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Advances in Microbial Physiology, Volume 81 highlights new advances in the field with this new release presenting interesting chapters written by an international board of authors. Updates in this release include sections on Antibiotic tolerance, Lanthanides in bacterial proteins, Bacterial toxins and host-microbe interactions, and Nitric oxide. - Provides the authority and expertise of leading contributors from an international board of authors - Presents the latest release in the Advances in Microbial Physiology series - Includes chapters that cover topics such as Antibiotic tolerance and Lanthanides in bacterial proteins…mehr
Advances in Microbial Physiology, Volume 81 highlights new advances in the field with this new release presenting interesting chapters written by an international board of authors. Updates in this release include sections on Antibiotic tolerance, Lanthanides in bacterial proteins, Bacterial toxins and host-microbe interactions, and Nitric oxide. - Provides the authority and expertise of leading contributors from an international board of authors - Presents the latest release in the Advances in Microbial Physiology series - Includes chapters that cover topics such as Antibiotic tolerance and Lanthanides in bacterial proteins
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Autorenporträt
Professor Robert K Poole is Emeritus Professor of Microbiology at the University of Sheffield, UK. He was previously West Riding Professor of Microbiology at Sheffield and until 1996 held a Personal Chair in Microbiology at King's College London. During his long career, he has been awarded several research Fellowships, and taken sabbatical leave at the Australian National University, Kyoto University and Cornell University. His career-long interests have been in the areas of bacterial respiratory metabolism, metal-microbe interactions and bioactive small gas molecules. In particular, he has made notable contributions to bacterial terminal oxidases and resistance to nitric oxide with implications for bacterial pathogenesis. He co-discovered the flavohaemoglobin Hmp, now recognised as the preeminent mechanism of nitric oxide resistance in bacteria. He has served as Chairman of numerous research council grant committees, held research grants for over 40 years and published extensively (h-index, 2024 = 70). He served on several Institute review panels in the UK and overseas. He is a Fellow of the Royal Society of Chemistry and the Royal Society of Biology.
Inhaltsangabe
Preface David J. Kelly and Robert K. Poole 1. A perspective on the role of lanthanides in biology: Discovery, open questions and possible applications Lena J. Daumann, Arjan Pol, Huub J.M. Op den Camp and N. Cecilia Martinez-Gomez 2. Antimicrobial tolerance and its role in the development of resistance: Lessons from enterococci Rachel L Darnell, Olivia Paxie, Francesca O Todd Rose, Sali Morris, Alexandra Krause, Ian R Monk, Matigan J B Smith, Timothy P Stinear, Gregory M Cook and Susanne Gebhard 3. Bacterial AB toxins and host-microbe interactions Jeongmin Song 4. Recent developments in our understanding of the physiology and nitric oxide-resistance of Staphylococcus aureus Amelia C. Stephens and Anthony R. Richardson
Preface David J. Kelly and Robert K. Poole 1. A perspective on the role of lanthanides in biology: Discovery, open questions and possible applications Lena J. Daumann, Arjan Pol, Huub J.M. Op den Camp and N. Cecilia Martinez-Gomez 2. Antimicrobial tolerance and its role in the development of resistance: Lessons from enterococci Rachel L Darnell, Olivia Paxie, Francesca O Todd Rose, Sali Morris, Alexandra Krause, Ian R Monk, Matigan J B Smith, Timothy P Stinear, Gregory M Cook and Susanne Gebhard 3. Bacterial AB toxins and host-microbe interactions Jeongmin Song 4. Recent developments in our understanding of the physiology and nitric oxide-resistance of Staphylococcus aureus Amelia C. Stephens and Anthony R. Richardson
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