Zhao, E., Wu, Z., & Xiang, J. (2026). Focal adhesion kinase activation plays a critical role in the restoration of simulated microgravity-inhibited osteoblast differentiation by triggering transcriptional Wnt/B-Catenin-BMP2-COL1 and metabolic SIRT1-PGC1a-CPT1A pathways. AIMS Molecular Science, 13(1), 1.
Chicago Style (17th ed.) CitationZhao, Eric, Zhaojia Wu, and Jim Xiang. "Focal Adhesion Kinase Activation Plays a Critical Role in the Restoration of Simulated Microgravity-inhibited Osteoblast Differentiation by Triggering Transcriptional Wnt/B-Catenin-BMP2-COL1 and Metabolic SIRT1-PGC1a-CPT1A Pathways." AIMS Molecular Science 13, no. 1 (2026): 1.
MLA (9th ed.) CitationZhao, Eric, et al. "Focal Adhesion Kinase Activation Plays a Critical Role in the Restoration of Simulated Microgravity-inhibited Osteoblast Differentiation by Triggering Transcriptional Wnt/B-Catenin-BMP2-COL1 and Metabolic SIRT1-PGC1a-CPT1A Pathways." AIMS Molecular Science, vol. 13, no. 1, 2026, p. 1.