1. Ma B, Zhang S, Liu F, Duan J, Wang S, Han J, Sang Y, Yu X, Li D, Tang W,Ge S*, Liu H*. One dimension hydroxyapatite nanostructures with tunable length for efficient stem cell differentiation regulation. ACS Appl Mater Interfaces. 2017;9(39):33717-33727.
2. Zhang S, Ma B, Wang S, Duan J, Qiu J, Li D, Sang Y,Ge S*, Liu H*. Mass-production of fluorescent chitosan/graphene oxide hybridmicrospheres for in vitro 3D expansion of human umbilical cordmesenchymal stem cells. Chem Eng J. 2018;331:675-684.
3. Kang W, Shang L, Wang T, Liu H,Ge S*. Rho-kinase regulates LPS-induced NF-κB activation and inflammatory cytokines production through p38 MAPK pathway in human gingival fibroblasts. J Periodontol, 2018;89(7):883-893.
4. Kang W, Liang Q, Du L, Shang L, Wang T,Ge S*. Sequential application of bFGF and BMP-2 facilitates osteogenic differentiation of human periodontal ligament stem cells. J Periodontal Res. 2019;54(4):424-434.
5. Li X, Ma B, Li J, Shang L, Liu H*,Ge S*. A method to visually observe the degradation-diffusion-reconstruction behavior of hydroxyapatite in bone repair process. Acta Biomater. 2020;101:554-564.
6. Ding T, Li J, Zhang X, Du L, Li Y, Li D, Kong B*.,Ge S*.Super-assembled core/shell fibrous frameworks with dual growth factors for in situ cementum-ligament-bone complex regeneration. Biomater Sci. 2020;8(9):2459-2471.
7. Shang L, Liu Z, Mao B, Shao J, Wang B, Ma C,Ge S*. Dimethyloxallyl glycine/Nanosilicates-loaded osteogenic/angiogenic Difunctional fibrous structure for functional periodontal tissue regeneration. Bioactive Materials. 2020;6(4):1175-1188.
8. Yi B, Ding T, Jiang S, Gong T, Chaora H, Sha O, Dissanayaka W,Ge S*, Zhang C*. Conversion of stem cells from apical papilla into endothelial cells by small molecules and growth factors. Stem Cell Res Ther. 2021;12(1):266.
9. Shen S, Zhang Y, Zhang S, Wang B, Shang L, Shao J, Lin M, Cui Y, Sun S*,Ge S*. 6-bromoindirubin-3’-oxime promotes osteogenic differentiation of periodontal ligament stem cells and facilitates bone regeneration in a mouse periodontitis model. ACS Biomater Sci Eng. 2021;7(1): 232-241.
10. Li X#, Wei L#, Li J, Shao J, Yi B, Zhang C, Liu H, Ma B*,Ge S*. Multifunctional SDF-1-loaded hydroxyapatite/polylactic acid membranes promote cell recruitment, immunomodulation, angiogenesis, and osteogenesis for biomimetic bone regeneration. Applied Materials Today. 2021;22:100942.
11. Liu X, Shen L, Xu W, Kang W, Yang D, Li J*,Ge S*, Liu H*. Low frequency hdromechanics-driven generation of superoxide radicals via optimized piezotronic effect for water disinfection. Nano Energy. 2021, https://doi.org/10.1016/j.nanoen.2021.106290.
12. Liu S#, Wang Y#, Ma B, Shao J, Liu H,Ge S*.Gingipain-responsive thermosensitive hydrogel loaded with SDF-1 facilitates in situ periodontal tissue regeneration. ACS Applied Materials & Interfaces. 2021;29. doi: 10.1021/acsami.1c08855.
13. Ding T, Kang W, Li J, Yu L,Ge S*. An in situ tissue engineering scaffold with growth factors combining angiogenesis and osteoimmunomodulatory functions for advanced periodontal bone regeneration. Journal of Nanobiotechnology. 2021;19:247.
14. Wang W, Li J*, Liu H*,Ge S*. Advancing Versatile Ferroelectric Materials Toward Biomedical Applications. Adv Sci (Weinh). 2020;8(1):2003074.
15. Liu S, Wang Y, Yu L, Li J,Ge S*. Development of a thermosensitive hydrogel loaded with DTT and SDF-1 facilitating in situ periodontal bone regeneration. Chem Eng J. 2022; 432.
16. Lv C, Kang W, Liu S, Yang P, Nishina T,Ge S*,Bianco A*, Ma B*. Growth of ZIF-8 nanoparticles in situ on graphene oxide nanosheets: A multifunctional nanoplatform for combined ion-interference and photothermal therapy. ACS Nano. 2022;16(7):11428-11443.
17. Liu Z, Yu Y, Kang W, Chen F, Yan F, Ma B*,Ge S*. Self-assembled Terbium-amino acid nanoparticles as a model for Terbium biosafety and bone repair ability assessment. Composites Part B. 2022;244.