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Use of In vivo Imaging to Monitor the Progression of Experimental Mouse Cytomegalovirus Infection in Neonates
Published on: July 6, 2013
Human cytomegalovirus replicates abortively in polymorphonuclear leukocytes after transfer from infected endothelial
G Gerna1, E Percivalle, F Baldanti
1Servizio di Virologia, Area Infettivologica, Istituto di Ricovero e Cura a Carattere Scientifico Policlinico San Matteo, 27100 Pavia, Italy. g.gerna@smatteo.pv.it
Abstract:
Using a recently developed model for in vitro generation of pp65-positive polymorphonuclear leukocytes (PMNLs), we demonstrated that PMNLs from immunocompetent subjects may harbor both infectious human cytomegalovirus (HCMV) and viral products (pp65, p72, DNA, and immediate-early [IE] and pp67 late mRNAs) as early as 60 min after coculture with human umbilical vein endothelial cells (HUVEC) or human embryonic lung fibroblasts (HELF) infected with a clinical HCMV isolate (VR6110) or other wild-type strains. The number of PMNLs positive for each viral parameter increased with coculture time. Using HELF infected with laboratory-adapted HCMV strains, only very small amounts of viral DNA and IE and late mRNAs were detected in PMNLs. A cellular mRNA, the vascular cell adhesion molecule-1 mRNA, which is abundantly present in both infected and uninfected HUVEC, was detected in much larger amounts in PMNLs cocultured with VR6110-infected cells than in controls. Coculture of PMNLs with VR6110-infected permissive cells in the presence or absence of RNA, protein, and viral DNA synthesis inhibitors showed that only IE genes were transcribed in PMNLs during coculture. Synthesis of IE transcripts in PMNLs was also supported by the finding that only the copy number of IE mRNA (and not the DNA or the pp67 mRNA) per infected PMNL increased markedly with time, and the pp67 to IE mRNA copy number ratio changed from greater than 10 in infected HUVEC to less than 1 in cocultured PMNLs. Fluorescent probe transfer experiments and electron microscopy studies indicated that transfer of infectious virus and viral products from infected cells to PMNLs is likely to be mediated by microfusion events induced by wild-type strains only. In addition, HCMV pp65 and p72 were both shown to localize in the nucleus of the same PMNLs by double immunostaining. Two different mechanisms may explain the virus presence in PMNLs: (i) one major mechanism consists of transitory microfusion events (induced by wild-type strains only) of HUVEC or HELF and PMNLs with transfer of viable virus and biologically active viral material to PMNLs; and (ii) one minor mechanism, i.e., endocytosis, occurs with both wild-type and laboratory strains and leads to the acquisition of very small amounts of viral nucleic acids. In conclusion, HCMV replicates abortively in PMNLs, and wild-type strains and their products (as well as cellular metabolites and fluorescent dyes) are transferred to PMNLs, thus providing evidence for a potential mechanism of HCMV dissemination in vivo.
Insights
Human cytomegalovirus (HCMV) can infect polymorphonuclear leukocytes (PMNLs) through microfusion with infected cells, transferring infectious virus and viral products. This process may represent a novel mechanism for HCMV dissemination in vivo.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Human cytomegalovirus (HCMV) is a common pathogen with complex interactions with the immune system.
- Polymorphonuclear leukocytes (PMNLs) are key immune cells involved in early host defense.
- Understanding how HCMV interacts with PMNLs is crucial for comprehending viral dissemination and pathogenesis.
Purpose of the Study:
- To investigate the in vitro interaction between HCMV and PMNLs.
- To determine the mechanisms of HCMV and viral product transfer to PMNLs.
- To explore the potential role of PMNLs in HCMV dissemination.
Main Methods:
- Developed a model for in vitro generation of pp65-positive PMNLs.
- Co-cultured PMNLs with HCMV-infected human umbilical vein endothelial cells (HUVEC) or human embryonic lung fibroblasts (HELF).
- Utilized fluorescent probe transfer, electron microscopy, and molecular assays (mRNA detection, immunostaining).
Main Results:
- PMNLs rapidly acquired infectious HCMV and viral products (pp65, p72, DNA, mRNAs) after co-culture with infected cells.
- Wild-type HCMV strains induced microfusion events, facilitating efficient transfer of virus and products.
- HCMV underwent abortive replication in PMNLs, with only immediate-early genes transcribed.
- A minor mechanism of endocytosis also contributed to viral nucleic acid acquisition.
Conclusions:
- HCMV can be transferred to PMNLs via microfusion with infected endothelial cells or fibroblasts.
- This transfer involves infectious virus and biologically active viral material.
- PMNLs may serve as a vehicle for HCMV dissemination in vivo.
- HCMV exhibits abortive replication within PMNLs.
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