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Updated: Nov 3, 2025

Isolation and Characterization of Human Umbilical Cord-derived Mesenchymal Stem Cells from Preterm and Term Infants
Published on: January 26, 2019
Polycystin-1 Enhances Stemmness Potential of Umbilical Cord Blood-Derived Mesenchymal Stem Cells
Se-Hwa Jung1, Ji-Eun You1, Soon-Won Choi2
1Department of Biomedical Laboratory Science, Konyang University, Daejeon 35365, Korea.
Insights
Polycystin-1 (PC1) enhances stemness and differentiation in umbilical cord blood-derived mesenchymal stem cells (UCB-MSCs). This finding suggests PC1
Area of Science:
- Biochemistry
- Cell Biology
- Regenerative Medicine
Background:
- Polycystic Kidney Disease (PKD) involves polycystin-1 (PC1) and polycystin-2 (PC2), crucial for cell membrane interactions and regulation.
- PC1's role in cancer cell proliferation and migration is established, but its function in stem cells remains unexplored.
Purpose of the Study:
- To investigate the biological function of PC1 in umbilical cord blood-derived mesenchymal stem cells (UCB-MSCs).
- To assess PC1's impact on UCB-MSC migration, proliferation, and viability.
- To evaluate PC1's effect on osteogenic differentiation in an ex vivo model.
Main Methods:
- Expression of the PKD1 gene in UCB-MSCs.
- Assessment of cell migration, proliferation, and viability.
- Utilizing a 3D-printed artificial tooth model for ex vivo differentiation studies.
Main Results:
- PKD1 expression influenced UCB-MSC migration, proliferation, and viability.
- PC1 expression enhanced osteogenic differentiation in the artificial tooth model.
- Improved stemness marker expression correlated with PC1 levels.
Conclusions:
- This study is the first to explore PC1's function in UCB-MSCs.
- PC1 may enhance stem cell differentiation and maintain long-term stemness.
- PC1 holds potential for therapeutic applications in stem cell treatments.
Abstract:
Polycystic Kidney Disease (PKD) is a disorder that affects the kidneys and other organs, and its major forms are encoded by polycystin-1 (PC1) and polycystin-2 (PC2), as PKD1 and PKD2. It is located sandwiched inside and outside cell membranes and interacts with other cells. This protein is most active in kidney cells before birth, and PC1 and PC2 work together to help regulate cell proliferation, cell migration, and interactions with other cells. The molecular relationship and the function between PKD1 and cancer is well known, such as increased or decreased cell proliferation and promoting or suppressing cell migration depending on the cancer cell type specifically. However, its function in stem cells has not been revealed. Therefore, in this study, we investigated the biological function of PC1 and umbilical cord blood-derived mesenchymal stem cell (UCB-MSC). Furthermore, we assessed how it affects cell migration, proliferation, and the viability of cells when expressed in the PKD1 gene. In addition, we confirmed in an ex vivo artificial tooth model generated by the three-dimension printing technique that the ability to differentiate into osteocytes improved according to the expression level of the stemness markers when PKD1 was expressed. This study is the first report to examine the biological function of PKD1 in UCB-MSC. This gene may be capable of enhancing differentiation ability and maintaining long-term stemness for the therapeutic use of stem cells.
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