Same species, different diseases: how and why typhoidal and non-typhoidal Salmonella enterica serovars differ

Один и тот же вид, разные заболевания: как и почему серовары Salmonella enterica, вызывающие брюшной тиф и нетифоидные инфекции, различаются
Ohad Gal‐Mor, Erin C. Boyle, Guntram A. Graßl
2014-08-04

Salmonella entericaSalmonella pathogenesishost specificitynon-typhoidal Salmonellatyphoidal Salmonella
Human infections by the bacterial pathogen Salmonella enterica represent major disease burdens worldwide. This highly ubiquitous species consists of more than 2600 different serovars that can be divided into typhoidal and non-typhoidal Salmonella (NTS) serovars. Despite their genetic similarity, these two groups elicit very different diseases and distinct immune responses in humans. Comparative analyses of the genomes of multiple Salmonella serovars have begun to explain the basis of the variation in disease manifestations. Recent advances in modeling both enteric fever and intestinal gastroenteritis in mice will facilitate investigation into both the bacterial- and host-mediated mechanisms involved in salmonelloses. Understanding the genetic and molecular mechanisms responsible for differences in disease outcome will augment our understanding of Salmonella pathogenesis, host immunity, and the molecular basis of host specificity. This review outlines the differences in epidemiology, clinical manifestations, and the human immune response to typhoidal and NTS infections and summarizes the current thinking on why these differences might exist.
1
Comparative genomic analyses are beginning to identify bacterial genetic determinants underlying differences in Salmonella disease manifestations.
2
Defining mechanisms of differential disease outcomes may clarify Salmonella pathogenesis, host immunity, and the molecular basis of host specificity.
3
Improved mouse models of enteric fever and intestinal gastroenteritis enable investigation of bacterial and host mechanisms driving salmonellosis outcomes.
4
Salmonella enterica comprises over 2,600 serovars, broadly categorized as typhoidal or non-typhoidal, despite substantial genetic similarity.
5
Typhoidal and non-typhoidal serovars cause markedly different human diseases and induce distinct immune responses.

Typhoidal and non-typhoidal Salmonella enterica serovars causing human infections

Differences in disease manifestations, epidemiology, clinical features, and human immune responses between typhoidal and non-typhoidal Salmonella infections, including their bacterial- and host-mediated mechanisms

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2014-08-04
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Ohad Gal‐Mor
Erin C. Boyle
Guntram A. Graßl
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