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纳米级战士:钒酸锌铬纳米颗粒作为根除水生肠杆菌科细菌和对抗癌症的双重解决方案

Nano-sized warriors: zinc chromium vanadate nanoparticles as a dual solution for eradicating waterborne enterobacteriaceae and fighting cancer.

作者信息

Rehman Suriya, Alahmari Fatimah, Aldossary Laila, Alhout Maryam, Aljameel Suhailah S, Ali Syed Mehmood, Sabir Jamal S M, Khan Firdos Alam, Rather Irfan A

机构信息

Department of Epidemic Diseases Research, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman Bin Faisal University, Dammam, Saudi Arabia.

Department of Nanomedicine Research, Institute for Research and Medical Consultations (IRMC), Imam Abdulrahman Bin Faisal University, Dammam, Saudi Arabia.

出版信息

Front Pharmacol. 2023 Jul 13;14:1213824. doi: 10.3389/fphar.2023.1213824. eCollection 2023.

Abstract

The revolution of biomedical applications has opened new avenues for nanotechnology. Zinc Chromium vanadate nanoparticles (VCrZnO4 NPs) have emerged as an up-and-coming candidate, with their exceptional physical and chemical properties setting them apart. In this study, a one-pot solvothermal method was employed to synthesize VCrZnO4 NPs, followed by a comprehensive structural and morphological analysis using a variety of techniques, including X-Ray diffraction, scanning electron microscopy, high-resolution transmission electron microscopy, Energy-dispersive X-ray, and X-ray photoelectron spectroscopy. These techniques confirmed the crystallinity of the NPs. The VCrZnO4 NPs were tested for their antibacterial activity against primary contaminants such as Enterobacteriaceae, including , , and , commonly found in hospital settings, using the broth dilution technique. The results indicated a stronger antibacterial activity of VCrZnO4 NPs against and than Electron microscopy showed that the NPs caused severe damage to the bacterial cell wall and membrane, leading to cell death. In addition, the study evaluated the anticancer activities of the metal complexes using colorectal cancer cells (HCT-116) and cervical cancer cells (HELA), along with non-cancer cells and human embryonic kidney cells (HEK-293). A vanadium complex demonstrated efficient anticancer effects with half-inhibitory concentrations (IC) of 38.50+3.50 g/mL for HCT-116 cells and 42.25+4.15 g/mL for HELA cells. This study highlights the potential of Zinc Chromium vanadate nanoparticles as promising candidates for antibacterial and anticancer applications. Various advanced characterization techniques were used to analyze the properties of nanomaterials, which may help develop more effective and safer antibacterial and anticancer agents in the future.

摘要

生物医学应用的变革为纳米技术开辟了新途径。钒酸铬锌纳米颗粒(VCrZnO4 NPs)已成为一个崭露头角的候选材料,其卓越的物理和化学性质使其脱颖而出。在本研究中,采用一锅法溶剂热法合成了VCrZnO4 NPs,随后使用多种技术进行了全面的结构和形态分析,包括X射线衍射、扫描电子显微镜、高分辨率透射电子显微镜、能量色散X射线和X射线光电子能谱。这些技术证实了纳米颗粒的结晶性。使用肉汤稀释技术测试了VCrZnO4 NPs对医院环境中常见的主要污染物如肠杆菌科细菌(包括 、 和 )的抗菌活性。结果表明,VCrZnO4 NPs对 和 的抗菌活性强于 。电子显微镜显示,纳米颗粒对细菌细胞壁和细胞膜造成了严重损伤,导致细胞死亡。此外,该研究还评估了金属配合物 对结肠癌细胞(HCT-116)和宫颈癌细胞(HELA)以及非癌细胞和人胚肾细胞(HEK-293)的抗癌活性。一种钒配合物表现出高效的抗癌作用,对HCT-116细胞的半抑制浓度(IC)为38.50+3.50 μg/mL,对HELA细胞为42.25+4.15 μg/mL。本研究突出了钒酸铬锌纳米颗粒作为抗菌和抗癌应用的有前景候选材料的潜力。使用了各种先进的表征技术来分析纳米材料的性质,这可能有助于未来开发更有效、更安全的抗菌和抗癌药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/609b/10373886/89cdd03b34ad/fphar-14-1213824-g001.jpg

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