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Studies on the Epidemiology, Vaccination, Susceptibility, and Treatment of Columnaris Disease in Fishes

Research Abstract
NULL
Research Authors
Haitham H Mohammed
Research Journal
School of Fisheries, Aquaculture and Aquatic Sciences, Auburn University
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
2
Research Vol
NULL
Research Website
NULL
Research Year
2015

More than just antibodies: protective mechanisms of a mucosal vaccine against fish pathogen Flavobacterium columnare

Research Abstract
NULL
Research Authors
Eric Peatman, Dongdong Zhang, Wilawan Thongda, Benjamin Beck, Haitham Mohammed, Covadonga Arias
Research Journal
Book of Abstracts World Aquaculture Society
Research Member
Research Pages
606
Research Publisher
NULL
Research Rank
1
Research Vol
NULL
Research Website
NULL
Research Year
2016

Virulence and molecular variation of Flavobacterium columnare affecting rainbow trout in Idaho, USA

Research Abstract
NULL
Research Authors
Jason P Evenhuis, Haitham Mohammed, Scott E LaPatra, Timothy J Welch, Covadonga R Arias
Research Journal
Aquaculture
Research Member
Research Pages
106-110
Research Publisher
Elsevier
Research Rank
1
Research Vol
464
Research Website
NULL
Research Year
2015

Potassium permanganate elicits a shift of the external fish microbiome and increases host susceptibility to columnaris disease

Research Abstract
NULL
Research Authors
Haitham H Mohammed, Covadonga R Arias
Research Journal
Veterinary research
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
NULL
Research Website
NULL
Research Year
2015

First record of the fish pathogen Flavobacterium columnare genomovar II from bluegill, Lepomis macrochirus (Rafinesque), with observations on associated lesions

Research Abstract
NULL
Research Authors
SA Bullard, H Mohammed, CR Arias
Research Journal
ournal of fish diseases
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
NULL
Research Website
NULL
Research Year
2013

Comparison of DNA extraction protocols for the analysis of gut microbiota in fishes

Research Abstract
NULL
Research Authors
Andrea M Larsen, Haitham H Mohammed, Covadonga R Arias
Research Journal
FEMS microbiology letters
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
NULL
Research Website
NULL
Research Year
2015

Epidemiology of columnaris disease affecting fishes within the same watershed

Research Abstract
NULL
Research Authors
Haitham H Mohammed, Covadonga R Arias
Research Journal
Diseases of aquatic organisms
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
NULL
Research Website
NULL
Research Year
2014

New attenuated vaccine against columnaris disease in fish: Choosing the right parental strain is critical for vaccine efficacy

Research Abstract
NULL
Research Authors
Haitham Mohammed, Oscar Olivares-Fuster, Stacey LaFrentz, Covadonga R Arias
Research Journal
Elsevier
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
NULL
Research Website
NULL
Research Year
2013

Characterization of the gut microbiota of three commercially valuable warmwater fish species

Research Abstract
NULL
Research Authors
AM Larsen, HH Mohammed, CR Arias
Research Journal
Journal of applied microbiology
Research Member
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
116 (6), 1396-1404
Research Website
NULL
Research Year
2014

Targeting Multidrug-resistant Staphylococci with an anti-rpoA Peptide Nucleic Acid Conjugated to the HIV-1 TAT Cell Penetrating Peptide

Research Abstract
Staphylococcus aureus infections present a serious challenge to healthcare practitioners due to the emergence of resistance to numerous conventional antibiotics. Due to their unique mode of action, peptide nucleic acids are novel alternatives to traditional antibiotics to tackle the issue of bacterial multidrug resistance. In this study, we designed a peptide nucleic acid covalently conjugated to the HIV-TAT cell penetrating peptide (GRKKKRRQRRRYK) in order to target the RNA polymerase α subunit gene (rpoA) required for bacterial genes transcription. We explored the antimicrobial activity of the anti-rpoA construct (peptide nucleic acid-TAT) against methicillin-resistant S. aureus, vancomycin-intermediate S. aureus, vancomycin-resistant S. aureus, linezolid-resistant S. aureus, and methicillin-resistant S. epidermidis in pure culture, infected mammalian cell culture, and in an in vivo Caenorhabditis elegans infection model. The anti-rpoA construct led to a concentration-dependent inhibition of bacterial growth (at micromolar concentrations) in vitro and in both infected cell culture and in vivo in C. elegans. Moreover, rpoA gene silencing resulted in suppression of its message as well as reduced expression of two important methicillin-resistant S. aureus USA300 toxins (α-hemolysin and Panton-Valentine leukocidin). This study confirms that rpoA gene is a potential target for development of novel antisense therapeutics to treat infections caused by methicillin-resistant S. aureus.
Research Authors
Mostafa F.N. Abushahba,
Haroon Mohammad,
Mohamed N Seleem
Research Department
Research Journal
Molecular Therapy Nucleic Acids
Research Pages
e339
Research Publisher
Nature Publishing Group
Research Rank
1
Research Vol
5
Research Website
http://www.nature.com/mtna/journal/v5/n7/full/mtna201653a.html
Research Year
2016
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