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首页> 外文期刊>Ultrastructural pathology >Radiation-induced damage to lacrimal glands: an ultrastructural study in Sprague Dawley rats
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Radiation-induced damage to lacrimal glands: an ultrastructural study in Sprague Dawley rats

机译:辐射引起的泪腺损伤:Sprague Dawley大鼠的超微结构研究

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摘要

Injury to lacrimal glands represents a major health problem after radiation therapy of the head and neck malignancies. Accordingly, this study aimed to investigate significant ultrastructural changes of lacrimal glands and some of their underlying mechanisms following the exposure to different fractionated doses of irradiation. In this study, 28 Sprague Dawley (SD) rats were assigned to four groups (seven rats each): Group I acted as control and received no irradiation. Groups II-IV received fractionated irradiation of 5 Gy (100 cGy/fraction daily for 5 days), 9 Gy (300 cGy/fraction daily for 3 days), and 20 Gy (one fraction), respectively. One month after the experiment, examination of lacrimal glands with transmission electron microscopy (TEM) demonstrated dose-dependent ultra-structural changes in the lacrimal acinar and intralobular ductal epithelial cells. In the acinar cells, there were swollen rough endoplasmic reticulum, irregularly shaped nuclei with chromatin condensation, mitochondrial damage, and retention of secretory granules. Intaralobular ductal epithelial cells showed loss of surface microvilli and damage to mitochondria. In addition to the potential direct effects of irradiation on lacrimal acinar and intralobular ductal epithelial cells, damage to blood vessels and nerve endings seemed to mediate some of the underlying mechanisms of these irradiation-induced ultrastructural changes. In conclusion, using TEM reveals that lacrimal gland is highly sensitive to even small doses of irradiation therapy; in addition, swelling of rough endoplasmic reticulum and aberrant nuclei are the most encountered structural changes. Damage to blood vessels and nerve endings might mediate some of the underlying mechanisms of irradiation-induced secondary injury in lacrimal glands.
机译:泪腺的损伤是头部和颈部恶性肿瘤的放射治疗后的主要健康问题。因此,该研究旨在调查泪腺的显着超微结构变化以及在暴露于不同分级的辐照后的一些潜在机制。在本研究中,将28只Sprague Dawley(SD)大鼠分配到四组(每个七只大鼠):I族代起来并接受没有辐照。 II-IV组接受分馏5 GY(每日100克/分数5天),9 GY(每天300cGy /分数3天)的分级照射,分别为20 Gy(一分)。实验后一个月,用透射电子显微镜(TEM)检查泪腺(TEM)的泪腺均依赖于泪珠和体内导管上皮细胞的含量依赖性超结构变化。在缩醛细胞中,肿胀的粗糙内质网,不规则形状的核,具有染色质缩合,线粒体损伤和分泌颗粒的保留。狭义的导管上皮细胞显示出表面微绒毛的损失和线粒体损伤。除了照射对泪珠和内部导管上皮细胞的潜在直接影响,对血管和神经末梢的损伤似乎介导这些辐照诱导的超微结构变化的一些潜在机制。总之,使用TEM显示泪腺对甚至小剂量的照射治疗非常敏感;此外,粗糙的内质网和异常核的肿胀是最遇到的结构变化。血管和神经末梢的损伤可能会介导泪腺中的辐照诱导的次肾上腺损伤的一些潜在机制。

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