Dahmen Ines, Chtourou Haifa, Hadrich Fatma, Baccar Nidhal, Sayadi Sami, Ayadi Habib, Chamkha Mohamed
Laboratory of Environmental Bioprocesses, Centre of Biotechnology of Sfax, University of Sfax, Sfax, Tunisia.
Department of Process Engineering, Higher Institute of Technological Studies of Sfax, 3099, ElbustaneSfax, Tunisia.
Appl Microbiol Biotechnol. 2024 Dec 24;108(1):541. doi: 10.1007/s00253-024-13359-0.
In the present investigation, 13% ± 0.84 of the extracted and purified phycocyanin from Phormidium versicolor was obtained, with a purity of 0.69 following dialysis. FT-IR analysis of purified phycocyanin revealed stretching vibration peaks in the profiles of the functional groups of N-H, O-H, C = O, N-H, C = O, and C = NH. The phycocyanin had a significant DPPH radical scavenging ability (IC = 0.6 ± 0.02 mg mL) confirmed with FRAP assay, and it exhibited microbiological activity between 1.25 and 2.5 mg mL against Candida albicans, Klebsiella pneumoniae, and Enterococcus faecalis. Phycocyanin showed no cytotoxic and improved the viability of HEK-293. It was added to skin cream at a rate of 6 mg g because of its significant yield extraction and biological activity. At 10 mg mL, a bactericidal activity has been noted, inhibiting the growth of bacteria responsible for inflammatory skin conditions. For 60 days, the emulsion's stability was monitored at room temperature, 25 °C, and 45 °C. The appearance of the batch kept at 45 °C was changed to beige after 7 days, while the others were kept for 15 days. Skin creams enhanced with phycocyanin were found to be stable over the course of storage at both room temperature and 25 °C, based on centrifugation stability analysis. But starting on the fifteenth day, the items kept at 45 °C were unstable. Thus, the current study's findings are in favor of using phycocyanin as an antioxidant in cosmetic products. However, further investigation is required before using it in clinical trials. KEY POINTS: • Phycocyanin extraction field (13%) is particularly significant compared to other cyanobacteria. • Phycocyanin at 0.6 μg g-1 in skin cream fights bacteria in skin inflammation. • Phycocyanin-enriched cream was stable at room temp, 25 °C, and unstable at 45 °C after day 15.
在本研究中,从杂色席藻中提取并纯化得到了13%±0.84的藻蓝蛋白,透析后的纯度为0.69。对纯化后的藻蓝蛋白进行傅里叶变换红外光谱(FT-IR)分析,结果显示在N-H、O-H、C=O、N-H、C=O和C=NH等官能团的谱图中出现了伸缩振动峰。藻蓝蛋白具有显著的1,1-二苯基-2-三硝基苯肼(DPPH)自由基清除能力(IC=0.6±0.02mg/mL),这通过铁离子还原抗氧化能力(FRAP)测定得到证实,并且它对白色念珠菌、肺炎克雷伯菌和粪肠球菌表现出1.25至2.5mg/mL的抑菌活性。藻蓝蛋白无细胞毒性且提高了人胚肾细胞-293(HEK-293)的活力。由于其显著的提取率和生物活性,它以6mg/g的比例添加到护肤霜中。在10mg/mL时,已观察到杀菌活性,可抑制引起皮肤炎症的细菌生长。在室温、25℃和45℃下对乳液的稳定性进行了60天的监测。保存在45℃的批次在7天后外观变为米色,而其他批次则保存了15天。基于离心稳定性分析,发现添加了藻蓝蛋白的护肤霜在室温及25℃储存过程中是稳定的。但从第15天开始,保存在45℃的产品变得不稳定。因此,本研究结果支持将藻蓝蛋白用作化妆品中的抗氧化剂。然而,在将其用于临床试验之前还需要进一步研究。要点:•与其他蓝细菌相比,藻蓝蛋白的提取率(13%)特别显著。•护肤霜中0.6μg/g的藻蓝蛋白可对抗皮肤炎症中的细菌。•富含藻蓝蛋白的面霜在室温、25℃下稳定,15天后在45℃下不稳定。