Kordjazi Talayeh, Mariniello Loredana, Giosafatto Concetta Valeria Lucia, Porta Raffaele, Restaino Odile Francesca
Department of Chemical Sciences, University of Naples Federico II, via Cintia 4, 80126 Naples, Italy.
Int J Mol Sci. 2024 Mar 5;25(5):3013. doi: 10.3390/ijms25053013.
Melanins are complex, polymeric pigments with interesting properties like UV-light absorbance ability, metal ion chelation capacity, antimicrobial action, redox behaviors, and scavenging properties. Based on these characteristics, melanins might be applied in different industrial fields like food packaging, environmental bioremediation, and bioelectronic fields. The actual melanin manufacturing process is not environmentally friendly as it is based on extraction and purification from cuttlefish. Synthetic melanin is available on the market, but it is more expensive than animal-sourced pigment and it requires long chemical procedures. The biotechnological production of microbial melanin, instead, might be a valid alternative. Streptomycetes synthesize melanins as pigments and as extracellular products. In this review, the melanin biotechnological production processes by different strains have been revised according to papers in the literature. The different fermentation strategies to increase melanin production such as the optimization of growth conditions and medium composition or the use of raw sources as growth substrates are here described. Diverse downstream purification processes are also reported as well as all the different analytical methods used to characterize the melanin produced by strains before its application in different fields.
黑色素是复杂的聚合色素,具有诸如紫外线吸收能力、金属离子螯合能力、抗菌作用、氧化还原行为和清除特性等有趣的性质。基于这些特性,黑色素可应用于不同的工业领域,如食品包装、环境生物修复和生物电子领域。实际的黑色素制造过程并不环保,因为它基于从乌贼中提取和纯化。合成黑色素在市场上有售,但它比动物源色素更昂贵,并且需要冗长的化学程序。相反,微生物黑色素的生物技术生产可能是一种有效的替代方法。链霉菌将黑色素合成为色素和细胞外产物。在本综述中,根据文献中的论文对不同菌株的黑色素生物技术生产过程进行了修订。这里描述了不同的提高黑色素产量的发酵策略,如生长条件和培养基组成的优化或使用原料作为生长底物。还报道了不同的下游纯化过程以及在菌株产生的黑色素应用于不同领域之前用于表征它的所有不同分析方法。