Department of Chemistry, V. H. N. Senthikumara Nadar College (Autonomous), Virudhunagar, 626 001, Tamil Nadu, India; Department of Environmental Engineering, Kyungpook National University, 80 Daehak-ro, Buk-gu, Daegu, 41566, Republic of Korea.
Department of Chemistry, V. H. N. Senthikumara Nadar College (Autonomous), Virudhunagar, 626 001, Tamil Nadu, India.
Environ Res. 2022 Apr 15;206:112282. doi: 10.1016/j.envres.2021.112282. Epub 2021 Oct 26.
Bioresources are attaining much importance in the discovery of drugs and delivering agents. In particular, marine sponges are of great interest due to their metabolites production for the survival in risky environment. The incorporation of silver nanoparticles with marine sponge derived metabolites was reported for the first time. In this work, a facile material has been generated of great efficacy in solving environmental and health issues, as a recipe of silver and marine sponge Clathria frondifera, named as Ag Fortified Sponge spheres (AFS). AFS spheres were successfully synthesized after method optimization, using the various extracts of marine sponge Clathria frondifera as effective reducing agent in Ag (I) to Ag (0) reduction. Bioactive material from marine sponge and AgNP from the reduction of AgNO solution stablishing one another and thus AFS spheres were attaining long lifetime along with enhanced antimicrobial activity. The characterization of synthesized AFS and other AgNPs (1-4) has done using FT-IR, PXRD, FESEM, TEM, and UV-vis data. The presence of functional groups such as, Ag-O, and Ag-C stretching bonds in the AFS compounds indicated that it is composed of silver oxides and organo-silver, respectively. The synthesized Ag NPs were found to be spherical like structure with an average size of ∼20 nm. The cytotoxic response of AFS was assessed by 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyltetrazolium bromide (MTT) and morphological changes. AFS are exact spherical, micro sized and effective in inhibiting the growth of both gram positive and gram-negative bacteria. Anticancer studies were also carried out and ensued with excellent activity in the HELA cells with potential application in the medical industry.
生物资源在药物发现和输送剂方面的重要性日益增加。特别是,由于其代谢产物的产生,以适应危险环境,海洋海绵引起了极大的兴趣。首次报道了将银纳米粒子与海洋海绵衍生代谢物结合。在这项工作中,生成了一种非常有效的材料,可有效解决环境和健康问题,该材料由银和海洋海绵 Clathria frondifera 组成,命名为 Ag 强化海绵球(AFS)。通过优化方法,使用海洋海绵 Clathria frondifera 的各种提取物作为 Ag(I)到 Ag(0)还原的有效还原剂,成功合成了 AFS 球。海洋海绵的生物活性物质和 AgNP 从 AgNO3 溶液的还原中相互建立,从而使 AFS 球获得长寿命并增强了抗菌活性。通过 FT-IR、PXRD、FESEM、TEM 和 UV-vis 数据对合成的 AFS 和其他 AgNPs(1-4)进行了表征。AFS 化合物中存在 Ag-O 和 Ag-C 伸缩键等官能团,表明它分别由氧化银和有机银组成。合成的 Ag NPs 被发现具有球形结构,平均尺寸约为 20nm。通过 3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐(MTT)和形态变化评估了 AFS 的细胞毒性反应。AFS 是精确的球形,微尺寸的,并且有效抑制革兰氏阳性菌和革兰氏阴性菌的生长。还进行了抗癌研究,并在 HELA 细胞中表现出优异的活性,具有在医疗行业中的潜在应用。