Meiling Zhu
Research Associate Internal Medicine EndocrinologyCards
About
Research
Publications
2026
Selective deletion of the membrane-bound isoform of CSF1 in vivo augments the anabolic response to PTH without impairing bone resorption
Yao G, Zhu M, Insogna K. Selective deletion of the membrane-bound isoform of CSF1 in vivo augments the anabolic response to PTH without impairing bone resorption. Bone Reports 2026, 28: 101896. PMID: 41626400, PMCID: PMC12857547, DOI: 10.1016/j.bonr.2025.101896.Peer-Reviewed Original Research
2025
Erratum to “PTH-dependent stabilization of RANKL mRNA is associated with increased phosphorylation of the KH-type splicing regulatory protein” [Mol. Cell. Endocrinol. 595 (2025) 112412]
Yao G, Zhu M, Insogna K. Erratum to “PTH-dependent stabilization of RANKL mRNA is associated with increased phosphorylation of the KH-type splicing regulatory protein” [Mol. Cell. Endocrinol. 595 (2025) 112412]. Molecular And Cellular Endocrinology 2025, 599: 112469. PMID: 39880738, DOI: 10.1016/j.mce.2025.112469.Commentaries, Editorials and Letters
2024
Corrigendum to “PTH-dependent stabilization of RANKL mRNA is associated with increased phosphorylation of the KH-type splicing regulatory protein” [Molecul. Cellul. Endocrinol. 595 (2025) 112412]
Yao G, Zhu M, Insogna K. Corrigendum to “PTH-dependent stabilization of RANKL mRNA is associated with increased phosphorylation of the KH-type splicing regulatory protein” [Molecul. Cellul. Endocrinol. 595 (2025) 112412]. Molecular And Cellular Endocrinology 2024, 597: 112429. PMID: 39616004, DOI: 10.1016/j.mce.2024.112429.Commentaries, Editorials and LettersPTH-dependent stabilization of RANKL mRNA is associated with increased phosphorylation of the KH-type splicing regulatory protein
Yao G, Zhu M, Insogna K. PTH-dependent stabilization of RANKL mRNA is associated with increased phosphorylation of the KH-type splicing regulatory protein. Molecular And Cellular Endocrinology 2024, 595: 112412. PMID: 39536935, DOI: 10.1016/j.mce.2024.112412.Peer-Reviewed Original ResearchMitofusin 2 plays a critical role in maintaining the functional integrity of the neuromuscular-skeletal axis
Zhu M, Zeiss C, Hamrick M, Weinstein R, Sun B, Brotto M, Liu X, Siu E, Huttner A, Tommasini S, Simpson C, Insogna K. Mitofusin 2 plays a critical role in maintaining the functional integrity of the neuromuscular-skeletal axis. Bone 2024, 184: 117086. PMID: 38552893, DOI: 10.1016/j.bone.2024.117086.Peer-Reviewed Original Research
2015
Deletion of Rac in Mature Osteoclasts Causes Osteopetrosis, an Age‐Dependent Change in Osteoclast Number, and a Reduced Number of Osteoblasts In Vivo
Zhu M, Sun B, Saar K, Simpson C, Troiano N, Dallas SL, Tiede‐Lewis L, Nevius E, Pereira JP, Weinstein RS, Tommasini SM, Insogna KL. Deletion of Rac in Mature Osteoclasts Causes Osteopetrosis, an Age‐Dependent Change in Osteoclast Number, and a Reduced Number of Osteoblasts In Vivo. Journal Of Bone And Mineral Research 2015, 31: 864-873. PMID: 26496249, PMCID: PMC4826801, DOI: 10.1002/jbmr.2733.Peer-Reviewed Original Research
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