Synaptosomal-associated protein-25 is an important factor for synaptic functions and cognition. In this study, subarachnoid hemorrhage models with spatial learning disorder were established through a blood injection i...Synaptosomal-associated protein-25 is an important factor for synaptic functions and cognition. In this study, subarachnoid hemorrhage models with spatial learning disorder were established through a blood injection into the chiasmatic cistern. Immunohistochemical staining and western blot analysis results showed that synaptosomal-associated protein-25 expression in the temporal lobe, hippocampus, and cerebellum significantly lower at days 1 and 3 following subarachnoid hemorrhage. Our findings indicate that synaptosomal-associated protein-25 expression was down-regulated in the rat brain after subarachnoid hemorrhage.展开更多
BACKGROUND Gestational diabetes mellitus(GDM)is a concern due to its rapid increase in incidence in recent years.AIM To investigate the correlation and predictive value of serum pregnancyassociated plasma protein A(PA...BACKGROUND Gestational diabetes mellitus(GDM)is a concern due to its rapid increase in incidence in recent years.AIM To investigate the correlation and predictive value of serum pregnancyassociated plasma protein A(PAPP-A),triglyceride(TG),and 25-hydroxyvitamin D[25-(OH)D]with GDM in early pregnancy.METHODS A total of 99 patients in early pregnancy admitted to Peking University International Hospital from November 2015 to September 2017 were included,and underwent a fasting glucose test and oral glucose tolerance test screening at 24-28 wk of pregnancy.Of these cases with GDM,51 were assigned to group A and the remaining 48 cases without GDM were enrolled in group B.Serum PAPP-A,TG and 25-(OH)D in the two groups were compared and their correlation with blood sugar was analyzed.In addition,their diagnostic value in GDM was determined using receiver operating characteristic(ROC)curve analysis.RESULTS Group A had markedly lower serum PAPP-A and 25-(OH)D levels and a significantly higher serum TG level than group B,with statistical significance(P<0.05).Furthermore,Pearson analysis identified that PAPP-A and 25-(OH)D levels were negatively correlated with fasting blood glucose(FBG)levels(r=-0.605,P<0.001),(r=-0.597,P<0.001),while TG and FBG levels were positively correlated(r=0.628,P<0.001).The sensitivity,specificity,area under the curve(AUC)and optimal cut-off value of serum PAPP-A level in the diagnosis of GDM were 72.55%,82.35%,0.861 and 16.340,respectively,while the sensitivity of TG in diagnosing GDM was 86.27%,the specificity was 66.67%,the AUC was 0.813,with an optimal cut-off value of 1.796.The corresponding sensitivity,specificity,AUC and optimal cut-off value of serum 25-(OH)D were 64.71%,70.59%,0.721 and 23.140,respectively.Moreover,multivariate logistic regression analysis revealed that FBG,vascular endothelial growth factor,Flt-1,serum PAPP-A,TG,and 25-(OH)D were related risk factors leading to GDM in patients.CONCLUSION Serum PAPP-A,TG,and 25-(OH)D levels are all correlated with blood glucose changes in GDM,and are independent factors affecting the occurrence of GDM and have certain value in the diagnosis of GDM.展开更多
目的观察成年期甲状腺功能减退症(简称甲减)大鼠额叶内突触结合蛋白1(Syt-1)及突触相关蛋白SNAP-25(synaptosomal associated protein of 25KD)的改变及左旋甲状腺素(T4)替代治疗后的恢复状况,探讨甲减脑损伤及恢复可能的分子机制。方...目的观察成年期甲状腺功能减退症(简称甲减)大鼠额叶内突触结合蛋白1(Syt-1)及突触相关蛋白SNAP-25(synaptosomal associated protein of 25KD)的改变及左旋甲状腺素(T4)替代治疗后的恢复状况,探讨甲减脑损伤及恢复可能的分子机制。方法药物建立成年期大鼠甲减及治疗模型,放射免疫法测定血清甲状腺激素水平,Western blot法观察Syt-1和SNAP-25在大鼠额叶的表达。结果与对照组相比,甲减组大鼠血清T3、T4水平显著降低(P<0.05),额叶突触小体内Syt-1的表达水平显著低于对照组,SNAP-25的表达水平显著高于对照组(P<0.05);T4替代治疗组与对照组比较血清T3、T4无统计学差异;Syt-1及SNAP-25的表达无统计学差异(P>0.05)。结论成年期甲减大鼠额叶内Syt-1表达减少,SNAP-25表达增加,甲状腺素治疗能使其恢复。展开更多
The role of SNARE [soluble NSF (N-ethylmaleimide-sensitive factor) accessory protein receptor] protein in cellular trafficking, membrane fusion and vesicle release in synaptic nerve terminals is described. The purpose...The role of SNARE [soluble NSF (N-ethylmaleimide-sensitive factor) accessory protein receptor] protein in cellular trafficking, membrane fusion and vesicle release in synaptic nerve terminals is described. The purpose of this review is to highlight the role of SNAREs in vital inflammatory conditions in maturing dendritic cells in order to retain the capacity to present new antigens together with altered cytokine secretory functions. This role of SNAREs can be used as novel targets for therapy in inflammatory diseases. The essential mechanism of SNAREs proteins for regulation of tumour formation through multiple signals and transportation pathways is also discussed. Finally, this review summarizes the current knowledge of SNARE proteins in regulating endocytosis in cancer cells and the possible therapeutic applications related to the pathogenesis of tumor formation.展开更多
Ginsenoside Rb1 has been reported to exert anti-aging and anti-neurodegenerative effects. In the present study, we investigate whether ginsenoside Rb1 is involved in neurite outgrowth and neuroprotection against damag...Ginsenoside Rb1 has been reported to exert anti-aging and anti-neurodegenerative effects. In the present study, we investigate whether ginsenoside Rb1 is involved in neurite outgrowth and neuroprotection against damage induced by amyloid beta(25–35) in cultured hippocampal neurons, and explore the underlying mechanisms. Ginsenoside Rb1 significantly increased neurite outgrowth in hippocampal neurons, and increased the expression of phosphorylated-Akt and phosphorylated extracellular signal-regulated kinase 1/2. These effects were abrogated by API-2 and PD98059, inhibitors of the signaling proteins Akt and MEK. Additionally, cultured hippocampal neurons were exposed to amyloid beta(25–35) for 30 minutes; ginsenoside Rb1 prevented apoptosis induced by amyloid beta(25–35), and this effect was blocked by API-2 and PD98059. Furthermore, ginsenoside Rb1 significantly reversed the reduction in phosphorylated-Akt and phosphorylated extracellular signal-regulated kinase 1/2 levels induced by amyloid beta(25–35), and API-2 neutralized the effect of ginsenoside Rb1. The present results indicate that ginsenoside Rb1 enhances neurite outgrowth and protects against neurotoxicity induced by amyloid beta(25–35) via a mechanism involving Akt and extracellular signal-regulated kinase 1/2 signaling.展开更多
基金supported by grants from the National Natural Science Foundation of China,No.81171105,81271300,and 81100872Jiangsu Provincial Outstanding Medical Academic Leader Program,No.LJ201139+2 种基金the National Key Technology Research & Development Program for the Twelfth Five-year Plan of China,No.2011BAI08B05 and 2011BAI08B06grants from Education Department of Jiangsu Province,No.11KJB320011a grant from Suzhou Government,No.SYS201109
文摘Synaptosomal-associated protein-25 is an important factor for synaptic functions and cognition. In this study, subarachnoid hemorrhage models with spatial learning disorder were established through a blood injection into the chiasmatic cistern. Immunohistochemical staining and western blot analysis results showed that synaptosomal-associated protein-25 expression in the temporal lobe, hippocampus, and cerebellum significantly lower at days 1 and 3 following subarachnoid hemorrhage. Our findings indicate that synaptosomal-associated protein-25 expression was down-regulated in the rat brain after subarachnoid hemorrhage.
文摘BACKGROUND Gestational diabetes mellitus(GDM)is a concern due to its rapid increase in incidence in recent years.AIM To investigate the correlation and predictive value of serum pregnancyassociated plasma protein A(PAPP-A),triglyceride(TG),and 25-hydroxyvitamin D[25-(OH)D]with GDM in early pregnancy.METHODS A total of 99 patients in early pregnancy admitted to Peking University International Hospital from November 2015 to September 2017 were included,and underwent a fasting glucose test and oral glucose tolerance test screening at 24-28 wk of pregnancy.Of these cases with GDM,51 were assigned to group A and the remaining 48 cases without GDM were enrolled in group B.Serum PAPP-A,TG and 25-(OH)D in the two groups were compared and their correlation with blood sugar was analyzed.In addition,their diagnostic value in GDM was determined using receiver operating characteristic(ROC)curve analysis.RESULTS Group A had markedly lower serum PAPP-A and 25-(OH)D levels and a significantly higher serum TG level than group B,with statistical significance(P<0.05).Furthermore,Pearson analysis identified that PAPP-A and 25-(OH)D levels were negatively correlated with fasting blood glucose(FBG)levels(r=-0.605,P<0.001),(r=-0.597,P<0.001),while TG and FBG levels were positively correlated(r=0.628,P<0.001).The sensitivity,specificity,area under the curve(AUC)and optimal cut-off value of serum PAPP-A level in the diagnosis of GDM were 72.55%,82.35%,0.861 and 16.340,respectively,while the sensitivity of TG in diagnosing GDM was 86.27%,the specificity was 66.67%,the AUC was 0.813,with an optimal cut-off value of 1.796.The corresponding sensitivity,specificity,AUC and optimal cut-off value of serum 25-(OH)D were 64.71%,70.59%,0.721 and 23.140,respectively.Moreover,multivariate logistic regression analysis revealed that FBG,vascular endothelial growth factor,Flt-1,serum PAPP-A,TG,and 25-(OH)D were related risk factors leading to GDM in patients.CONCLUSION Serum PAPP-A,TG,and 25-(OH)D levels are all correlated with blood glucose changes in GDM,and are independent factors affecting the occurrence of GDM and have certain value in the diagnosis of GDM.
文摘目的观察成年期甲状腺功能减退症(简称甲减)大鼠额叶内突触结合蛋白1(Syt-1)及突触相关蛋白SNAP-25(synaptosomal associated protein of 25KD)的改变及左旋甲状腺素(T4)替代治疗后的恢复状况,探讨甲减脑损伤及恢复可能的分子机制。方法药物建立成年期大鼠甲减及治疗模型,放射免疫法测定血清甲状腺激素水平,Western blot法观察Syt-1和SNAP-25在大鼠额叶的表达。结果与对照组相比,甲减组大鼠血清T3、T4水平显著降低(P<0.05),额叶突触小体内Syt-1的表达水平显著低于对照组,SNAP-25的表达水平显著高于对照组(P<0.05);T4替代治疗组与对照组比较血清T3、T4无统计学差异;Syt-1及SNAP-25的表达无统计学差异(P>0.05)。结论成年期甲减大鼠额叶内Syt-1表达减少,SNAP-25表达增加,甲状腺素治疗能使其恢复。
文摘The role of SNARE [soluble NSF (N-ethylmaleimide-sensitive factor) accessory protein receptor] protein in cellular trafficking, membrane fusion and vesicle release in synaptic nerve terminals is described. The purpose of this review is to highlight the role of SNAREs in vital inflammatory conditions in maturing dendritic cells in order to retain the capacity to present new antigens together with altered cytokine secretory functions. This role of SNAREs can be used as novel targets for therapy in inflammatory diseases. The essential mechanism of SNAREs proteins for regulation of tumour formation through multiple signals and transportation pathways is also discussed. Finally, this review summarizes the current knowledge of SNARE proteins in regulating endocytosis in cancer cells and the possible therapeutic applications related to the pathogenesis of tumor formation.
基金supported by grants from the National Natural Science Foundation of China,No.30971531,81070987
文摘Ginsenoside Rb1 has been reported to exert anti-aging and anti-neurodegenerative effects. In the present study, we investigate whether ginsenoside Rb1 is involved in neurite outgrowth and neuroprotection against damage induced by amyloid beta(25–35) in cultured hippocampal neurons, and explore the underlying mechanisms. Ginsenoside Rb1 significantly increased neurite outgrowth in hippocampal neurons, and increased the expression of phosphorylated-Akt and phosphorylated extracellular signal-regulated kinase 1/2. These effects were abrogated by API-2 and PD98059, inhibitors of the signaling proteins Akt and MEK. Additionally, cultured hippocampal neurons were exposed to amyloid beta(25–35) for 30 minutes; ginsenoside Rb1 prevented apoptosis induced by amyloid beta(25–35), and this effect was blocked by API-2 and PD98059. Furthermore, ginsenoside Rb1 significantly reversed the reduction in phosphorylated-Akt and phosphorylated extracellular signal-regulated kinase 1/2 levels induced by amyloid beta(25–35), and API-2 neutralized the effect of ginsenoside Rb1. The present results indicate that ginsenoside Rb1 enhances neurite outgrowth and protects against neurotoxicity induced by amyloid beta(25–35) via a mechanism involving Akt and extracellular signal-regulated kinase 1/2 signaling.