Minasyan Ela, Aghajanyan Armen, Karapetyan Kristina, Khachaturyan Nune, Hovhannisyan Gayane, Yeghyan Karine, Tsaturyan Avetis
Laboratory of BAS Purification and Certification, SPC "Armbiotechnology" Scientific and Production Center, National Academy of Science, Yerevan, Republic of Armenia.
Institute of Pharmacy, Scientific and Educational Center for Control and Monitoring of the Quality of Medicines, Yerevan State University, Yerevan, Republic of Armenia.
Indian J Microbiol. 2024 Dec;64(4):1528-1534. doi: 10.1007/s12088-023-01155-9. Epub 2023 Dec 9.
Melanins have immense application potential in the fields of agriculture, cosmetics and pharmaceutical industries. To determine the antimicrobial properties of melanin, conditionally pathogenic bacteria, belonging to different taxonomic groups were used. The results have shown that melanin solution exhibited bacteriostatic or bactericide activity depending on test culture and melanin concentration. Melanin at concentration of 20 mg/ml reduced the total number of cells of the G 17-89, G 38 and K 12 to about 20 percent. Melanin at the concentration of 40 mg/ml suppressed the growth of G17-89 and 10228 almost 100 percent. In the case of K 12 30 mg/ml concentration has the same effect as the 40 mg/ml and cell count decrease occurs about 50 percent. Lowest efficiency melanin showed against G 38 and after 72 h of incubation the cell count decreases by log 1 degree. 30 mg/ml concentration of melanin on the growth of 10118 decreases about 80 percent. On the growth of the Fungi of 8444, 10559 8270, 8192, 12017, 12018, 12020, 12021, 8203, 8281 genus low concentration of melanin possessed bacteriostatic activity. The investigation of the efficiency of melanin to inhibit the growth of food-spoilage microorganisms shown, that it can be used as natural preservative agent for prevention contamination of food products and for extending of their shelf-life.
黑色素在农业、化妆品和制药行业具有巨大的应用潜力。为了确定黑色素的抗菌特性,使用了属于不同分类群的条件致病菌。结果表明,黑色素溶液根据测试培养物和黑色素浓度表现出抑菌或杀菌活性。浓度为20mg/ml的黑色素使G 17 - 89、G 38和K 12的细胞总数减少至约20%。浓度为40mg/ml的黑色素几乎100%抑制了G17 - 89和10228的生长。对于K 12,30mg/ml的浓度与40mg/ml具有相同的效果,细胞数量减少约50%。黑色素对G 38的抑制效率最低,孵育72小时后细胞数量减少log 1度。30mg/ml浓度的黑色素对10118生长的抑制率约为80%。低浓度的黑色素对8444、10559、8270、8192、12017、12018、12020、12021、8203、8281属的真菌生长具有抑菌活性。对黑色素抑制食品腐败微生物生长效率的研究表明,它可作为天然防腐剂用于防止食品污染并延长其保质期。