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Microbiota Analysis Using Two-step PCR and Next-generation 16S rRNA Gene Sequencing
Published on: October 15, 2019
Pulmonary arterial hypertension-associated changes in gut pathology and microbiota
Ravindra K Sharma1, Aline C Oliveira1, Tao Yang2
1Dept of Physiology and Functional Genomics, University of Florida, Gainesville, FL, USA.
Abstract:
Emerging evidence implicates an interplay among multiple organs such as brain, vasculature, gut and lung in the development of established pulmonary arterial hypertension (PAH). This has led us to propose that activated microglia mediated-enhanced sympathetic activation contributes to PAH pathophysiology. Since enhanced sympathetic activity is observed in human PAH and the gut is highly innervated by sympathetic nerves that regulate its physiological functions, we hypothesized that PAH would be associated with gut pathophysiology. A monocrotaline rat model of PAH was utilized to investigate the link between gut pathology and PAH. Haemodynamics, histology, immunocytochemistry and 16S RNA gene sequencing were used to assess cardiopulmonary functions, gut pathology and gut microbial communities respectively. Monocrotaline treatment caused increased right ventricular systolic pressure, haemodynamics and pathological changes associated with PAH. PAH animals also showed profound gut pathology that included increased intestinal permeability, increased muscularis layer, decreased villi length and goblet cells. These changes in gut pathology were associated with alterations in microbial communities, some unique to PAH animals. Furthermore, enhanced gut-neural communication involving the paraventricular nucleus of the hypothalamus and increased sympathetic drive were observed. In conclusion, our data show the presence of gut pathology and distinct changes in gut microbiota and increased sympathetic activity in PAH. They suggest that dysfunctional gut-brain crosstalk could be critical in PAH and considered a future therapeutic target for PAH.
Insights
Pulmonary arterial hypertension (PAH) is linked to gut problems and changes in gut microbes. Targeting gut-brain communication may offer new treatments for PAH.
Area of Science:
- Cardiovascular Research
- Gastroenterology
- Neuroscience
Background:
- Pulmonary arterial hypertension (PAH) involves multiple organs, including the brain, vasculature, gut, and lungs.
- Activated microglia-mediated sympathetic activation is a proposed contributor to PAH pathophysiology.
- Enhanced sympathetic activity is observed in human PAH, and the gut's extensive sympathetic innervation suggests a potential link.
Purpose of the Study:
- To investigate the association between gut pathophysiology and PAH.
- To explore the role of gut-brain communication in PAH development.
Main Methods:
- A monocrotaline-induced rat model of PAH was used.
- Assessed cardiopulmonary functions, gut pathology (intestinal permeability, histology), and gut microbial communities (16S RNA sequencing).
- Examined gut-neural communication and sympathetic drive.
Main Results:
- Monocrotaline treatment induced PAH with increased right ventricular systolic pressure and characteristic pathological changes.
- PAH animals exhibited significant gut pathology, including increased intestinal permeability, altered muscularis layer, and reduced villi length and goblet cells.
- Gut pathology correlated with distinct alterations in gut microbial communities and enhanced sympathetic activity.
Conclusions:
- PAH is associated with significant gut pathology, altered gut microbiota, and increased sympathetic activity.
- Dysfunctional gut-brain crosstalk appears critical in PAH.
- The gut-brain axis presents a potential future therapeutic target for PAH.
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