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用于靶向癌症治疗的组织蛋白酶B可裂解连接子的快速、高产率固相合成

Rapid, High-Yielding Solid-Phase Synthesis of Cathepsin-B Cleavable Linkers for Targeted Cancer Therapeutics.

作者信息

Pryyma Alla, Gunasekera Shanal, Lewin Joshua, Perrin David M

机构信息

Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada.

出版信息

Bioconjug Chem. 2020 Dec 16;31(12):2685-2690. doi: 10.1021/acs.bioconjchem.0c00563. Epub 2020 Dec 4.

DOI:10.1021/acs.bioconjchem.0c00563
PMID:33274932
Abstract

Antibody-drug conjugates (ADCs) constitute an emerging class of anticancer agents that deliver potent payloads selectively to tumors while avoiding systemic toxicity associated with conventional chemotherapeutics. Critical to ADC development is a serum-stable linker designed to decompose inside targeted cells thereby releasing the toxic payload. A protease-cleavable linker comprising a valine-citrulline (Val-Cit) motif has been successfully incorporated into three FDA-approved ADCs and is found in numerous preclinical candidates. Herein, we present a high-yielding and facile synthetic strategy for a Val-Cit linker that avoids extensive protecting group manipulation and laborious chromatography associated with previous syntheses and provides yields that are up to 10-fold higher than by standard methods. This method is easily scalable and takes advantage of cost-effective coupling reagents and high loading 2-chlorotrityl chloride (2-CTC) resin. Modularity allows for introduction of various conjugation handles in final stages of the synthesis. Facile access to such analogues serves to expand the repertoire of available enzymatically cleavable linkers for ADC generation. This methodology empowers a robust and facile library generation and future exploration into linker analogues containing unnatural amino acids as a selectivity tuning tool.

摘要

抗体药物偶联物(ADCs)是一类新兴的抗癌药物,可将强效的有效载荷选择性地递送至肿瘤细胞,同时避免与传统化疗药物相关的全身毒性。ADC开发的关键在于设计一种血清稳定的连接子,使其在靶细胞内分解,从而释放有毒的有效载荷。一种包含缬氨酸-瓜氨酸(Val-Cit)基序的可被蛋白酶切割的连接子已成功应用于三种获美国食品药品监督管理局(FDA)批准的ADC,并在众多临床前候选药物中被发现。在此,我们提出了一种高产且简便的Val-Cit连接子合成策略,该策略避免了与以往合成方法相关的大量保护基操作和繁琐的色谱分离,且产率比标准方法高出10倍。此方法易于扩大规模,并利用了具有成本效益的偶联试剂和高载量的2-氯三苯甲基氯(2-CTC)树脂。模块化设计允许在合成的最后阶段引入各种共轭基团。能够轻松获得此类类似物有助于扩大用于生成ADC的可用酶切连接子的种类。这种方法有助于生成强大且简便的文库,并为未来探索含有非天然氨基酸作为选择性调节工具的连接子类似物提供支持。

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