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111.
Both radiation injury and oxidation toxicity occur when cells are exposed to ion irradiation (IR), ultimately leading to apoptosis. This study was designed to determine the effect of beta-sitosterol (BSS) on early cellular damage in irradiated thymocytes and a possible mechanism of effect on irradiation-mediated activation of the apoptotic pathways. Thymocytes were irradiated (6 Gy) with or without BSS. Cell apoptosis and apoptosis-related proteins were evaluated. BSS decreased irradiation-induced cell death and nuclear DNA strand breaks while attenuating intracellular reactive oxygen species (ROS) and increasing the activities of antioxidant enzymes, including superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GPx). BSS decreased the release of cytochrome c from mitochondria to the cytosol and the mitochondrio-nuclear translocation of apoptosis-inducing factor (AIF). Furthermore, BSS partially inhibited the radiation-induced increase of cleaved caspase 3 and cleaved PARP, and attenuated the activation of JNK and AP-1. In addition, evidence suggests that ROS generated by irradiation are involved in this course of cell damage. The results indicate that BSS confers a radioprotective effect on thymocytes by regulation of the intracellular redox balance which is carried out via the scavenging of ROS and maintenance of mitochondrial membrane stability.  相似文献   
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The hemolytic activity of the cell-free culture supernatant of Anabaena variabilis OL S1 was investigated using the hemolysis of rabbit erythrocytes as an assay. The culture medium of A. variabilis started to exhibit hemolytic activity at the late exponential growth phase, and maximized at the stationary phase. The hemolytic toxin is heat-stable and can be extracted in dichloromethane. The hemolytic activities under different temperature, light intensity and pH showed a high correlation with the cell densities (r=0.965, 0.951, 0.865, respectively), and the optimum condition is 28~30°C, pH 7.5~8.0, light intensity 120 μmol photons m−2s−1. The addition of 10~20 μg mL−1 chloramphenicol, an inhibitor of protein synthesis, exhibited no marked suppression on the hemolytic activity. The supplement of 1~20 μg mL−1 glycerol increased the hemolytic activity significantly, suggesting that synthesis of hemolysin was dependent on carbohydrate and lipid metabolism. The spectrum of erythrocyte sensitivity to the hemolysin indicated that rabbit erythrocytes were more sensitive to the hemolysin than were rat and human erythrocytes. Goldfish and cat erythrocytes were, however, insensitive to the hemolytic toxin of A. variabilis.  相似文献   
113.
Wang  Lingwa  Wang  Ru  Huang  Tianqiao  Yang  Yifan  Feng  Ling  Fang  Jugao 《Molecular biology reports》2022,49(7):6103-6112
Molecular Biology Reports - To investigate the potential mechanisms of miR-211-3p on induction chemotherapy (IC) sensitivity in hypopharyngeal squamous cell carcinoma (HSCC). qRT-PCR was assessed...  相似文献   
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为探讨妊娠及哺乳期小鼠(Mus musculus)注射麻黄素后对仔鼠肝组织TGF-β1及c-Fos表达的影响,将30例受孕小鼠随机分为对照组和麻黄素组。麻黄素组小鼠从受孕第3天开始连续腹腔注射6.0 g/L麻黄素溶液直到分娩后15天,每天注射2次,每次0.2 ml;对照组每天2次注射等量的生理盐水。称量检测仔鼠体重和肝重的变化,同时用免疫组织化学方法检测仔鼠肝组织中细胞生长因子TGF-β1和原癌基因c-Fos蛋白表达的变化。麻黄素组仔鼠体重与对照组相比显著降低(P0.05或P0.01),肝体比与对照组相比明显升高(P0.05或P0.01),仔鼠肝组织中TGF-β1和c-Fos蛋白阳性表达强度与对照组相比有不同程度的增强(P0.05或P0.01),表明妊娠及哺乳期小鼠注射麻黄素影响仔鼠肝的发育。  相似文献   
115.
硝酸盐型厌氧铁氧化菌的种类、分布和特性   总被引:2,自引:0,他引:2  
王茹  郑平  张萌  赵和平  周晓馨 《微生物学通报》2015,42(12):2448-2456
硝酸盐型厌氧铁氧化(NAFO)是指微生物在厌氧条件下利用硝酸盐或亚硝酸盐作为电子受体,将低价铁(二价铁或零价铁)氧化为高价铁(三价铁)的过程。具有NAFO代谢能力的微生物称为硝酸盐型厌氧铁氧化菌(NAFOM)。NAFO是微生物领域的重大发现,也是环境领域开发新型脱氮技术和地学领域研究铁、氮循环的理论依据。整理文献报道的NAFOM资料,分析NAFOM系统发育性状,探讨典型NAFOM的生态分布及其营养、代谢特性,以期为NAFOM菌种资源的开发、地球铁素和氮素循环的研究、NAFO过程的优化提供借鉴。  相似文献   
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以延河流域3个植被区(森林区、森林草原区及典型草原区)稳定的自然植物群落中的铁杆蒿为研究对象,测定铁杆蒿的比叶面积、叶组织密度、叶氮含量、叶磷含量、叶氮磷比、比根长、细根组织密度、细根氮含量、细根磷含量、细根氮磷比10项能够反映植物生存对策且易于测量的功能性状,研究了不同生境下铁杆蒿功能性状的种内差异,以及气象因子和地形因子对铁杆蒿植物功能性状的影响,并分析了各功能性状间的相关关系.结果表明: 铁杆蒿各功能性状中除了叶磷含量、叶氮磷比、比根长、根组织密度和根氮磷比在各植被带间的差异显著外,其他5个性状差异均不显著.各性状在坡度、坡向间的差异不显著.比叶面积与叶组织密度呈显著负相关,比根长与根组织密度和根氮磷比呈显著负相关,根组织密度与根氮含量和根氮磷比呈显著正相关,叶组织密度、叶氮含量和叶氮磷比与其他功能性状的相关性不显著.表明铁杆蒿对恶劣环境的适应是通过叶片和细根功能性状间的相互作用和调节实现的.不同环境因素在不同程度上对铁杆蒿功能性状产生影响,对铁杆蒿功能性状影响大小依次是年均降雨量、年均温和年均蒸发量.  相似文献   
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Tissue cholesterol accumulation, macrophage infiltration, and inflammation are features of atherosclerosis and some forms of dermatitis. HDL and its main protein, apoAI, are acceptors of excess cholesterol from macrophages; this process inhibits tissue inflammation. Recent epidemiologic and clinical trial evidence questions the role of HDL and its manipulation in cardiovascular disease. We investigated the effect of ectopic macrophage apoAI expression on atherosclerosis and dermatitis induced by the combination of hypercholesterolemia and absence of HDL in mice. Hematopoietic progenitor cells were transduced to express human apoAI and transplanted into lethally irradiated LDL receptor−/−/apoAI−/− mice, which were then placed on a high-fat diet for 16 weeks. Macrophage apoAI expression reduced aortic CD4+ T-cell levels (−39.8%), lesion size (−25%), and necrotic core area (−31.6%), without affecting serum HDL or aortic macrophage levels. Macrophage apoAI reduced skin cholesterol by 39.8%, restored skin morphology, and reduced skin CD4+ T-cell levels. Macrophage apoAI also reduced CD4+ T-cell levels (−32.9%) in skin-draining lymph nodes but had no effect on other T cells, B cells, dendritic cells, or macrophages compared with control transplanted mice. Thus, macrophage apoAI expression protects against atherosclerosis and dermatitis by reducing cholesterol accumulation and regulating CD4+ T-cell levels, without affecting serum HDL or tissue macrophage levels.  相似文献   
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