Faculty of Life Sciences, JSS Academy of Higher Education and Research, Mysore, India.
Department of Pharmaceutical Sciences and Technology, Birla Institute of Technology Mesra, Ranchi, India.
Antiinflamm Antiallergy Agents Med Chem. 2020;19(3):240-253. doi: 10.2174/1871523018666190405114524.
Phycocyanin is an algae-derived protein, which binds to pigment for harvesting light. It has been reported in various different species, including that of red algae, dinoflagellates, and cryptophyta. Importantly, phycocyanin has enormous applications, including cosmetic colorant, food additive, biotechnology, diagnostics, fluorescence detection probe, an anticancer agent, anti-inflammatory, immune enhancer, etc. In addition, several different algae were utilized for the isolation of cyano-phycocyanin (C-PC), but most of the purification methods consist of several steps of crude extraction.
To isolate C-PC from a new source of microalgae with better purity level and to evaluate its antimicrobial, algicidal, and antiradical activities.
Biological activity, permeability, pharmacokinetics, and toxicity profile of C-PC were predicted by in silico studies. C-PC was purified and isolated by using ammonium sulphate precipitation, ion-exchange chromatography and gel-filtration chromatography. C-PC was characterized by SDS-PAGE and elution profile (purity ratio) analysis. Antimicrobial and algicial activities of C-PC were evaluated by the microtitre plate based assays. Antiradical activity of C-PC was evaluated by DPPH- and ABTS*+ radical scavenging assays.
C-PC was extracted from Oscillatoria minima for the first time, followed by its quantitative as well qualitative evaluation, indicating a new alternative source of this important protein. Furthermore, the antimicrobial, algicidal, and antiradical activities of the isolated C-PC extract have been demonstrated by both in silico as well as in vitro methods.
藻蓝蛋白是一种藻类衍生的蛋白质,它与色素结合以收集光。它已在各种不同的物种中被报道,包括红藻、甲藻和隐藻。重要的是,藻蓝蛋白有巨大的应用,包括化妆品色素、食品添加剂、生物技术、诊断、荧光检测探针、抗癌剂、抗炎、免疫增强剂等。此外,几种不同的藻类被用于分离蓝藻藻蓝蛋白(C-PC),但大多数纯化方法都包括粗提取的几个步骤。
从新的微藻来源中分离出具有更高纯度水平的 C-PC,并评估其抗菌、杀藻和抗自由基活性。
通过计算机模拟研究预测 C-PC 的生物活性、通透性、药代动力学和毒性特征。C-PC 通过硫酸铵沉淀、离子交换色谱和凝胶过滤色谱进行纯化和分离。通过 SDS-PAGE 和洗脱图谱(纯度比)分析对 C-PC 进行表征。通过微量滴定板测定法评估 C-PC 的抗菌和杀藻活性。通过 DPPH-和 ABTS*+自由基清除测定法评估 C-PC 的抗自由基活性。
首次从 Oscillatoria minima 中提取了 C-PC,并对其进行了定量和定性评价,表明这是这种重要蛋白质的新替代来源。此外,通过计算机模拟和体外方法证明了分离的 C-PC 提取物的抗菌、杀藻和抗自由基活性。