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Updated: Feb 22, 2026

Bone Marrow Transplantation Platform to Investigate the Role of Dendritic Cells in Graft-versus-Host Disease
Published on: March 17, 2020
BM-MSCs-derived microvesicles promote allogeneic kidney graft survival through enhancing micro-146a expression of
Xiao-Qiang Wu1, Tian-Zhong Yan1, Zhi-Wei Wang1
1Department of Urology, Henan Provincial People's Hospital, Zhengzhou 450003, China.
Objective:
Microvesicles (MVs) are plasmalemmal vesicles that are released from various cells and regarded as a mediator of intermolecular communication. In present study, we aimed to evaluate the therapeutic efficacy of the bone marrow mesenchymal stem cells (BM-MSCs)-derived MVs in the mice kidney transplant model and explored the underlying mechanism.
Methods:
BM-MSCs were isolated from C57BL/6 mice and identified using flow cytometry. In vivo allogenic kidney transplantation model of mice was performed between C57BL/6 mice (recipient) and BALB/c mice (donor). Recipient-type BM-MSC (0.1ml) or equal volume of medium as a control was injected i.v. 24h after kidney transplantation. Serum was collected for creatinine concentration detection at 14 d after transplantation. Dendritic cells (DCs) phenotype and miR-146a expression level in plant was identified. Immature DCs (iDCs) and mature DCs (mDCs) were derived from monocytes. MVs were separated from BM-MSCs.
Results:
BM-MSCs positive for CD29 (95.8%) and CD44 (94.7%) were cultured and confirmed to prolong the allogenic kidney graft survival in mice. Importantly, the expression of miR-146a increased significantly in DCs of BM-MSCs-treated allogenic kidney. Moreover, both BM-MSCs and MVs derived from BM-MSCs enhanced miR-146a expression in iDCs and mDCs in vitro. Furthermore, MVs substantially reduced IL-12 mRNA expression and IL-12 production of mDCs whereas this action was reversed by miR-146a silencing. MiR-146a silencing also abrogated the MVs-induced decrease in serum creatinine, reduction of immature DCs phenotype in transplant and increase in miR-146a expression level.
Conclusion:
In summary, our data suggested that the BM-MSCs-derived MVs improved allogenic kidney transplantation survival through inhibiting DCs maturity by miR-146a.
Insights
Bone marrow mesenchymal stem cell-derived microvesicles (BM-MSCs-MVs) enhance kidney transplant survival by inhibiting dendritic cell maturation via miR-146a. This study demonstrates a novel therapeutic mechanism for BM-MSCs-MVs in transplantation. Keywords: microvesicles, stem cells, kidney transplant, dendritic cells, miR-146a.
Area of Science:
- Immunology
- Regenerative Medicine
- Transplantation Science
Background:
- Microvesicles (MVs) mediate intercellular communication and are released from various cells.
- Bone marrow mesenchymal stem cells (BM-MSCs) are recognized for their therapeutic potential.
- Understanding the role of BM-MSCs-derived MVs in transplantation is crucial for developing new therapies.
Purpose of the Study:
- To evaluate the therapeutic efficacy of BM-MSCs-derived MVs in a mouse kidney transplant model.
- To elucidate the underlying mechanism of action for BM-MSCs-MVs in improving graft survival.
Main Methods:
- Isolation and characterization of BM-MSCs and their derived MVs.
- Establishment of an in vivo allogeneic kidney transplantation model in mice.
- Assessment of dendritic cell phenotype, miR-146a expression, and serum creatinine levels post-treatment.
Main Results:
- BM-MSCs and their derived MVs significantly prolonged allogeneic kidney graft survival.
- Treatment with BM-MSCs-MVs increased miR-146a expression in dendritic cells (DCs).
- BM-MSCs-MVs inhibited DC maturation and IL-12 production, an effect dependent on miR-146a.
Conclusions:
- BM-MSCs-derived MVs enhance allogeneic kidney transplantation survival.
- The therapeutic effect is mediated by the inhibition of DC maturation through the miR-146a pathway.
- These findings highlight BM-MSCs-MVs as a promising therapeutic strategy for kidney transplantation.
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