Abstract Background Bone regenerative heterodimeric bone morphogenetic protein 2/7 (BMP2/7) enhances but all-trans retinoic acid (ATRA) inhibits osteoclastogenesis. However, the effect of ATRA on physiological and/or BMP2/7-induced osteoclastogenesis in still unclear. In this study, we aimed to test the effect of combined treatment of BMP2/7 and ATRA on osteoclastogenesis, and resorption activity. Results All-trans retinoic acid (1 µM) ± BMP2/7 (5 or 50 ng/ml) was added in murine pre-osteoclasts cell line RAW264.7 or mouse bone marrow derived macrophages (BMM) cultures. Osteoclast marker gene expression, osteoclastogenesis, and resorption activity were analyzed. BMP2/7 robustly enhanced osteoclast maker gene expression, osteoclastogenesis, ...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
Yi Liu,1,* Xiaoqing Ma,2,* Jing Guo,1 Zhen Lin,3 Miao Zhou,1 Wenjuan Bi,4 Jinsong Liu,5 Jingxiao Wan...
Background: Bone regenerative heterodimeric bone morphogenetic protein 2/7 (BMP2/7) enhances but all...
Background: Bone regenerative heterodimeric bone morphogenetic protein 2/7 (BMP2/7) enhances but all...
Objectives Hypervitaminosis A and alcoholism can result in a low mineral density and compromised reg...
Objectives Hypervitaminosis A and alcoholism can result in a low mineral density and compromised reg...
Objectives: Hypervitaminosis A and alcoholism can result in a low mineral density and compromised re...
<div><p>Objectives</p><p>Hypervitaminosis A and alcoholism can result in a low mineral density and c...
The osteogenesis of bone marrow stromal cells (BMSCs) is of paramount importance for the repair of l...
The osteogenesis of bone marrow stromal cells (BMSCs) is of paramount importance for the repair of l...
Hypervitaminosis A and alcoholism can result in a low mineral density and compromised regenerative c...
Hypervitaminosis A and alcoholism can result in a low mineral density and compromised regenerative c...
Introduction: Alcoholism can lead to low mineral density, compromised regenerative bone capacity and...
Introduction: Alcoholism can lead to low mineral density, compromised regenerative bone capacity and...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
Yi Liu,1,* Xiaoqing Ma,2,* Jing Guo,1 Zhen Lin,3 Miao Zhou,1 Wenjuan Bi,4 Jinsong Liu,5 Jingxiao Wan...
Background: Bone regenerative heterodimeric bone morphogenetic protein 2/7 (BMP2/7) enhances but all...
Background: Bone regenerative heterodimeric bone morphogenetic protein 2/7 (BMP2/7) enhances but all...
Objectives Hypervitaminosis A and alcoholism can result in a low mineral density and compromised reg...
Objectives Hypervitaminosis A and alcoholism can result in a low mineral density and compromised reg...
Objectives: Hypervitaminosis A and alcoholism can result in a low mineral density and compromised re...
<div><p>Objectives</p><p>Hypervitaminosis A and alcoholism can result in a low mineral density and c...
The osteogenesis of bone marrow stromal cells (BMSCs) is of paramount importance for the repair of l...
The osteogenesis of bone marrow stromal cells (BMSCs) is of paramount importance for the repair of l...
Hypervitaminosis A and alcoholism can result in a low mineral density and compromised regenerative c...
Hypervitaminosis A and alcoholism can result in a low mineral density and compromised regenerative c...
Introduction: Alcoholism can lead to low mineral density, compromised regenerative bone capacity and...
Introduction: Alcoholism can lead to low mineral density, compromised regenerative bone capacity and...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
Yi Liu,1,* Xiaoqing Ma,2,* Jing Guo,1 Zhen Lin,3 Miao Zhou,1 Wenjuan Bi,4 Jinsong Liu,5 Jingxiao Wan...