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菝葜生物启发的多功能银纳米颗粒及其增强的生物医学和催化应用。

Bioinspired multifunctional silver nanoparticles by Smilax Chenensis and their enhanced biomedical and catalytic applications.

作者信息

Gaddam Susmila Aparna, Kotakadi Venkata Subbaiah, Allagadda Rajasekar, T Vasavi, Velakanti Siva Gayathri, Samanchi Srilakshmi, Thangellamudi Devaraju, Masarapu Hema, Maheswari P Uma, Ch Appa Rao, Zereffa Enyew Amare

机构信息

Department of Virology, Sri Venkateswara University, Tirupati, Andhra Pradesh, 517502, India.

DST-PURSE Centre, Sri Venkateswara University, Tirupati, Andhra Pradesh, 517502, India.

出版信息

Sci Rep. 2024 Dec 2;14(1):29909. doi: 10.1038/s41598-024-77071-9.

Abstract

Currently, Nano-materials have been explored for their abundant biomedical applications. In the present study the green synthesized (SC-AgNPs) by root extract of Smilax Chenensis have been characterized by UV-visible spectroscopy revealed SPR peak at 432 nm and FT-IR data reveals that the bioactive components of root extract have been actively involved in the reduction and stabilization of SC-AgNPs. TEM and AFM results revealed that SC-AgNPs were roughly spherical in shape. Further, the particle size of SC-AgNPs was also carried out by Dynamic Light Scattering method by aqueous colloidal solution and the results reveals that the SC-AgNPs are poly-dispersed in nature with an average size 45.6 nm with a Z average of 39.5 nm. The stability of colloidal SC-AgNPs was further confirmed by negative zeta potential value of - 21.0 mV. The SC-AgNPs showed good antibacterial activity against both gram -ve and gram + ve bacteria, whereas, SC-AgNPs coupled with antibiotic reveals excellent and enhanced antibacterial activity. The gram -ve E.coli and gram + ve S.aureus revealed highest zone of inhibition when compared to other two bacterial species. So, SC-AgNPs coupled with antibiotics can be excellent alternative to treat antibiotic resistant bacteria. The SC-AgNPs also reveals excellent antioxidant activity among them DPPH method revealed superior activity with an IC value76.22. The SC-AgNPs also reveals superior anticancer activity against MDA-MB-231 with IC value of 33.98 µg/mL and photo-catalytic activity the optical density of reduced from 1.861 to 0.135 OD within 30 min. The green SC-AgNPs detected to have multiple therapeutic applications.

摘要

目前,纳米材料已被探索用于丰富的生物医学应用。在本研究中,通过菝葜根提取物绿色合成的(SC - AgNPs)经紫外可见光谱表征,在432nm处显示表面等离子体共振(SPR)峰,傅里叶变换红外光谱(FT - IR)数据表明根提取物的生物活性成分积极参与了SC - AgNPs的还原和稳定。透射电子显微镜(TEM)和原子力显微镜(AFM)结果表明SC - AgNPs形状大致为球形。此外,通过动态光散射法对水性胶体溶液中的SC - AgNPs粒径进行了测定,结果表明SC - AgNPs在本质上是多分散的,平均粒径为45.6nm,Z平均粒径为39.5nm。胶体SC - AgNPs的稳定性通过 - 21.0mV的负zeta电位值进一步得到证实。SC - AgNPs对革兰氏阴性菌和革兰氏阳性菌均显示出良好的抗菌活性,而与抗生素结合的SC - AgNPs显示出优异且增强的抗菌活性。与其他两种细菌相比,革兰氏阴性大肠杆菌和革兰氏阳性金黄色葡萄球菌显示出最高的抑菌圈。因此,与抗生素结合的SC - AgNPs可以成为治疗抗生素耐药细菌的极佳替代品。SC - AgNPs还显示出优异的抗氧化活性,其中二苯基苦味酰基自由基(DPPH)法显示出卓越的活性,IC值为76.22。SC - AgNPs对MDA - MB - 231也显示出优异的抗癌活性,IC值为33.98μg/mL,并且具有光催化活性,在30分钟内光密度从1.861降低到0.135OD。检测到绿色合成的SC - AgNPs具有多种治疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d32f/11612181/bed1b02821b2/41598_2024_77071_Fig1_HTML.jpg

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