Aug 2026· Genetics and Molecular Research· 0 citations· 6 references
Abstract
Lipases, versatile enzymes produced by microbes, find extensive applications in diverse industrial processes, with notable significance in the laundry industry where lipase-based detergents efficiently eliminate lipid-based stains from textiles, enhancing cleanliness and sustainability. The utilization of microbial lipases in detergent formulations offers significant potential for reducing environmental impact. Marine environments, renowned for their extreme conditions, harbor microorganisms with robust enzymatic capabilities, making them attractive candidates for enzyme production. In this study, lipase enzymes sourced from marine bacteria, particularly Brevibacillus borestelensis, were targeted for production and partial purification to assess their suitability as detergent additives. Through process optimization, lipase production was enhanced, and subsequent partial purification facilitated the evaluation of enzyme stability and activity in the presence of various commercially available detergents. The identification of the marine bacteria was achieved through sequencing the 16S rRNA gene, confirming their taxonomic classification. The purified lipase exhibited a molecular mass of approximately 35 kDa and a specific activity of 110.8 U/mg. Furthermore, the stability of the lipase with commonly used detergent powders was evaluated, demonstrating compatibility with various detergents, with more than 80% relative activity retained. These findings underscore the potential of microbial lipases, particularly those sourced from extreme environments, as environmentally friendly additives in detergent formulations, contributing to sustainable cleaning practices in the industry.
Microbial lipases are indispensable in modern environmental management and industry, offering eco-friendly, efficient, and costeffective solutions across diverse sectors. Their broad specificity, high stability, and ability to catalyse reactions under mild conditions underscore their significance in promoting sustainab...
I. Shehu, A. Muhammad, M. Ahmad· The Scientific World Journal· 0 citations
Findings provide a useful basis for developing food-waste-derived oils as biodiesel feedstocks through lipase-based fermentation and support the resource-oriented utilization of food waste.
Feng Li, Shuai Li, Jia-Xin Li et al.· Microorganisms· 0 citations
Findings demonstrate the favorable biochemical properties of the purified lipase and provide a basis for future investigations into its potential application as a biocatalyst for bioremediation.
A. Baruwa, K. Permaul· Applied microbiology· 0 citations
Lipases obtained from thermophilic microorganisms are attracting great interest in the industrial field due to their stability under high-temperature conditions and their wide range of industrial applications. In this study, thermophilic bacterial strains were isolated from water and mud samples collected from Erzurum...
Ikra Ozkan, A. Adiguzel· Preparative Biochemistry & B...· 0 citations
This review critically evaluates recent advances in microbial kojic acid production with an emphasis on biosynthetic regulation, fermentation technologies, strain engineering, downstream processing, and sustainable bioprocessing strategies and highlights emerging industrial applications of kojic acid and its derivative...
Parth Shroff, Darshan Marjadi· Journal of Advances in Biolo...· 0 citations
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