Wang Xi, Matthews Brya G, Yu Jungeun, Novak Sanja, Grcevic Danka, Sanjay Archana, Kalajzic Ivo
Department of Reconstructive Sciences UConn Health Farmington CT USA.
Department of Molecular Medicine and Pathology University of Auckland Auckland New Zealand.
JBMR Plus. 2019 Jan 15;3(5):e10127. doi: 10.1002/jbm4.10127. eCollection 2019 May.
BMPs are used in various clinical applications to promote bone formation. The limited success of the BMPs in clinical settings and supraphysiological doses required for their effects prompted us to evaluate the influence of other signaling molecules, specifically platelet-derived growth factor (PDGF) on BMP2-induced osteogenesis. Periosteal cells make a major contribution to fracture healing. We detected broad expression of PDGF receptor beta (PDGFRβ) within the intact periosteum and healing callus during fracture repair. In vitro, periosteum-derived progenitor cells were highly responsive to PDGF as demonstrated by increased proliferation and decreased apoptosis. However, PDGF blocked BMP2-induced osteogenesis by inhibiting the canonical BMP2/Smad pathway and downstream target gene expression. This effect is mediated via PDGFRβ and involves ERK1/2 MAPK and PI3K/AKT signaling pathways. Therapeutic targeting of the PDGFRβ pathway in periosteum-mediated bone repair might have profound implications in the treatment of bone disease in the future.
骨形态发生蛋白(BMPs)被用于各种临床应用以促进骨形成。BMPs在临床环境中的效果有限,且产生效果所需的剂量超过生理剂量,这促使我们评估其他信号分子,特别是血小板衍生生长因子(PDGF)对BMP2诱导的骨生成的影响。骨膜细胞对骨折愈合起主要作用。我们在骨折修复过程中检测到完整骨膜和愈合骨痂中广泛表达血小板衍生生长因子受体β(PDGFRβ)。在体外,骨膜来源的祖细胞对PDGF高度敏感,表现为增殖增加和凋亡减少。然而,PDGF通过抑制经典的BMP2/Smad途径和下游靶基因表达来阻断BMP2诱导的骨生成。这种作用是通过PDGFRβ介导的,涉及ERK1/2丝裂原活化蛋白激酶(MAPK)和磷脂酰肌醇-3激酶(PI3K)/蛋白激酶B(AKT)信号通路。在骨膜介导的骨修复中对PDGFRβ途径进行治疗性靶向可能对未来骨疾病的治疗具有深远意义。