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多功能双光子聚集诱导发光材料用于高度线粒体特异性生物成像和高效光动力治疗。

Multifunctional Two-Photon AIE Luminogens for Highly Mitochondria-Specific Bioimaging and Efficient Photodynamic Therapy.

机构信息

National Engineering Research Center for Biomaterials , Sichuan University , 29 Wangjiang Road , Chengdu 610064 , China.

Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Institute for Advanced Study, Department of Chemical and Biological Engineering and Division of Life Science , The Hong Kong University of Science and Technology (HKUST) , Clear Water Bay , Kowloon , Hong Kong , China.

出版信息

ACS Appl Mater Interfaces. 2019 Jun 12;11(23):20715-20724. doi: 10.1021/acsami.9b04813. Epub 2019 May 30.

Abstract

In recent years, photodynamic therapy (PDT) has drawn much attention as a noninvasive and safe cancer therapy method due to its fine controllability, good selectivity, low systemic toxicity, and minimal drug resistance in contrast to the conventional methods (for example, chemotherapy, radiotherapy, and surgery). However, some drawbacks still remain for the current organic photosensitizers such as low singlet oxygen (O) quantum yield, poor photostability, inability of absorption in the near-infrared (NIR) region, short excitation wavelength, and limited action radius of singlet oxygen, which will strongly limit the PDT treatment efficiency. As a consequence, the development of efficient photosensitizers with high singlet oxygen quantum yield, strong fluorescent emission in the aggregated state, excellent photostability, NIR excitation wavelength ranging in the biological transparency window, and highly specific targeting to mitochondria is still in great demand for the enhancement of PDT treatment efficiency. In this study, two new two-photon AIEgens TPPM and TTPM based on a rigid D-π-A skeleton have been designed and synthesized. Both AIEgens TPPM and TTPM show strong aggregation-induced emission (AIE) with the emission enhancement up to 290-folds, large two-photon absorption with the two-photon absorption cross section up to 477 MG, and highly specific targeting to mitochondria in living cells with good biocompatibility. They can serve as two-photon bioprobes for the cell and deep tissue bioimaging with a penetration depth up to 150 μm. Furthermore, high O generation efficiency with high O quantum yield under white light irradiation has been found for both TPPM and TTPM and high PDT efficiency to HeLa cells under white light irradiation has also been proven. To the best of our knowledge, AIEgens in this work constitute one of the strongest emission enhancements and one of the highest O generation efficiencies in the reported organic AIEgens so far. The great AIE feature, large two-photon absorption, high specificity to mitochondria in living cells, and high PDT efficiency to living cells as well as excellent photostability and biocompatibility of these novel AIEgens TPPM and TTPM reveal great potential in clinical applications of two-photon cell and tissue bioimaging and image-guided and mitochondria-targeted photodynamic cancer therapy.

摘要

近年来,光动力疗法(PDT)作为一种非侵入性和安全的癌症治疗方法引起了广泛关注,因为与传统方法(例如化疗、放疗和手术)相比,它具有精细可控性、良好的选择性、低系统毒性和最小的药物耐药性。然而,目前的有机光敏剂仍然存在一些缺点,例如单线态氧(O)量子产率低、光稳定性差、不能在近红外(NIR)区域吸收、激发波长短、单线态氧的作用半径有限,这将强烈限制 PDT 治疗效率。因此,开发具有高效单线态氧量子产率、聚集状态下强荧光发射、优异的光稳定性、近红外激发波长在生物透明窗口范围内、以及对线粒体高度特异性靶向的高效光敏剂仍然是提高 PDT 治疗效率的迫切需要。在本研究中,设计并合成了基于刚性 D-π-A 骨架的两种新的双光子 AIEgen TPPM 和 TTPM。两种 AIEgen TPPM 和 TTPM 均表现出强烈的聚集诱导发射(AIE),发射增强高达 290 倍,双光子吸收截面高达 477 MG,对活细胞中的线粒体具有高度特异性靶向性和良好的生物相容性。它们可以作为双光子生物探针,用于细胞和深层组织的生物成像,穿透深度可达 150 μm。此外,在白光照射下,发现 TPPM 和 TTPM 均具有高光生成效率和高 O 量子产率,在白光照射下对 HeLa 细胞也具有高 PDT 效率。据我们所知,迄今为止,在报道的有机 AIEgen 中,TPPM 和 TTPM 的发射增强强度最大,O 生成效率最高。这些新型 AIEgen TPPM 和 TTPM 的 AIE 特性强、双光子吸收大、对活细胞中线粒体的特异性高、对活细胞的 PDT 效率高、光稳定性好、生物相容性好,在双光子细胞和组织生物成像以及图像引导和线粒体靶向光动力癌症治疗的临床应用中具有巨大的潜力。

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