Mechanisms of virus dissemination in bone marrow of HIV-1�infected humanized BLT mice

dc.contributor.authorMark S Ladinsky
dc.contributor.authorWannisa Khamaikawin
dc.contributor.authorYujin Jung
dc.contributor.authorSamantha Lin
dc.contributor.authorJennifer Lam
dc.contributor.authorDong Sung An
dc.contributor.authorPamela J Bjorkman
dc.contributor.authorCollin Kieffer
dc.date.accessioned2025-07-21T06:02:27Z
dc.date.issued2019-10-28
dc.description.abstractImmune progenitor cells differentiate in bone marrow (BM) and then migrate to tissues. HIV-1 infects multiple BM cell types, but virus dissemination within BM has been poorly understood. We used light microscopy and electron tomography to elucidate mechanisms of HIV-1 dissemination within BM of HIV-1-infected BM/liver/thymus (BLT) mice. Tissue clearing combined with confocal and light sheet fluorescence microscopy revealed distinct populations of HIV-1 p24-producing cells in BM early after infection, and quantification of these populations identified macrophages as the principal subset of virus-producing cells in BM over time. Electron tomography demonstrated three modes of HIV-1 dissemination in BM: (i) semi-synchronous budding from T-cell and macrophage membranes, (ii) mature virus association with virus-producing T-cell uropods contacting putative target cells, and (iii) macrophages engulfing HIV-1-producing T-cells and producing virus within enclosed intracellular compartments that fused to invaginations with access to the extracellular space. These results illustrate mechanisms by which the specialized environment of the BM can promote virus spread locally and to distant lymphoid tissues.
dc.identifier.doi10.7554/elife.46916
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/8833
dc.subjectHumanized mouse
dc.subject.classificationVirus-based gene therapy research
dc.titleMechanisms of virus dissemination in bone marrow of HIV-1�infected humanized BLT mice
dc.typeArticle

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