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近红外光响应性TiC MXenes介导可控的水相降解及高效光热转换用于靶向癌症光疗

NIR Light-Responsive TiC MXenes Mediate Controlled Aqueous Degradation and Highly Efficient Photothermal Conversion for Targeted Cancer Phototherapy.

作者信息

Kumar Rahul, Nag Imankalyan, Mallick Subhrajyoti, Vankayala Raviraj

机构信息

Department of Bioscience and Bioengineering, Indian Institute of Technology, Jodhpur, Rajasthan 342030, India.

Interdisciplinary Research Division Smart Healthcare, Indian Institute of Technology, Jodhpur, Rajasthan 342030, India.

出版信息

ACS Appl Bio Mater. 2025 Jul 21;8(7):5998-6012. doi: 10.1021/acsabm.5c00616. Epub 2025 Jun 16.

Abstract

Many cancer types are typically diagnosed in advanced stages and tend to have low survival rates. There are numerous varieties of nanomedicine platforms developed to tackle them. Among them, two-dimensional TiC MXene nanosheets (NSs) have emerged as a versatile platform, owing to their high surface area enriched with various functional groups, near-infrared (NIR) responsiveness, and superior photothermal characteristics. However, they have poor aqueous stabilities and are prone to degradation, which can severely limit their utility in biomedical applications. This leaves a grand challenge to explore TiC MXene NS-based platforms for biomedical applications. Herein, we report the first demonstration of a NIR light-responsive TiC MXene NS-based platform with highly efficient photothermal conversion and controlled degradation in aqueous environments. Additionally, it enables targeted photothermal therapy (PTT) and photodynamic therapy (PDT) to address progressive cancers. The nanoplatform integrates folic acid (A) moieties, the FDA-approved NIR photosensitizing drug indocyanine green (CG), curcumin (ur), and iC MXene NSs (FICT NSs). Upon NIR light activation, the FICT nanoplatform is capable of producing both heat and singlet oxygen (O) along with the release of the Cur drug to mediate the targeted phototherapy of cancers via inhibiting profound cancer cell migration. Such FICT nanoplatforms also exhibited controlled aqueous degradability, which can greatly enhance their drug release and biocompatibility while minimizing the toxicity. Further, the FICT nanoplatform has demonstrated the targeted photothermal and photodynamic therapeutic capabilities in both in vitro 2D cellular and 3D spheroid models. We foresee that this innovative nanoplatform has considerable potential for future clinical applications.

摘要

许多癌症类型通常在晚期才被诊断出来,生存率往往较低。为应对这些癌症,人们开发了众多纳米医学平台。其中,二维TiC MXene纳米片(NSs)因其具有富含各种官能团的高表面积、近红外(NIR)响应性和优异的光热特性,已成为一种多功能平台。然而,它们在水中的稳定性较差,容易降解,这可能严重限制其在生物医学应用中的效用。这给探索基于TiC MXene NS的生物医学应用平台带来了巨大挑战。在此,我们首次展示了一种基于NIR光响应的TiC MXene NS平台,该平台在水环境中具有高效的光热转换和可控降解性能。此外,它还能实现靶向光热疗法(PTT)和光动力疗法(PDT),以治疗进展期癌症。该纳米平台整合了叶酸(A)部分、美国食品药品监督管理局(FDA)批准的NIR光敏药物吲哚菁绿(CG)、姜黄素(ur)和iC MXene NSs(FICT NSs)。在NIR光激活后,FICT纳米平台能够产生热量和单线态氧(O),同时释放Cur药物,通过抑制癌细胞的深度迁移来介导癌症的靶向光疗。这种FICT纳米平台还表现出可控的水相降解性,这可以大大提高其药物释放和生物相容性,同时将毒性降至最低。此外,FICT纳米平台在体外二维细胞和三维球体模型中均展示了靶向光热和光动力治疗能力。我们预计,这种创新的纳米平台在未来临床应用中具有巨大潜力。

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