scholarly journals Antibiofilm therapy in the treatment of respiratory infectious diseases caused by bacterial pathogens

2018 ◽  
Vol 13 (7) ◽  
pp. 704-709
Author(s):  
А.Е. Abaturov ◽  
Т.А. Kryuchko
Author(s):  
Abhinay Sharma ◽  
Pooja Sanduja ◽  
Aparna Anand ◽  
Pooja Mahajan ◽  
Carlos A. Guzman ◽  
...  

AbstractInfectious diseases are one of the main grounds of death and disabilities in human beings globally. Lack of effective treatment and immunization for many deadly infectious diseases and emerging drug resistance in pathogens underlines the need to either develop new vaccines or sufficiently improve the effectiveness of currently available drugs and vaccines. In this review, we discuss the application of advanced tools like bioinformatics, genomics, proteomics and associated techniques for a rational vaccine design.


2021 ◽  
Vol 149 ◽  
pp. 111999
Author(s):  
Anatoly V. Skalny ◽  
Thania Rios Rossi Lima ◽  
Tao Ke ◽  
Ji-Chang Zhou ◽  
Julia Bornhorst ◽  
...  

2012 ◽  
Vol 2012 ◽  
pp. 1-16 ◽  
Author(s):  
Ponnerassery S. Sudheesh ◽  
Aliya Al-Ghabshi ◽  
Nashwa Al-Mazrooei ◽  
Saoud Al-Habsi

Fish living in the wild as well as reared in the aquaculture facilities are susceptible to infectious diseases caused by a phylogenetically diverse collection of bacterial pathogens. Control and treatment options using vaccines and drugs are either inadequate, inefficient, or impracticable. The classical approach in studying fish bacterial pathogens has been looking at individual or few virulence factors. Recently, genome sequencing of a number of bacterial fish pathogens has tremendously increased our understanding of the biology, host adaptation, and virulence factors of these important pathogens. This paper attempts to compile the scattered literature on genome sequence information of fish pathogenic bacteria published and available to date. The genome sequencing has uncovered several complex adaptive evolutionary strategies mediated by horizontal gene transfer, insertion sequence elements, mutations and prophage sequences operating in fish pathogens, and how their genomes evolved from generalist environmental strains to highly virulent obligatory pathogens. In addition, the comparative genomics has allowed the identification of unique pathogen-specific gene clusters. The paper focuses on the comparative analysis of the virulogenomes of important fish bacterial pathogens, and the genes involved in their evolutionary adaptation to different ecological niches. The paper also proposes some new directions on finding novel vaccine and chemotherapeutic targets in the genomes of bacterial pathogens of fish.


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