Palumbo G, Varriale L, Paba V, Sasso A, Crescenzi E, Gialanella G, Grossi G, Pugliese M G, Scampoli P
Dipartimento di Biologia e Patologia Cellulare e Molecolare L. Califano & CEOS/CNR, University of Naples "Federico II", Napoli, Italy.
Phys Med. 2001;17 Suppl 1:241-6.
In this paper we present some preliminary results on alteration of gene expression caused by radiation on human endometrial cells. To this purpose, we have studied the modulation of the expression of the bcl-2 gene family in two cell lines following irradiations with low energy protons and gamma-rays from a 60Co. The two epithelial cell strains, namely AN3Ca and HEC1B cells, both obtained from human neoplastic endometrial tissues, grow in culture and continue to maintain some differentiated functions typical of the original tissue. Indeed, these cells, that can be considered as representative of different stages of cellular transformation of endometrium. Because their epithelial nature and rapid growth, the expression of genes related to the maintenance of the cellular homeostasis (correction of omeostasis), as the pro and anti-apoptotic ones, is expected to be susceptible to changes in environment, including radiation. The effects have been evaluated in terms of both cell survival and changes in the expression of pro- and anti apoptotic proteins. Even though the data reported above can not be considered complete and/or definitive, nevertheless, in whole, they confirm that these cells may constitute a suitable model system to study, at molecular level, the effects of cosmic radiation on endometrium. Further observation, ensuing from these preliminary data, is that endometrial cells present different sensitivity to radiation in regard to its 'quality' and 'dosage', in accord to the original stage of differentiation.
在本文中,我们展示了关于辐射对人子宫内膜细胞基因表达改变的一些初步结果。为此,我们研究了用来自60Co的低能质子和γ射线照射后,两种细胞系中bcl - 2基因家族表达的调节情况。这两种上皮细胞株,即AN3Ca和HEC1B细胞,均取自人子宫内膜肿瘤组织,在培养中生长并继续保持一些原始组织典型的分化功能。实际上,这些细胞可被视为子宫内膜细胞转化不同阶段的代表。由于它们的上皮性质和快速生长,与维持细胞内稳态(纠正内稳态)相关的基因,如促凋亡和抗凋亡基因的表达,预计会易受包括辐射在内的环境变化的影响。已从细胞存活以及促凋亡和抗凋亡蛋白表达变化两方面评估了这些效应。尽管上述数据尚不能被视为完整和/或确定的,但总体而言,它们证实这些细胞可能构成一个合适的模型系统,用于在分子水平研究宇宙辐射对子宫内膜的影响。从这些初步数据得出的进一步观察结果是,子宫内膜细胞根据其分化的原始阶段,对辐射的“质量”和“剂量”呈现出不同的敏感性。