目的探讨缺氧缺血性脑病(HIE)新生儿血清生物标志物神经元特异性烯醇酶(NSE)、S-100B、Tau蛋白、激活素A等指标变化及诊断效能。方法选取2020年1月至2022年2月在温州医科大学附属台州医院出生或就诊的75例HIE足月新生儿为研究对象,按照...目的探讨缺氧缺血性脑病(HIE)新生儿血清生物标志物神经元特异性烯醇酶(NSE)、S-100B、Tau蛋白、激活素A等指标变化及诊断效能。方法选取2020年1月至2022年2月在温州医科大学附属台州医院出生或就诊的75例HIE足月新生儿为研究对象,按照HIE严重程度分为轻度HIE组30例,中度HIE组25例,重度HIE组20例。选取同期本院出生的75名健康足月新生儿为对照组。检测并比较4组研究对象血清生物标志物及神经发育指标[包括新生儿神经行为(NBNA)、发育商(DQ)],采用Pearson相关分析血清生物标志物与神经发育指标的相关性,ROC曲线分析各项血清生物标志物单独或联合检测对HIE的诊断效能。结果4组研究对象血清生物标志物及神经发育指标比较,差异均有统计学意义(均P<0.05),其中轻、中、重度HIE组患儿血清NSE、S-100B、Tau蛋白、激活素A水平均明显高于对照组(均P<0.05),且轻度HIE组<中度HIE组<重度HIE组(均P<0.05);生后7 d NBNA评分、生后35周DQ、生后52周DQ均明显低于对照组(均P<0.05),且轻度HIE组>中度HIE组>重度HIE组(均P<0.05)。血清NSE、S-100B、Tau蛋白、激活素A水平与生后7 d NBNA评分均呈负相关(r=-0.779、-0.788、-0.714、-0.800,均P<0.05);与生后35周DQ均呈负相关(r=-0.662、-0.700、-0.626、-0.674,均P<0.05),与生后52周DQ均呈负相关(r=-0.636、-0.684、-0.619、-0.632,均P<0.05)。血清NSE、S-100B、Tau蛋白、激活素A单独检测和4项联合检测诊断HIE的AUC分别为0.923、0.946、0.942、0.939和0.995,4项联合检测的诊断效能最佳。结论血清NSE、S-100B、Tau蛋白、激活素A与HIE新生儿神经发育有关,4项联合检测诊断HIE的效能较高。展开更多
Objective To study the effect of chronic noise exposure on expression of N-methyI-D-aspartic acid receptor 2B (NR2B) and tau phosphorylation in hippocampus of rats. Methods Twenty-four male SD rats were divided in c...Objective To study the effect of chronic noise exposure on expression of N-methyI-D-aspartic acid receptor 2B (NR2B) and tau phosphorylation in hippocampus of rats. Methods Twenty-four male SD rats were divided in control group and chronic noise exposure group. NR2B expression and tau phosphorylation in hippocampus of rats were detected after chronic noise exposure (100 dB SPL white noise, 4 h/dx30d) and their mechanisms underlying neuronal apoptosis in hippocampus of rats with TUNEL staining. Results The NR2B expression decreased significantly after chronic noise exposure which resulted in tau hyperphosphorylation and neural apoptosis in hippocampus of rats. Immunohistochemistry showed that the tau hyperphosphorylation was most prominent in dentate gyrus (DG) and CA1 region of rat hippocampus. Conclusion The abnormality of neurotransmitter system, especially Glu and NR2B containing NMDA receptor, and tau hyperphosphorylation in hippocampus of rats, may play a role in chronic noise-induced neural apoptosis and cognition impairment.展开更多
文摘目的探讨缺氧缺血性脑病(HIE)新生儿血清生物标志物神经元特异性烯醇酶(NSE)、S-100B、Tau蛋白、激活素A等指标变化及诊断效能。方法选取2020年1月至2022年2月在温州医科大学附属台州医院出生或就诊的75例HIE足月新生儿为研究对象,按照HIE严重程度分为轻度HIE组30例,中度HIE组25例,重度HIE组20例。选取同期本院出生的75名健康足月新生儿为对照组。检测并比较4组研究对象血清生物标志物及神经发育指标[包括新生儿神经行为(NBNA)、发育商(DQ)],采用Pearson相关分析血清生物标志物与神经发育指标的相关性,ROC曲线分析各项血清生物标志物单独或联合检测对HIE的诊断效能。结果4组研究对象血清生物标志物及神经发育指标比较,差异均有统计学意义(均P<0.05),其中轻、中、重度HIE组患儿血清NSE、S-100B、Tau蛋白、激活素A水平均明显高于对照组(均P<0.05),且轻度HIE组<中度HIE组<重度HIE组(均P<0.05);生后7 d NBNA评分、生后35周DQ、生后52周DQ均明显低于对照组(均P<0.05),且轻度HIE组>中度HIE组>重度HIE组(均P<0.05)。血清NSE、S-100B、Tau蛋白、激活素A水平与生后7 d NBNA评分均呈负相关(r=-0.779、-0.788、-0.714、-0.800,均P<0.05);与生后35周DQ均呈负相关(r=-0.662、-0.700、-0.626、-0.674,均P<0.05),与生后52周DQ均呈负相关(r=-0.636、-0.684、-0.619、-0.632,均P<0.05)。血清NSE、S-100B、Tau蛋白、激活素A单独检测和4项联合检测诊断HIE的AUC分别为0.923、0.946、0.942、0.939和0.995,4项联合检测的诊断效能最佳。结论血清NSE、S-100B、Tau蛋白、激活素A与HIE新生儿神经发育有关,4项联合检测诊断HIE的效能较高。
基金supported by a grant from the National Natural Science Foundation of China (No. 81001237)
文摘Objective To study the effect of chronic noise exposure on expression of N-methyI-D-aspartic acid receptor 2B (NR2B) and tau phosphorylation in hippocampus of rats. Methods Twenty-four male SD rats were divided in control group and chronic noise exposure group. NR2B expression and tau phosphorylation in hippocampus of rats were detected after chronic noise exposure (100 dB SPL white noise, 4 h/dx30d) and their mechanisms underlying neuronal apoptosis in hippocampus of rats with TUNEL staining. Results The NR2B expression decreased significantly after chronic noise exposure which resulted in tau hyperphosphorylation and neural apoptosis in hippocampus of rats. Immunohistochemistry showed that the tau hyperphosphorylation was most prominent in dentate gyrus (DG) and CA1 region of rat hippocampus. Conclusion The abnormality of neurotransmitter system, especially Glu and NR2B containing NMDA receptor, and tau hyperphosphorylation in hippocampus of rats, may play a role in chronic noise-induced neural apoptosis and cognition impairment.