首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >Growth-associated hyperphosphatemia in young recipients accelerates aortic allograft calcification in a rat model
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Growth-associated hyperphosphatemia in young recipients accelerates aortic allograft calcification in a rat model

机译:年轻受体中与生长相关的高磷酸盐血症加速大鼠模型的主动脉同种异体移植钙化

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Objectives: Cardiovascular allografts in the young have limited durability because of early graft calcification. The objective of this study was to examine the hypothesis that growth-associated hyperphosphatemia in youth accelerates aortic allograft calcification by osteogenic transformation of graft medial smooth muscle cells (SMCs). Methods: The descending aortas of donor rats were subcutaneously transplanted into recipients. Syngeneic (Lewis-to-Lewis) transplantations between 3-week-old "young" (Y) rats and between 10-week-old "adult" (A) rats were combined with standard (ST, 0.9% phosphate) and low-phosphate (LP, 0.2%) diets, resulting in Y-ST, Y-LP, and A-ST groups. Allotransplantations (Brown-Norway-to-Lewis) involving these ages and diets were also made. The grafts and sera were retrieved from recipients after 14 days. Cultured rat aortic SMCs were used to analyze the effects of tumor necrosis factor-alpha (TNF-α) and phosphate on SMC calcification. Results: In vivo, serum phosphate levels were higher in Y-ST (11.5 mg/dL) than those in Y-LP (8.9 mg/dL) and A-ST (8.5 mg/dL). Graft medial calcification appeared severe only in Y-ST. Allotransplants did not affect these outcomes. Graft medial cells showed phenotypic changes (contractile to synthetic) and osteogenic transformation (α-smooth muscle actin to Runx2 and osteocalcin), together with up-regulated proinflammatory TNF-α and sodium-phosphate cotransporter, Pit-1, despite ages and diets. In vitro, TNF-α induced phenotypic changes and osteogenic transformation of SMCs with Pit-1 up-regulation, but SMC calcification occurred only with high phosphate (4.5 mmol/L). Conclusions: Growth-associated hyperphosphatemia with inflammatory responses may be essential for accelerating allograft calcification in youth and could be a therapeutic target.
机译:目的:年轻的心血管同种异体移植物由于早期钙化而耐久性有限。这项研究的目的是检验以下假设,即青年中与生长相关的高磷酸盐血症通过移植物内侧平滑肌细胞(SMCs)的成骨转化来促进主动脉同种异体移植钙化。方法:将供体大鼠的降主动脉皮下移植到受体中。在3周龄的“年轻”(Y)大鼠和10周龄的“成年”(A)大鼠之间进行同基因(Lewis-Lewis)移植,并与标准(ST,0.9%磷酸盐)和低剂量的磷酸盐(LP,0.2%)日粮,导致Y-ST,Y-LP和A-ST组。还进行了涉及这些年龄和饮食的同种异体移植(布朗-挪威-刘易斯)。 14天后从受体中取出移植物和血清。用培养的大鼠主动脉SMCs分析肿瘤坏死因子-α(TNF-α)和磷酸盐对SMC钙化的影响。结果:在体内,Y-ST(11.5 mg / dL)的血清磷酸盐水平高于Y-LP(8.9 mg / dL)和A-ST(8.5 mg / dL)的血清磷酸盐水平。移植物内侧钙化仅在Y-ST中出现严重。同种异体移植未影响这些结果。不论年龄和饮食如何,移植物内侧细胞均表现出表型变化(收缩至合成)和成骨转化(α平滑肌肌动蛋白至Runx2和骨钙蛋白),以及促炎性TNF-α和磷酸钠共转运蛋白Pit-1上调。在体外,TNF-α通过上调Pit-1诱导SMC的表型变化和成骨转化,但是SMC钙化仅在高磷酸盐(4.5 mmol / L)时发生。结论:与生长相关的高磷酸盐血症伴发炎性反应可能对加速同种异体移植钙化至关重要,并且可能是治疗目标。

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