Molecular Immunology Laboratory, Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh, India.
Division of Endocrinology, CSIR-Central Drug Research Institute, Lucknow, India.
J Cell Physiol. 2019 May;234(5):6951-6964. doi: 10.1002/jcp.27438. Epub 2018 Nov 15.
In the recent past, various groups have proposed diverse biocompatible methods for the synthesis of metal nanoparticles (NPs). Besides culture biomass, culture supernatants (CS) are increasingly being explored for the synthesis of NPs; however, with the ever-increasing exploration of various CS in the biofabrication of NPs, it is equally important to explore the potential of various culture media (CMs) in the synthesis of metal NPs. Considering these aspects, in the present investigation, we explore the possible applicability of various CMs in the biofabrication of metal NPs. The synthesis of NPs was primarily followed by UV/VIS spectroscopy, and, thereafter, the NPs were characterized by various physiochemical techniques, including EM, EDX, FT_IR, X-ray diffraction, and DLS measurements, and finally, their anticancer potentialities were investigated against breast cancer. In addition, the NPs were examined in conjunction with artemisinin for therapeutic benefits against aggressive and highly metastatic MDA-MB-231 breast cancer cells. Cumulatively, the results of the present study collated the potentials of various bacterial CMs in the biofabrication of metal NPs and ascertained the efficacy of the as-synthesized silver nanoparticles, especially the combinatorial entity as intriguing breast cancer therapeutics. The data of the present study plausibly assist in advancing the therapeutic applicability of the combinatorial amalgam against aggressive and highly metastatic MDA-MB-231 breast cancer cells.
在最近的过去,不同的研究小组提出了各种生物相容性的方法来合成金属纳米粒子(NPs)。除了培养生物质,培养上清液(CS)也越来越多地被用于合成 NPs;然而,随着对各种 CS 在 NPs 生物制造中的探索不断增加,探索各种培养基(CMs)在金属 NPs 合成中的潜力同样重要。考虑到这些方面,在本研究中,我们探索了各种 CMs 在金属 NPs 生物制造中的可能适用性。首先通过紫外/可见分光光度计跟踪 NPs 的合成,然后通过各种物理化学技术对 NPs 进行表征,包括 EM、EDX、FT_IR、X 射线衍射和 DLS 测量,最后研究它们对乳腺癌的抗癌潜力。此外,还研究了 NPs 与青蒿素联合治疗侵袭性和高转移性 MDA-MB-231 乳腺癌细胞的治疗效果。总之,本研究的结果综合了各种细菌 CMs 在金属 NPs 生物制造中的潜力,并确定了所合成的银纳米粒子的功效,特别是组合实体作为一种有前途的乳腺癌治疗方法。本研究的数据可能有助于推进组合实体在治疗侵袭性和高转移性 MDA-MB-231 乳腺癌细胞中的应用。