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suck abstract from ncbi


10.1016/j.jcrc.2016.09.029

http://scihub22266oqcxt.onion/10.1016/j.jcrc.2016.09.029
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C5328797!5328797!27866110
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suck abstract from ncbi


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pmid27866110      J+Crit+Care 2017 ; 38 (ä): 84-91
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  • Dysbiosis in the ICU: Microbiome science coming to the bedside #MMPMID27866110
  • Kitsios GD; Morowitz MJ; Dickson RP; Huffnagle GB; McVerry BJ; Morris A
  • J Crit Care 2017[Apr]; 38 (ä): 84-91 PMID27866110show ga
  • Complex microbial communities within the human body, constituting the microbiome, have a broad impact on human health and disease. A growing body of research now examines the role of the microbiome in patients with critical illness, such as sepsis and acute respiratory failure. In this article, we provide an introduction to microbiome concepts and terminology and we systematically review the current evidence base of the critical-illness microbiome, including 51 studies in animal models and pediatric and adult critically-ill patients. We further examine how this emerging scientific discipline may transform the way we manage infectious and inflammatory diseases in intensive care units. The evolving molecular, culture-independent techniques offer the ability to study microbial communities in unprecedented depth and detail, and in the short-term, may enable us to diagnose and treat infections in critical care more precisely and effectively. Longer-term, these tools may also give us insights in the underlying pathophysiology of critical illness and reveal previously unsuspected targets for innovative, microbiome-targeted therapeutics. We finally propose a roadmap for future studies in the field for transforming critical care from its current isolated focus on the host to a more personalized paradigm addressing both human and microbial contributions to critical illness.
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