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本文引用的文献

1
Disulfide-rich macrocyclic peptides as templates in drug design.富含二硫键的大环肽作为药物设计的模板。
Eur J Med Chem. 2014 Apr 22;77:248-57. doi: 10.1016/j.ejmech.2014.03.011. Epub 2014 Mar 6.
2
Polycyclic peptide therapeutics.多环肽治疗药物。
ChemMedChem. 2013 Mar;8(3):377-84. doi: 10.1002/cmdc.201200513. Epub 2013 Jan 25.
3
The future of peptide-based drugs.基于肽的药物的未来。
Chem Biol Drug Des. 2013 Jan;81(1):136-47. doi: 10.1111/cbdd.12055.
4
Getting in shape: controlling peptide bioactivity and bioavailability using conformational constraints.塑形:利用构象约束控制肽的生物活性和生物利用度。
ACS Chem Biol. 2013 Mar 15;8(3):488-499. doi: 10.1021/cb300515u. Epub 2012 Nov 30.
5
Intestinal permeability of cyclic peptides: common key backbone motifs identified.环状肽的肠道通透性:常见的关键骨架基序被鉴定。
J Am Chem Soc. 2012 Jul 25;134(29):12125-33. doi: 10.1021/ja303200d. Epub 2012 Jul 12.
6
Orally active peptidic bradykinin B1 receptor antagonists engineered from a cyclotide scaffold for inflammatory pain treatment.由环肽支架设计的口服活性肽类缓激肽B1受体拮抗剂用于治疗炎性疼痛。
Angew Chem Int Ed Engl. 2012 Jun 4;51(23):5620-4. doi: 10.1002/anie.201200984. Epub 2012 Apr 24.
7
An antagonist of human protease activated receptor-2 attenuates PAR2 signaling, macrophage activation, mast cell degranulation, and collagen-induced arthritis in rats.一种人蛋白酶激活受体-2 的拮抗剂可减弱 PAR2 信号、巨噬细胞激活、肥大细胞脱颗粒和胶原诱导的大鼠关节炎。
FASEB J. 2012 Jul;26(7):2877-87. doi: 10.1096/fj.11-201004. Epub 2012 Mar 30.
8
On-resin N-methylation of cyclic peptides for discovery of orally bioavailable scaffolds.在树脂上对环状肽进行 N-甲基化以发现可口服生物利用的支架。
Nat Chem Biol. 2011 Sep 25;7(11):810-7. doi: 10.1038/nchembio.664.
9
The effect of multiple N-methylation on intestinal permeability of cyclic hexapeptides.多甲基化对环状六肽肠道通透性的影响。
Mol Pharm. 2011 Apr 4;8(2):479-87. doi: 10.1021/mp1003306. Epub 2011 Mar 21.
10
Linaclotide, through activation of guanylate cyclase C, acts locally in the gastrointestinal tract to elicit enhanced intestinal secretion and transit.利那洛肽通过激活肠上皮细胞表面的鸟苷酸环化酶 C,在胃肠道局部发挥作用,刺激肠道分泌和运动。
Eur J Pharmacol. 2010 Dec 15;649(1-3):328-35. doi: 10.1016/j.ejphar.2010.09.019. Epub 2010 Sep 20.

由核磁共振酰胺温度系数引导的口服生物可利用肽的合理设计与合成。

Rational design and synthesis of an orally bioavailable peptide guided by NMR amide temperature coefficients.

作者信息

Wang Conan K, Northfield Susan E, Colless Barbara, Chaousis Stephanie, Hamernig Ingrid, Lohman Rink-Jan, Nielsen Daniel S, Schroeder Christina I, Liras Spiros, Price David A, Fairlie David P, Craik David J

出版信息

Proc Natl Acad Sci U S A. 2014 Dec 9;111(49):17504-9. doi: 10.1073/pnas.1417611111.

DOI:10.1073/pnas.1417611111
PMID:25416591
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4267368/
Abstract

Enhancing the oral bioavailability of peptide drug leads is a major challenge in drug design. As such, methods to address this challenge are highly sought after by the pharmaceutical industry. Here, we propose a strategy to identify appropriate amides for N-methylation using temperature coefficients measured by NMR to identify exposed amides in cyclic peptides. N-methylation effectively caps these amides, modifying the overall solvation properties of the peptides and making them more membrane permeable. The approach for identifying sites for N-methylation is a rapid alternative to the elucidation of 3D structures of peptide drug leads, which has been a commonly used structure-guided approach in the past. Five leucine-rich peptide scaffolds are reported with selectively designed N-methylated derivatives. In vitro membrane permeability was assessed by parallel artificial membrane permeability assay and Caco-2 assay. The most promising N-methylated peptide was then tested in vivo. Here we report a novel peptide (15), which displayed an oral bioavailability of 33% in a rat model, thus validating the design approach. We show that this approach can also be used to explain the notable increase in oral bioavailability of a somatostatin analog.

摘要

提高肽类先导药物的口服生物利用度是药物设计中的一项重大挑战。因此,制药行业对解决这一挑战的方法需求极高。在此,我们提出一种策略,利用核磁共振测量的温度系数来识别环肽中暴露的酰胺,从而确定适合进行N-甲基化的酰胺。N-甲基化有效地封闭了这些酰胺,改变了肽的整体溶剂化性质,使其更具膜通透性。识别N-甲基化位点的方法是一种快速替代方法,可替代过去常用的结构导向方法——阐明肽类先导药物的三维结构。本文报道了五种富含亮氨酸的肽支架及其选择性设计的N-甲基化衍生物。通过平行人工膜通透性测定和Caco-2测定评估了体外膜通透性。然后对最有前景的N-甲基化肽进行了体内试验。在此,我们报道了一种新型肽(15),它在大鼠模型中显示出33%的口服生物利用度,从而验证了该设计方法。我们表明,这种方法还可用于解释一种生长抑素类似物口服生物利用度的显著提高。