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Cell Biochemistry and Function|July 1, 2026
Oral Calcium Supplements With L-Proline and Sodium Zinc Chlorophyllin Preserve Elevated Transepithelial Calcium Transport in Spontaneously Hypertensive RatsPornpailin Upanan, Kannikar Wongdee, Surathouch Thongprong, et al.Scientific Reports|April 9, 2022
Mild-intensity physical activity prevents cardiac and osseous iron deposition without affecting bone mechanical property or porosity in thalassemic miceNarattaphol Charoenphandhu, Supagarn Sooksawanwit, Ratchaneevan Aeimlapa, et al.Cancer Research|May 2, 2013
Growth of triple-negative breast cancer cells relies upon coordinate autocrine expression of the proinflammatory cytokines IL-6 and IL-8Zachary C Hartman, Graham M Poage, Petra den Hollander, et al.Scientific Reports|October 5, 2024
3D bioprinting of fish skin-based gelatin methacryloyl (GelMA) bio-ink for use as a potential skin substituteNuttapol Tanadchangsaeng, Kitipong Pasanaphong, Tulyapruek Tawonsawatruk, et al.Biochemical and Biophysical Research Communications|July 25, 2024
Fibroblast growth factor-21 potentiates the stimulatory effects of 1,25-dihydroxyvitamin D3 on transepithelial calcium transport and TRPV6 Ca2+ channel expressionWasutorn Chankamngoen, Nithipak Thammayon, Panan Suntornsaratoon, et al.Cell|August 7, 2012
Regulation of the Hippo-YAP pathway by G-protein-coupled receptor signalingFa-Xing Yu, Bin Zhao, Nattapon Panupinthu, et al.Cancer Research|February 17, 2017
YAP/TAZ-Mediated Upregulation of GAB2 Leads to Increased Sensitivity to Growth Factor-Induced Activation of the PI3K PathwayChao Wang, Chao Gu, Kang Jin Jeong, et al.Cancer Cell|October 7, 2014
Naturally occurring neomorphic PIK3R1 mutations activate the MAPK pathway, dictating therapeutic response to MAPK pathway inhibitorsLydia W T Cheung, Shuangxing Yu, Dong Zhang, et al.Bioorganic & Medicinal Chemistry Letters|November 6, 2010
Synthesis and pharmacological evaluation of the stereoisomers of 3-carba cyclic-phosphatidic acidRenuka Gupte, Anjaih Siddam, Yan Lu, et al.Molecular Endocrinology (Baltimore, Md.)|April 5, 2003
Deletion of the P2X7 nucleotide receptor reveals its regulatory roles in bone formation and resorptionHua Zhu Ke, Hong Qi, A Frederik Weidema, et al.Pageof 4