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211.
炎症细胞诱导的活性氧类生成和肠道氧化应激与慢性炎症性肠疾病以及结直肠肿瘤的发病密切相关。NF-κB信号通路参与氧化应激反应以及在结直肠炎症和肿瘤发生中的作用还并不完全清楚。本研究将化学合成一对编码小干扰RNA 序列、靶向人NF-κB 基因的长60 bp寡核苷酸链定向克隆至pSUPER小干扰RNA表达载体中,通过单酶切、双酶切及测序证实重组RNA干扰载体构建成功. 将构建成功的质粒转染至结肠上皮细胞HCT116中敲减p65,分别采用Western blot方法检测NF-κB p65蛋白表达水平,(3-(4,5-二甲基噻唑-2)-3,5-二苯基四氮唑溴盐(MTT)方法检测细胞存活情况. 结果显示,pSUPER-NF-κB p65载体可特异性下调NF-κB p65蛋白表达;下调p65表达可导致过氧化氢诱导的HCT116内活性氧类物质生成增高,存活细胞数目显著减少,氧化损伤加重。研究表明,在人结肠上皮细胞内NF-κB p65通路的抑制显著加重了结肠上皮细胞氧化损伤情况. 相似文献
212.
213.
To assess the biological safety of Fe3O4 nanoparticles (NPs), the oxidative-damage effect of these NPs was studied. Twenty-five Kunming mice were exposed to Fe3O4 NPs by intraperitoneai injection daily for 1 week at doses of 0, 10, 20, and 40 mg.kg1. Five Kunming mice were also injected with 40 mg.kg 1 ordinary Fe3O4 particles under the same physiological conditions. Biomarkers of reactive oxygen species (ROS), glutathione (GSH), and malondialdehyde (MDA) in the hepatic and brain tissues were detected. Results showed that no significant difference in oxidative damage existed at concentrations lower than 10 mg.kg i for NPs compared with the control group. Fe3O4 NP concentration had obvious dose-effect relationships (P〈 0.05 or P 〈 0.01) with ROS level, GSH content, and MDA content in mouse hepatic and brain tissues at〉20 mg.kg 1 concentrations. To some extent, ordinary Fe3O4 particles with 40mg.kg -1 concentration also affected hepatic and brain tissues in mice. The biological effect was similar to Fe3O4 NPs at 10 mg. kg-1 concentration. Thus, Fe3O4 NPs had significant damage effects on the antioxidant defense system in the hepatic and brain tissues of mice, whereas ordinary Fe3O4 had less influence than Fe3O4 NPs at the same concentration. 相似文献
214.
《Journal of Plant Interactions》2013,8(1):338-353
This study investigated the possible phytotoxicity induced by Phargmites australis on phenotypic and physiological parameters of recipient plants with identification of major inhibitors in the donor plant. This was achieved using aqueous extracts of different organs and root exudates of P. australis in laboratory and greenhouse experiments with Lactuca sativa as the model test plant. The observed reduced liquid imbibition and altered resource mobilization in seeds of L. sativa, in particular an insufficient carbohydrate supply, demonstrated that the onset of germination might be negatively affected by phytotoxicity. Dose-response studies pointed out that oxidative stress through reactive oxygen species production could potentially cause the observed germination and seedling growth reductions. The osmotic effects by mannitol solution on germination as well as growth and physiology at a level of ?0.57 and ?0.45 bar, respectively, demonstrated that the results from aqueous plant extracts were partially induced by the osmotic potential on and above those levels. Overall, the relative strength of inhibition on measured parameters was the highest in leaf extract, followed by rhizome, root, stem, and inflorescence. Root exudates of P. australis also had negative impacts by reducing germination and growth of plant. High-performance liquid chromatography (HPLC) analysis revealed gallic acid, a potent phytotoxin, as a major compound with an order of leaf >inflorescence>rhizome>root>stem. 相似文献
215.
Alastair D. MacKenzie Ross Martin G. Cook Heung Chong Mehnaz Hossain Hardev S. Pandha Dorothy C. Bennett 《Pigment cell & melanoma research》2013,26(2):226-235
The best‐established function of the melanoma‐suppressor p16 is mediation of cell senescence, a permanent arrest following cell proliferation or certain stresses. The importance of p16 in melanoma suggests indolence of the other major senescence pathway through p53. Little or no p53 is expressed in senescent normal human melanocytes, but p16‐deficient melanocytes can undergo p53‐mediated senescence. As p16 expression occurs in nevi but falls with progression toward melanoma, we here investigated whether p53‐dependent senescence occurs at some stage and, if not, what defects were detectable in this pathway, using immunohistochemistry. Phosphorylated checkpoint kinase 2 (CHEK2) can mediate DNA‐damage signaling, and under some conditions senescence, by phosphorylating and activating p53. Remarkably, we detected no prevalent p53‐mediated senescence in any of six classes of lesions. Two separate defects in p53 signaling appeared common: in nevi, lack of p53 phosphorylation by activated CHEK2, and in melanomas, defective p21 upregulation by p53 even when phosphorylated. 相似文献
216.
目的:了解膝关节骨性关节炎患者机体的氧化应激状态,探讨氧化应激反应与膝关节骨性关节炎发生、发展的关系。方法:收集膝关节骨性关节炎患者及健康人群的血清,采用分光光度法测定和比较其SOD、GSH-Px、MDA水平。结果:与健康对照人群相比,膝关节骨性关节炎患者体内SOD、GSH-Px酶类抗氧化剂活力显著增强(P0.05);MDA脂质过氧化损伤产物明显降低(P0.05)。结论:膝关节骨性关节炎患者体内氧化还原状态发生了改变,可能处于抗氧化应激的慢性代偿状态;氧化应激反应参与了骨性关节炎的发生、发展过程。 相似文献
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218.
Vesna Gagic Laura GA Riggi Barbara Ekbom Gerard Malsher Adrien Rusch Riccardo Bommarco 《Ecology and evolution》2016,6(7):2149-2157
Loss in seed yield and therefore decrease in plant fitness due to simultaneous attacks by multiple herbivores is not necessarily additive, as demonstrated in evolutionary studies on wild plants. However, it is not clear how this transfers to crop plants that grow in very different conditions compared to wild plants. Nevertheless, loss in crop seed yield caused by any single pest is most often studied in isolation although crop plants are attacked by many pests that can cause substantial yield losses. This is especially important for crops able to compensate and even overcompensate for the damage. We investigated the interactive impacts on crop yield of four insect pests attacking different plant parts at different times during the cropping season. In 15 oilseed rape fields in Sweden, we estimated the damage caused by seed and stem weevils, pollen beetles, and pod midges. Pest pressure varied drastically among fields with very low correlation among pests, allowing us to explore interactive impacts on yield from attacks by multiple species. The plant damage caused by each pest species individually had, as expected, either no, or a negative impact on seed yield and the strongest negative effect was caused by pollen beetles. However, seed yield increased when plant damage caused by both seed and stem weevils was high, presumably due to the joint plant compensatory reaction to insect attack leading to overcompensation. Hence, attacks by several pests can change the impact on yield of individual pest species. Economic thresholds based on single species, on which pest management decisions currently rely, may therefore result in economically suboptimal choices being made and unnecessary excessive use of insecticides. 相似文献
219.
【背景】深圳大面积果园已转型为生态公益林,但果树被入侵的薇甘菊攀爬覆盖,严重地段已导致群落退行性演替,问题亟待解决。【方法】选取有多种生境的转型果园,分片区开展以植树为核心的生态改造试验,树种以种植后不进行人工除草抚育的血桐、幌伞枫、阴香为主,辅以提高物种多样性为目标的演替中后期树种,均采用袋装大苗于2011年5月种植。【结果】在树冠连续、郁闭的果林片区,所植苗木死亡,林下草本稀少,始终无薇甘菊。在其他非郁闭片区,血桐与幌伞枫生长良好且从未被覆盖;阴香虽于秋冬季被全覆盖但不死亡,次年春新枝穿透覆盖层正常生长;其余种苗木对薇甘菊处于劣势。【结论与意义】郁闭度高的果林片区林下光照弱,能阻止薇甘菊定居,无需人工干预;血桐和幌伞枫分别具抗/耐受薇甘菊覆盖的特性,种后均无需抚育;其余树种则需抚育。因此,掌握各个树种的特性,适地种植、按需精准定株抚育是转型果园低成本、技术简单、一劳永逸地防控薇甘菊生态改造的精髓。在应对有害藤本危害时,勿忽略筛选出不惧该藤本的植物种的可能,在不使用农药、无有效动物或微生物天敌的情况下,它们有可能成为生态安全的防控改造树种。 相似文献
220.
《Cryobiology》2016,73(3):210-215
Several methods are currently available for selection when conducting sperm cryopreservation, however, these methods might cause different degrees of damage on sperm DNA. The aim of the this study is to compare the effects of storage at −80 °C (in ultra-low temperature refrigerator) and at −196 °C (in liquid nitrogen) on sperm DNA damage, thus to provide a reference for choosing the right method according to different aims. We randomly collected 28 semen samples from college students of Chongqing city. The samples stored at −80 °C were neat semen samples and the samples stored at −196 °C were mixed with additional cryoprotectants. Each sample was subjected to two freezing-thawing cycles, and the sperm DNA damage levels of fresh and thawed samples were measured by single cell gel electrophoresis (SCGE) and sperm chromatin structure assay (SCSA). Both SCGE and SCSA assays showed cryopreservation induced significant damage to sperm DNA. However, storage at −196 °C lead to more severe damage to sperm DNA than storage at −80 °C measured by SCSA. Sperm DNA damage increased simultaneously with the higher frequency of freezing-thawing cycles. We concluded that storage of neat semen samples at −80 °C had milder damage to sperm DNA than storage at −196 °C mixed with cryoprotectants. To avoid additional sperm DNA damage, repeated freezing and thawing should be prevented. 相似文献