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Published on: August 1, 2018
Blood Microbiome Quantity and the Hyperdynamic Circulation in Decompensated Cirrhotic Patients
Daniela Traykova1,2, Beacher Schneider1,2, Mario Chojkier1,2,3,4
1Department of Medicine, University of California, San Diego, La Jolla, CA, United States of America.
Insights
Bacterial DNA in the blood of cirrhotic patients may trigger inflammatory pathways, leading to lower systemic vascular resistance and higher cardiac output. This finding suggests a link between the blood microbiome and circulatory changes in cirrhosis.
Area of Science:
- Hepatology
- Microbiology
- Cardiovascular Physiology
Background:
- Cirrhosis is associated with a complex microbiome in various body fluids.
- Previous studies characterized the microbiome in serum and ascites.
- The interplay between blood microbiome, inflammation, and hemodynamics in cirrhosis requires further investigation.
Purpose of the Study:
- To investigate the induction of inflammatory pathways and Nitric Oxide (NO).
- To assess systemic hemodynamics in Child-Pugh class B cirrhotic patients.
- To examine the relationship between the blood microbiome and these parameters.
Main Methods:
- Screening for 53 gut bacterial DNA species in blood using qPCR arrays targeting the 16S rRNA gene.
- Non-invasive measurement of 18 systemic hemodynamic parameters via impedance cardiography.
- Assessment of inflammatory response through blood cytokines, NO RNA arrays, and NO levels.
Main Results:
- 19 of 53 tested bacterial species were detected in the blood of cirrhotic patients.
- Significantly increased bacterial species and DNA quantity in cirrhotic blood compared to controls.
- Cirrhotic patients exhibited increased Cardiac Output (37%) and decreased Systemic Vascular Resistance (40%).
- Systemic Vascular Resistance inversely correlated with blood bacterial DNA, species number, and serum NO.
- Increased expression of Nitric Oxide signaling pathway genes observed in cirrhotic subjects.
Conclusions:
- Blood bacterial DNA was identified in approximately 90% of cirrhotic patients without overt infection.
- The quantity of blood bacterial DNA may stimulate signaling pathways, including Nitric Oxide.
- This stimulation could lead to decreased systemic vascular resistance and increased cardiac output in cirrhosis.
Background:
Recently, a complex microbiome was comprehensibly characterized in the serum and ascitic fluid of cirrhotic patients. In the current study, we investigated for the first time the induction of inflammatory pathways and Nitric Oxide, as well as the systemic hemodynamics in conjunction with the blood microbiome in a Child-Pugh class B cirrhotic cohort.
Methods And Findings:
We used the Intestinal Infections Microbial DNA qPCR Array to screen for 53 bacterial DNA from the gut in the blood. Assays were designed using the 16S rRNA gene as a target, and PCR amplification primers (based on the Human Microbiome Project) and hydrolysis-probe detection. Eighteen systemic hemodynamic parameters were measured non-invasively by impedance cardiography using the BioZ ICG monitor. The inflammatory response was assessed by measuring blood cytokines, Nitric Oxide RNA arrays, and Nitric Oxide. In the blood of this cirrhotic cohort, we detected 19 of 53 bacterial species tested. The number of bacterial species was markedly increased in the blood of cirrhotic patients compared to control individuals (0.2+/-0.4 vs 3.1+/-2.3; 95% CI: 1.3 to 4.9; P = 0.0030). The total bacterial DNA was also increased in the blood of cirrhotic subjects compared to control subjects (0.2+/- 1.1 vs 41.8+/-132.1; 95% CI: 6.0 to 77.2; P = 0.0022). In the cirrhotic cohort, the Cardiac Output increased by 37% and the Systemic Vascular Resistance decreased by 40% (P< 0.00001 for both compared to control subjects). Systemic Vascular Resistance was inversely correlated to blood bacterial DNA quantity (- 0.621; 95% CI -0.843 to -0.218; P = 0.0060), blood bacterial species number (- 0.593; 95% CI -0.83 to -0.175; P = 0.0095; logistic regression: Chi Square = 5.8877; P = 0.0152), and serum Nitric Oxide (- 0.705; 95% CI -0.881 to -0.355; P = 0.0011). Many members of the Nitric Oxide signaling pathway gene family were increased in cirrhotic subjects.
Conclusions:
Our study identified blood bacterial DNA in ~ 90% of the cirrhotic patients without clinical evidences of infection, and suggests that the quantity of bacterial DNA in blood may stimulate signaling pathways, including Nitric Oxide, that could decrease systemic vascular resistance and increase cardiac output.
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