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携带杀白细胞素基因金黄色葡萄球菌的研究进展 总被引:1,自引:0,他引:1
杀白细胞素(Panton-Valentine leukocidin,PVL)是金葡菌产生的重要外毒素之一,PVL在其感染所致的坏死性皮肤损害和坏死性肺炎等疾病中起重要作用,并且能在社区和医院传播。现在国内外对PVL阳性金葡菌的研究日益重视,本文就其感染的致病机制、感染状况、检测方法和防治措施等问题研究作一陈述。 相似文献
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本研究旨在探究老年2型糖尿病患者血浆脂联素、8-羟基脱氧鸟苷(8-OHdG)表达变化及其与认知功能的相关性,通过选取本院2016年2月至2017年2月收治的2型糖尿病患者作为研究对象,根据有无认知功能损害分为2组,并选取同期100名健康体检者。检查入组人群血浆脂联素、8-OHdG水平,并对临床资料进行分析。结果发现糖尿病患者血浆脂联素、8-OHdG水平高于健康人群(p0.05);糖尿病伴认知功能障碍患者血浆脂联素、8-OHdG水平高于糖尿病患者(p0.05)。糖尿病患者MMSE评分、MoCA评分、数字广度测验得分低于健康人群,连线测验完成时间高于人群(p0.05);糖尿病伴认知功能障碍患者MMSE评分、MoCA评分、数字广度测验得分低于糖尿病患者无认知功能障碍者,连线测验完成时间高于糖尿病患者无认知功能障碍者(p0.05)。经Spearman相关性分析,发现2型糖尿病患者MoCA评分与年龄、BMI、糖尿病病程、空腹血糖、HBA1c、血浆脂联素水平、血浆8-OHdG水平呈负相关,与受教育年限呈正相关(p0.05)。结果说明2型糖尿病伴认知功能障碍患者血浆脂联素、8-OHdG水平升高,且与患者认知功能呈负相关;临床中可通过检测血浆脂联素、8-OHdG水平,对糖尿病患者认知功能进行初步评估,以指导后续治疗。 相似文献
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Effects of grazing intensity and grazing exclusion on litter decomposition in the temperate steppe of Nei Mongol,China 总被引:1,自引:0,他引:1 下载免费PDF全文
《植物生态学报》2016,40(8):748
Aims Grazing intensity and grazing exclusion affect ecosystem carbon cycling by changing the plant community and soil micro-environment in grassland ecosystems. The aims of this study were: 1) to determine the effects of grazing intensity and grazing exclusion on litter decomposition in the temperate grasslands of Nei Mongol; 2) to compare the difference between above-ground and below-ground litter decomposition; 3) to identify the effects of precipitation on litter production and decomposition. Methods We measured litter production, quality, decomposition rates and soil nutrient contents during the growing season in 2011 and 2012 in four plots, i.e. light grazing, heavy grazing, light grazing exclusion and heavy grazing exclusion. Quadrate surveys and litter bags were used to measure litter production and decomposition rates. All data were analyzed with ANOVA and Pearson’s correlation procedures in SPSS. Important findings Litter production and decomposition rates differed greatly among four plots. During the two years of our study, above-ground litter production and decomposition in heavy-grazing plots were faster than those in light-grazing plots. In the dry year, below-ground litter production and decomposition in light-grazing plots were faster than those in heavy-grazing plots, which is opposite to the findings in the wet year. Short-term grazing exclusion could promote litter production, and the exclusion of light-grazing could increase litter decomposition and nutrient cycling. In contrast, heavy-grazing exclusion decreased litter decomposition. Thus, grazing exclusion is beneficial to the restoration of the light-grazing grasslands, and more human management measures are needed during the restoration of heavy-grazing grasslands. Precipitation increased litter production and decomposition, and below-ground litter was more vulnerable to the inter-annual change of precipitation than above-ground litter. Compared to the light-grazing grasslands, heavy-grazing grasslands had higher sensitivity to precipitation. The above-ground litter decomposition was strongly positively correlated with the litter N content (R2 = 0.489, p < 0.01) and strongly negatively correlated with the soil total N content (R2 = 0.450, p < 0.01), but it was not significantly correlated with C:N and lignin:N. Below-ground litter decomposition was negatively correlated with the litter C (R2 = 0.263, p < 0.01), C:N (R2 = 0.349, p < 0.01) and cellulose content (R2 = 0.460, p < 0.01). Our results will provide a theoretical basis for ecosystem restoration and the research of carbon cycling. 相似文献