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Development and progression of secondary hyperparathyroidism in chronic kidney disease: lessons from molecular genetics

机译:慢性肾脏病继发性甲状旁腺功能亢进的发展和进展:分子遗传学的教训

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摘要

The identification of the calcium-sensing receptor (CaSR) and the clarification of its role as the major regulator of parathyroid gland function have important implications for understanding the pathogenesis and evolution of secondary hyperthyroidism in chronic kidney disease (CKD). Signaling through the CaSR has direct effects on three discrete components of parathyroid gland function, which include parathyroid hormone (PTH) secretion, PTH synthesis, and parathyroid gland hyperplasia. Disturbances in calcium and vitamin D metabolism that arise owing to CKD diminish the level of activation of the CaSR, leading to increases in PTH secretion, PTH synthesis, and parathyroid gland hyperplasia. Each represents a physiological adaptive response by the parathyroid glands to maintain plasma calcium homeostasis. Studies of genetically modified mice indicate that signal transduction via the CaSR is a key determinant of parathyroid cell proliferation and parathyroid gland hyperplasia. Because enlargement of the parathyroid glands has important implications for disease progression and disease severity, it is possible that clinical management strategies that maintain adequate calcium-dependent signaling through the CaSR will ultimately prove useful in diminishing parathyroid gland hyperplasia and in modifying disease progression.
机译:钙敏感受体(CaSR)的鉴定及其作为甲状旁腺功能主要调节剂的作用的阐明,对于了解慢性肾脏病(CKD)继发性甲亢的发病机理和演变具有重要意义。通过CaSR发出的信号直接影响甲状旁腺功能的三个离散成分,包括甲状旁腺激素(PTH)分泌,PTH合成和甲状旁腺增生。由于CKD而引起的钙和维生素D代谢紊乱减少了CaSR的活化水平,导致PTH分泌,PTH合成和甲状旁腺增生增加。每个代表甲状旁腺的生理适应性反应,以维持血浆钙稳态。转基因小鼠的研究表明,通过CaSR进行的信号转导是甲状旁腺细胞增殖和甲状旁腺增生的关键决定因素。由于甲状旁腺的增大对疾病的进展和疾病的严重程度具有重要的意义,因此通过CaSR维持足够的钙依赖性信号传导的临床管理策略最终可能会证明对减少甲状旁腺的增生和改变疾病的进展有用。

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