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CD73缺陷小鼠的关节周围关节囊矿化:与NT5E突变患者的相似之处。

Juxta-articular joint-capsule mineralization in CD73 deficient mice: similarities to patients with NT5E mutations.

作者信息

Li Qiaoli, Price Thea P, Sundberg John P, Uitto Jouni

机构信息

a Department of Dermatology and Cutaneous Biology ; Sidney Kimmel Medical College; Thomas Jefferson University ; Philadelphia , PA USA.

出版信息

Cell Cycle. 2014;13(16):2609-15. doi: 10.4161/15384101.2014.943567.

Abstract

Arterial calcification due to CD73 deficiency (ACDC), an autosomal recessive disorder, manifests with extensive mineralization of the lower-extremity arteries as well as of hand and foot joint-capsules. This disease is caused by mutations in the NT5E gene which encodes CD73, a membrane-bound ecto-5'-nucleotidase hydrolyzing 5'-AMP into adenosine and Pi. To gain insight into the pathophysiologic details of ACDC, we have characterized a Nt5e(-/-) knock out mouse (Nt5e(tm1Jgsc)) deficient in CD73. These mice, when maintained on appropriate strain background, demonstrated stiffening of the joints and micro CT revealed distinct changes in the thoracic skeletal structure with evidence of mineralization at the costochondral junctions. Mineralization was also noted in the juxta-articular spaces of the lower extremities as well as of ligaments and capsules adjacent to the bony structures. No evidence of vascular mineralization was noted either by CT or by microdissection of arteries in the thoracic area or in lower extremities. The Nt5e(-/-) mutant mice demonstrated significantly increased Pi levels in the serum and significantly reduced PPi concentration in the heparinized plasma, resulting in markedly increased Pi/PPi ratio, thus creating a pro-mineralization environment. In conclusion, the Nt5e(-/-) targeted mutant mice recapitulate some, but not all, features of ACDC and serve as a model system to study pharmacologic interventions for ectopic mineralization. Collectively, this mouse model deficient in CD73, with other targeted mutant mice with vascular mineralization, attests to the presence of a complex pro-mineralization/anti-mineralization network that under physiologic homeostatic conditions prevents ectopic tissue mineralization.

摘要

由于CD73缺乏导致的动脉钙化(ACDC)是一种常染色体隐性疾病,表现为下肢动脉以及手足关节囊广泛矿化。该疾病由编码CD73的NT5E基因突变引起,CD73是一种膜结合的胞外5'-核苷酸酶,可将5'-AMP水解为腺苷和磷酸。为深入了解ACDC的病理生理细节,我们对缺乏CD73的Nt5e(-/-)基因敲除小鼠(Nt5e(tm1Jgsc))进行了表征。这些小鼠在合适的品系背景下饲养时,表现出关节僵硬,显微CT显示胸廓骨骼结构有明显变化,肋软骨连接处有矿化迹象。在下肢的关节周围间隙以及与骨结构相邻的韧带和关节囊中也发现了矿化。无论是通过CT还是对胸部区域或下肢动脉进行显微解剖,均未发现血管矿化的证据。Nt5e(-/-)突变小鼠血清中的磷酸水平显著升高,肝素化血浆中的焦磷酸浓度显著降低,导致磷酸/焦磷酸比值明显升高,从而形成了促矿化环境。总之,Nt5e(-/-)靶向突变小鼠再现了ACDC的一些但并非全部特征,可作为研究异位矿化药物干预的模型系统。总体而言,这种缺乏CD73的小鼠模型与其他有血管矿化的靶向突变小鼠一起,证明了在生理稳态条件下存在一个复杂的促矿化/抗矿化网络,可防止异位组织矿化。

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