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An organotypical in vitro model for vascular tissue remodelling and its application to study radiation effects

机译:血管组织重塑的器官典型体外模型及其在研究放射效应中的应用

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An organotypic in vitro model, to study vascular tissueremodeling, was evaluated as a function of culture period. Inorder to validate the model as a tool for studying vascularresponses to damage, a dose-response analysis to ionizingirradiation was included.Rat aortic rings were explanted in vitro after being irradiatedwith single doses of 60Co γ-rays, namely 0, 5, 10, 15, 20or 25 Gy. Irradiated and sham-irradiated aortic rings werecultured for 3 weeks. Explant outgrowth on an adhesivesubstrate was evaluated by macroscopical scoring, and ringsderived from each irradiation group together with theoutgrowths were fixed and embedded in paraffin after 2, 7, 14and 21 days. Bromodeoxyuridine incorporation, α smoothmuscle actin and collagen types I and III were scored onimmunohistochemically stained sections. For each studiedparameter, irradiated and sham-irradiated rings were compared.In cultures of sham-irradiated rings, alterations from acontractile towards a synthetic/migratory smooth muscle cellphenotype were confirmed. After 3 weeks, fullgrown cultures hadformed. Irradiation slowed down the phenotypical modifications.After 15 Gy, irradiation explant outgrowth was already retarded;after 25 Gy, the outgrowth was completely blocked. On the otherhand, a dose of 15 Gy or more induced an increased collagen Iproduction in the tunica media.In conclusion, the present organotypical in vitro model fits toanalyse dynamics in the original vascular tissues as well as inthe primary outgrowth. It enables to confirm features oftissular reorganization and effects of ionizing radiationdescribed in vivo.
机译:评估器官组织体外模型,以研究血管组织重塑与培养时间的关系。为了验证该模型是否可作为研究血管损伤反应的工具,对电离辐射进行了剂量-反应分析,对大鼠主动脉环进行了单剂量60Coγ射线(0、5、10、15)辐照后进行了体外移植,20或25 Gy。辐照和假辐照的主动脉环培养3周。通过宏观评分来评估粘合基底上的外植体生长,并且在2、7、14和21天后将来自每个照射组的环与生长固定并石蜡包埋。在免疫组织化学染色切片上对溴脱氧尿苷掺入,α平滑肌肌动蛋白以及I型和III型胶原评分。对于每个研究的参数,均比较了辐照环和假辐照环。在伪辐照环的培养物中,证实了从收缩性向合成/迁移性平滑肌细胞表型的改变。 3周后,形成了成熟的培养物。辐照放慢了表型的修饰。15Gy后,辐照外植体的生长已被抑制; 25 Gy后,辐照外植体的生长被完全阻断。另一方面,15 Gy或更高剂量可引起中膜胶原I生成增加。总之,目前的典型有机体外模型适合于分析原始血管组织以及原发组织的动态。它能够确认组织内的组织重组特征和电离辐射的影响。

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