Inhibition of estrogen-induced pituitary tumor growth and angiogenesis in Fischer 344 rats by the matrix metalloproteinase inhibitor batimastat |
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Authors: | Slawomir A. Mucha Gabriela Meleń-Mucha Andrzej Godlewski Henryk Stepień |
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Affiliation: | (1) Department of Clinical Endocrinology, Medical University of Lodz, Sterling Street 3, 91-425 Lodz, Poland;(2) Department of Immunoendocrinology, Medical University of Lodz, Sterling Street 3, 91-425 Lodz, Poland;(3) Department of Cytology, Histology and Embryology, Medical University of Lodz, Narutowicza Street 60, 90-136 Lodz, Poland;(4) Department of Immunoendocrinology, Medical University of Lodz, Sterling Street 3, 91-425 Lodz, Poland |
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Abstract: | The development of estrogen-induced pituitary prolactinoma in Fischer 344 (F344) rats is associated with enhanced neovascularization. Based on the significance of matrix metalloproteinases (MMPs) for tumor growth and angiogenesis, we have studied the effect of batimastat (BB-94), a synthetic MMPs inhibitor (MMPI) on the progression of prolactin-secreting pituitary adenoma in rats. Pituitary tumors were induced in male F344 rats by s.c. implantation of Silastic tubes containing diethylstilbestrol (DES). The effects of chronic treatment with BB-94 (30 mg/kg b.w.) on pituitary weight, cell proliferation, apoptosis and vascular density were evaluated. We have stated that chronic treatment with batimastat caused a significant reduction in the pituitary weight. Batimastat has been found to decrease cell proliferation evaluated by a number of PCNA-positive stained cell nuclei. A marked increase in the apoptotic index within the pituitary was observed in the study group. Moreover, the density of microvessels identified by CD31 was reduced in the group treated with BB-94. The results of our study provide evidence for an inhibitory effect of batimastat, a synthetic MMPI, on the growth and angiogenesis in an experimental model of human prolactinoma. The ability of BB-94 to suppress established pituitary tumor growth suggests a possible application of MMPIs in the treatment of pituitary adenomas. |
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Keywords: | Pituitary Prolactinoma Proliferation Apoptosis Angiogenesis |
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