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TGF beta-2 signaling is essential for osteoblast migration and differentiation during fracture healing in medaka fish

机译:TGF Beta-2信号对于Medaka Fish骨折愈合期间的成骨细胞迁移和分化是必不可少的

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TGF beta is known as a canonical coupling factor based on its effects on bone formation and bone resorption. There are 3 different isoforms of it related to bone metabolism in mammals. TGF beta function in vivo is complicated, and each isoform shows a different function. Since TGF beta s are secreted during inflammation accompanied by the release of latent TGF beta from inside of the bones where they are stored in the extracellular matrix, TGF beta function is potentially related to fracture healing. Although a few reports examined the TGF beta expression during fracture healing, the function of TGFO in this process is poorly understood. To investigate TGF beta function during fracture healing in vivo, we used the fracture healing model of the medaka fish, which enabled us to observe the behavior and function of living cells in response to a bone-specific injury. RNA in-situ hybridization analysis showed that only tgf beta-2 of the 4 TGF13 isoforms in medaka was expressed in the bone-forming region. To examine the TGF beta-2 function for bone formation by osteoblasts, we used a medaka transgenic line, Tg (type X collagen: GFP); and the results revealed that type X collagen-positive immature osteoblasts migrated to the fracture site and differentiated toosterix-positive osteoblasts. However, only a few type X collagen-positive osteoblasts exhibited BrdU incorporation after the fracture. Then we inhibited TGFS signaling by using a chemical TGF beta receptor kinase inhibitor (5B431542), and demonstrated that inhibition of TGF13 strongly impaired osteoblast migration and differentiation. In addition, this TGF beta inhibitor reduced the RANKL expression and caused a delay of osteoclast differentiation. Our findings thus demonstrated that TGF beta-2 functioned specifically during fracture healing to stimulate the migration of osteoblasts as well as the differentiation of osteoblasts and osteoclasts. (C) 2016 Elsevier Inc. All rights reserved.
机译:TGFβ被称为规范偶联因子,基于其对骨形成和骨吸收的影响。哺乳动物中的骨代谢有3种不同的同种型。体内TGF Beta函数复杂,并且每个同种型都显示出不同的功能。由于TGFβS在炎症期间分泌伴随潜伏的TGFβ从骨骼内部释放它们储存在细胞外基质中,因此TGFβ功能可能与骨折愈合有关。虽然少数报告在骨折愈合期间检查了TGFβ表达,但TGFO在这个过程中的功能较差地理解。为了在体内骨折愈合期间探讨TGFβ功能,我们使用Medaka Fish的骨折愈合模型,使我们能够遵守骨骼特异性损伤的活细胞的行为和功能。 RNA原位杂交分析表明,在骨形成区域中只表达了Medaka的4 TGF13同种型的TGFβ-2。为了检查成骨细胞的TGFβ-2用于骨形成的功能,我们使用了Medaka转基因线TG(X型胶原:GFP);结果表明,X型胶原阳性未成熟成骨细胞迁移到骨折位点和分化的TOOSTSIX阳性成骨细胞。然而,只有少量X胶原阳性成骨细胞在断裂后表现出Brdu掺入。然后我们通过使用化学TGFβ受体激酶抑制剂(5B431542)抑制TGFS信号传导,并证明了TGF13的抑制强烈受损的成骨细胞迁移和分化。此外,该TGFβ抑制剂还降低了RANKL表达并导致疏松骨硬质分化的延迟。我们的发现表明,TGFβ-2在骨折愈合期间特异性作用,以刺激成骨细胞的迁移以及成骨细胞和疏松骨质体的分化。 (c)2016年Elsevier Inc.保留所有权利。

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