精细可调NIR-II有机支架用于荧光/光声双成像引导胶质母细胞瘤的无创光热治疗

IF 13.9 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yufei Song, Xingyu Tong, Yujie Han, Qi-Wei Zhang
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引用次数: 0

摘要

具有NIR-II和光声双成像能力的有机制剂,加上高效的光热转换,为胶质母细胞瘤的无创和精确光疗提供了巨大的潜力,当这些制剂同时具有肿瘤靶向性和血脑屏障(BBB)渗透性时,这一潜力进一步增强。本研究报道了一系列基于aza-BODIPY支架的精细可调NIR-II分子发光团,具有独特的扭曲和可旋转结构。它们被进一步构建成叶酸修饰的聚合物纳米颗粒,表现出显著的NIR-II/光声成像性能和优异的光热转换效率(49.7%)。叶酸修饰可以通过受体介导的胞吞噬作用实现肿瘤靶向和血脑屏障通透性,允许在单次静脉注射和照射后对4T1 /胶质母细胞瘤小鼠进行精确和有效的光疗。本研究提出了一种合理的分子工程方法和一种通用的结构支架,用于设计具有定制光物理特性和理想光疗效果的NIR-II发射体,从而为先进深度成像探针和脑肿瘤治疗的发展提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Finely tunable NIR-II organic scaffolds for fluorescence/photoacoustic duplex imaging–guided noninvasive photothermal therapy of glioblastoma

Finely tunable NIR-II organic scaffolds for fluorescence/photoacoustic duplex imaging–guided noninvasive photothermal therapy of glioblastoma

Organic agents possessing NIR-II and photoacoustic duplex imaging capabilities, coupled with high-efficiency photothermal conversion, offer significant potential for noninvasive and precise phototheranostics of glioblastoma, which is further augmented when these agents can concurrently exhibit tumor targeting and blood–brain barrier (BBB) permeability. This study reports a series of finely tunable NIR-II molecular luminophores based on the aza-BODIPY scaffold, featuring unique twisted and rotatable structures. They are further constructed to folate-decorated polymeric nanoparticles, exhibiting remarkable NIR-II/photoacoustic imaging performance and superior photothermal conversion efficiency (49.7%). Folate modification enables tumor targeting and BBB permeability through receptor-mediated transcytosis, allowing for precise and efficient phototherapy in 4T1-/glioblastoma-bearing mice after a single intravenous injection and irradiation. This study presents a rational molecular engineering approach and a versatile structural scaffold for designing NIR-II emitters with tailored photophysical properties and desirable phototherapeutic efficacy, thereby offering novel perspectives on the development of advanced depth imaging probes and brain tumor therapeutics.

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CiteScore
17.40
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