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化学激发触发的光敏剂激活用于 Aβ 聚集物的光氧化。

Chemiexcitation-Triggered Photosensitizer Activation for Photooxidation of Aβ Aggregates.

机构信息

MOE International Joint Research Laboratory on Synthetic Biology and Medicines, School of Biology and Biological Engineering, South China University of Technology, Guangzhou 510006, PR China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 14;16(32):41843-41854. doi: 10.1021/acsami.4c06901. Epub 2024 Aug 2.

Abstract

Oxidative degradation of the pathogenic amyloid-β-peptide (Aβ) aggregation is an effective and promising method to treat Alzheimer's disease under light irradiation. However, the limited penetration of external light sources into deep tissues has hindered the development of this treatment. Therefore, we have designed an unprecedented chemiluminescence-initiated photodynamic therapy system to replace external laser irradiation, primarily composed of d-glucose-based polyoxalate (G-poly(oxalate)), the novel photosensitizer (BD-Se-QM), and bis [2,4,5-trichloro-6-(pentoxy-carbonyl) phenyl] ester. BD-Se-QM possesses excellent singlet oxygen (O) generation efficiency and the ability to photooxidize Aβ aggregates under white light. G-poly(oxalate) not only helps the nanosystem to cross the blood-brain barrier but also has sufficient oxalate ester groups to significantly enhance the efficiency of chemiluminescence resonance energy transfer. The oxalate ester groups in BD-Se-QM/NPs can chemically react with HO to produce high-energy intermediates that activate BD-Se-QM, which can generate O to inhibit Aβ aggregates and also promote microglial uptake of Aβ, reducing the Aβ-induced neurotoxicity. The chemically stimulated nanoplatform not only solves the drug delivery problem but also eliminates the need for external light sources. We anticipate that this chemically excited nanosystem could also be used for targeted delivery of other small molecule drugs.

摘要

在光照下氧化降解致病淀粉样β-肽(Aβ)聚集体是治疗阿尔茨海默病的一种有效且有前景的方法。然而,外部光源对深部组织的有限穿透性阻碍了这种治疗方法的发展。因此,我们设计了一种前所未有的化学发光引发光动力治疗系统来替代外部激光照射,该系统主要由基于 D-葡萄糖的聚草酸盐(G-聚(草酸盐))、新型光敏剂(BD-Se-QM)和双[2,4,5-三氯-6-(戊氧基羰基)苯基]酯组成。BD-Se-QM 具有优异的单线态氧(O)生成效率和在白光下光氧化 Aβ 聚集体的能力。G-聚(草酸盐)不仅有助于纳米系统穿越血脑屏障,而且具有足够的草酸盐酯基,可以显著提高化学发光共振能量转移的效率。BD-Se-QM/NPs 中的草酸盐酯基可以与 HO 发生化学反应,产生高能中间体来激活 BD-Se-QM,从而生成 O 来抑制 Aβ 聚集体,并促进小胶质细胞摄取 Aβ,减轻 Aβ 诱导的神经毒性。化学刺激纳米平台不仅解决了药物递送问题,而且无需外部光源。我们预计,这种化学激发的纳米系统也可用于靶向递送其他小分子药物。

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