Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia may cause unphysiologically high accumulation of all-trans retinoic acid (ATRA), which could inhibit osteoblastogenesis, thereby triggering osteoporosis. We have shown that bone morphogenetic protein-2 (BMP-2) can only partially antagonize the inhibitive effects of ATRA. In this study, we hypothesized that antagonists of retinoic acid receptors (RARs) could further antagonize the inhibitive effect of ATRA and rescue BMP2-induced osteoblastogenesis. Materials and Methods: We first screened the dose-dependent effects of the specific antagonists of RAR α, β and γ and transforming growth factor-beta receptor (ER-50891, LE-135, MM11253, and SB-43142...
Hypervitaminosis A and alcoholism can result in a low mineral density and compromised regenerative c...
Yi Liu,1,* Xiaoqing Ma,2,* Jing Guo,1 Zhen Lin,3 Miao Zhou,1 Wenjuan Bi,4 Jinsong Liu,5 Jingxiao Wan...
Vitamin A is known to influence post-natal bone content, with excess intake being associated with re...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
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...
Abstract Background Bone regenerative heterodimeric bone morphogenetic protein 2/7 (BMP2/7) enhances...
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...
Low and high serum retinol levels are associated with increased fracture risk and poor bone health. ...
<div><p>Objectives</p><p>Hypervitaminosis A and alcoholism can result in a low mineral density and c...
Objectives: Hypervitaminosis A and alcoholism can result in a low mineral density and compromised re...
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...
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...
Yi Liu,1,* Xiaoqing Ma,2,* Jing Guo,1 Zhen Lin,3 Miao Zhou,1 Wenjuan Bi,4 Jinsong Liu,5 Jingxiao Wan...
Vitamin A is known to influence post-natal bone content, with excess intake being associated with re...
Background: Hypervitaminosis A, alcoholism or medical treatment for acute promyelocytic leukaemia ma...
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...
Abstract Background Bone regenerative heterodimeric bone morphogenetic protein 2/7 (BMP2/7) enhances...
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...
Low and high serum retinol levels are associated with increased fracture risk and poor bone health. ...
<div><p>Objectives</p><p>Hypervitaminosis A and alcoholism can result in a low mineral density and c...
Objectives: Hypervitaminosis A and alcoholism can result in a low mineral density and compromised re...
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...
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...
Yi Liu,1,* Xiaoqing Ma,2,* Jing Guo,1 Zhen Lin,3 Miao Zhou,1 Wenjuan Bi,4 Jinsong Liu,5 Jingxiao Wan...
Vitamin A is known to influence post-natal bone content, with excess intake being associated with re...