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液相肽合成 (LPPS):肽制备的第三波浪潮。

Liquid-Phase Peptide Synthesis (LPPS): A Third Wave for the Preparation of Peptides.

机构信息

Peptide Science Laboratory, School of Chemistry and Physics, University of KwaZulu-Natal, Westville, Durban 4000, South Africa.

Department of Chemistry, Prayoga Institute of Education Research (PIER), Bangalore 560082, India.

出版信息

Chem Rev. 2022 Aug 24;122(16):13516-13546. doi: 10.1021/acs.chemrev.2c00132. Epub 2022 Jul 11.

Abstract

Since the last century, peptides have gained wide acceptance as drugs, with almost 100 already in the market and a large number in the pipeline. In this context, peptide synthesis has grown massively as a stringent field for pharmaceuticals around the globe. Three methodologies, namely, classical solution peptide synthesis (CSPS), solid-phase peptide synthesis (SPPS), and liquid-phase peptide synthesis (LPPS), have made significant contributions to the field. This review provides a comprehensive and integrated vision of LPPS as the third wave for peptide synthesis. LPPS combines the advantages of CSPS and SPPS, where peptide elongation is carried out in solution and the growing peptide chain is supported on a soluble tag, which confers characteristic properties. LPPS protocols allow the large-scale production of peptides and reduce the use of excess reagents and solvents, thus meeting the principles of green chemistry. In this review, tags associated with LPPS are broadly discussed under the following headings: polydisperse polyethylene glycol (PEG), membrane-enhanced peptide synthesis (MEPS), fluorous technology, ionic liquids (ILs), PolyCarbon, hydrophobic polymers, and group-assisted purification (GAP). It also highlights the signature accomplishments of LPPS tags and the limitations of the same.

摘要

自上个世纪以来,肽类药物已经得到了广泛的认可,已有近 100 种肽类药物上市,还有大量的肽类药物正在研发中。在这种背景下,肽合成作为全球制药行业一个严格的领域,已经有了大规模的发展。三种方法,即经典溶液肽合成(CSPS)、固相肽合成(SPPS)和液相肽合成(LPPS),为该领域做出了重大贡献。本文综述了 LPPS 作为肽合成的第三波浪潮,提供了对 LPPS 的全面综合的看法。LPPS 结合了 CSPS 和 SPPS 的优点,其中肽的延伸在溶液中进行,并且生长的肽链在可溶性标签上得到支持,这赋予了其特征性质。LPPS 方案允许大规模生产肽,并减少了过量试剂和溶剂的使用,从而符合绿色化学的原则。在本文综述中,广泛讨论了 LPPS 相关的标签,主要分为以下几类:多分散性聚乙二醇(PEG)、膜增强肽合成(MEPS)、氟技术、离子液体(ILs)、聚碳酸酯、疏水性聚合物和基团辅助纯化(GAP)。它还强调了 LPPS 标签的标志性成就和同样存在的局限性。

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