Diosgenin relieves goiter via the inhibition of thyrocyte proliferation in a mouse model of Graves' disease  被引量:11

Diosgenin relieves goiter via the inhibition of thyrocyte proliferation in a mouse model of Graves' disease

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作  者:Hu CAI Zhe WANG Hai-qing ZHANG Fu-rong WANG Chun-xiao YU Feng-xia ZHANG Ling GAO Jian ZHANG Jia-jun ZHAO 

机构地区:[1]Department of Endocrinology, Provincial Hospital affiliated to Shandong University, Ji-nan 250011, China [2]Shandong Clinical Medical Center of Endocrinology and Metabolism, Ji-nan 250011, China [3]Department of Endocrinology, Taizhou First Peoples' Hospital, Taizhou 318000, China [4]Institute of Endocrinology and Metabolism, Shandong Academy of Clinical Medicine, JFnan 250011, China [5]Department of Pharmacology, Shandong University of Traditional Chinese Medicine, Ji-nan 250011, China [6]Department of Neurology, Hospital affiliated to Shandong University of Traditional Chinese Medicine, Ji-nan 250011, China [7]Department of Pharmacy, Shandong Provincial Hospital affiliated to Shandong University, Ji-nan 250011, China

出  处:《Acta Pharmacologica Sinica》2014年第1期65-73,共9页中国药理学报(英文版)

基  金:Acknowledgements Dr Shu WANG (Ruijin Hospital of Shanghai Jiao Tong Uni- versity, Shanghai, China) assisted with the delivery of the adenovirus. This work was supported through the National Natural Science Foundation of China (30901461, 81070625 and 81101590), the Natural Science Foundation of Shandong Province (2009CM005 and BS2010YY049) and the Ji-nan Self- renovation Plan for Colleges and Universities and Scientific Research Institutes (200906012) of China.

摘  要:Aim: To investigate the effects of diosgenin (Dio), a naturally occurring steroid saponin, on goiter formation in a mouse model of Graves’ disease (GD) and the underlying mechanisms. Methods: Female BALB/c mice were injected with adenovirus expressing the A subunit of thyrotropin receptor to induce GD. The mice were treated with Dio (20, 100 mg·kg-1·d-1, ip) for 12 or 24 d. The serum levels of TT4 and TRAb were examined using radioimmunoassay and electrochemiluminescence. The size and morphology of thyroid glands were examined. Thyrocyte proliferation was determined using BrdU incorporation assay. The expression of proliferation-associated proteins IGF-1, NF-κB, cyclin D1, and PCNA in thyroids was analyzed using immunohistochemistry and real-time PCR.Results: The GD mice showed significantly high serum levels of TRAb and TT4 compared to the normal mice. Treatment of the GD mice with Dio for 24 d dose-dependently reduced the TT4 level and thyroid size, but did not affect the abnormal level of TRAb. Furthermore, Dio treatment dose-dependently reversed the morphological changes and reduced excessive thyrocyte proliferation in thyroids of the GD mice. Dio treatment also dose-dependently reduced the mRNA and protein levels of IGF-1, NF-κB, cyclin D1, and PCNA in thyroids of the GD mice. Conclusion: Dio relieves goiter in a mouse model of GD through the inhibition of thyrocyte proliferation. The mechanisms involve the suppression of IGF-1, NF-κB, cyclin D1, and PCNA expression.Aim: To investigate the effects of diosgenin (Dio), a naturally occurring steroid saponin, on goiter formation in a mouse model of Graves’ disease (GD) and the underlying mechanisms. Methods: Female BALB/c mice were injected with adenovirus expressing the A subunit of thyrotropin receptor to induce GD. The mice were treated with Dio (20, 100 mg·kg-1·d-1, ip) for 12 or 24 d. The serum levels of TT4 and TRAb were examined using radioimmunoassay and electrochemiluminescence. The size and morphology of thyroid glands were examined. Thyrocyte proliferation was determined using BrdU incorporation assay. The expression of proliferation-associated proteins IGF-1, NF-κB, cyclin D1, and PCNA in thyroids was analyzed using immunohistochemistry and real-time PCR.Results: The GD mice showed significantly high serum levels of TRAb and TT4 compared to the normal mice. Treatment of the GD mice with Dio for 24 d dose-dependently reduced the TT4 level and thyroid size, but did not affect the abnormal level of TRAb. Furthermore, Dio treatment dose-dependently reversed the morphological changes and reduced excessive thyrocyte proliferation in thyroids of the GD mice. Dio treatment also dose-dependently reduced the mRNA and protein levels of IGF-1, NF-κB, cyclin D1, and PCNA in thyroids of the GD mice. Conclusion: Dio relieves goiter in a mouse model of GD through the inhibition of thyrocyte proliferation. The mechanisms involve the suppression of IGF-1, NF-κB, cyclin D1, and PCNA expression.

关 键 词:DIOSGENIN SAPONIN thyroid gland GOITER Graves' disease TRAB TT4 IGF-1 NF-κB cyclin D1 PCNA 

分 类 号:Q253[生物学—细胞生物学] S858.23[农业科学—临床兽医学]

 

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