首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Biogenic Nanoparticle‒Chitosan Conjugates with Antimicrobial Antibiofilm and Anticancer Potentialities: Development and Characterization
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Biogenic Nanoparticle‒Chitosan Conjugates with Antimicrobial Antibiofilm and Anticancer Potentialities: Development and Characterization

机译:生物纳米粒子‒壳聚糖具有抗微生物抗生物膜和抗癌的潜力:开发和表征。

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摘要

In the 21st century, with ever-increasing consciousness and social awareness, researchers must tackle the microbial infections that pose a major threat to human safety. For many reasons, the emergence/re-emergence of threatening pathogens has increased and poses a serious challenge to health care services. Considering the changing dynamics of 21st-century materials with medical potentialities, the integration of bioactive agents into materials to engineer antibacterial matrices has received limited attention so far. Thus, antimicrobial active conjugates are considered potential candidates to eradicate infections and reduce microbial contaminations in healthcare facilities. In this context, eco-friendly and novel conjugates with antimicrobial, antibiofilm, and anticancer potentialities were developed using biogenic silver nanoparticles (AgNPs) from Convolvulus arvensis (C. arvensis) extract and chitosan (CHI). A range of instrumental and imaging tools, i.e., UV-Vis and FTIR spectroscopy, scanning electron microscopy (SEM), transmission electron microscopy (TEM), energy-dispersive spectroscopy (EDX), and X-ray diffraction (XRD), were employed to characterize the freshly extracted C. arvensis AgNPs. Biogenic AgNPs obtained after a 24-h reaction period were used to engineer CHI-based conjugates and designated as CHI‒AgNPs1 to CHI‒AgNPs5, subject to the C. arvensis AgNPs concentration. After the stipulated loading period, 92% loading efficiency (LE) was recorded for a CHI‒AgNPs3 conjugate. Gram+ and Gram- bacterial isolates, i.e., Staphylococcus aureus, and Escherichia coli, were used to test the antibacterial activities of newly developed CHI‒AgNPs conjugates. In comparison to the control sample with bacterial cell count 1.5 × 108 CFU/mL, a notable reduction in the log values was recorded for the CHI‒AgNPs3 conjugate. The antibiofilm potential of CHI‒AgNPs conjugates was tested against Pseudomonas aeruginosa. Moreover, the CHI‒AgNPs3 conjugate also showed substantial cytotoxicity against the MCF-7 (breast cancer) cell line. In summary, the newly engineered CHI‒AgNPs conjugates with antibacterial, antibiofilm, and anticancer potentialities are potential candidate materials for biomedical applications.
机译:在21世纪,随着意识和社会意识的不断提高,研究人员必须应对对人类安全构成重大威胁的微生物感染。由于许多原因,威胁性病原体的出现/再出现增加了,并且对卫生保健服务构成了严峻的挑战。考虑到具有医学潜力的21世纪材料的变化动态,到目前为止,将生物活性剂整合到工程材料中以制造抗菌基质受到的关注有限。因此,抗菌活性缀合物被认为是根除感染并减少医疗机构中微生物污染的潜在候选物。在这种情况下,使用来自空心菜空心菜(C. arvensis)提取物和壳聚糖(CHI)的生物银纳米颗粒(AgNPs),开发了具有抗菌,生物膜和抗癌潜力的生态友好型新型偶联物。使用了一系列仪器和成像工具,例如UV-Vis和FTIR光谱,扫描电子显微镜(SEM),透射电子显微镜(TEM),能量色散光谱(EDX)和X射线衍射(XRD)来表征新鲜提取的猪笼草AgNPs。经过24小时反应后获得的生物AgNPs被用于工程化基于CHI的结合物,并被命名为CHI‒AgNPs1至CHI‒AgNPs5,这取决于弓形虫AgNPs的浓度。在规定的加载时间后,CHI‒AgNPs3偶联物的加载效率(LE)记录为92%。使用革兰氏+和革兰氏细菌分离株(即金黄色葡萄球菌和大肠杆菌)测试新开发的CHI‒AgNPs共轭物的抗菌活性。与细菌细胞计数为1.5×10 8 CFU / mL的对照样品相比,CHI‒AgNPs3缀合物的对数值显着下降。对铜绿假单胞菌测试了CHI antiAgNPs结合物的抗生物膜潜力。此外,CHI‒AgNPs3偶联物还显示出对MCF-7(乳腺癌)细胞系的实质性细胞毒性。总之,新设计的具有抗菌,抗生物膜和抗癌潜力的CHI‒AgNPs共轭物是生物医学应用的潜在候选材料。

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