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Cyclooxygenase 2 Promotes Parathyroid Hyperplasia in ESRD
Author(s) -
Qian Zhang,
Junsi Qiu,
Haiming Li,
Yanwen Lu,
Xiaoyun Wang,
Junwei Yang,
Shaoqing Wang,
Liyin Zhang,
Yong Gu,
ChuanMing Hao,
Jing Chen
Publication year - 2011
Publication title -
journal of the american society of nephrology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.451
H-Index - 279
eISSN - 1533-3450
pISSN - 1046-6673
DOI - 10.1681/asn.2010060594
Subject(s) - parathyroid chief cell , proliferating cell nuclear antigen , hyperplasia , endocrinology , medicine , hyperparathyroidism , parathyroidectomy , uremia , secondary hyperparathyroidism , parathyroid hormone , parathyroid gland , pathogenesis , chemistry , cancer research , immunohistochemistry , calcium
Hyperplasia of the PTG underlies the secondary hyperparathyroidism (SHPT) observed in CKD, but the mechanism underlying this hyperplasia is incompletely understood. Because aberrant cyclooxygenase 2 (COX2) expression promotes epithelial cell proliferation, we examined the effects of COX2 on the parathyroid gland in uremia. In patients with ESRD who underwent parathyroidectomy, clusters of cells within the parathyroid glands had increased COX2 expression. Some COX2-positive cells exhibited two nuclei, consistent with proliferation. Furthermore, nearly 78% of COX2-positive cells expressed proliferating cell nuclear antigen (PCNA). In the 5/6-nephrectomy rat model, rats fed a high-phosphate diet had significantly higher serum PTH levels and larger parathyroid glands than sham-operated rats. Compared with controls, the parathyroid glands of uremic rats exhibited more PCNA-positive cells and greater COX2 expression in the chief cells. Treatment with COX2 inhibitor celecoxib significantly reduced PCNA expression, attenuated serum PTH levels, and reduced the size of the glands. In conclusion, COX2 promotes the pathogenesis of hyperparathyroidism in ESRD, suggesting that inhibiting the COX2 pathway could be a potential therapeutic target.

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