目的探讨应用阿托伐他汀联合银杏二萜内酯葡胺注射液治疗急性脑梗死的临床效果。方法选取2015年1月—2017年12月西宁市第一人民医院收治的急性脑梗死患者82例,随机分成对照组(41例)和治疗组(41例)。对照组静脉滴注银杏二萜内酯葡胺注射...目的探讨应用阿托伐他汀联合银杏二萜内酯葡胺注射液治疗急性脑梗死的临床效果。方法选取2015年1月—2017年12月西宁市第一人民医院收治的急性脑梗死患者82例,随机分成对照组(41例)和治疗组(41例)。对照组静脉滴注银杏二萜内酯葡胺注射液,5 m L加入250 m L生理盐水,1次/d。治疗组在对照组基础上口服阿托伐他汀钙片,20 mg/次,1次/d。两组患者均连续治疗14 d。观察两组患者临床疗效,同时比较治疗前后两组患者总胆固醇(TC)/高密度脂蛋白胆固醇(HDL-C)、载脂蛋白(Apo)B/Apo A-l比值、国立卫生研究院卒中量表(NIHSS)评分、颈动脉超声参数及白介素(IL)-1β、IL-6、超氧化物歧化酶(SOD)和丙二醛(MDA)水平。结果治疗后,对照组和治疗组临床总有效率分别为75.6%、92.7%,两组比较差异具有统计学意义(P<0.05)。治疗后,两组血清TC/HDL-C、Apo B/Apo A-l比值和NIHSS评分均显著降低(P<0.05),且治疗组上述指标显著低于对照组(P<0.05)。治疗后,两组左、右两侧颈总动脉内径、RI及IMT值较治疗前均显著降低(P<0.05),且治疗组颈动脉超声参数显著低于对照组(P<0.05)。治疗后,两组血清IL-1β、IL-6、MDA浓度较治疗前显著降低低(P<0.05),血清SOD水平显著升高(P<0.05),且治疗组IL-1β、IL-6、SOD、MDA水平明显优于对照组(P<0.05)。结论阿托伐他汀联合银杏二萜内酯葡胺注射液治疗急性脑梗死可有效改善患者神经功能,减轻机体炎性及氧化应激损伤,疗效确切。展开更多
Inflorescence architecture is a major determinant of spikelet numbers per panicle, a key component of grain yield in rice. In this study, Short Panicle 3(SP3) was identified from a short panicle 3(sp3) mutant in which...Inflorescence architecture is a major determinant of spikelet numbers per panicle, a key component of grain yield in rice. In this study, Short Panicle 3(SP3) was identified from a short panicle 3(sp3) mutant in which T-DNA was inserted in the promoter of SP3, resulting in a knockdown mutation. SP3 encodes a DNA binding with one finger(Dof) transcriptional activator. Quantitative real time(q RT)-PCR and RNA in situ hybridization assays confirmed that SP3 is preferentially expressed in the young rice inflorescence, specifically in the branch primordial regions. SP3 acts as a negative regulator of inflorescence meristem abortion by upregulating APO2/RFL. SP3 both up-and downregulates expression of genes involved in cytokinin biosynthesis and catabolism, respectively. Consequently, cytokinin concentrations are decreased in young sp3 panicles, thereby leading to small panicles having fewer branches and spikelets. Our findings support a model in which SP3 regulates panicle architecture by modulating cytokinin homeostasis. Potential applications to rice breeding, through gene-editing of the SP3 promoter are assessed.展开更多
文摘目的探讨应用阿托伐他汀联合银杏二萜内酯葡胺注射液治疗急性脑梗死的临床效果。方法选取2015年1月—2017年12月西宁市第一人民医院收治的急性脑梗死患者82例,随机分成对照组(41例)和治疗组(41例)。对照组静脉滴注银杏二萜内酯葡胺注射液,5 m L加入250 m L生理盐水,1次/d。治疗组在对照组基础上口服阿托伐他汀钙片,20 mg/次,1次/d。两组患者均连续治疗14 d。观察两组患者临床疗效,同时比较治疗前后两组患者总胆固醇(TC)/高密度脂蛋白胆固醇(HDL-C)、载脂蛋白(Apo)B/Apo A-l比值、国立卫生研究院卒中量表(NIHSS)评分、颈动脉超声参数及白介素(IL)-1β、IL-6、超氧化物歧化酶(SOD)和丙二醛(MDA)水平。结果治疗后,对照组和治疗组临床总有效率分别为75.6%、92.7%,两组比较差异具有统计学意义(P<0.05)。治疗后,两组血清TC/HDL-C、Apo B/Apo A-l比值和NIHSS评分均显著降低(P<0.05),且治疗组上述指标显著低于对照组(P<0.05)。治疗后,两组左、右两侧颈总动脉内径、RI及IMT值较治疗前均显著降低(P<0.05),且治疗组颈动脉超声参数显著低于对照组(P<0.05)。治疗后,两组血清IL-1β、IL-6、MDA浓度较治疗前显著降低低(P<0.05),血清SOD水平显著升高(P<0.05),且治疗组IL-1β、IL-6、SOD、MDA水平明显优于对照组(P<0.05)。结论阿托伐他汀联合银杏二萜内酯葡胺注射液治疗急性脑梗死可有效改善患者神经功能,减轻机体炎性及氧化应激损伤,疗效确切。
基金supported by grants from the National Special Program for Research of Transgenic Plant of China (2011ZX08009-001-002)National Natural Science Foundation of China (31571751)+1 种基金the Natural Science Foundation of Hubei province China (2015CFA006)the Project for Applied Basis Research, Wuhan, China (2016020101010090)
文摘Inflorescence architecture is a major determinant of spikelet numbers per panicle, a key component of grain yield in rice. In this study, Short Panicle 3(SP3) was identified from a short panicle 3(sp3) mutant in which T-DNA was inserted in the promoter of SP3, resulting in a knockdown mutation. SP3 encodes a DNA binding with one finger(Dof) transcriptional activator. Quantitative real time(q RT)-PCR and RNA in situ hybridization assays confirmed that SP3 is preferentially expressed in the young rice inflorescence, specifically in the branch primordial regions. SP3 acts as a negative regulator of inflorescence meristem abortion by upregulating APO2/RFL. SP3 both up-and downregulates expression of genes involved in cytokinin biosynthesis and catabolism, respectively. Consequently, cytokinin concentrations are decreased in young sp3 panicles, thereby leading to small panicles having fewer branches and spikelets. Our findings support a model in which SP3 regulates panicle architecture by modulating cytokinin homeostasis. Potential applications to rice breeding, through gene-editing of the SP3 promoter are assessed.