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具有pH响应和光动力治疗特性的Cur@ZIF-8@BA纳米材料可促进抗菌活性。

Cur@ZIF-8@BA nanomaterials with pH-responsive and photodynamic therapy properties promotes antimicrobial activity.

作者信息

Shang Xiujuan, Wang Hongdong, Yu Yongbo, Gu Jin, Zeng Jian, Hou Sinan

机构信息

Department of Laboratory Medicine, Lianyungang Affiliated Hospital of Nanjing University of Chinese Medicine, Lianyungang, Jiangsu, China.

Lianyungang Maternal and Child Health Hospital, Lianyungang, Jiangsu, China.

出版信息

Front Chem. 2024 Jun 24;12:1417715. doi: 10.3389/fchem.2024.1417715. eCollection 2024.

Abstract

Antimicrobial photodynamic therapy (aPDT) has emerged as a highly promising strategy for non-antibiotic treatment of infections due to its unique advantages in efficient bactericidal action and reduction of drug resistance. The natural photosensitizing properties of curcumin (Cur) are widely acknowledged; however, its limited bioavailability has impeded its practical application. In this study, we developed a nanomaterial called Cur@ZIF-8@BA by encapsulating Cur within ZIF-8 and modifying the surface with boric acid (BA). The Cur@ZIF-8@BA exhibits pH-responsive properties and enhances bacterial binding, thereby effectively promoting photodynamic therapy. Moreover, its antibacterial activity against , and is significantly increased in the presence of light compared to a dark environment. The mechanism behind this may be that BA increases the affinity of Cur@ZIF-8@BA towards bacteria, and making released Zn and BA from the nanomaterial increase bacterial cell membrane permeability. This facilitates efficient delivery of Cur into bacterial cells, resulting in generation of abundant reactive oxygen species (ROS) and subsequent bactericidal activity. In conclusion, our prepared Cur@ZIF-8@BA holds great promise as a photodynamically mediated antimicrobial strategy.

摘要

抗菌光动力疗法(aPDT)因其在高效杀菌作用和降低耐药性方面的独特优势,已成为一种极具前景的非抗生素感染治疗策略。姜黄素(Cur)的天然光敏特性已得到广泛认可;然而,其有限的生物利用度阻碍了其实际应用。在本研究中,我们通过将Cur包裹在ZIF-8中并用硼酸(BA)修饰表面,开发了一种名为Cur@ZIF-8@BA的纳米材料。Cur@ZIF-8@BA具有pH响应特性并增强细菌结合能力,从而有效促进光动力疗法。此外,与黑暗环境相比,在光照条件下其对[具体细菌名称]、[具体细菌名称]和[具体细菌名称]的抗菌活性显著增强。其背后的机制可能是BA增加了Cur@ZIF-8@BA对细菌的亲和力,并且纳米材料释放的锌和BA增加了细菌细胞膜的通透性。这有助于将Cur高效递送至细菌细胞内,从而产生大量活性氧(ROS)并随后发挥杀菌活性。总之,我们制备的Cur@ZIF-8@BA作为一种光动力介导的抗菌策略具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/554f/11228171/a09e2d997906/fchem-12-1417715-g001.jpg

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