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具有光致变色性能的氧化锌/碳材料嵌入超分子药物递送系统,用于高选择性和有效的化学疗法。

Zinc Oxide/Carbon Material-Embedded Supramolecular Drug Delivery System with Photoswitching Properties for Highly Selective and Effective Chemotherapy.

机构信息

Department of Natural Science, Faculty of Mathematics and Natural Science, Universitas Negeri Surabaya, Surabaya 60231, Indonesia.

Department of Physics, Faculty of Mathematics and Natural Science, Universitas Negeri Surabaya, Surabaya 60231, Indonesia.

出版信息

ACS Appl Bio Mater. 2024 Aug 19;7(8):5506-5518. doi: 10.1021/acsabm.4c00638. Epub 2024 Jul 9.

DOI:10.1021/acsabm.4c00638
PMID:38979905
Abstract

Phototherapy has become a hopeful procedure for the treatment of cancer. Nevertheless, the straightforward creation of a theranostic system that can achieve both tumor localization and production of oxygen species is greatly desired yet remains a challenging endeavor. In this study, we synthesized spherical nanostructures by decorating zinc oxide (ZnO) with peanut shell-based carbon (PNS-C) in an aqueous solution. The PNS-C-decorated ZnO (ZnO/PNS-C)-embedded supramolecular system exhibited spontaneous self-assembly. The nanogels that are produced have several desirable characteristics, including exceptional resistance to degradation by light, highly stable nanostructures that form spontaneously in biological environments, outstanding ability to prevent the destruction of red blood cells, and a high level of sensitivity to changes in pH and light. Under light irradiation, the addition of ZnO/PNS-C-incorporated supramolecular provided high reactive oxygen species production. Moreover, in vitro cellular assays demonstrated ZnO/PNS-C-incorporated supramolecular exhibited highly selective and induced phototoxicity into cancer cells and no effect on the viability of normal cells both before and after irradiation. Overall, the ZnO/PNS-C-incorporated supramolecular system has the potential to stimulate advancements in phototherapy by utilizing highly tumor-selective therapeutic molecules. This can lead to a more effective targeted therapy for cancers.

摘要

光疗已成为癌症治疗的一种有前途的方法。然而,人们非常希望能够直接创建一种既能实现肿瘤定位又能产生氧物种的治疗诊断系统,但这仍然是一项具有挑战性的工作。在这项研究中,我们在水溶液中用花生壳基碳 (PNS-C) 修饰氧化锌 (ZnO) 来合成球形纳米结构。PNS-C 修饰的 ZnO(ZnO/PNS-C)嵌入的超分子系统表现出自发的自组装。所产生的纳米凝胶具有几个理想的特性,包括对光降解的极高抗性、在生物环境中自发形成的高度稳定的纳米结构、出色的防止红细胞破坏的能力以及对 pH 值和光变化的高灵敏度。在光照射下,添加包含 ZnO/PNS-C 的超分子提供了高的活性氧物质生成。此外,体外细胞试验表明,包含 ZnO/PNS-C 的超分子对癌细胞具有高度选择性和诱导光毒性,并且在照射前后对正常细胞的活力均没有影响。总的来说,包含 ZnO/PNS-C 的超分子系统有可能通过利用高度肿瘤选择性的治疗分子来刺激光疗的进展。这可以为癌症提供更有效的靶向治疗。

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