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基于植物的 ZnO 纳米粒子在抗癌、光抗菌方面对耐碳青霉烯/敏感铜绿假单胞菌的作用及对四环素的去除。

Phyto-fabricated ZnO nanoparticles for anticancer, photo-antimicrobial effect on carbapenem-resistant/sensitive Pseudomonas aeruginosa and removal of tetracycline.

机构信息

Universiti Malaya Centre for Proteomics Research, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.

Department of Biochemistry, Saveetha Dental College, Saveetha Institute of Medical @ Technical Sciences, Saveetha University, Chennai, 600 077, India.

出版信息

Bioprocess Biosyst Eng. 2024 Aug;47(8):1163-1182. doi: 10.1007/s00449-024-02984-8. Epub 2024 Mar 16.

Abstract

Alternanthera sessilis (AS) leaf extract was used to synthesize zinc oxide nanoparticles (ZnO NPs). Bioanalytical characterization techniques such as X-ray diffraction (XRD) and field emission scanning electron microscope (FESEM) confirmed the formation of crystalline ZnO NPs with average sizes of 40 nm. The AS-ZnO NPs antimicrobial activity was analyzed under dark (D) and white light (WL) conditions. The improved antimicrobial activity was observed against Escherichia coli, Staphylococcus aureus and Bacillus subtilis at the minimal inhibitory concentration (MIC) of 125 and 62.5 µg/mL under WL than the D at 125 and 250 µg/mL for E. coli, B. subtilis, and Pseudomonas aeruginosa, respectively. In contrast, the growth of P. aeruginosa and S. aureus was not completely inhibited until 1 mg/mL AS-ZnO NPs under WL and D. Similarly, AS-ZnO NPs displayed a weaker inhibitory effect against carbapenem-sensitive P. aeruginosa (CSPA) and carbapenem-resistant P. aeruginosa (CRPA) strains of PAC023, PAC041 and PAC032, PAC045 under D. Interestingly, the distinct inhibitory effect was recorded against CSPA PAC041 and CRPA PAC032 in which the bacteria growth was inhibited 99.9% at 250, 500 µg/mL under WL. The cytotoxicity results suggested AS-ZnO NPs demonstrated higher toxicity to MCF-7 breast cancer cells than the RAW264.7 macrophage cells. Further, AS-ZnO NPs exhibited higher catalytic potential against tetracycline hydrochloride (TC-H) degradation at 65.6% and 60.8% under WL than the dark at 59.35% and 48.6% within 120 min. Therefore, AS-ZnO NPs can be used to design a photo-improved antimicrobial formulation and environmental catalyst for removing TC-H from wastewater.

摘要

水蓑衣叶片提取物被用于合成氧化锌纳米粒子(ZnO NPs)。生物分析鉴定技术,如 X 射线衍射(XRD)和场发射扫描电子显微镜(FESEM),证实了平均粒径为 40nm 的结晶 ZnO NPs 的形成。在黑暗(D)和白光(WL)条件下,分析了水蓑衣-ZnO NPs 的抗菌活性。与黑暗条件下的最小抑菌浓度(MIC)125 和 250μg/mL 相比,在 WL 条件下,AS-ZnO NPs 对大肠杆菌、金黄色葡萄球菌和枯草芽孢杆菌的抗菌活性得到了提高,MIC 分别为 125 和 62.5μg/mL。相比之下,只有在 WL 和 D 条件下,AS-ZnO NPs 的浓度达到 1mg/mL 时,才能完全抑制铜绿假单胞菌和金黄色葡萄球菌的生长。同样,在 D 条件下,AS-ZnO NPs 对 PAC023、PAC041 和 PAC032、PAC045 中的碳青霉烯敏感型铜绿假单胞菌(CSPA)和碳青霉烯耐药型铜绿假单胞菌(CRPA)菌株的抑制作用较弱。有趣的是,在 WL 条件下,AS-ZnO NPs 对 CSPA PAC041 和 CRPA PAC032 菌株的抑制效果明显,在 250 和 500μg/mL 时,细菌生长抑制率达到 99.9%。细胞毒性结果表明,与 RAW264.7 巨噬细胞相比,AS-ZnO NPs 对 MCF-7 乳腺癌细胞的毒性更高。此外,在 WL 条件下,AS-ZnO NPs 对盐酸四环素(TC-H)的降解表现出更高的催化潜力,在 120min 内分别达到 65.6%和 60.8%,而在黑暗条件下分别为 59.35%和 48.6%。因此,AS-ZnO NPs 可用于设计光增强型抗菌制剂和环境催化剂,以从废水中去除 TC-H。

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