Application of stem cells in translational medicine
Below is the content of the Citations in the paper which has been de-formatted, however, the content stays consistent with the original.
1. Haeckel, E. Natürliche Schöpfungsgeschichte. Georg Reimer: Berlin. 1868.
2. Triffitt, J. A brief history of the development of stromal stem cells (stem cells of the skeleton). Biomater Transl. 2021, 2, 287-293.
3. Andrews, P. Human pluripotent stem cells: tools for regenerative medicine. Biomater Transl. 2021, 2, 294-300.
4. Frazier, T.; Hamel, K.; Wu, X.; Rogers, E.; Lassiter, H.; Robinson, J.; Mohiuddin, O.; Henderson, M.; Gimble, J. Adipose-derived cells: building blocks of three-dimensional microphysiological systems. Biomater Transl. 2021, 2, 301-306.
5. Caplan, A. I. Mesenchymal stem cells and COVID-19: the process of discovery and of translation. Biomater Transl. 2021, 2, 307-311.
6. Zhao, Y.; Sun, Q.; Huo, B. Focal adhesion regulates osteogenic differentiation of mesenchymal stem cells and osteoblasts. Biomater Transl. 2021, 2, 312-322.
7. Wei, Q.; Wang, S.; Han, F.; Wang, H.; Zhang, W.; Yu, Q.; Liu, C.; Ding, L.; Wang, J.; Yu, L.; Zhu, C.; Li, B. Cellular modulation by the mechanical cues from biomaterials for tissue engineering. Biomater Transl. 2021, 2, 323-342.
8. Peng, Y.; Li, J.; Lin, H.; Tian, S.; Liu, S.; Pu, F.; Zhao, L.; Ma, K.; Qing, X.; Shao, Z. Endogenous repair theory enriches construction strategies for orthopaedic biomaterials: a narrative review. Biomater Transl. 2021, 2, 343-360.
9. Yan, G.; Liu, Y.; Xie, M.; Shi, J.; Qiao, W.; Dong, N. Experimental and computational models for tissue-engineered heart valves: a narrative review. Biomater Transl. 2021, 2, 361-375.