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Updated: Aug 16, 2025

Zika Virus Infection of Cultured Human Fetal Brain Neural Stem Cells for Immunocytochemical Analysis
Published on: February 5, 2018
Zika virus alters osteogenic lineage progression of human mesenchymal stromal cells
Noreen Mumtaz1, Amel Dudakovic2, Asha Nair2
1Department of Viroscience, Erasmus MC, Erasmus University Medical Centre, Rotterdam, The Netherlands.
Abstract:
Arboviruses target bone forming osteoblasts and perturb bone remodeling via paracrine factors. We previously reported that Zika virus (ZIKV) infection of early-stage human mesenchymal stromal cells (MSCs) inhibited the osteogenic lineage commitment of MSCs. To understand the physiological interplay between bone development and ZIKV pathogenesis, we employed a primary in vitro model to examine the biological responses of MSCs to ZIKV infection at different stages of osteogenesis. Precommitted MSCs were infected at the late stage of osteogenic stimulation (Day 7) with ZIKV (multiplicity of infection of 5). We observe that MSCs infected at the late stage of differentiation are highly susceptible to ZIKV infection similar to previous observations with early stage infected MSCs (Day 0). However, in contrast to ZIKV infection at the early stage of differentiation, infection at a later stage significantly elevates the key osteogenic markers and calcium content. Comparative RNA sequencing (RNA-seq) of early and late stage infected MSCs reveals that ZIKV infection alters the mRNA transcriptome during osteogenic induction of MSCs (1251 genes). ZIKV infection provokes a robust antiviral response at both stages of osteogenic differentiation as reflected by the upregulation of interferon responsive genes (n > 140). ZIKV infection enhances the expression of immune-related genes in early stage MSCs while increasing cell cycle genes in late stage MSCs. Remarkably, ZIKA infection in early stage MSCs also activates lipid metabolism-related pathways. In conclusion, ZIKV infection has differentiation stage-dependent effects on MSCs and this mechanistic understanding may permit the development of new therapeutic or preventative measures for bone-related effects of ZIKV infection.
Insights
Zika virus (ZIKV) infection impacts bone development differently depending on the stage of human mesenchymal stromal cell (MSC) differentiation. Late-stage ZIKV infection surprisingly boosts osteogenic markers, unlike early-stage infection.
Area of Science:
- Bone Biology and Virology
- Cellular and Molecular Medicine
Background:
- Arboviruses, including Zika virus (ZIKV), can disrupt bone remodeling by targeting osteoblasts.
- Previous studies showed ZIKV inhibits osteogenic commitment in early-stage human mesenchymal stromal cells (MSCs).
Purpose of the Study:
- To investigate the stage-dependent effects of ZIKV infection on MSCs during osteogenesis.
- To elucidate the interplay between ZIKV pathogenesis and bone development.
Main Methods:
- Utilized a primary in vitro model of MSC osteogenic differentiation.
- Infected MSCs at early (Day 0) and late (Day 7) stages of differentiation with ZIKV.
- Performed comparative RNA sequencing (RNA-seq) on infected MSCs.
Main Results:
- MSCs are highly susceptible to ZIKV infection at both early and late differentiation stages.
- Late-stage ZIKV infection significantly increased osteogenic markers and calcium content, contrasting early-stage effects.
- ZIKV infection altered 1251 genes during MSC osteogenic induction, inducing antiviral and immune responses.
- Early-stage infection upregulated immune and lipid metabolism genes, while late-stage infection enhanced cell cycle genes.
Conclusions:
- ZIKV infection exhibits differentiation stage-dependent effects on MSCs.
- Understanding these mechanisms could lead to new therapies for ZIKV-related bone complications.
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