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HIV, opioid use, and alterations to the gut microbiome: elucidating independent and synergistic effects
Sanjana Satish1, Yaa Abu1,2, Daniel Gomez1
1Department of Medical Education, University of Miami Miller School of Medicine, Miami, FL, United States.
Background:
The microbiome is essential to immune development, defense against pathogens, and modulation of inflammation. Microbial dysbiosis has been reported in various diseases including human immunodeficiency virus (HIV) and opioid use disorder (OUD). Notably, people living with HIV (PLWH) have been reported to both have higher rates of OUD and use opioids at higher rates than the general public. Thus, studying gut microbial alterations in people living with HIV and with OUD could elucidate mechanisms pertaining to how these conditions both shape and are shaped by the microbiome. However, to date few studies have investigated how HIV and OUD in combination impact the microbiome.
Aim Of Review:
Here, we review previous studies outlining interactions between HIV, opioid use, and microbial dysbiosis and describe attempts to treat this dysbiosis with fecal microbial transplantation, probiotics, and dietary changes.
Key Scientific Concepts Of Review:
While the limited number of studies prevent overgeneralizations; accumulating data suggest that HIV and opioid use together induce distinct alterations in the gut microbiome. Among the three existing preclinical studies of HIV and opioid use, two studies reported a decrease in Lachnospiraceae and Ruminococcaceae, and one study reported a decrease in Muribaculaceae in the combined HIV and opioid group relative to HIV-alone, opioid-alone, or control groups. These bacteria are known to modulate immune function, decrease colonic inflammation, and maintain gut epithelial barrier integrity in healthy individuals. Accordingly, modulation of the gut microbiome to restore gut homeostasis may be attempted to improve both conditions. While mixed results exist regarding treating dysbiosis with microbial restoration in PLWH or in those with opioid dependency, larger well-defined studies that can improve microbial engraftment in hosts hold much promise and should still be explored.
Insights
The gut microbiome is altered in people with HIV and opioid use disorder (OUD). Combined HIV and OUD may decrease beneficial bacteria, suggesting microbial restoration could help manage these conditions.
Area of Science:
- Microbiome research
- Immunology
- Infectious diseases
- Addiction research
Background:
- The gut microbiome plays a crucial role in immune development, pathogen defense, and inflammation modulation.
- Microbial dysbiosis is linked to various diseases, including human immunodeficiency virus (HIV) and opioid use disorder (OUD).
- People living with HIV (PLWH) exhibit higher rates of OUD, necessitating research into the combined impact on the microbiome.
Purpose of the Study:
- To review existing literature on the interactions between HIV, opioid use, and gut microbial dysbiosis.
- To explore potential therapeutic strategies for addressing microbial dysbiosis in this population.
- To elucidate how combined HIV and OUD affect the gut microbiome.
Main Methods:
- Literature review of preclinical and clinical studies.
- Analysis of reported microbial alterations in individuals with HIV and/or OUD.
- Examination of therapeutic interventions such as fecal microbial transplantation, probiotics, and dietary changes.
Main Results:
- Accumulating data suggest distinct gut microbiome alterations in individuals with combined HIV and opioid use.
- Preclinical studies indicate a decrease in beneficial bacteria like Lachnospiraceae, Ruminococcaceae, and Muribaculaceae in the combined group.
- These bacteria are vital for immune function, reducing inflammation, and maintaining gut barrier integrity.
Conclusions:
- Modulating the gut microbiome may offer a therapeutic approach to improve outcomes for both HIV and OUD.
- While current results on microbial restoration therapies are mixed, larger, well-defined studies are needed.
- Further research focusing on improving microbial engraftment holds promise for managing these co-occurring conditions.
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