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Frontiers in Bioengineering and Biotechnology|November 21, 2022
Small molecule-mediated regenerative engineering for craniofacial and dentoalveolar boneJuan Mitchell, Kevin W H Lo
Drug Discovery Today|February 13, 2026
Leveraging artificial intelligence in tissue regenerative engineering via small-molecule librariesFatemeh S Hosseini, Taraje Whitfield, Juan Mitchell, et al.
Methods in Molecular Biology (Clifton, N.J.)|October 24, 2007
Methods to study the interactions of the dynein light chains and intermediate chainsKevin W-H Lo, K Kevin Pfister
Journal of Racial and Ethnic Health Disparities|October 11, 2024
A Scientific Program in Regenerative Engineering (ASPIRE): A Prospective Program Aimed at Tackling Health Disparities in the USAKevin W-H Lo, Marsha Murray, Cato T Laurencin
The Journal of Biological Chemistry|February 3, 2006
Identification of a novel region of the cytoplasmic Dynein intermediate chain important for dimerization in the absence of the light chainsKevin W-H Lo, Ho-Man Kan, K Kevin Pfister
Current Pharmaceutical Design|May 20, 2017
Engineered Bone Tissue with Naturally-Derived Small MoleculesGuleid Awale, Edgar Wong, Komal Rajpura, et al.
Journal of Tissue Engineering and Regenerative Medicine|August 6, 2013
Short-term administration of small molecule phenamil induced a protracted osteogenic effect on osteoblast-like MC3T3-E1 cellsKevin W-H Lo, Ho Man Kan, Cato T Laurencin
The Journal of Biological Chemistry|February 10, 2007
The DYNLT3 light chain directly links cytoplasmic dynein to a spindle checkpoint protein, Bub3Kevin W-H Lo, John M Kogoy, K Kevin Pfister
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