首页> 外文OA文献 >Part I. Application of 2-Hydroxymethylacrylic Acid, a Product of Baylis-Hillman Reaction, for the Synthesis of Novel N-backbone-to-Side-Chain Cyclic Peptide Analogs: Strategies and Side Reactions Part II. Synthesis and Biological Activities of Chimeric Bioactive Peptides Featuring Amino Acids Coupled to 4-Anilino-N-Phenethyl-Piperidine
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Part I. Application of 2-Hydroxymethylacrylic Acid, a Product of Baylis-Hillman Reaction, for the Synthesis of Novel N-backbone-to-Side-Chain Cyclic Peptide Analogs: Strategies and Side Reactions Part II. Synthesis and Biological Activities of Chimeric Bioactive Peptides Featuring Amino Acids Coupled to 4-Anilino-N-Phenethyl-Piperidine

机译:第一部分。Baylis-Hillman反应产物2-羟基甲基丙烯酸在合成新型N-骨架-侧链环状肽类似物上的应用:策略和副反应。氨基酸与4-苯胺基-N-苯乙基-哌啶偶联的嵌合生物活性肽的合成及生物活性

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摘要

During my research career in Prof. V.J.Hruby's laboratory I worked on two different projects. The first project, which was initiated by the author, was planned to serve the need of our laboratory for a novel method of peptide cyclization. This method was planned to use recent advances in Pd0-catalyzed asymmetric synthesis combined with the structural richness offered by the Baylis-Hillman chemistry which could open new ways to diverse areas of drug design, molecular immunology and chemotherapy. This approach would provide cyclic peptides featuring N-alkylated amino acids that would confer high resistance to degradation by proteases. Because of numerous synthetic problems imposed, this strategy was not of considerable current use in peptide synthesis, especially on solid supports. However, despite a substantial amount of effort invested, this method faced serious drawbacks such as multistep synthesis and side reactions when applied to solid supports. Moreover, recent introduction of microwave technology which has helped to solve a great number of problems has led to a renaissance in the classical lactam and thioester bond cyclizations which overshadowed our quest for a novel methodology. The second project was focused on application of 4-anilidopiperidines for the synthesis of chimeric bioactive peptides. It was an effort towards the development of novel analgesics with reduced toxicity and enhanced potency. This project linked small molecule and multimeric ligand designs that were ongoing in our laboratory at the time. Major accomplishments in this project were made possible by successful resolution of several research challenges. I was able to find a straightforward, convenient and economical approach for the synthesis of novel analogues on a solid support. These developments led to novel compounds which showed substantial increases in their binding affinity relative to corresponding opioid analogues. To illustrate, compounds PET25, 26, 27, 29, 30, 31, and 32 showed high bioactivity and sub-nanomolar binding affinity to opioid receptors. Most of the peptides generated in the second project are still being investigated for their biological activities by our colleagues at the Department of Pharmacology, but the results to date indicate that some highly potent novel compounds have been made.
机译:在V.J. Hruby教授实验室的研究生涯中,我从事两个不同的项目。由作者发起的第一个项目计划满足我们实验室对新型肽环化方法的需求。该方法计划利用Pd0催化不对称合成的最新进展,并结合Baylis-Hillman化学提供的结构丰富性,这可以为药物设计,分子免疫学和化学疗法的各个领域开辟新途径。该方法将提供具有N-烷基化氨基酸特征的环肽,所述环肽将赋予对蛋白酶降解的高抗性。由于施加了许多合成问题,因此该策略在肽合成中,特别是在固体支持物上,目前没有大量使用。然而,尽管投入了大量的精力,但是该方法在应用于固体载体时仍面临严重的缺点,例如多步合成和副反应。此外,最近引入的微波技术帮助解决了许多问题,导致经典的内酰胺和硫酯键环化的复兴,这使我们对新方法的追求蒙上了阴影。第二个项目的重点是将4-苯胺基哌啶用于嵌合生物活性肽的合成。这是对开发具有降低的毒性和增强的效力的新型止痛药的努力。该项目将当时在我们实验室中进行的小分子和多聚体配体设计联系在一起。通过成功解决一些研究挑战,使该项目取得了重大成就。我能够找到一种简单,方便且经济的方法来在固体支持物上合成新型类似物。这些发展导致了新颖的化合物,相对于相应的阿片类似物,其结合亲和力显着提高。为了说明,化合物PET25、26、27、29、30、31和32显示出高的生物活性和对阿片样物质受体的亚纳摩尔结合亲和力。药理学部门的同事仍在研究第二个项目中产生的大多数肽的生物学活性,但迄今为止的结果表明已经制备了一些高效的新型化合物。

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    Petrov Ravil Rashitovich;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 EN
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