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Functional Integrity and Inflammatory Reactions of Exchange Vessels and Lymphatics in X-irradiated Tissues

机译:X射线照射组织中交换血管和淋巴管的功能完整性和炎症反应

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摘要

Local pre-irradiation of the foot (LFI) with 500 to 20,000 rad X-rays and sublethal whole body irradiation (WBI) of rats did not significantly affect development, intensity or resolution of inflammatory oedema induced by subdermal injection of the foot with pharmacological mediators of inflammation or Compound 48/80. LFI and WBI both caused modest increases in swelling induced by carrageenan which are attributed to a combined (additive) effect of slight early oedema from increased vascular permeability induced by radiation and the inflammatory oedema induced by carrageenan. Age of rat did not significantly affect inflammatory oedema induced by various irritants in unirradiated or irradiated rats. The pattern of tissue swelling induced by irradiation was measured.It is concluded that the small exchange vessels (capillaries and venules) and lymphatics which largely regulate the amount and composition of interstitial fluids are highly radioresistant; they remain physiologically intact and react normally to vasoactive substances which mediate inflammatory reactions, even after exposure to doses of radiation which completely eliminate cell reproductive integrity. Inflammatory effects of X-rays (“roentgen reactions”) are largely attributed to the reactions mounted by the mature microvasculature to products of tissue damage, and the anti-inflammatory (“antiphlogistic”) effects to the suppression of regenerative growth of actively proliferating capillaries (angiogenesis) in the repair phase.
机译:用500至20,000 rad的X射线对足部进行局部预辐射(XFI)和对大鼠进行致死性全身辐射(WBI),并没有显着影响通过皮下注射药理学介质引起的炎症性水肿的发生,强度或消退炎症或化合物48/80。 LFI和WBI均导致角叉菜胶引起的肿胀适度增加,这归因于放射线引起的血管通透性增加和角叉菜胶引起的炎性水肿的轻度早期浮肿的联合(累加)作用。在未辐照或辐照的大鼠中,大鼠的年龄并未显着影响各种刺激物引起的炎症性水肿。测量了辐照引起的组织肿胀的模式。结论是,很大程度上调节组织液量和组成的小的交换血管(毛细血管和小静脉)和淋巴管具有高度的抗辐射性。它们即使在暴露于完全消除细胞生殖完整性的辐射剂量之后,仍保持生理上完整并对介导炎症反应的血管活性物质正常反应。 X射线的炎症作用(“伦琴反应”)很大程度上归因于成熟的微血管对组织损伤产物产生的反应,而抗炎(“消炎”)作用则抑制了活跃增殖的毛细血管的再生生长。 (血管生成)处于修复阶段。

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