A comprehensive assessment of multi-system responses to a renal inoculation of uropathogenic E. coli in swine

Author:

Tiba Mohamad HakamORCID,McCracken Brendan M.,Dickson Robert P.,Nemzek Jean A.,Colmenero Carmen I.,Leander Danielle C.,Flott Thomas L.ORCID,Daniels Rodney C.,Konopka Kristine E.ORCID,VanEpps J. Scott,Stringer Kathleen A.,Ward Kevin R.

Abstract

Background The systemic responses to infection and its progression to sepsis remains poorly understood. Progress in the field has been stifled by the shortcomings of experimental models which include poor replication of the human condition. To address these challenges, we developed and piloted a novel large animal model of severe infection that is capable of generating multi-system clinically relevant data. Methods Male swine (n = 5) were anesthetized, mechanically ventilated, and surgically instrumented for continuous hemodynamic monitoring and serial blood sampling. Animals were inoculated with uropathogenic E. coli by direct injection into the renal parenchyma and were maintained until a priori endpoints were met. The natural history of the infection was studied. Animals were not resuscitated. Multi-system data were collected hourly to 6 hours; all animals were euthanized at predetermined physiologic endpoints. Results Core body temperature progressively increased from mean (SD) 37.9(0.8)°C at baseline to 43.0(1.2)°C at experiment termination (p = 0.006). Mean arterial pressure did not begin to decline until 6h post inoculation, dropping from 86(9) mmHg at baseline to 28(5) mmHg (p = 0.005) at termination. Blood glucose progressively declined but lactate levels did not elevate until the last hours of the experiment. There were also temporal changes in whole blood concentrations of a number of metabolites including increases in the catecholamine precursors, tyrosine (p = 0.005) and phenylalanine (p = 0.005). Lung, liver, and kidney function parameters worsened as infection progressed and at study termination there was histopathological evidence of injury in these end-organs. Conclusion We demonstrate a versatile, multi-system, longitudinal, swine model of infection that could be used to further our understanding of the mechanisms that underlie infection-induced multi-organ dysfunction and failure, optimize resuscitation protocols and test therapeutic interventions. Such a model could improve translation of findings from the bench to the bedside, circumventing a significant obstacle in sepsis research.

Funder

National Institute of General Medical Sciences

National Institute of Allergy and Infectious Diseases

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference48 articles.

1. Sepsis, Data & Reports: CDC; 2016. Sepsis, Data and Reports]. Available from: https://www.cdc.gov/sepsis/datareports/index.html.

2. Sepsis: A Threat That Needs a Global Solution;FR Machado;Crit Care Med,2018

3. Global, regional, and national sepsis incidence and mortality, 1990–2017: analysis for the Global Burden of Disease Study;KE Rudd;Lancet,2020

4. Hospitalizations, costs, and outcomes of severe sepsis in the United States 2003 to 2007;T Lagu;Crit Care Med,2012

5. Trends in sepsis and infection sources in the United States. A population-based study;AJ Walkey;Ann Am Thorac Soc,2015

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