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首页> 外文期刊>Angewandte Chemie >Polymer Dots Compartmentalized in Liposomes as a Photocatalyst for In Situ Hydrogen Therapy
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Polymer Dots Compartmentalized in Liposomes as a Photocatalyst for In Situ Hydrogen Therapy

机译:聚合物点在脂质体中划分为光催化剂,用于原位氢疗法

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Semiconducting polymer dots (Pdots) have recently attracted considerable attention because of their photocatalytic activity as well as tunable optical band gap. In this contribution, we describe the therapeutic application of Pdots through in situ photocatalytic hydrogen generation. Liposomes were employed as nanoreactors to confine the Pdot photocatalyst, reactants, intermediates, and by-products. Upon photon absorption by the Pdots, the catalytic cycle is initiated and repeated within the aqueous interior, while the H-2 product diffuses across the lipid bilayer to counteract reactive oxygen species (ROS) overexpressed in diseased tissues. Ensemble and single-particle Forster resonance energy transfer microscopy confirmed the proposed nanoreactor model. We demonstrate that a liposomal nanoreactor containing Pdots and a sacrificial electron donor is a potential photocatalytic nanoreactor for in situ hydrogen therapy.
机译:由于它们的光催化活性以及可调谐光带隙,半导体聚合物点(PDOT)最近引起了相当大的关注。 在这种贡献中,我们描述了PDOT通过原位光催化氢产生的治疗应用。 脂质体用作纳米反应器,限制腭光催化剂,反应物,中间体和副产物。 在光子吸收通过PDOTS时,催化循环在含水内部启动并重复,而H-2产物在脂质双层延伸以抵消患病组织中过表达的反应性氧物质(ROS)。 合奏和单粒子福斯特共振能量传递显微镜证实了所提出的纳米反应器模型。 我们证明含有PDOS和牺牲电子给体的脂质体纳米反应器是用于原位氢疗法的潜在光催化纳米反应器。

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