Brad A. Amendt
Affiliations: | Anatomy & Cell Biology | University of Iowa, Iowa City, IA |
Area:
Molecular Biology, Human Development, Genetics, DentistryGoogle:
"Brad Amendt"Children
Sign in to add traineeXiao Li | grad student | 2009-2014 | (Cell Biology Tree) |
Wenjie Yu | grad student | 2012-2017 | University of Iowa |
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Publications
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Su D, Eliason S, Sun Z, et al. (2023) Wolf-Hirschhorn syndrome candidate 1 (Whsc1) methyltransferase signals via a Pitx2-miR-23/24 axis to effect tooth development. The Journal of Biological Chemistry. 299: 105324 |
Eliason S, Su D, Pinho F, et al. (2022) HMGN2 represses gene transcription via interaction with transcription factors Lef-1 and Pitx2 during amelogenesis. The Journal of Biological Chemistry. 102295 |
Sweat M, Sweat Y, Yu W, et al. (2021) The miR-200 family is required for ectodermal organ development through the regulation of the epithelial stem cell niche. Stem Cells (Dayton, Ohio) |
Eliason S, Sharp T, Sweat M, et al. (2020) Ectodermal Organ Development Is Regulated by a microRNA-26b-Lef-1-Wnt Signaling Axis. Frontiers in Physiology. 11: 780 |
Sweat YY, Sweat M, Yu W, et al. (2020) Controls Periderm and Rugae Development to Inhibit Oral Adhesions. Journal of Dental Research. 22034520939013 |
Yu W, Sun Z, Sweat Y, et al. (2020) interactions specify progenitor oral/dental epithelial cell signaling centers. Development (Cambridge, England) |
Sweat YY, Sweat M, Mansaray M, et al. (2019) Six2 regulates Pax9 expression, palatogenesis and craniofacial bone formation. Developmental Biology |
Gowans LJJ, Cameron-Christie S, Slayton RL, et al. (2019) Affect Dental Morphogenesis Resulting in X-linked Taurodontism, Microdontia and Dens-Invaginatus. Frontiers in Genetics. 10: 800 |
Akkouch A, Eliason S, Sweat ME, et al. (2019) Enhancement of MicroRNA-200c On Osteogenic Differentiation and Bone Regeneration by Targeting SOX2-mediated Wnt Signaling and KLF4. Human Gene Therapy |
Akkouch A, Zhu M, Romero-Bustillos M, et al. (2019) MicroRNA-200c Attenuates Periodontitis by Modulating Proinflammatory and Osteoclastogenic Mediators. Stem Cells and Development |