Michael Helan Soundra Rani, Subiramanian Shri Ranjani, Thyagarajan Divyavaahini, Mohammed Nazneen Bobby, Saravanakumar Venkatesh Kumar, Govindaraj Mageswari, Maheswari Kalpanadevi Murugasamy, Karthikeyan Naresh, Ramesh Kumar Charu
Department of Biotechnology, Sri Ramakrishna College of Arts & Science, Nava India, Coimbatore, India.
Department of Biotechnology, Vignan's Foundation for Science Technology and Research, Vadlamudi, Guntur Dist, Andhra Pradesh, India.
Arch Microbiol. 2023 Aug 14;205(9):306. doi: 10.1007/s00203-023-03642-5.
Melanin is an amorphous polymer made of heterogeneous functional groups synthesized by diverse organisms including fungi, bacteria, animals, and plants. It was widely acknowledged for its biological processes and its key role in the protection of organisms from environmental stress. Recently, melanin clutches attention in the field of nanobiotechnology, drug delivery, organic semiconductors and bioelectronics, environmental bioremediation, photoprotection, etc., Furthermore, melanin from natural sources like microbial community shows antimicrobial, fighting cancer, radical scavenging, cosmeceuticals, and many therapeutic areas as well. Though the multipotentiality nature of melanin has been put forth, real-world applications still flag fall behind, which might be anticipated to the inadequate and high price essence of natural melanin. However, current bioprocess technologies have paved for the large-scale or industrial production of microbial melanin, which could help in the replacement of synthetic melanin. Thus, this review emphasizes the various sources for melanin, i.e., types-based on its pathways and its chemical structures, functional efficiency, physical properties, and conventional and modern methods of both extraction and characterization. Moreover, an outlook on how it works in the field of medicine, bioremediation, and other related areas provides perspectives on the complete exploitation of melanin in practical applications of medicine and the environment.
黑色素是一种由包括真菌、细菌、动物和植物在内的多种生物体合成的具有异质官能团的无定形聚合物。它因其生物过程以及在保护生物体免受环境压力方面的关键作用而被广泛认可。最近,黑色素在纳米生物技术、药物递送、有机半导体和生物电子学、环境生物修复、光保护等领域备受关注。此外,来自微生物群落等天然来源的黑色素还具有抗菌、抗癌、自由基清除、药妆以及许多治疗领域的作用。尽管黑色素具有多潜能性,但实际应用仍然滞后,这可能是由于天然黑色素的产量不足和价格高昂。然而,目前的生物工艺技术已经为大规模或工业化生产微生物黑色素铺平了道路,这有助于替代合成黑色素。因此,本综述强调了黑色素的各种来源,即基于其合成途径、化学结构、功能效率、物理性质以及传统和现代提取与表征方法的类型。此外,对其在医学、生物修复和其他相关领域的作用的展望为在医学和环境实际应用中充分利用黑色素提供了视角。