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17β-雌二醇对 patched1 杂合子小鼠髓母细胞瘤发展的保护作用。

Protective role of 17 β-estradiol on medulloblastoma development in Patched 1 heterozygous mice.

机构信息

Section of Toxicology and Biomedical Sciences, Research Center Casaccia, ENEA, Rome, Italy.

出版信息

Int J Cancer. 2010 Dec 15;127(12):2749-57. doi: 10.1002/ijc.25293.

Abstract

Medulloblastoma (MB) is the most common pediatric tumor of the CNS, representing ∼20% of all childhood CNS tumors. Although in recent years many molecular mechanisms that control MB development have been clarified, the effects of biological factors such as sex on this tumor remain to be explained. Epidemiological data, in fact, indicate a significant difference in the incidence of MB between the 2 sexes, with considerably higher susceptibility of males than females. Besides this different susceptibility, female sex is also a significant favorable prognostic factor in MB, with girls having a much better outcome. Despite these literature data, there has been little investigation into estrogen influence on MB development. In our study, we evaluated how hormone deficiency resulting from ovariectomy and hormone replacement influences the development of early and advanced MB stages in Patched1 heterozygous mice, a well-characterized mouse model of radiation-induced MB. Susceptibility to MB development was significantly increased in ovariectomized Ptch1(+/-) females and restored to levels observed in control mice after estrogen replacement. We next investigated the molecular mechanisms by which estrogen might influence tumor progression and show that ERβ, but not ERα, is involved in modulation of MB development by estrogens. Finally, our study shows that a functional interaction between estrogen- and IGF-I-mediated pathways may be responsible for the effects observed.

摘要

髓母细胞瘤(MB)是 CNS 最常见的小儿肿瘤,占所有儿童 CNS 肿瘤的 20%左右。尽管近年来许多控制 MB 发展的分子机制已经阐明,但生物因素如性别对这种肿瘤的影响仍有待解释。流行病学数据实际上表明,MB 在两性之间的发病率存在显著差异,男性的易感性明显高于女性。除了这种不同的易感性,女性的性别也是 MB 的一个重要有利预后因素,女孩的预后要好得多。尽管有这些文献数据,但对雌激素对 MB 发展的影响的研究甚少。在我们的研究中,我们评估了卵巢切除和激素替代导致的激素缺乏如何影响 Patched1 杂合子(Ptch1(+/-))小鼠,即辐射诱导 MB 的一种特征明确的小鼠模型中早期和晚期 MB 阶段的发展。卵巢切除的 Ptch1(+/-)雌性小鼠的 MB 发展易感性显著增加,而雌激素替代后恢复到对照小鼠的水平。我们接下来研究了雌激素可能影响肿瘤进展的分子机制,并表明 ERβ,而不是 ERα,参与了雌激素对 MB 发育的调节。最后,我们的研究表明,雌激素和 IGF-I 介导的途径之间的功能相互作用可能是导致观察到的效果的原因。

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