Nai-Chen Cheng
Affiliations: | 2012 | Biomedical Engineering | National Taiwan University, Taipei, Taipei City, Taiwan |
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"Nai-Chen Cheng"
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Quiñones ED, Wang MH, Liu KT, et al. (2024) Extracellular vesicles from human adipose-derived stem cell spheroids: Characterization and therapeutic implications in diabetic wound healing. Materials Today. Bio. 29: 101333 |
Liu KC, Chen YC, Hsieh CF, et al. (2024) Scaffold-free 3D culture systems for stem cell-based tissue regeneration. Apl Bioengineering. 8: 041501 |
Chen YC, Chuang EY, Tu YK, et al. (2024) Human platelet lysate-cultured adipose-derived stem cell sheets promote angiogenesis and accelerate wound healing via CCL5 modulation. Stem Cell Research & Therapy. 15: 163 |
Li CW, Young TH, Wang MH, et al. (2023) Low-glucose culture environment can enhance the wound healing capability of diabetic adipose-derived stem cells. Stem Cell Research & Therapy. 14: 236 |
Tu CC, Zheng ZC, Cheng NC, et al. (2023) Alveolar Mucosal Cell Spheroids Promote Extraction Socket Healing and Osseous Defect Regeneration. Journal of Periodontology |
Chen WX, Cheng NC, Chen YJ, et al. (2023) Characterization of silk fibroin-based microneedles and in vitro study of stromal cell-derived factor-1-loaded microneedles on adipose stem cell recruitment. International Journal of Biological Macromolecules. 233: 123537 |
Yen CH, Cheng NC, Hsieh HY, et al. (2022) pH-driven continuous stem cell production with enhanced regenerative capacity from polyamide/chitosan surfaces. Materials Today. Bio. 18: 100514 |
Yu J, Hsu YC, Lee JK, et al. (2022) Enhanced angiogenic potential of adipose-derived stem cell sheets by integration with cell spheroids of the same source. Stem Cell Research & Therapy. 13: 276 |
Yu KF, Lu TY, Li YE, et al. (2022) Design and Synthesis of Stem Cell-Laden Keratin/Glycol Chitosan Methacrylate Bioinks for 3D Bioprinting. Biomacromolecules |
Chiang YC, Yeh HW, Hu SM, et al. (2022) Vapor construction and modification of stem cell-laden multicomponent scaffolds for regenerative therapeutics. Materials Today. Bio. 13: 100213 |