Siderophores are produced by a number of microbes to capture iron with outstandingly high affinity, which property also generates biomedical and industrial interests. Desferrioxamine E (DFO-E) secreted by streptomycetes bacteria can be an ideal candidate for iron chelation therapy, which necessitates its cost-effective production for in vitro and animal studies. This study focused on the optimization of DFO-E production by Streptomyces parvulus CBS548.68. Different combinations of various carbon and nitrogen sources as well as the addition of 3-morpholinopropane-1-sulfonic acid (MOPS) markedly affected DFO-E yields, which were attributed, at least in part, to the higher biomass productions found in MOPS-supplemented cultures. In MOPS-supple...
The online version contains supplementary material available at https://doi.org/10.1007/s00253-022-1...
Iron is one of the essential elements involved in many cellular processes that are necessary for lif...
N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxama...
Siderophores are produced by a number of microbes to capture iron with outstandingly high affinity, ...
Desferrioxamine B (DFOB) is a siderophore native to Streptomyces pilosus biosynthesised by the DesAB...
Clinical reports have established that mucormycosis, mainly caused by Rhizopus spp., frequently occu...
Pseudomonas fluorescens has the ability to produce the siderophore pyoverdine, a biotechnologically ...
The bacterial natural product desferrioxamine B (DFOB) can form highly stable complexes with a range...
Iron is essential for life. It acts as an electron donor/acceptor in metabolic processes facilitated...
Aims: The current study was conducted to investigate the application of 2, 2’- dipyridyl as a new ap...
Motivation:Iron is an essential micronutrient in the metabolism of most microorganisms with low bioa...
Abstract Desferrioxamine B (DFOB) is a linear hydroxamate-type siderophore trimer that forms a high-...
N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxama...
The experiments in this thesis sought to expand the chemical space of desferrioxamine type sideropho...
Siderophores are small, high-affinity ferric iron chelators released by many microorganisms and some...
The online version contains supplementary material available at https://doi.org/10.1007/s00253-022-1...
Iron is one of the essential elements involved in many cellular processes that are necessary for lif...
N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxama...
Siderophores are produced by a number of microbes to capture iron with outstandingly high affinity, ...
Desferrioxamine B (DFOB) is a siderophore native to Streptomyces pilosus biosynthesised by the DesAB...
Clinical reports have established that mucormycosis, mainly caused by Rhizopus spp., frequently occu...
Pseudomonas fluorescens has the ability to produce the siderophore pyoverdine, a biotechnologically ...
The bacterial natural product desferrioxamine B (DFOB) can form highly stable complexes with a range...
Iron is essential for life. It acts as an electron donor/acceptor in metabolic processes facilitated...
Aims: The current study was conducted to investigate the application of 2, 2’- dipyridyl as a new ap...
Motivation:Iron is an essential micronutrient in the metabolism of most microorganisms with low bioa...
Abstract Desferrioxamine B (DFOB) is a linear hydroxamate-type siderophore trimer that forms a high-...
N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxama...
The experiments in this thesis sought to expand the chemical space of desferrioxamine type sideropho...
Siderophores are small, high-affinity ferric iron chelators released by many microorganisms and some...
The online version contains supplementary material available at https://doi.org/10.1007/s00253-022-1...
Iron is one of the essential elements involved in many cellular processes that are necessary for lif...
N-hydroxylating flavin-dependent monooxygenases (FMOs) are involved in the biosynthesis of hydroxama...