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The synthetic opioid fentanyl enhances viral replication in vitro
by
Mohamed Tarek M. Shata
, Ling Kong
, Jennifer L. Brown
, Kenneth E. Sherman
, Jason T. Blackard
, Rebekah Karns
, Michael S. Lyons
in
Addictions
/ Analgesics, Opioid
/ Analogs
/ Antigens
/ Apoptosis
/ Beads
/ Biology and life sciences
/ Cell culture
/ Chemical properties
/ Cytopathogenic Effect, Viral
/ Deoxyribonucleic acid
/ Development and progression
/ Digestive system diseases
/ DNA
/ Drug abuse
/ Editing
/ Emergency medical care
/ Emergency medical services
/ Fentanyl
/ Funding
/ Harm reduction
/ Health risks
/ Hep G2 Cells
/ Hepacivirus
/ Hepatitis
/ Hepatitis B
/ Hepatitis B virus
/ Hepatitis C
/ Hepatitis, Viral
/ Hepatocytes
/ HIV
/ Human immunodeficiency virus
/ Humans
/ In Vitro Techniques
/ Internal medicine
/ Libraries
/ Medical schools
/ Medicine
/ Medicine and Health Sciences
/ Metabolites
/ Methodology
/ Morphine
/ Narcotics
/ Nervous system
/ Neuroblastoma
/ Opioids
/ Physiological aspects
/ Proteins
/ Psychiatry
/ Public health
/ Q
/ R
/ Recreational use
/ Reduction
/ Replication
/ Research and analysis methods
/ Reviews
/ Risk factors
/ Science
/ Transcriptome
/ Viral infections
/ Virus Replication
/ Virus research
/ Viruses
2021
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The synthetic opioid fentanyl enhances viral replication in vitro
by
Mohamed Tarek M. Shata
, Ling Kong
, Jennifer L. Brown
, Kenneth E. Sherman
, Jason T. Blackard
, Rebekah Karns
, Michael S. Lyons
in
Addictions
/ Analgesics, Opioid
/ Analogs
/ Antigens
/ Apoptosis
/ Beads
/ Biology and life sciences
/ Cell culture
/ Chemical properties
/ Cytopathogenic Effect, Viral
/ Deoxyribonucleic acid
/ Development and progression
/ Digestive system diseases
/ DNA
/ Drug abuse
/ Editing
/ Emergency medical care
/ Emergency medical services
/ Fentanyl
/ Funding
/ Harm reduction
/ Health risks
/ Hep G2 Cells
/ Hepacivirus
/ Hepatitis
/ Hepatitis B
/ Hepatitis B virus
/ Hepatitis C
/ Hepatitis, Viral
/ Hepatocytes
/ HIV
/ Human immunodeficiency virus
/ Humans
/ In Vitro Techniques
/ Internal medicine
/ Libraries
/ Medical schools
/ Medicine
/ Medicine and Health Sciences
/ Metabolites
/ Methodology
/ Morphine
/ Narcotics
/ Nervous system
/ Neuroblastoma
/ Opioids
/ Physiological aspects
/ Proteins
/ Psychiatry
/ Public health
/ Q
/ R
/ Recreational use
/ Reduction
/ Replication
/ Research and analysis methods
/ Reviews
/ Risk factors
/ Science
/ Transcriptome
/ Viral infections
/ Virus Replication
/ Virus research
/ Viruses
2021
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The synthetic opioid fentanyl enhances viral replication in vitro
by
Mohamed Tarek M. Shata
, Ling Kong
, Jennifer L. Brown
, Kenneth E. Sherman
, Jason T. Blackard
, Rebekah Karns
, Michael S. Lyons
in
Addictions
/ Analgesics, Opioid
/ Analogs
/ Antigens
/ Apoptosis
/ Beads
/ Biology and life sciences
/ Cell culture
/ Chemical properties
/ Cytopathogenic Effect, Viral
/ Deoxyribonucleic acid
/ Development and progression
/ Digestive system diseases
/ DNA
/ Drug abuse
/ Editing
/ Emergency medical care
/ Emergency medical services
/ Fentanyl
/ Funding
/ Harm reduction
/ Health risks
/ Hep G2 Cells
/ Hepacivirus
/ Hepatitis
/ Hepatitis B
/ Hepatitis B virus
/ Hepatitis C
/ Hepatitis, Viral
/ Hepatocytes
/ HIV
/ Human immunodeficiency virus
/ Humans
/ In Vitro Techniques
/ Internal medicine
/ Libraries
/ Medical schools
/ Medicine
/ Medicine and Health Sciences
/ Metabolites
/ Methodology
/ Morphine
/ Narcotics
/ Nervous system
/ Neuroblastoma
/ Opioids
/ Physiological aspects
/ Proteins
/ Psychiatry
/ Public health
/ Q
/ R
/ Recreational use
/ Reduction
/ Replication
/ Research and analysis methods
/ Reviews
/ Risk factors
/ Science
/ Transcriptome
/ Viral infections
/ Virus Replication
/ Virus research
/ Viruses
2021
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The synthetic opioid fentanyl enhances viral replication in vitro
Journal Article
The synthetic opioid fentanyl enhances viral replication in vitro
2021
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Overview
The US is in the midst of a major drug epidemic fueled in large part by the widespread recreational use of synthetic opioids such as fentanyl. Persons with opioid use disorder are at significant risk for transmission of injection-associated infections such as hepatitis B virus (HBV) and hepatitis C virus (HCV). Commonly abused substances may antagonize immune responses and promote viral replication. However, the impact of synthetic opioids on virus replication has not been well explored. Thus, we evaluated the impact of fentanyl and carfentanil using in vitro systems that replicate infectious viruses. Fentanyl was used in cell lines replicating HBV or HCV at concentrations of 1 ng, 100 ng, and 10 ug. Viral protein synthesis was quantified by ELISA, while apoptosis and cell death were measured by M30 or MTT assays, respectively. HCV replicative fitness was evaluated in a luciferase-based system. RNAseq was performed to evaluate cellular gene regulation in the presence of fentanyl. Low dose fentanyl had no impact on HCV replication in Huh7.5JFH1 hepatocytes; however, higher doses significantly enhanced HCV replication. Similarly, a dose-dependent increase in HCV replicative fitness was observed in the presence of fentanyl. In the HepG2.2.15 hepatocyte cell line, fentanyl caused a dose-dependent increase in HBV replication, although only a higher doses than for HCV. Addition of fentanyl resulted in significant apoptosis in both hepatocyte cell lines. Cell death was minimal at low drug concentrations. RNAseq identified a number of hepatocyte genes that were differentially regulated by fentanyl, including those related to apoptosis, the antiviral / interferon response, chemokine signaling, and NFκB signaling. Collectively, these data suggest that synthetic opioids promote viral replication but may have distinct effects depending on the drug dose and the viral target. As higher viral loads are associated with pathogenesis and virus transmission, additional research is essential to an enhanced understanding of opioid-virus pathogenesis and for the development of new and optimized treatment strategies.
Publisher
Public Library of Science (PLoS),Public Library of Science
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