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一个大型类肽-四氮杂环十二烷四乙酸组合文库的开发。

Development of a large peptoid-DOTA combinatorial library.

作者信息

Singh Jaspal, Lopes Daniel, Gomika Udugamasooriya D

机构信息

Department of Pharmacological and Pharmaceutical Sciences, University of Houston, Houston, TX, 77204.

Advanced Imaging Research Center, UT-Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX, 75390.

出版信息

Biopolymers. 2016 Sep;106(5):673-84. doi: 10.1002/bip.22883.

Abstract

Conventional one-bead one-compound (OBOC) library synthesis is typically used to identify molecules with therapeutic value. The design and synthesis of OBOC libraries that contain molecules with imaging or even potentially therapeutic and diagnostic capacities (e.g. theranostic agents) has been overlooked. The development of a therapeutically active molecule with a built-in imaging component for a certain target is a daunting task, and structure-based rational design might not be the best approach. We hypothesize to develop a combinatorial library with potentially therapeutic and imaging components fused together in each molecule. Such molecules in the library can be used to screen, identify, and validate as direct theranostic candidates against targets of interest. As the first step in achieving that aim, we developed an on-bead library of 153,600 Peptoid-DOTA compounds in which the peptoids are the target-recognizing and potentially therapeutic components and the DOTA is the imaging component. We attached the DOTA scaffold to TentaGel beads using one of the four arms of DOTA, and we built a diversified 6-mer peptoid library on the remaining three arms. We evaluated both the synthesis and the mass spectrometric sequencing capacities of the test compounds and of the final library. The compounds displayed unique ionization patterns including direct breakages of the DOTA scaffold into two units, allowing clear decoding of the sequences. Our approach provides a facile synthesis method for the complete on-bead development of large peptidomimetic-DOTA libraries for screening against biological targets for the identification of potential theranostic agents in the future. © 2016 The Authors. Biopolymers Published by Wiley Periodicals, Inc. Biopolymers (Pept Sci) 106: 673-684, 2016.

摘要

传统的单珠单化合物(OBOC)文库合成通常用于鉴定具有治疗价值的分子。含有具有成像甚至潜在治疗和诊断能力的分子(例如治疗诊断剂)的OBOC文库的设计和合成一直被忽视。开发一种针对特定靶点具有内置成像组件的治疗活性分子是一项艰巨的任务,基于结构的合理设计可能不是最佳方法。我们假设开发一种组合文库,其中每个分子中融合了潜在的治疗和成像组件。文库中的此类分子可用于筛选、鉴定和验证针对感兴趣靶点的直接治疗诊断候选物。作为实现该目标的第一步,我们开发了一个包含153,600种类肽-DOTA化合物的珠上文库,其中类肽是靶标识别和潜在治疗组件,DOTA是成像组件。我们使用DOTA的四个臂之一将DOTA支架连接到TentaGel珠上,并在其余三个臂上构建了一个多样化的6聚体类肽文库。我们评估了测试化合物和最终文库的合成和质谱测序能力。这些化合物显示出独特的电离模式,包括DOTA支架直接断裂成两个单元,从而允许对序列进行清晰解码。我们的方法为完整的珠上开发大型拟肽-DOTA文库提供了一种简便的合成方法,用于未来针对生物靶点进行筛选以鉴定潜在的治疗诊断剂。© 2016作者。由Wiley Periodicals, Inc.出版的生物聚合物。生物聚合物(肽科学)106: 673 - 684, 2016。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c7a/5054875/890bb70243bc/BIP-106-673-g001.jpg

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