Methamphetamine induces transcriptional changes in cultured HIV-infected mature monocytes that may contribute to HIV neuropathogenesis is a research paper published in Frontiers in Immunology (2022). On theSindex it has a DataRank of 0. It has been cited 13 times.
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National Institutes of Health
Grant: R01DA044584 , R01DA048609 , R01MH112391 , 5T32AI007501
NIDA NIH HHS
Grant: R01 DA044584
NIMH NIH HHS
Grant: R01 MH112391
NIDA NIH HHS
Grant: R01 DA048609
NIAID NIH HHS
Grant: T32 AI007501
NICHD NIH HHS
Grant: P50 HD105352
National Institutes of Health
Grant: 5R01DA044584-05
Impact of illicit drugs, HIV, and ART on neuroinflammation and BBB disruption
National Institutes of Health
Grant: 5R01MH112391-02
Monocyte CNS HIV entry & neurodegeneration: Translational studies in the CART era
National Institutes of Health
Grant: 2P30AI124414-07
ERC Einstein-Rockefeller-CUNY Center for AIDS research
National Institutes of Health
Grant: 5R01DA048609-03
Mechanisms of opioid- mediated HIV neuropathogenesis
National Institutes of Health
Grant: 5T32AI007501-17
HIV, AIDS and Opportunistic Infections
Einstein-Rockefeller-CUNY Center for AIDS Research, Albert Einstein College of Medicine
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Sustainable Development Goals
Additional file 2 of Change of histone H3 lysine 14 acetylation stoichiometry in human monocyte derived macrophages as determined by MS-based absolute targeted quantitative proteomic approach: HIV infection and methamphetamine exposure
Additional file 2 of Change of histone H3 lysine 14 acetylation stoichiometry in human monocyte derived macrophages as determined by MS-based absolute targeted quantitative proteomic approach: HIV infection and methamphetamine exposure
Additional file 1 of Change of histone H3 lysine 14 acetylation stoichiometry in human monocyte derived macrophages as determined by MS-based absolute targeted quantitative proteomic approach: HIV infection and methamphetamine exposure
Additional file 1 of Change of histone H3 lysine 14 acetylation stoichiometry in human monocyte derived macrophages as determined by MS-based absolute targeted quantitative proteomic approach: HIV infection and methamphetamine exposure