Mechanisms of human immunodeficiency virus-1 latency

scientific article

Mechanisms of human immunodeficiency virus-1 latency is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1111/J.1537-2995.2005.00538.X
P698PubMed publication ID16086794

P2093author name stringUna O'Doherty
P2860cites workThe challenge of viral reservoirs in HIV-1 infectionQ28216956
Quantification of latent tissue reservoirs and total body viral load in HIV-1 infectionQ29619738
Reservoirs for HIV-1: mechanisms for viral persistence in the presence of antiviral immune responses and antiretroviral therapyQ33932746
Dendritic cell subsets and lineages, and their functions in innate and adaptive immunityQ34339185
HIV reproducibly establishes a latent infection after acute infection of T cells in vitro.Q34985945
HIV-1 pathogenesisQ35166833
Plasmacytoid dendritic cells in immunityQ35953140
Quantification of CD4, CCR5, and CXCR4 levels on lymphocyte subsets, dendritic cells, and differentially conditioned monocyte-derived macrophagesQ36340560
Dendritic cells freshly isolated from human blood express CD4 and mature into typical immunostimulatory dendritic cells after culture in monocyte-conditioned mediumQ36362334
A quantitative assay for HIV DNA integration in vivoQ40809319
Cell-to-cell spread of HIV-1 occurs within minutes and may not involve the participation of virus particlesQ41642255
P433issue2 Suppl
P304page(s)88S-91S
P577publication date2005-08-01
P1433published inTransfusionQ15758500
P1476titleMechanisms of human immunodeficiency virus-1 latency
P478volume45

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cites work (P2860)
Q38919402HIV integration site distributions in resting and activated CD4+ T cells infected in culture
Q39884805Human immunodeficiency virus integrates directly into naive resting CD4+ T cells but enters naive cells less efficiently than memory cells
Q36604387Iron depletion by whole-blood donation harms menstruating females: the current whole-blood-collection paradigm needs to be changed
Q38862435The CXCR4-tropic human immunodeficiency virus envelope promotes more-efficient gene delivery to resting CD4+ T cells than the vesicular stomatitis virus glycoprotein G envelope