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基于乳铁蛋白的抗菌肽的代谢命运:截短和氨基酸类似物掺入对体外代谢稳定性的影响。

Metabolic fate of lactoferricin-based antimicrobial peptides: effect of truncation and incorporation of amino acid analogs on the in vitro metabolic stability.

机构信息

Department of Chemistry, University of Tromsø, Tromsø, Norway.

出版信息

J Pharmacol Exp Ther. 2010 Mar;332(3):1032-9. doi: 10.1124/jpet.109.162826. Epub 2009 Dec 1.

Abstract

A series of promising truncated antibacterial tripeptides derived from lactoferricin has been prepared, and their in vitro metabolic stability in the main metabolic compartments, plasma, liver, kidney, stomach, duodenum, and brain, has been investigated for the first time. The potential stabilizing effect of truncation, C-terminal capping, and introduction of the bulky synthetic amino acid biphenylalanine is also investigated. The drug-like peptides displayed large differences in half-lives in the different matrixes ranging from 4.2 min in stomach and duodenum to 355.9 min in liver. Kinetic analysis of the metabolites revealed that several different degrading enzymes simultaneously target the different peptide bonds and that the outcome of the tested strategies to increase the stability is clearly enzyme-specific. Some of the metabolic enzymes even prefer the synthetic modifications incorporated over the natural counterparts. Collectively, it is shown that the necessary antibacterial pharmacophore generates compounds that are not only potent antibacterial peptides, but excellent substrates for the main degrading enzymes. All the amide bonds are thus rapidly targeted by different enzymes despite the short peptidic sequences of the tested compounds. Hence, our results illustrate that several structural changes are needed before these compounds can be considered for oral administration. Strategies to overcome such metabolic challenges are discussed.

摘要

已制备了一系列有前景的截短抗菌三肽,首次研究了它们在主要代谢隔室(血浆、肝、肾、胃、十二指肠和脑)中的体外代谢稳定性。还研究了截短、C 末端封端和引入大体积合成氨基酸联苯丙氨酸的潜在稳定作用。这些类药性肽在不同基质中的半衰期差异很大,范围从胃和十二指肠中的 4.2 分钟到肝中的 355.9 分钟。代谢物的动力学分析表明,几种不同的降解酶同时靶向不同的肽键,并且所测试的提高稳定性的策略的结果显然是酶特异性的。一些代谢酶甚至更喜欢天然对应物的合成修饰。总的来说,研究结果表明,必要的抗菌药效团生成的化合物不仅是有效的抗菌肽,而且是主要降解酶的优良底物。尽管测试化合物的肽序列很短,但所有酰胺键都很快被不同的酶靶向。因此,我们的结果表明,在这些化合物被考虑口服给药之前,需要进行一些结构改变。讨论了克服这些代谢挑战的策略。

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