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精心设计的自指示双药纳米组装体用于特定部位光热增强血栓渗透和溶栓。

Elaborately Engineering a Self-Indicating Dual-Drug Nanoassembly for Site-Specific Photothermal-Potentiated Thrombus Penetration and Thrombolysis.

机构信息

Department of Pharmaceutics, Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang, Liaoning, 110016, P. R. China.

School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, Shenyang, 110016, P. R. China.

出版信息

Adv Sci (Weinh). 2022 Feb;9(4):e2104264. doi: 10.1002/advs.202104264. Epub 2021 Nov 21.

Abstract

Thrombotic cardio-cerebrovascular diseases seriously threaten human health. Currently, conventional thrombolytic treatments are challenged by the low utilization, inferior thrombus penetration, and high off-target bleeding risks of most thrombolytic drugs, resulting in unsatisfactory treatment outcomes. Herein, it is proposed that these challenges can be overcome by precisely integrating the conventional thrombolytic strategy with photothermal therapy. After co-assembly engineering optimization, a fibrin-targeting peptide-decorated nanoassembly of DiR (a photothermal probe) and ticagrelor (TGL, an antiplatelet drug) is prepared for thrombus-homing delivery, abbreviated as FT-DT NPs. The elaborately engineered nanoassembly shows multiple advantages, including simple preparation with high drug co-loading capacity, synchronous delivery of two drugs with long systemic circulation, thrombus-targeted accumulation with self-indicating function, as well as photothermal-potentiated thrombus penetration and thrombolysis with high therapeutic efficacy. As expected, FT-DT NPs not only show bright fluorescence signals in the embolized vessels, but also perform photothermal/antiplatelet synergistic thrombolysis in vivo. This study offers a simple and versatile co-delivery nanoplatform for imaging-guided photothermal/antiplatelet dual-modality thrombolysis.

摘要

血栓性心脑血管疾病严重威胁人类健康。目前,大多数溶栓药物由于利用率低、血栓穿透性差以及高脱靶出血风险等问题,使常规溶栓治疗面临挑战,导致治疗效果并不理想。在此,通过将常规溶栓策略与光热疗法精确结合,提出了克服这些挑战的方法。经过共组装工程优化,制备了一种纤维蛋白靶向肽修饰的 DiR(光热探针)和替格瑞洛(TGL,抗血小板药物)纳米组装体用于血栓归巢递送,简称 FT-DT NPs。精心设计的纳米组装体具有多种优势,包括具有高载药能力的简单制备方法、两种药物的同步长循环递送、具有自指示功能的血栓靶向积累以及光热增强的血栓穿透和溶栓作用,具有很高的治疗效果。正如预期的那样,FT-DT NPs 不仅在栓塞血管中显示出明亮的荧光信号,而且在体内还能进行光热/抗血小板协同溶栓。这项研究为成像引导的光热/抗血小板双重模式溶栓提供了一种简单且通用的联合给药纳米平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fe4/8811805/22ac5481626b/ADVS-9-2104264-g005.jpg

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