In this paper, we get W 1,p(Rn)-boundedness for tangential maximal func- tion and nontangential maximal function , which improves J.Kinnunen, P.Lindqvist and Tananka’s results.
After spinal cord injury, dysregulated miRNAs appear and can participate in inflammatory responses, as well as the inhibition of apoptosis and axon regeneration through multiple pathways. However, the functions of miR...After spinal cord injury, dysregulated miRNAs appear and can participate in inflammatory responses, as well as the inhibition of apoptosis and axon regeneration through multiple pathways. However, the functions of miRNAs in spinal cord ischemia-reperfusion injury progression remain unclear. miRCURY LNATM Arrays were used to analyze miRNA expression profiles of rats after 90 minutes of ischemia followed by reperfusion for 24 and 48 hours. Furthermore, subsequent construction of aberrantly expressed miRNA regulatory patterns involved cell survival, proliferation, and apoptosis. Remarkably, the mitogen-activated protein kinase(MAPK) signaling pathway was the most significantly enriched pathway among 24-and 48-hour groups. Bioinformatics analysis and quantitative reverse transcription polymerase chain reaction confirmed the persistent overexpression of miR-22-3 p in both groups. These results suggest that the aberrant miRNA regulatory network is possibly regulated MAPK signaling and continuously affects the physiological and biochemical status of cells, thus participating in the regulation of spinal cord ischemia-reperfusion injury. As such, miR-22-3 p may play sustained regulatory roles in spinal cord ischemia-reperfusion injury. All experimental procedures were approved by the Animal Ethics Committee of Jilin University, China [approval No. 2020(Research) 01].展开更多
目的合成环己酮3-氯-1,2-丙二醇缩酮。方法采用浸渍法制备了H6P2W18O62/TiO2-SiO2催化剂,并采用FT-IR、XRD、SEM对其进行了表征。以环己酮和3-氯-1,2-丙二醇为原料,催化合成环己酮3-氯-1,2-丙二醇缩酮,采用FT-IR、1 H NMR、13 C NMR等...目的合成环己酮3-氯-1,2-丙二醇缩酮。方法采用浸渍法制备了H6P2W18O62/TiO2-SiO2催化剂,并采用FT-IR、XRD、SEM对其进行了表征。以环己酮和3-氯-1,2-丙二醇为原料,催化合成环己酮3-氯-1,2-丙二醇缩酮,采用FT-IR、1 H NMR、13 C NMR等表征手段来分析合成产物为环己酮3-氯-1,2-丙二醇缩酮。结果在酮醇摩尔比为1∶1.4,带水剂环己烷用量8mL,催化剂用量为反应物总质量的2.0%,反应时间1.0h的条件下,缩酮收率可达85.0%。催化剂重复使用5次后收率有72.6%。结论 H6P2W18O62/TiO2-SiO2催化剂对合成环己酮3-氯-1,2-丙二醇缩酮不仅反应时间短,催化剂用量少,而且产品收率高。展开更多
基金2013年国家级大学生创新创业训练计划项目(201313256001)湖北师范学院硕士研究生创新科研基金项目(1051320130216)+1 种基金National Undergraduate Training Programs for Innovation and Entrepreneurship(201313256001)Postgraduate Innovation Scientific Research Foundation of Hubei Normal University(1051320130216)
基金Supported by the key Academic Discipline of Zhejiang Province of China under Grant No.2005the Zhejiang Provincial Natural Science Foundation of China
文摘In this paper, we get W 1,p(Rn)-boundedness for tangential maximal func- tion and nontangential maximal function , which improves J.Kinnunen, P.Lindqvist and Tananka’s results.
基金supported by the National Natural Science Foundation of China,No.81350013(to XYY)。
文摘After spinal cord injury, dysregulated miRNAs appear and can participate in inflammatory responses, as well as the inhibition of apoptosis and axon regeneration through multiple pathways. However, the functions of miRNAs in spinal cord ischemia-reperfusion injury progression remain unclear. miRCURY LNATM Arrays were used to analyze miRNA expression profiles of rats after 90 minutes of ischemia followed by reperfusion for 24 and 48 hours. Furthermore, subsequent construction of aberrantly expressed miRNA regulatory patterns involved cell survival, proliferation, and apoptosis. Remarkably, the mitogen-activated protein kinase(MAPK) signaling pathway was the most significantly enriched pathway among 24-and 48-hour groups. Bioinformatics analysis and quantitative reverse transcription polymerase chain reaction confirmed the persistent overexpression of miR-22-3 p in both groups. These results suggest that the aberrant miRNA regulatory network is possibly regulated MAPK signaling and continuously affects the physiological and biochemical status of cells, thus participating in the regulation of spinal cord ischemia-reperfusion injury. As such, miR-22-3 p may play sustained regulatory roles in spinal cord ischemia-reperfusion injury. All experimental procedures were approved by the Animal Ethics Committee of Jilin University, China [approval No. 2020(Research) 01].
文摘目的合成环己酮3-氯-1,2-丙二醇缩酮。方法采用浸渍法制备了H6P2W18O62/TiO2-SiO2催化剂,并采用FT-IR、XRD、SEM对其进行了表征。以环己酮和3-氯-1,2-丙二醇为原料,催化合成环己酮3-氯-1,2-丙二醇缩酮,采用FT-IR、1 H NMR、13 C NMR等表征手段来分析合成产物为环己酮3-氯-1,2-丙二醇缩酮。结果在酮醇摩尔比为1∶1.4,带水剂环己烷用量8mL,催化剂用量为反应物总质量的2.0%,反应时间1.0h的条件下,缩酮收率可达85.0%。催化剂重复使用5次后收率有72.6%。结论 H6P2W18O62/TiO2-SiO2催化剂对合成环己酮3-氯-1,2-丙二醇缩酮不仅反应时间短,催化剂用量少,而且产品收率高。