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巯基化透明质酸和过氧化氢酶增强的靶向CD44和自供氧纳米平台对缺氧乳腺癌细胞具有光热/光动力效应。

Thiolated hyaluronic acid and catalase-enhanced CD44-targeting and oxygen self-supplying nanoplatforms with photothermal/photodynamic effects against hypoxic breast cancer cells.

作者信息

Wang Xin-Yu, Lin Chi, Chang Wong-Jin, Huang Yen-Hua, Mi Fwu-Long

机构信息

Graduate Institute of Medical Sciences, College of Medicine, Taipei Medical University, Taipei City 11031, Taiwan.

Department of Biochemistry and Molecular Cell Biology, School of Medicine, College of Medicine, Taipei Medical University, Taipei City 11031, Taiwan.

出版信息

Int J Biol Macromol. 2022 Nov 30;221:121-134. doi: 10.1016/j.ijbiomac.2022.08.164. Epub 2022 Aug 29.

Abstract

Photothermal and photodynamic therapies (PTT/PDT) have been widely accepted as noninvasive therapeutic methods for cancer treatment. However, tumor hypoxia and insufficient delivery of photoactive compounds to cancer cells can reduce the efficacy of phototherapy. Herein, we first synthesized thiolated hyaluronic acid (THA) and then conjugated it with catalase (CAT) onto chlorin e6 (Ce6)-adsorbed small gold nanorods (Ce6@sAuNRs) with near-infrared (NIR)/visible light activated photothermal/photodynamic effects. The conjugation of THA and CAT on Ce6@sAuNRs resulted in a red-shift of the longitudinal LSPR absorption band of sAuNRs up to 1000 nm and maintained the excellent enzymatic activity of catalase. Modification of Ce6@sAuNRs with THA resulted in efficient internalization of the nanocomposite into MCF-7/ADR multidrug-resistant (MDR) breast cancer cells (CD44+), thereby significantly enhancing the intracellular accumulation of the photosensitizer Ce6. CAT endows Ce6@sAuNRs with self-supporting oxygen production, which enables them to efficiently generate singlet oxygen (O) under 660 nm laser irradiation and enhances the photodynamic effect against hypoxic breast cancer cells. The results highlight the prospect of this novel multi-functional nanoplatform integrating active biological macromolecules (THA and CAT) into photosensitizer/photothermal gold nanocomposites in overcoming the limitations of hypoxic MDR breast cancer cell treatment.

摘要

光热疗法和光动力疗法(PTT/PDT)已被广泛认可为癌症治疗的非侵入性治疗方法。然而,肿瘤缺氧以及光活性化合物向癌细胞的递送不足会降低光疗的疗效。在此,我们首先合成了巯基化透明质酸(THA),然后将其与过氧化氢酶(CAT)共轭到吸附有二氢卟吩e6(Ce6)的小金纳米棒(Ce6@sAuNRs)上,使其具有近红外(NIR)/可见光激活的光热/光动力效应。THA和CAT在Ce6@sAuNRs上的共轭导致sAuNRs的纵向LSPR吸收带红移至1000 nm,并保持了过氧化氢酶的优异酶活性。用THA修饰Ce6@sAuNRs导致纳米复合材料有效地内化到MCF-7/ADR多药耐药(MDR)乳腺癌细胞(CD44+)中,从而显著增强了光敏剂Ce6在细胞内的积累。CAT赋予Ce6@sAuNRs自支持产氧能力,使其能够在660 nm激光照射下有效地产生单线态氧(O),并增强对缺氧乳腺癌细胞的光动力效应。结果突出了这种将活性生物大分子(THA和CAT)整合到光敏剂/光热金纳米复合材料中的新型多功能纳米平台在克服缺氧MDR乳腺癌细胞治疗局限性方面的前景。

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