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藻蓝蛋白预载银纳米复合物:红细胞应激适应机制研究。

c-Phycocyanin primed silver nano conjugates: Studies on red blood cell stress resilience mechanism.

机构信息

Department of Applied Physiology, School of Medicine, University of Miyazaki, Miyazaki, 889 1692, Japan.

Department of Applied Physiology, School of Medicine, University of Miyazaki, Miyazaki, 889 1692, Japan.

出版信息

Colloids Surf B Biointerfaces. 2020 Oct;194:111211. doi: 10.1016/j.colsurfb.2020.111211. Epub 2020 Jun 25.

Abstract

Green synthesis of metal-encased nutraceutical nano-hybrids has been a target for research over the last few years. In the present investigation, we have reported temperature dependent facile synthesis of silver nanoparticles using FDA approved c phycocyanin (cPC). The cPC conjugated silver nanoparticles (AgcPCNPs) were characterized by TEM, Zeta Potential, UV-vis, XPS, FTIR, and CD Spectroscopy. The temperature optimization studies suggested the synthesis of stable AgcPCNPs at 40 °C while at higher temperature system shows aggregated appearance. Molecular docking studies predicted the exclusive interaction of C, D, I, and J chains of cPC with the surface of AgNPs. Moreover, AgcPCNPs significantly (p < 0.1 %) counteract the toxic nature of AgNPs on red blood cell by measuring parameters like total RBC count, % hemolysis, % hematocrit, coagulation time, pH, electrolyte concentrations and degree of blood cell lipid peroxidation by the anti-oxidation mechanism. Skin fibroblast in vitro cell migration result suggeststhat AgcPCNPs enhanced the degree of cell movement towards the wound area. Data obtained collectively demonstrate that AgcPCNPs can be a better agent in the dermal wound healing with reduced toxicity with the bi-phasic advantage of cPC as a wound healer and Ag nano-metal as an anti-bacterial agent.

摘要

近年来,金属包裹的营养纳米杂化物的绿色合成一直是研究的目标。在本研究中,我们报道了使用 FDA 批准的藻蓝蛋白(cPC),在温度依赖性条件下,简便地合成了银纳米粒子。通过 TEM、Zeta 电位、紫外-可见光谱、XPS、FTIR 和 CD 光谱对 cPC 共轭银纳米粒子(AgcPCNPs)进行了表征。温度优化研究表明,在 40°C 下可以合成稳定的 AgcPCNPs,而在较高温度下,体系呈现聚集状态。分子对接研究预测,cPC 的 C、D、I 和 J 链与 AgNPs 表面具有独特的相互作用。此外,AgcPCNPs 通过测量总 RBC 计数、%溶血、%血细胞比容、凝血时间、pH 值、电解质浓度和血细胞脂质过氧化程度等参数,显著(p < 0.1%)抵消了 AgNPs 的毒性对红细胞的影响,其作用机制为抗氧化。体外皮肤成纤维细胞迁移结果表明,AgcPCNPs 增强了细胞向创伤区域迁移的程度。综合数据表明,AgcPCNPs 可以作为一种更好的真皮伤口愈合剂,降低毒性,同时具有 cPC 作为伤口愈合剂和 Ag 纳米金属作为抗菌剂的双重优势。

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