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股骨头坏死患者血清风湿因子和C反应蛋白水平及其临床诊断意义 被引量:1
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作者 蔡文钦 刘子弘 《中外医学研究》 2021年第9期87-89,共3页
目的:研究股骨头坏死患者血清风湿因子和C反应蛋白水平及其临床诊断意义。方法:选取2018年1月-2019年12月本院收治的60例疑似股骨头坏死患者作为研究组。选取同期在本院进行体检的60例健康者作为对照组。比较两组的血清风湿因子、C反应... 目的:研究股骨头坏死患者血清风湿因子和C反应蛋白水平及其临床诊断意义。方法:选取2018年1月-2019年12月本院收治的60例疑似股骨头坏死患者作为研究组。选取同期在本院进行体检的60例健康者作为对照组。比较两组的血清风湿因子、C反应蛋白水平差异,血清风湿因子、C反应蛋白水平对股骨头坏死的灵敏度、特异度、准确度。结果:研究组血清风湿因子、C反应蛋白水平高于对照组,差异有统计学意义(P<0.05)。血清风湿因子联合C反应蛋白检测的灵敏度、准确度高于血清风湿因子水平、C反应蛋白水平的单独检测(P<0.05);特异度低于血清风湿因子水平、C反应蛋白水平的单独检测(P<0.05)。结论:血清风湿因子联合C反应蛋白水平检测的灵敏度、准确度比单一指标检测更高,特异度比单一指标检测更低,可作为临床诊断股骨头坏死的重要依据。 展开更多
关键词 股骨头坏死 血清风湿因子 C反应蛋白 临床诊断
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Regulation of BMP4 on the proliferation and differentiation in SVZa neural stem cells
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作者 LIUShiyong ZHANGZhiyuan +6 位作者 SONGYechun QIUKejun ZHANGKecheng ANNing ZHOUZheng caiwenqin YANGHui 《Chinese Science Bulletin》 SCIE EI CAS 2004年第11期1126-1136,共11页
The neural stem cells in the anterior subventricula zone (SVZa) mainly generate the progenitors that will differentiate into neurons, and along a highly circumscribed migratory access-Rostral migratory stream (RMS), t... The neural stem cells in the anterior subventricula zone (SVZa) mainly generate the progenitors that will differentiate into neurons, and along a highly circumscribed migratory access-Rostral migratory stream (RMS), they migrate to the olfactory bulbs (OB). To understand the effects of BMPs on SVZa neural stem cells, in this study BMP4 at various concentrations was used to induce SVZa ,neural stem cells, aud the living cell labeling using BMP4 pronmtor conjugated with red fluorescence protein showed the expression of BMP4 dynamically. The results demonstrated that low BMP4 doses (1-5 ng/mL) promoted while high doses(10-100 ng/mL) inhibited the proliferation of SVZa neural stem cells, and BMP4 promoted neuron differentiation in the early stage (1-3 d), howeverm, it inhibited the neuron commitment after 4 d. Noggin, the antagonist of BMP4, blocked the physiological effects of BMP4. In OB, BMP4 is mainly to accelerate the progenitors to withdraw from the cell cycle and trigger the differentiation, and in RMS, it promotes the proliferation of committed progenitors and not differentiation, further in SVZa, BMP4 enhances astrocyte commitment. 展开更多
关键词 神经干细胞 分芽繁殖 骨形态发生蛋白 红荧光蛋白 绿荧光蛋白 前向次心室带
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