4.7 Article

Mitomycin-Treated Endothelial and Smooth Muscle Cells Suitable for Safe Tissue Engineering Approaches

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2022.772981

关键词

endothelial cells; smooth muscle cells; mitomycin C; vascular patch; tissue-engineered vascular graft; polycaprolactone

资金

  1. Ministry of Health of the Russian Federation [21032300337-5]
  2. [FWNR-2022-0015]

向作者/读者索取更多资源

This study demonstrates the potential use of discarded cardiac tissue for regenerative medicine and tissue engineering. The researchers investigated the benefits of using cardiac explants to repair vascular defects and tested a method to prevent cell division using mitomycin C. The results showed that the cell-containing patches engrafted successfully and did not interfere with normal patency. Mitomycin C-treated cells exhibited no tumorigenic effect and retained their specific cell markers, extracellular matrix production, and ability to stimulate angiogenesis. This approach may contribute to the development of safe cell products for regenerative medicine.
In our previous study, we showed that discarded cardiac tissue from the right atrial appendage and right ventricular myocardium is an available source of functional endothelial and smooth muscle cells for regenerative medicine and tissue engineering. In the study, we aimed to find out what benefits are given by vascular cells from cardiac explants used for seeding on vascular patches engrafted to repair vascular defects in vivo. Additionally, to make the application of these cells safer in regenerative medicine we tested an in vitro approach that arrested mitotic division to avoid the potential tumorigenic effect of dividing cells. A tissue-engineered construction in the form of a patch based on a polycaprolactone-gelatin scaffold and seeded with endothelial and smooth muscle cells was implanted into the abdominal aorta of immunodeficient SCID mice. Aortic patency was assessed using ultrasound, MRI, immunohistochemical and histological staining. Endothelial and smooth muscle cells were treated with mitomycin C at a therapeutic concentration of 10 mu g/ml for 2 h with subsequent analysis of cell proliferation and function. The absence of the tumorigenic effect of mitomycin C-treated cells, as well as their angiogenic potential, was examined by injecting them into immunodeficient mice. Cell-containing patches engrafted in the abdominal aorta of immunodeficient mice form the vessel wall loaded with the appropriate cells and extracellular matrix, and do not interfere with normal patency. Endothelial and smooth muscle cells treated with mitomycin C show no tumorigenic effect in the SCID immunodeficient mouse model. During in vitro experiments, we have shown that treatment with mitomycin C does not lead to a decrease in cell viability. Despite the absence of proliferation, mitomycin C-treated vascular cells retain specific cell markers, produce specific extracellular matrix, and demonstrate the ability to stimulate angiogenesis in vivo. We pioneered an approach to arresting cell division with mitomycin C in endothelial and smooth muscle cells from cardiac explant, which prevents the risk of malignancy from dividing cells in vascular surgery. We believe that this approach to the fabrication of tissue-engineered constructs based on mitotically inactivated cells from waste postoperative material may be valuable to bring closer the development of safe cell products for regenerative medicine.

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