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锰基普鲁士蓝类似物:用于过氧化氢检测和肿瘤光热治疗的多功能纳米酶

Mn-based Prussian blue analogues: Multifunctional nanozymes for hydrogen peroxide detection and photothermal therapy of tumors.

作者信息

Liu Jingjing, Zhang Xiaojun, Zhang Yuan, Zhao Bo, Liu Zhelin, Dong Xiangting, Feng Shouhua, Du Yan

机构信息

School of Chemistry and Environmental Engineering, Changchun University of Science and Technology, Changchun, Jilin, 130022, PR China.

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin, 130022, PR China.

出版信息

Talanta. 2024 Sep 1;277:126320. doi: 10.1016/j.talanta.2024.126320. Epub 2024 Jun 1.

Abstract

Nanozymes have the advantages of simple synthesis, high stability, low cost and easy recycling, and can be applied in many fields including molecular detection, disease diagnosis and cancer therapy. However, most of the current nanozymes suffer from the defects of low catalytic activity and single function, which limits their sensing sensitivity and multifunctional applications. The development of highly active and multifunctional nanozymes is an important way to realize multidisciplinary applications. In this work, Mn-based Prussian blue analogues (Mn-PBA) and their derived double-shelled nanoboxes (DSNBs) are synthesized by co-precipitation method. The nanobox structure of DSNBs formed by etching Mn-PBA with tannic acid endows Mn-PBA DSNBs with better peroxidase-like activity than Mn-PBA. A colorimetric method for the rapid and sensitive determination of HO is developed using Mn-PBA DSNBs-1.5 as a sensor with a detection limit as low as 0.62 μM. Moreover, Mn-PBA DSNBs-2 has excellent photothermal conversion ability, which can be applied to the photothermal therapy of tumors to inhibit the proliferation of tumor cells without damaging other tissues and organs. This study provides a new idea for the rational design of nanozymes and the expansion of their multi-functional applications in various fields.

摘要

纳米酶具有合成简单、稳定性高、成本低和易于回收等优点,可应用于分子检测、疾病诊断和癌症治疗等许多领域。然而,目前大多数纳米酶存在催化活性低和功能单一的缺陷,这限制了它们的传感灵敏度和多功能应用。开发高活性和多功能纳米酶是实现多学科应用的重要途径。在这项工作中,通过共沉淀法合成了锰基普鲁士蓝类似物(Mn-PBA)及其衍生的双壳纳米盒(DSNBs)。用单宁酸蚀刻Mn-PBA形成的DSNBs的纳米盒结构赋予Mn-PBA DSNBs比Mn-PBA更好的过氧化物酶样活性。以Mn-PBA DSNBs-1.5为传感器,建立了一种快速灵敏测定HO的比色法,检测限低至0.62 μM。此外,Mn-PBA DSNBs-2具有优异的光热转换能力,可应用于肿瘤的光热治疗,抑制肿瘤细胞增殖而不损伤其他组织和器官。该研究为合理设计纳米酶及其在各个领域的多功能应用拓展提供了新思路。

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