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Efficient Synthesis of Diverse Heterobifunctionalized Clickable Oligo(ethylene glycol) Linkers: Potential Applications in Bioconjugation and Targeted Drug Delivery

机译:多元Heterobifunctionalized可点击低聚(乙二醇)连接物的高效合成:在生物偶联潜在应用和靶向药物递送

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摘要

Herein we describe the sequential synthesis of a variety of azide-alkyne click chemistry-compatible heterobifunctional oligo(ethylene glycol) (OEG) linkers for bioconjugation chemistry applications. Synthesis of these bioorthogonal linkers was accomplished through desymmetrization of OEGs by conversion of one of the hydroxyl groups to either an alkyne or azido functionality. The remaining distal hydroxyl group on the OEGs was activated by either a 4-nitrophenyl carbonate or a mesylate (-OMs) group. The -OMs functional group served as a useful precursor to form a variety of heterobifunctionalized OEG linkers containing different highly reactive end groups, e.g., iodo, -NH2, -SH and maleimido, that were orthogonal to the alkyne or azido functional group. Also, the alkyne- and azide-terminated OEGs are useful for generating larger discrete poly(ethylene glycol) (PEG) linkers (e.g., PEG16 and PEG24) by employing a Cu(I)-catalyzed 1,3-dipolar cycloaddition click reaction. The utility of these clickable heterobifunctional OEGs in bioconjugation chemistry was demonstrated by attachment of the integrin (αvβ3) receptor targeting peptide, cyclo-(Arg-Gly-Asp-D-Phe-Lys) (cRGfKD) and to the fluorescent probe sulfo-rhodamine B. The synthetic methodology presented herein is suitable for the large scale production of several novel heterobifunctionalized OEGs from readily available and inexpensive starting materials.
机译:在本文中,我们描述了用于生物缀合化学应用的各种叠氮化物-炔烃单击化学兼容的杂双功能低聚(乙二醇)(OEG)接头的顺序合成。这些生物正交连接子的合成是通过将OEG的不对称化(通过将一个羟基转化为炔或叠氮基官能团来实现的)来完成的。 OEG上剩余的远端羟基被碳酸4-硝基苯酯或甲磺酸酯(-OMs)基团激活。 -OMs官能团用作形成各种异双功能化的OEG接头的有用前体,该接头包含与炔烃或叠氮基官能团正交的不同的高反应性端基,例如碘,-NH 2,-SH和马来酰亚胺。而且,炔和叠氮基封端的OEG可用于通过使用Cu(I)催化的1,3-偶极环加成点击反应来产生较大的离散聚(乙二醇)(PEG)接头(例如PEG16和PEG24)。这些可点击的异双功能OEG在生物共轭化学中的实用性通过整合素(αvβ3)受体靶向肽,环-(Arg-Gly-Asp-D-Phe-Lys)(cRGfKD)和荧光探针磺基罗丹明的附着而得到证明B.本文提出的合成方法适合于由容易获得和廉价的起始原料大规模生产几种新颖的异双功能化的OEG。

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