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首页> 外文期刊>Russian journal of bioorganic chemistry >Efficiency of Bioluminescence Resonance Energy Transfer in the NanoLuc-miniSOG-Furimazine System
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Efficiency of Bioluminescence Resonance Energy Transfer in the NanoLuc-miniSOG-Furimazine System

机译:纳米型微型氟嘧嗪系统中生物发光共振能量转移的效率

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摘要

Photodynamic therapy (PDT) is a clinically approved, minimally invasive method for tumor destruction in the presence of a photosensitizer (PS), oxygen, and a light source. The main obstacle for the PDT treatment of deep tumors is the problem of the excitation light delivery inside the body without reduction of light intensity. An internal light source based on a bioluminescence system NanoLuc-furimazine can be considered as an alternative to an external light source. This system can be successfully used to excite a protein photosensitizer miniSOG and induce its phototoxicity in cancer cells as a result of bioluminescent resonance energy transfer. In this paper, the effectiveness of bioluminescent resonance energy transfer in the NanoLuc-miniSOG-furimazine system in living cells was studied. The efficiency of the energy transfer in this system was found to be independent of the furimazine concentration, while intracellular localization of the NanoLuc-miniSOG hybrid protein was found to be a crucial factor.
机译:光动力疗法(PDT)是临床批准的,在光敏剂(PS),氧气和光源存在下的肿瘤破坏的微创方法。对于深肿瘤的PDT治疗的主要障碍是主体内部激发光输送的问题而不会降低光强度。基于生物发光系统纳米琥珀嗪的内部光源可以被认为是外部光源的替代方案。该系统可以成功地用于激发蛋白质光敏剂迷你性,并且由于生物发光共振能量转移而导致癌细胞中的光毒性。本文研究了生物发光共振能量转移在生物细胞中纳米型微型 - 富硫嗪系统中的有效性。发现该系统中能量转移的效率与富嗪浓度无关,同时发现纳米微型杂交蛋白的细胞内定位是一个关键因素。

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