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骨架环化对生物活性肽-肽段杂种的 PK/PD 性质的影响:促黑激素激动剂范例。

The effect of backbone cyclization on PK/PD properties of bioactive peptide-peptoid hybrids: the melanocortin agonist paradigm.

机构信息

Department of Pharmaceutics, School of Pharmacy, The Hebrew University of Jerusalem, PO Box 12065, Jerusalem 91120, Israel.

出版信息

Bioorg Med Chem. 2010 Jan 15;18(2):580-9. doi: 10.1016/j.bmc.2009.12.010. Epub 2009 Dec 11.

Abstract

A peptide-peptoid hybrid (peptomer) library was designed and synthesized, based on the sequence Phe-d-Phe-Arg-Trp-Gly. This sequence was previously found to specifically activate the melanocortin-4-receptor (MC4R) which participates in regulation of energy homeostasis and appetite. The library of peptomers included a peptoid bond in the Phe and/or d-Phe position and consisted of linear and backbone cyclic analogs, differed in their ring size. While the linear peptides rapidly degraded in serum and in brush border membrane vesicles (BBMV's), the linear peptomers were more stable. Backbone cyclic peptomers were also stable under the same conditions. Backbone cyclization significantly increased the intestinal permeability of two peptomers compared to their linear counterparts, in the Caco-2 model. Pharmacological evaluation revealed that two linear and one backbone cyclic peptomer, were found active towards MC4R at the nanomolar range. Thus, the conformational constrains imposed by these local and global modifications affect both the pharmacokinetic and pharmacodynamic properties of the parent peptide. This study demonstrates the potential of imposing backbone cyclization on bioactive peptomers as a promising approach in developing an orally available peptidomimetic drug leads.

摘要

基于 Phe-d-Phe-Arg-Trp-Gly 序列,设计并合成了一种肽-肽模拟物混合文库(peptomer)。该序列先前被发现可特异性激活参与能量稳态和食欲调节的黑素皮质素 4 受体(MC4R)。肽模拟物文库在 Phe 和/或 d-Phe 位置包含肽模拟物键,由线性和主链环状类似物组成,其环大小不同。虽然线性肽在血清和刷状缘膜小泡(BBMV)中迅速降解,但线性肽模拟物更稳定。在相同条件下,主链环状肽模拟物也稳定。与线性类似物相比,主链环化显著增加了两种肽模拟物在 Caco-2 模型中的肠道通透性。药理评价显示,两种线性和一种主链环状肽模拟物在纳摩尔范围内对 MC4R 具有活性。因此,这些局部和全局修饰施加的构象约束会影响母体肽的药代动力学和药效学特性。本研究证明了对生物活性肽模拟物施加主链环化的潜力,这是开发口服可用肽模拟药物先导物的一种有前途的方法。

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