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Published on: September 12, 2020
Abnormal Blood Bacteriome, Gut Dysbiosis, and Progression to Severe Dengue Disease
Wiwat Chancharoenthana1,2, Supitcha Kamolratanakul1,2, Wassawon Ariyanon3,4
1Department of Clinical Tropical Medicine, Faculty of Tropical Medicine, Mahidol University, Bangkok, Thailand.
Abstract:
Despite a well-known association between gut barrier defect (leaky gut) and several diseases, data on translocation of pathogen molecules, including bacterial DNA (blood bacteriome), lipopolysaccharide (LPS), and serum (1→3)-β-D-glucan (BG), from the gut to the blood circulation (gut translocation) in dengue are still less studied. Perhaps, dengue infection might induce gut translocation of several pathogenic molecules that affect the disease severity. At the enrollment, there were 31 dengue cases in febrile and critical phases at 4.1 ± 0.3 days and 6.4 ± 1.1 days of illness, respectively, with the leaky gut as indicated by positive lactulose-to-mannitol excretion ratio. With blood bacteriome, the patients with critical phase (more severe dengue; n = 23) demonstrated more predominant abundance in Bacteroidetes and Escherichia spp. with the lower Bifidobacteria when compared with the healthy control (n = 5). Meanwhile, most of the blood bacteriome results in dengue with febrile stage (n = 8) were comparable to the control, except for the lower Bifidobacteria in dengue cases. Additionally, endotoxemia at the enrollment was demonstrated in five (62.5%) and 19 (82.6%) patients with febrile and critical phases, respectively, while serum BG was detectable in two (25%) and 20 (87%) patients with febrile and critical phases, respectively. There were higher peripheral blood non-classical monocytes and natural killer cells (NK cells) at the enrollment in patients with febrile phage than in the cases with critical stage. Then, non-classical monocytes (CD14-CD16+) and NK cells (CD56+CD16-) increased at 4 and 7 days of illness in the cases with critical and febrile stages, respectively, the elevation of LPS and/or BG in serum on day 7 was also associated with the increase in monocytes, NK cells, and cytotoxic T cells. In summary, enhanced Proteobacteria (pathogenic bacteria from blood bacteriomes) along with increased endotoxemia and serum BG (leaky gut syndrome) might be collaborated with the impaired microbial control (lower non-classical monocytes and NK cells) in the critical cases and causing more severe disease of dengue infection.
Insights
Dengue infection can cause a leaky gut, allowing bacterial DNA and molecules like LPS and BG to enter the bloodstream, increasing disease severity. Critical dengue cases show more pathogenic bacteria and impaired immune cell responses.
Area of Science:
- Infectious Diseases
- Gastroenterology
- Immunology
Background:
- A compromised gut barrier (leaky gut) is linked to various diseases.
- Gut translocation of pathogen molecules like bacterial DNA, LPS, and BG in dengue is understudied.
- Dengue infection may trigger gut translocation, influencing disease severity.
Purpose of the Study:
- To investigate gut translocation of pathogen molecules in dengue patients.
- To correlate gut translocation markers with dengue disease severity and immune responses.
Main Methods:
- Assessed leaky gut using lactulose-to-mannitol excretion ratio in 31 dengue cases (febrile and critical phases).
- Analyzed blood bacteriome composition (bacterial DNA) and quantified lipopolysaccharide (LPS) and (1→3)-β-D-glucan (BG) in serum.
- Monitored peripheral blood immune cells, including non-classical monocytes and natural killer (NK) cells.
Main Results:
- Critical dengue patients exhibited increased Bacteroidetes and Escherichia spp., and decreased Bifidobacteria in blood bacteriome compared to controls.
- Endotoxemia (elevated LPS) and elevated serum BG were prevalent in critical dengue phases.
- Elevated LPS/BG correlated with increased monocytes, NK cells, and cytotoxic T cells, but critical cases showed impaired microbial control (lower monocytes/NK cells).
Conclusions:
- Enhanced gut translocation of pathogenic bacteria (Proteobacteria), LPS, and BG contributes to dengue severity.
- Impaired immune responses, characterized by lower non-classical monocytes and NK cells, exacerbate critical dengue.
- Leaky gut syndrome and associated microbial translocation are key factors in severe dengue pathogenesis.

