Synthesis of Nanoflowers using Garcinia gummi-gutta Leaf Extract via Green Route for Enhanced Antifungal and Anti-cancerous Activities

Q4 Agricultural and Biological Sciences
J.T. Kurian, ,. J. K. Sebastian
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引用次数: 0

Abstract

Due to its envisaged relevance in nanomedicine and materials research, the bio-engineering of nanoparticles (NPs) is becoming progressively more promising. Compared to physical and chemical processes, green synthesis produces NPs that are less hazardous to the environment. The usage of phytochemicals in Garcinia gummi-gutta (L.) leaf extract (GGL) in the bio-reduction of GGL-Ag NPs with potential antifungal and anti-cancerous activities was the main focus of the current study. UV-vis spectrophotometry at 442 nm verified the synthesized GGL-Ag NPs. The average diameters of the synthesized GGL-Ag NPs were determined by scanning electron microscopy (SEM and zeta-sizer studies to be 166.69 nm and 148.2 nm, respectively. Energy dispersive X-ray spectroscopy (EDS) and X-ray diffraction (XRD) examinations of the GGL-Ag NPs confirmed the crystalline nature and the elemental constitution of the NPs. Additionally, the synthesized GGL-Ag NPs' FTIR spectra demonstrated the presence of Phyto components acting as capping agents. Zeta potential measurements (-26.2± 4.13 mV) authenticated the stability of the synthesized GGL-Ag NPs. Antimicrobial activity testing of the GGL-Ag NPs demonstrated considerable suppression against Candida tropicalis and Candida albicans at a dose of 100 µg/ml and 60 µg/ml. Additionally, the synthesized GGL-Ag NPs have demonstrated considerable cytotoxic effects on the Hep-G2 cell line. The current study results show that GGL- Ag NPs may be produced at a low cost and with minimal environmental impact for nanobiotechnology and biomedicine usage.
通过绿色途径利用藤黄属植物叶提取物合成纳米花,增强抗真菌和抗癌活性
纳米粒子(NPs)的生物工程在纳米医学和材料研究领域的应用前景越来越广阔。与物理和化学过程相比,绿色合成产生的纳米粒子对环境的危害较小。在生物还原具有潜在抗真菌和抗癌活性的 GGL-Ag NPs 的过程中,如何利用藤黄属植物(Garcinia gummi-gutta(L.))叶提取物(GGL)中的植物化学物质是本研究的重点。442 纳米紫外可见分光光度法验证了合成的 GGL-Ag NPs。经扫描电子显微镜(SEM)和zeta-sizer研究测定,合成的GGL-Ag NPs的平均直径分别为166.69 nm和148.2 nm。GGL-Ag NPs 的能量色散 X 射线光谱(EDS)和 X 射线衍射(XRD)检查证实了 NPs 的结晶性质和元素组成。此外,合成的 GGL-Ag NPs 的傅立叶变换红外光谱显示了作为封端剂的植物成分的存在。Zeta 电位测量值(-26.2± 4.13 mV)证明了合成的 GGL-Ag NPs 的稳定性。GGL-Ag NPs 的抗菌活性测试表明,在 100 微克/毫升和 60 微克/毫升的剂量下,对热带念珠菌和白色念珠菌有相当大的抑制作用。此外,合成的 GGL-Ag NPs 对 Hep-G2 细胞系也有相当大的细胞毒性作用。目前的研究结果表明,GGL-Ag NPs 的生产成本低廉,对环境的影响极小,可用于纳米生物技术和生物医学领域。
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来源期刊
Journal of Tropical Life Science
Journal of Tropical Life Science Environmental Science-Ecology
CiteScore
1.00
自引率
0.00%
发文量
46
审稿时长
12 weeks
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