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Microbiology

D-Index
62
Citations
11690
World Ranking
2914
National Ranking
1158

Overview

Barbara Setlow is affiliated with the University of Connecticut Health Center in the United States. Their research primarily spans the fields of Biochemistry, Genetics and Molecular Biology, as well as Agricultural and Biological Sciences. The scientist's work is concentrated in several subfields including Molecular Biology and Insect Science.

Barbara Setlow's research topics cover areas related to Bacillus and Francisella bacterial research, Insect Resistance and Genetics, and Insect and Pesticide Research. These topics reflect a focus on understanding bacterial mechanisms and genetic aspects of insect resistance.

Their recent published paper is titled Mechanisms of killing of Bacillus thuringiensis Al Hakam spores in a blast environment with and without iodic acid, published in 2020 in the Journal of Applied Microbiology. This publication highlights a specialized study in microbiology involving bacterial spores and their responses under certain conditions.

  • Emily T. Camilleri
  • George Korza
  • L.d.C. Huesca-Espita
  • Demitrios Stamatis
  • Peter Setlow

  • Journal of Applied Microbiology

Best Publications

  • Purification and Properties of Rat Liver Microsomal Stearyl Coenzyme A Desaturase

    P. Strittmatter;L. Spatz;D. Corcoran;M. J. Rogers

  • Characterization of Spores of Bacillus subtilis Which Lack Dipicolinic Acid

    Madan Paidhungat;Barbara Setlow;Adam Driks;Peter Setlow

  • The forespore line of gene expression in Bacillus subtilis

    Stephanie T. Wang;Barbara Setlow;Erin M. Conlon;Jessica L. Lyon

  • Role of DNA repair in Bacillus subtilis spore resistance.

    B Setlow;P Setlow

  • Role of Dipicolinic Acid in Resistance and Stability of Spores of Bacillus subtilis with or without DNA-Protective α/β-Type Small Acid-Soluble Proteins

    Barbara Setlow;Swaroopa Atluri;Ryan Kitchel;Kasia Koziol-Dube

  • Mechanisms of Induction of Germination of Bacillus subtilis Spores by High Pressure

    Madan Paidhungat;Barbara Setlow;William B. Daniels;Dallas Hoover

  • Mechanisms of killing spores of Bacillus subtilis by acid, alkali and ethanol

    B. Setlow;C.A. Loshon;P.C. Genest;A.E. Cowan

  • Lipids in the inner membrane of dormant spores of Bacillus species are largely immobile.

    Ann E. Cowan;Elizabeth M. Olivastro;Dennis E. Koppel;Charles A. Loshon

  • Treatment with oxidizing agents damages the inner membrane of spores of Bacillus subtilis and sensitizes spores to subsequent stress

    D.E. Cortezzo;K. Koziol-Dube;B. Setlow;P. Setlow

  • Germination of spores of Bacillus subtilis with dodecylamine

    B. Setlow;A.E. Cowan;P. Setlow

  • Binding of small, acid-soluble spore proteins to DNA plays a significant role in the resistance of Bacillus subtilis spores to hydrogen peroxide.

    B Setlow;P Setlow

  • Mechanisms of killing of spores of Bacillus subtilis by iodine, glutaraldehyde and nitrous acid

    R. Tennen;B. Setlow;K.L. Davis;C.A. Loshon

  • Prevention of DNA damage in spores and in vitro by small, acid-soluble proteins from Bacillus species.

    H Fairhead;B Setlow;P Setlow

  • A soluble protein is immobile in dormant spores of Bacillus subtilis but is mobile in germinated spores: Implications for spore dormancy

    Ann E. Cowan;Dennis E. Koppel;Barbara Setlow;Peter Setlow

  • Properties of Spores of Bacillus subtilis Blocked at an Intermediate Stage in Spore Germination

    Barbara Setlow;Elizabeth Melly;Peter Setlow

  • Factors Influencing Germination of Bacillus subtilis Spores via Activation of Nutrient Receptors by High Pressure

    Elaine P. Black;Elaine P. Black;Kasia Koziol-Dube;Dongsheng Guan;Jie Wei

  • Adenylate deaminase. II. Purification and some regulatory properties of the enzyme from calf brain.

    Barbara Setlow;John M. Lowenstein

  • Levels of H+ and other monovalent cations in dormant and germinating spores of Bacillus megaterium.

    B M Swerdlow;B Setlow;P Setlow

  • Small, acid-soluble proteins bound to DNA protect Bacillus subtilis spores from killing by dry heat.

    B Setlow;P Setlow

  • The Products of the spoVA Operon Are Involved in Dipicolinic Acid Uptake into Developing Spores of Bacillus subtilis

    Federico Tovar-Rojo;Monica Chander;Barbara Setlow;Peter Setlow

Frequent Co-Authors

Peter Setlow
Peter Setlow University of Connecticut Health Center
Wayne L. Nicholson
Wayne L. Nicholson University of Florida
Mahfuzur R. Sarker
Mahfuzur R. Sarker Oregon State University
John M. Lowenstein
John M. Lowenstein Brandeis University
Adam Driks
Adam Driks Loyola University Chicago
Thierry Douki
Thierry Douki Grenoble Alpes University
Richard Losick
Richard Losick Harvard University
Daniel Paredes-Sabja
Daniel Paredes-Sabja Texas A&M University
Paul B. Savage
Paul B. Savage Brigham Young University

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