内吸收,而 GLP-1 的鼻内和肠道给药的 BA 分别为 15.9%和 5%,exendin-4 的 BA 分别为 7.7%和 1.8%。此外,与穿透肽共给药的 IFN-β 的 BA 分别为鼻内和肠道给药的 11.1%和 0.17%。从这些发现中可以看出,穿透肽作为一种有前途的跨黏膜递药载体,可替代传统的肠外途径,用于治疗性肽和大分子的递药。

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