Synthesis and cell-induced luminescence of post-functionalisable ionisable polyesters from the Passerini 3-component polymerisation

IF 4.1 2区 化学 Q2 POLYMER SCIENCE Polymer Chemistry Pub Date : 2024-12-13 DOI:10.1039/d4py01165a
Lewis O'Shaughnessy, Akosua Anane-Adjei, Mariarosa Mazza, Naoto Hori, Pratik Gurnani, Cameron Alexander
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Abstract

Recent developments in polymer synthesis methods allow the preparation of new materials across a wide chemical space and with high atom efficiency. In this work, we developed a strategic approach to the synthesis of a diverse array of novel ionisable polyesters via a modular and iterative synthetic approach. We initially designed a range of diacid monomers and subsequently used the Passerini 3-component reaction as a simple, one-pot step growth polymerisation to build a library of novel, highly functionalised polymers. This library was expanded further by the application of thiol/ene and copper-initiated azide/alkyne click chemistries to introduce further structural diversity into the materials. Selected polymers were found to internalise readily in a model cell line (HEK-293T), and for a subset of these polymers, bright luminescence was observed in the cells upon internalisation, even though neither the cells, nor the polymers, were luminescent on their own at these wavelengths. Our synthetic approach offers a versatile platform for the systematic development and modification of novel macromolecules and for cell-labelling components.
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雀形虫三组分聚合后功能化可电离聚酯的合成和细胞诱导发光
聚合物合成方法的最新发展允许在广泛的化学空间和高原子效率中制备新材料。在这项工作中,我们通过模块化和迭代合成方法开发了一种合成多种新型可电离聚酯的战略方法。我们最初设计了一系列二酸单体,随后使用Passerini三组分反应作为简单的一锅一步生长聚合,建立了一个新颖的、高度功能化的聚合物库。该库通过应用硫醇/烯和铜引发的叠氮化物/炔键化学进一步扩展,以引入材料的进一步结构多样性。选定的聚合物被发现很容易内化在模型细胞系(HEK-293T)中,并且对于这些聚合物的一个子集,在内化后的细胞中观察到明亮的发光,即使细胞和聚合物在这些波长下都不会自己发光。我们的合成方法为系统开发和修饰新型大分子和细胞标记成分提供了一个通用的平台。
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来源期刊
Polymer Chemistry
Polymer Chemistry POLYMER SCIENCE-
CiteScore
8.60
自引率
8.70%
发文量
535
审稿时长
1.7 months
期刊介绍: Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.
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