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Biotransformation of endobiotics and xenobiotics essentially deals with modification of organic molecules by microbes ultimately to furnish useful drug intermediates and water soluble conjugates.The mechanism underlying the transformation mostly involves insertion of oxygen into the parent molecule catalysed by cyp450 monooxygenase i.e.conversion of hydrophobic to hydrophilic.The balance between oxidative detoxification and metabolic activation by this enzyme is critically important.Biotransformation got wide application in steroid and beta-lactams. Microbial management of environmental…mehr

Produktbeschreibung
Biotransformation of endobiotics and xenobiotics essentially deals with modification of organic molecules by microbes ultimately to furnish useful drug intermediates and water soluble conjugates.The mechanism underlying the transformation mostly involves insertion of oxygen into the parent molecule catalysed by cyp450 monooxygenase i.e.conversion of hydrophobic to hydrophilic.The balance between oxidative detoxification and metabolic activation by this enzyme is critically important.Biotransformation got wide application in steroid and beta-lactams. Microbial management of environmental pollution is another area which attracts equal attention. Although biotransformation was initiated with liver microsomes but maximum feed back was received from procaryotes. The microbial biotechnology, considered as a green technology, is being equally used in food,health and environment sector.Science of metagenomics might be a boost in microbial biotechnology.
Autorenporträt
Timir Baran Samanta is an Organic Chemist by education andMicrobiologist by training. He received his Ph.D degree fromCalcutta University in 1969 in Chemistry. He worked all along atthe interface of Chemistry and Biology. Now he works as Advisor of Biotechnology, West Bengal University of Technology.Kolkata, India.