Multipotent stromal cells stimulate liver regeneration by influencing the macrophage polarization in rat
Andrey Elchaninov1, Timur Fatkhudinov1, Natalia Usman1
1National Medical Research Center for Obstetrics, Gynecology and Perinatology named after Academician V.I.Kulakov of Ministry of Healthcare of Russian Federation, Moscow 117997, Russia.
Aim:
To investigate the influence of the umbilical cord-derived multipotent stromal cells (MSCs) on recovery of the liver after the subtotal resection, that is, removal of 80% of the organ mass, a renowned model of the small-for-size liver remnant syndrome.
Methods:
The MSCs were obtained from the intervascular tissue of umbilical cords, dissected from rat fetuses, by the explant culture technique. The vital labeling of MSCs with РКН26 was carried out on the 3rd passage. The subtotal resection was performed on male Sprague-Dawley rats. The experimental group animals received a transplant 106 MSCs infused into the spleen. Hepatocyte proliferation was assessed by counting of either mitotic figures or Ki67-positive cells in microscopic images. MSC differentiation was assessed with antibodies to hepatocyte-specific marker cytokeratin 18 (CK18), cholangiocyte-specific protein CK19, smooth muscle cell-specific protein α-SMA, the endothelial cell marker CD31, or the active fibroblast marker FAPα. Total macrophages of the liver were selectively stained in cryosections incubated with anti-CD68 antibodies (1:100, Abcam), while the M2a and M2c macrophage populations were selectively stained with anti-CD206 antibodies. Expression of interleukin and growth factor genes was evaluated with PCR-RT.
Results:
Intrasplenic allogeneic transplantation of the umbilical cord-derived multipotent stromal cells stimulates reparative processes within the residual liver tissue after subtotal resection (removal of 80% of the organ mass), as indicated by increased rates of hepatocyte proliferation and accelerated organ mass recovery. These effects may result from paracrine influence of the transplanted cells on the resident macrophage population of the liver. The transplantation favors polarization of macrophages to M2 phenotype (the M2-polarized macrophages specifically express CD206; they are known to suppress inflammation and support tissue repair). No differentiation of the transplanted cells into any of the liver cell types have been observed in the study.
Conclusion:
We found no direct evidence for the paracrine effect of MSCs on liver regeneration after the subtotal liver resection in rats. However, the paracrine mechanism of the therapeutic activity of transplanted MSC is indirectly indicated by a decrease in the total number of CD68 + macrophages and an increase in the proportion of M2 pro-repair macrophages in the regenerating liver as compared to animals in which the transplantation was only mimicked.
Insights
Umbilical cord-derived multipotent stromal cells (MSCs) enhance liver regeneration after subtotal resection by promoting hepatocyte proliferation and M2 macrophage polarization. These cells indirectly support liver repair through paracrine mechanisms, not direct differentiation.
Area of Science:
- Regenerative Medicine
- Hepatology
- Cell Therapy
Background:
- Subtotal liver resection (80% organ mass removal) induces small-for-size liver remnant syndrome.
- Umbilical cord-derived multipotent stromal cells (MSCs) are investigated for their regenerative potential.
Purpose of the Study:
- To evaluate the impact of MSC transplantation on liver regeneration following subtotal resection in a rat model.
- To elucidate the mechanisms underlying MSC-mediated liver repair.
Main Methods:
- MSCs were isolated from rat umbilical cords and labeled.
- Rats underwent subtotal liver resection and received intrasplenic MSC transplantation.
- Hepatocyte proliferation was assessed via Ki67 staining and mitotic figures.
- Macrophage populations (CD68+, CD206+) and MSC differentiation markers were analyzed using immunohistochemistry and PCR-RT.
Main Results:
- MSC transplantation significantly increased hepatocyte proliferation and accelerated liver mass recovery.
- Transplanted MSCs did not differentiate into liver cell types.
- MSC treatment promoted M2 macrophage polarization, characterized by CD206 expression, suggesting an anti-inflammatory and pro-repair role.
Conclusions:
- Intrasplenic MSC transplantation stimulates liver regeneration after subtotal resection.
- The therapeutic effects are likely mediated by paracrine signaling, particularly through modulation of the liver's resident macrophage population towards an M2 phenotype.
- No direct differentiation of MSCs into liver cells was observed, supporting an indirect paracrine mechanism of action.
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