首页> 美国卫生研究院文献>Molecular Medicine Reports >Expressing human SHOX in Shox2SHOX KI/KI mice leads to congenital osteoarthritis-like disease of the temporomandibular joint in postnatal mice
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Expressing human SHOX in Shox2SHOX KI/KI mice leads to congenital osteoarthritis-like disease of the temporomandibular joint in postnatal mice

机译:在Shox2SHOX KI / KI小鼠中表达人SHOX会导致出生后小鼠的颞下颌关节先天性骨关节炎样疾病

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摘要

The temporomandibular joint (TMJ), a unique synovial joint whose development differs from that of other synovial joints, develops from two distinct mesenchymal condensations that grow toward each other and ossify through different mechanisms. The short stature homeobox 2 (Shox2) gene serves an important role in TMJ development and previous studies have demonstrated that Shox2SHOX KI/KI mice display a TMJ defective phenotype, congenital dysplasia and premature eroding of the articular disc, which is clinically defined as a TMJ disorder. In the present study, Shox2SHOX KI/KI mouse models were used to investigate the mechanisms of congenital osteoarthritis (OA)-like disease during postnatal TMJ growth. Shox2SHOX KI/KI mice were observed to develop a severe muscle wasting syndrome from day 7 postnatal. Histological examination indicated that the condyle and glenoid fossa of Shox2SHOX KI/KI mice was reduced in size in the second week after birth. The condyles of Shox2SHOX KI/KI mice exhibited reduced expression levels of collagen type II and Indian hedgehog, and increased expression of collagen type I. A marked increase in matrix metalloproteinase 9 (MMP9) and MMP13 in the condyles was also observed. These cellular and molecular defects may contribute to the observed (OA)-like phenotype of Shox2SHOX KI/KI mouse TMJs.
机译:颞下颌关节(TMJ)是一种独特的滑膜关节,其发展不同于其他滑膜关节,它是由两个相互之间生长并通过不同机制骨化的独特的间充质形成的。矮身形同源盒2(Shox2)基因在TMJ的发展中起重要作用,先前的研究表明Shox2 SHOX KI / KI 小鼠表现出TMJ缺陷型,先天性发育不良。关节盘过早腐蚀,临床上定义为TMJ障碍。在本研究中,Shox2 SHOX KI / KI 小鼠模型用于研究出生后TMJ生长期间先天性骨关节炎(OA)样疾病的机制。从出生后第7天开始,观察到Shox2 SHOX KI / KI 小鼠出现了严重的肌肉萎缩综合征。组织学检查表明,Shox2 SHOX KI / KI 小鼠的con突和盂状窝在出生后第二周减小。 Shox2 SHOX KI / KI 小鼠的con突表现出降低的II型胶原蛋白和印度刺猬的表达水平,并增加了I型胶原蛋白的表达。基质金属蛋白酶9明显增加还观察到the中的(MMP9)和MMP13。这些细胞和分子缺陷可能有助于Shox2 SHOX KI / KI 小鼠TMJs的(OA)样表型。

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