日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Loading-Induced Reduction in Sclerostin as a Mechanism of Subchondral Bone Plate Sclerosis in Mouse Knee Joints During Late-Stage Osteoarthritis

负荷诱导的硬骨蛋白减少是小鼠膝关节晚期骨关节炎软骨下骨板硬化的机制

Haoruo Jia,Xiaoyuan Ma,Yulong Wei,Wei Tong,Robert J Tower,Abhishek Chandra,Luqiang Wang,Zeyang Sun,Zhaochun Yang,Farid Badar,Kairui Zhang,Wei-Ju Tseng,Ina Kramer,Michaela Kneissel,Yang Xia,X Sherry Liu,James H C Wang,Lin Han,Motomi Enomoto-Iwamoto,Ling Qin

Inhibiting the osteocyte-specific protein sclerostin increases bone mass and fracture resistance in multiple myeloma

抑制骨细胞特异性蛋白硬化蛋白可增加多发性骨髓瘤的骨量和抗骨折能力

Michelle M McDonald, Michaela R Reagan, Scott E Youlten, Sindhu T Mohanty, Anja Seckinger, Rachael L Terry, Jessica A Pettitt, Marija K Simic, Tegan L Cheng, Alyson Morse, Lawrence M T Le, David Abi-Hanna, Ina Kramer, Carolyne Falank, Heather Fairfield, Irene M Ghobrial, Paul A Baldock, David G Litt

Suppression of Sclerostin Alleviates Radiation-Induced Bone Loss by Protecting Bone-Forming Cells and Their Progenitors Through Distinct Mechanisms

通过独特的机制抑制硬化蛋白可保护骨形成细胞及其祖细胞,从而减轻辐射引起的骨质流失

Abhishek Chandra, Tiao Lin, Tiffany Young, Wei Tong, Xiaoyuan Ma, Wei-Ju Tseng, Ina Kramer, Michaela Kneissel, Michael A Levine, Yejia Zhang, Keith Cengel, X Sherry Liu, Ling Qin

Tyrosine kinase inhibitor NVP-BGJ398 functionally improves FGFR3-related dwarfism in mouse model

酪氨酸激酶抑制剂 NVP-BGJ398 可有效改善小鼠模型中的 FGFR3 相关侏儒症

Davide Komla-Ebri, Emilie Dambroise, Ina Kramer, Catherine Benoist-Lasselin, Nabil Kaci, Cindy Le Gall, Ludovic Martin, Patricia Busca, Florent Barbault, Diana Graus-Porta, Arnold Munnich, Michaela Kneissel, Federico Di Rocco, Martin Biosse-Duplan, Laurence Legeai-Mallet