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In Vitro Differentiation of Human Mesenchymal Stem Cells into Functional Cardiomyocyte-like Cells
Published on: August 9, 2017
Mesenchymal stem cell adhesion to cardiac microvascular endothelium: activators and mechanisms
Vincent F M Segers1, Ivan Van Riet, Luc J Andries
1Laboratory of Physiology, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerp, Belgium.
Insights
Mesenchymal stem cells (MSCs) adhere to cardiac microvascular endothelium (CMVE), a key step for cardiac regeneration. Cytokine activation, particularly with TNF-alpha, enhances MSC adhesion via VCAM-1, improving cardiac homing.
Area of Science:
- Cardiovascular Biology
- Regenerative Medicine
- Cellular Adhesion Mechanisms
Background:
- Circulating stem cells, including mesenchymal stem cells (MSCs), are crucial for cardiac tissue regeneration.
- Stem cell homing to the myocardium requires adhesion to cardiac microvascular endothelium (CMVE).
Purpose of the Study:
- To investigate the in vitro and in vivo mechanisms governing the adhesion of MSCs to CMVE.
- To determine the role of cytokines and specific adhesion molecules in MSC-CMVE interactions.
Main Methods:
- In vitro adhesion assays of labeled rat MSCs to cultured CMVE under static and dynamic flow conditions.
- Cytokine pretreatment (IL-1beta, TNF-alpha) of MSCs and CMVE.
- In vivo intracardiac injection of MSCs in rats.
- Blocking studies using anti-VCAM-1 and anti-ICAM-1 antibodies.
Main Results:
- MSC adhesion to CMVE was shear stress-dependent but significant under physiological conditions.
- TNF-alpha and IL-1beta significantly increased MSC-CMVE adhesion in a concentration-dependent manner.
- In vivo, TNF-alpha pre-treatment enhanced MSC cardiac homing, mediated by VCAM-1, not ICAM-1.
Conclusions:
- MSC homing to the heart is an endothelium-dependent process.
- Cytokine-induced inflammation modulates MSC adhesion through VCAM-1 expression on both MSCs and CMVE.
- Targeting VCAM-1 may enhance stem cell therapy for cardiac regeneration.
Abstract:
Circulating stem cells home within the myocardium, probably as the first step of a tissue regeneration process. This step requires adhesion to cardiac microvascular endothelium (CMVE). In this study, we studied mechanisms of adhesion between CMVE and mesenchymal stem cells (MSCs). Adhesion was studied in vitro and in vivo. Isolated 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate-labeled rat MSCs were allowed to adhere to cultured CMVE in static and dynamic conditions. Either CMVE or MSCs were pretreated with cytokines [IL-1beta, IL-3, IL-6, stem cell factor, stromal cell-derived factor-1, or TNF-alpha, 10 ng/ml]. Control or TNF-alpha-treated MSCs were injected intracavitarily in rat hearts in vivo. In baseline in vitro conditions, the number of MSCs that adhered to CMVE was highly dependent on the flow rate of the superfusing medium but remained significant at venous and capillary shear stress amplitudes. Activation of both CMVE and MSCs with TNF-alpha or IL-1beta before adhesion concentration dependently increased adhesion of MSCs at each studied level of shear stress. Consistently, in vivo, activation of MSCs with TNF-alpha before injection significantly enhanced cardiac homing of MSCs. TNF-alpha-induced adhesion could be completely blocked by pretreating either CMVE or MSCs with anti-VCAM-1 monoclonal antibodies but not by anti-ICAM-1 antibodies. Adhesion of circulating MSCs in the heart appears to be an endothelium-dependent process and is sensitive to modulation by activators of both MSCs and endothelium. Inflammation and the expression of VCAM-1 but not ICAM-1 on both cell types have a regulatory effect on MSC homing in the heart.
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