Heckmann M, Douwes K, Peter R, Degitz K
Department of Dermatology, Ludwig-Maximilians-Universität, Munich, Germany.
Exp Cell Res. 1998 Jan 10;238(1):148-54. doi: 10.1006/excr.1997.3826.
During cutaneous inflammatory reactions the recruitment of circulating leukocytes into the tissue critically depends on the regulated expression of endothelial cell adhesion molecules (CAMs). Various proinflammatory stimuli upregulate endothelial CAMs, including cytokines and UV irradiation. We have investigated the effects of ionizing radiation (IR) on endothelial CAM expression. Organ cultures of normal human skin as well as cultured human dermal microvascular endothelial cells (HDMEC) were exposed to IR. Expression of three major endothelial CAMs was studied in skin organ cultures by immunohistochemistry and in cell culture by Northern blot analysis and flow cytometry. In skin organ cultures vascular immunoreactivity for ICAM-1, E-selectin, and VCAM-1 was strongly induced 24 h after exposure to 5 or 10 Gy of IR, while immunoreactivity for CD31/PECAM-1, a constitutively expressed endothelial cell adhesion molecule, remained unchanged. In cultured HDMEC IR upregulated ICAM-1, VCAM-1, and E-selectin mRNAs and cell surface expression in a time- and dose-dependent fashion. Cellular morphology and viability remained unaltered by IR up to 24 h postirradiation. This study characterizes microvascular activation of adhesion molecule expression in response to ionizing radiation in a clinically relevant IR dose range. The findings also underscore the ability of endothelial cells to integrate environmental electromagnetic stimuli.
在皮肤炎症反应过程中,循环白细胞向组织内的募集严重依赖于内皮细胞黏附分子(CAMs)的调控表达。多种促炎刺激可上调内皮CAMs的表达,包括细胞因子和紫外线照射。我们研究了电离辐射(IR)对内皮CAM表达的影响。将正常人皮肤器官培养物以及培养的人真皮微血管内皮细胞(HDMEC)暴露于IR。通过免疫组织化学在皮肤器官培养物中以及通过Northern印迹分析和流式细胞术在细胞培养物中研究了三种主要内皮CAMs的表达。在皮肤器官培养物中,暴露于5或10 Gy的IR后24小时,ICAM-1、E-选择素和VCAM-1的血管免疫反应性被强烈诱导,而组成性表达的内皮细胞黏附分子CD31/PECAM-1的免疫反应性保持不变。在培养的HDMEC中,IR以时间和剂量依赖性方式上调ICAM-1、VCAM-1和E-选择素的mRNA以及细胞表面表达。在照射后24小时内,IR对细胞形态和活力没有影响。本研究描述了在临床相关的IR剂量范围内,电离辐射引起的微血管黏附分子表达的激活。这些发现还强调了内皮细胞整合环境电磁刺激的能力。