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Serum vascular endothelial growth factor and cortisol expression to predict prognosis of patients with hypertensive cerebral hemorrhage
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作者 Chao-Yong Zhang Bin Wang +2 位作者 Xiang-Ting Hua kui fan Yu-Feng Li 《World Journal of Clinical Cases》 SCIE 2023年第23期5455-5461,共7页
BACKGROUND Cerebral hemorrhage is a common and severe complication of hypertension in middle-aged and elderly men.AIM To investigate the correlation between vascular endothelial growth factor(VEGF)and cortisol(Cor)and... BACKGROUND Cerebral hemorrhage is a common and severe complication of hypertension in middle-aged and elderly men.AIM To investigate the correlation between vascular endothelial growth factor(VEGF)and cortisol(Cor)and the prognosis of patients with hypertensive cerebral hemorrhage.METHODS A hundred patients with hypertensive intracerebral hemorrhage were enrolled from January 2020 to December 2022 and assigned to the hypertensive intracerebral hemorrhage group.Another 100 healthy people who were examined at our hospital during the same period were selected and assigned to the healthy group.Peripheral venous blood was collected,and serum Cor and VGEF levels were measured through enzyme linked immunosorbent assay.RESULTS A statistically significant difference in serum Cor and VGEF levels was observed among patients with varying degrees of neurological impairment(P<0.05).Serum Cor and VGEF levels were significantly higher in the severe group than in the mild-to-moderate group.Cor and VEGF levels were significantly higher in patients with poor prognoses than in those with good prognoses.Multiple logistic regression analysis revealed that serum Cor and VGEF levels were independent factors affecting hypertensive intracerebral hemorrhage(P<0.05).CONCLUSION Cor and VGEF are associated with the occurrence and development of hypertensive cerebral hemorrhage and are significantly associated with neurological impairment and prognosis of patients. 展开更多
关键词 HYPERTENSION Cerebral hemorrhage Vascular endothelial growth factor CORTISOL PROGNOSIS Treatment
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Co-thermal in-situ reduction of inorganic carbonates to reduce carbon-dioxide emission
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作者 Zhen Xue Jingyi Guo +8 位作者 Shasha Wu Wenfu Xie Yujing Fu Xiaojie Zhao kui fan Ming Xu Hong Yan Mingfei Shao Xue Duan 《Science China Chemistry》 SCIE EI CAS CSCD 2023年第4期1201-1210,共10页
Thermal decomposition of inorganic metal carbonates is the main path to prepare metal oxides;nonetheless,it is always accompanied by the emission of large amounts of CO_(2) as one of the gas products.This study report... Thermal decomposition of inorganic metal carbonates is the main path to prepare metal oxides;nonetheless,it is always accompanied by the emission of large amounts of CO_(2) as one of the gas products.This study reports a concept of co-thermal insitu reduction of inorganic carbonates by using the energy released by carbonate decomposition under pure hydrogen atmosphere,which reduces the decarboxylation temperature and significantly inhibits the CO_(2) emissions.A combination of hydrogen–deuterium exchange,isotope experiment,and density functional theory calculations demonstrates that the CO results from the selective cleavage of Ca–O bonds at the surface of CaCO_(3) via the direct hydrogenation mechanism at relatively low temperature.However,it undergoes the reverse water–gas shift reaction path at high temperature,i.e.,CO being produced by the reduction of CO_(2) released by the decomposition of carbonates.This study sheds light on the potential of green hydrogen technology for inorganic carbonate valorization toward high value-added products,which can facilitate the large-scale industrial applications. 展开更多
关键词 inorganic carbonate co-thermal in-situ reduction carbon dioxide emission reduction carbon monoxide
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A catalysis study of mesoporous MCM-41 supported Schiff base and CuSO_4·5H_2O in a highly regioselective synthesis of 4-thiazolidinone derivatives from cyclocondensation of mercaptoacetic acid 被引量:2
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作者 Hai-Xia Pang Yong-Hai Hui +5 位作者 kui fan Xue-Jian Xing Yang Wu Jing-Hui Yang Wei Shi Zheng-Feng Xie 《Chinese Chemical Letters》 SCIE CAS CSCD 2016年第3期335-339,共5页
Mesoporous MCM-41 supported Schiff base and Cu SO_4 5H_2 O shows high catalytic activity in the cyclocondensation of mercaptoacetic acid with imines(or aldehydes and amines) to afford pharmaceutically important thiazo... Mesoporous MCM-41 supported Schiff base and Cu SO_4 5H_2 O shows high catalytic activity in the cyclocondensation of mercaptoacetic acid with imines(or aldehydes and amines) to afford pharmaceutically important thiazolidinone derivatives. The catalytic reactions involving twocomponents or three-components afforded the desired product in high yields(up to 98% and 99%).Moreover, the catalyst works well with respect to recyclability, giving the product in 85% and 83% yields after recycling six times. 展开更多
关键词 介孔分子筛MCM-41 酮衍生物 巯基乙酸 催化活性 高选择性合成 希夫碱 噻唑烷 缩合
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