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HPMA-Based Nanoparticles for Fast Bioorthogonal iEDDALigation

机译:基于HPMA的纳米颗粒可实现快速生物正交的iEDDA结扎

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摘要

Fast and bioorthogonally reacting nanoparticles are attractive tools for biomedical applications such as tumor pretargeting. In this study, we designed an amphiphilic block copolymer system based on HPMA using different strategies to introduce the highly reactive click units 1,2,4,5-tetrazines (Tz) either at the chain end (Tz-CTA) or statistical into the hydrophobic block. This reactive group undergoes a rapid, bioorthogonal inverse electron-demand Diels–Alder reaction (iEDDA) with trans-cyclooctenes (TCO). Subsequently, this polymer platform was used for the preparation of different Tz-covered nanoparticles, such as micelles and colloids. Thereby it was found that the reactivity of the polymeric micelles is comparable to that of the low molar mass tetrazines. The core-cross-linked micelles can be successfully conjugated at rather low concentrations to large biomacromolecules like antibodies, not only in physiological buffer, but also in human blood plasma, which was confirmed by fluorescence correlation spectroscopy (FCS).
机译:快速且与生物正交反应的纳米颗粒是用于生物医学应用(例如肿瘤预靶向)的有吸引力的工具。在这项研究中,我们设计了基于HPMA的两亲性嵌段共聚物系统,并使用不同的策略在链端(Tz-CTA)或统计端引入高反应性点击单元1,2,4,5-四嗪(Tz)。疏水性嵌段。该反应性基团与反式环辛烯(TCO)进行快速的,生物正交的电子逆Diels-Alder反应(iEDDA)。随后,该聚合物平台用于制备不同的Tz覆盖的纳米颗粒,例如胶束和胶体。由此发现,聚合物胶束的反应性与低摩尔质量的四嗪的反应性相当。核交联的胶束不仅可以在生理缓冲液中而且可以在人血浆中以相当低的浓度成功地与大型生物大分子(如抗体)偶联,这已通过荧光相关光谱法(FCS)得以证实。

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