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小鼠乳腺铁颗粒照射后细胞外基质快速重塑的免疫组织化学证据

Immunohistochemical evidence of rapid extracellular matrix remodeling after iron-particle irradiation of mouse mammary gland.

作者信息

Ehrhart E J, Gillette E L, Barcellos-Hoff M H

机构信息

Department of Radiological Health Sciences, Colorado State University, Fort Collins 80523, USA.

出版信息

Radiat Res. 1996 Feb;145(2):157-62.

PMID:8606925
Abstract

High-LET radiation has unique physical and biological properties compared to sparsely ionizing radiation. Recent studies demonstrate that sparsely ionizing radiation rapidly alters the pattern of extracellular matrix expression in several tissues, but little is known about the effect of heavy-ion radiation. This study investigates densely ionizing radiation-induced changes in extracellular matrix localization in the mammary glands of adult female BALB/c mice after whole-body irradiation with 0.8 Gy 600 MeV iron particles. The basement membrane and interstitial extracellular matrix proteins of the mammary gland stroma were mapped with respect to time postirradiation using immunofluorescence. Collagen III was induced in the adipose stroma within 1 day, continued to increase through day 9 and was resolved by day 14. Immunoreactive tenascin was induced in the epithelium by day 1, was evident at the epithelial-stromal interface by day 5-9 and persisted as a condensed layer beneath the basement membrane through day 14. These findings parallel similar changes induced by gamma irradiation but demonstrate different onset and chronicity. In contrast, the integrity of epithelial basement membrane, which was unaffected by sparsely ionizing radiation, was disrupted by iron-particle irradiation. Laminin immunoreactivity was mildly irregular at 1 h postirradiation and showed discontinuities and thickening from days 1 to 9. Continuity was restored by day 14. Thus high-LET radiation, like sparsely ionizing radiation, induces rapid-remodeling of the stromal extracellular matrix but also appears to alter the integrity of the epithelial basement membrane, which is an important regulator of epithelial cell proliferation and differentiation.

摘要

与低线性能量传递(LET)辐射相比,高线性能量传递辐射具有独特的物理和生物学特性。最近的研究表明,低线性能量传递辐射能迅速改变几种组织中细胞外基质的表达模式,但关于重离子辐射的影响却知之甚少。本研究调查了成年雌性BALB/c小鼠全身接受0.8 Gy 600 MeV铁粒子照射后,高线性能量传递辐射诱导的乳腺细胞外基质定位变化。使用免疫荧光技术,针对照射后的时间,绘制了乳腺基质的基底膜和间质细胞外基质蛋白图谱。照射后1天内,脂肪基质中诱导产生了III型胶原蛋白,持续增加至第9天,并在第14天消失。照射后第1天,上皮细胞中诱导产生了免疫反应性腱生蛋白,在第5 - 9天在上皮-基质界面明显可见,并作为基底膜下方的浓缩层持续存在至第14天。这些发现与γ射线照射诱导的类似变化相似,但显示出不同的起始时间和慢性变化。相比之下,未受低线性能量传递辐射影响的上皮基底膜完整性,却被铁粒子照射破坏。照射后1小时,层粘连蛋白免疫反应性轻度不规则,从第1天到第9天出现间断和增厚。第14天恢复连续性。因此,与低线性能量传递辐射一样,高线性能量传递辐射诱导基质细胞外基质的快速重塑,但似乎也改变了上皮基底膜的完整性,而上皮基底膜是上皮细胞增殖和分化的重要调节因子。

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