Laboratorio de Química Biológica, Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, IMIBIO-SL (CONICET), Avenida Ejército de los Andes 950, D5700HHW San Luis, Argentina.
Biometals. 2010 Feb;23(1):135-43. doi: 10.1007/s10534-009-9274-8. Epub 2009 Nov 6.
Cadmium (Cd) is widely used in industrial applications and is an important contaminant of agricultural products. As an endocrine disruptor, Cd modifies the hormone release of pituitary anterior lobe (PAL). This work was undertaken to evaluate a possible association between phospholipase D (PLD) and prolactin mRNA expressions and the activity of lactotrophs and folliculostellate cells (FSC) in PAL of Cd exposed adult male Wistar rats (Cd, 0.133 mM per liter for 2 months). The PALs were submitted to immunohistochemical and morphometric analysis to determine the percentage of lactotrophs (PRL-ir) and FSC (S-100-ir). Cultured PAL cells were stained with Hoechst 33258 to determine the presence of alterations in nuclear morphology consistent with apoptosis. The expressions of PLD and prolactin mRNA were assessed by RT-PCR. Cd treated rats showed a decrease of PLD mRNA levels that can be associated to both high number of apoptotic cells and increase of S-100 protein expression in FSC. Cd decreased prolactin mRNA expression, number of lactotrophs and percentage of PRL-ir suggesting a low availability of prolactin to be secreted from PAL. Cd modifies the lactotrophs activity of pituitary gland through biochemical, genomic and morphological changes and contributes directly or indirectly to the levels of serum prolactin.
镉 (Cd) 广泛应用于工业生产,是农产品的重要污染物。作为一种内分泌干扰物,Cd 会改变垂体前叶 (PAL) 的激素释放。本研究旨在评估磷脂酶 D (PLD) 和催乳素 mRNA 表达与暴露于 Cd 的成年雄性 Wistar 大鼠 (Cd,每升 0.133 mM,持续 2 个月) PAL 中的催乳细胞和滤泡星状细胞 (FSC) 的活性之间是否存在关联。对 PAL 进行免疫组织化学和形态计量学分析,以确定催乳细胞 (PRL-ir) 和 FSC (S-100-ir) 的百分比。用 Hoechst 33258 染色培养的 PAL 细胞,以确定核形态的变化是否与凋亡一致。通过 RT-PCR 评估 PLD 和催乳素 mRNA 的表达。Cd 处理的大鼠显示 PLD mRNA 水平降低,这可能与凋亡细胞数量增加和 FSC 中 S-100 蛋白表达增加有关。Cd 降低了催乳素 mRNA 的表达、催乳细胞的数量和 PRL-ir 的百分比,提示从 PAL 分泌的催乳素可用性降低。Cd 通过生化、基因组和形态变化改变了垂体的催乳细胞活性,并直接或间接地影响了血清催乳素的水平。