1.Analysis on National TCM Master Yan Zhenghua's Medication Rules of Ascending,Descending,Floating and Sinking Properties for the Treatment of Respiratory Diseases
Wanjun YANG ; Siyu LI ; Zhaoning XU ; Yixuan LI ; Yan GAO ; Huaqiang ZHAI
Chinese Journal of Information on Traditional Chinese Medicine 2024;31(1):65-71
		                        		
		                        			
		                        			Objective To analyze TCM master Yan Zhenghua's medication rules of ascending,descending,floating and sinking properties for the treatment of respiratory diseases,inherit his valuable academic experience.Methods Using four books edited by Professor Yan Zhenghua's disciples as the main source,Professor Yan Zhenghua's prescriptions for clinical treatment of respiratory diseases were systematically collected and analyzed.Statistical analysis was conducted on the patients'gender and age,differentiation of diseases and syndrome types of the prescriptions,as well as the properties of ascending,descending,floating and sinking,dosage,and commonly used pairs of Chinese materia medica.Results Totally 208 prescriptions were included in this study,involving 178 kinds of Chinese materia medica and 64 kinds of monarch drug,most of them were descending and sinking drug,and the whole prescription was mainly descending and sinking.On average,each prescription used 13.2 kinds of Chinese materia medica,and most dosage points were within the range of conventional dosage.Among later adding medicines,Houttuyniae Herba had the highest frequency of use.The medicinal pairs of Asteris Radix et Rhizoma-Cynanchi Stauntonii Rhizoma et Radix,Cynanchi Stauntonii Rhizoma et Radix-Stemonae Radix and Asteris Radix et Rhizoma-Stemonae Radix were often used.Armeniacae Semen Amarum,Fritillariae Thunbergii Bulbus,and Asteris Radix et Rhizoma were commonly used in those descending and sinking prescriptions.Conclusion In the treatment of respiratory diseases,Professor Yan Zhenghua prefers to use descending and sinking drugs with ascending and floating drugs and dual trend drugs to regulate qi activity,and has the characteristics of Menghe medical school,which is"mild and flexible medication".
		                        		
		                        		
		                        		
		                        	
2.Effect of amlodipine and levamlodipine on the pharmacokinetics of lenvatinib in rats and related mechanisms
Bin YAN ; Gexi CAO ; Yanru DENG ; Ying LI ; Zhanjun DONG ; Wanjun BAI
Journal of Clinical Hepatology 2024;40(11):2246-2252
		                        		
		                        			
		                        			Objective To investigate the effect of amlodipine and levamlodipine on the pharmacokinetics of lenvatinib and related mechanisms.Methods A total of 18 male Sprague-Dawley rats were randomly divided into lenvatinib(1.2 mg/kg)group,amlodipine(1.0 mg/kg)+lenvatinib group,and levamlodipine(0.5 mg/kg)+lenvatinib group,with 6 rats in each group.The rats were pretreated with 0.5%sodium carboxymethyl cellulose,amlodipine or levamlodipine by gavage for 8 days,and lenvatinib was given after the last intragastric administration.Blood samples were collected from the intraocular canthus venous plexus at the specified time points.Ultra-performance liquid chromatography-tandem mass spectrometry was used to measure the plasma concentration of lenvatinib in rats,and a non-compartment model was used to calculate pharmacokinetic parameters.RT-qPCR was used to measure the mRNA expression levels of cytochrome P450 3A1(CYP3A1),P-glycoprotein(P-gp),and breast cancer resistance protein(BCRP)in rat liver tissue.A one-way analysis of variance was used for comparison of normally distributed continuous data between multiple groups,and the Dunnett-t test was used for further comparison between two groups;the Kruskal-Wallis H test was used for comparison of non-normally distributed continuous data between groups.Results There were significant differences between the three groups in the area under the concentration-time curve AUC0-∞(F=4.567,P<0.05),clearance rate CLz/F(F=5.038,P<0.05),and peak concentration Cmax(F=11.667,P<0.01).Compared with the lenvatinib group,the amlodipine+lenvatinib group had an increase in AUC0-∞ by 36.1%(P<0.05),a reduction in CLz/F by 26.1%(P<0.05),and an increase in Cmax by 56.7%(P<0.01),and the levamlodipine+lenvatinib group had an increase in Cmax by 37.7%(P<0.05).RT-qPCR showed that there were significant differences in the mRNA expression levels of CYP3A1,P-gp,and BCRP between the three groups(F=10.160,5.350,and 5.237,all P<0.05),and compared with the lenvatinib group,the amlodipine+lenvatinib group had significant reductions in the mRNA expression levels of CYP3A1,P-gp,and BCRP in rat liver tissue(all P<0.05),while the levamlodipine+lenvatinib group had a significant reduction in the mRNA expression level of CYP3A1 in rat liver tissue(P<0.05).Conclusion Amlodipine can increase the in vivo exposure of lenvatinib possibly by inhibiting the mRNA expression of CYP3A1,P-gp,and BCRP in the liver,while levamlodipine only increases the peak concentration of lenvatinib.
		                        		
		                        		
		                        		
		                        	
3.Tenecteplase versus alteplase in treatment of acute ST-segment elevation myocardial infarction: A randomized non-inferiority trial
Xingshan ZHAO ; Yidan ZHU ; Zheng ZHANG ; Guizhou TAO ; Haiyan XU ; Guanchang CHENG ; Wen GAO ; Liping MA ; Liping QI ; Xiaoyan YAN ; Haibo WANG ; Qingde XIA ; Yuwang YANG ; Wanke LI ; Juwen RONG ; Limei WANG ; Yutian DING ; Qiang GUO ; Wanjun DANG ; Chen YAO ; Qin YANG ; Runlin GAO ; Yangfeng WU ; Shubin QIAO
Chinese Medical Journal 2024;137(3):312-319
		                        		
		                        			
		                        			Background::A phase II trial on recombinant human tenecteplase tissue-type plasminogen activator (rhTNK-tPA) has previously shown its preliminary efficacy in ST elevation myocardial infarction (STEMI) patients. This study was designed as a pivotal postmarketing trial to compare its efficacy and safety with rrecombinant human tissue-type plasminogen activator alteplase (rt-PA) in Chinese patients with STEMI.Methods::In this multicenter, randomized, open-label, non-inferiority trial, patients with acute STEMI were randomly assigned (1:1) to receive an intravenous bolus of 16 mg rhTNK-tPA or an intravenous bolus of 8 mg rt-PA followed by an infusion of 42 mg in 90 min. The primary endpoint was recanalization defined by thrombolysis in myocardial infarction (TIMI) flow grade 2 or 3. The secondary endpoint was clinically justified recanalization. Other endpoints included 30-day major adverse cardiovascular and cerebrovascular events (MACCEs) and safety endpoints.Results::From July 2016 to September 2019, 767 eligible patients were randomly assigned to receive rhTNK-tPA ( n = 384) or rt-PA ( n = 383). Among them, 369 patients had coronary angiography data on TIMI flow, and 711 patients had data on clinically justified recanalization. Both used a –15% difference as the non-inferiority efficacy margin. In comparison to rt-PA, both the proportion of patients with TIMI grade 2 or 3 flow (78.3% [148/189] vs. 81.7% [147/180]; differences: –3.4%; 95% confidence interval [CI]: –11.5%, 4.8%) and clinically justified recanalization (85.4% [305/357] vs. 85.9% [304/354]; difference: –0.5%; 95% CI: –5.6%, 4.7%) in the rhTNK-tPA group were non-inferior. The occurrence of 30-day MACCEs (10.2% [39/384] vs. 11.0% [42/383]; hazard ratio: 0.96; 95% CI: 0.61, 1.50) did not differ significantly between groups. No safety outcomes significantly differed between groups. Conclusion::rhTNK-tPA was non-inferior to rt-PA in the effect of improving recanalization of the infarct-related artery, a validated surrogate of clinical outcomes, among Chinese patients with acute STEMI.Trial registration::www.ClinicalTrials.gov (No. NCT02835534).
		                        		
		                        		
		                        		
		                        	
4.Shared and Distinct Topographic Alterations of Alpha-Range Resting EEG Activity in Schizophrenia, Bipolar Disorder, and Depression.
Rui XUE ; Xiaojing LI ; Jianning CHEN ; Sugai LIANG ; Hua YU ; Yamin ZHANG ; Wei WEI ; Yan XU ; Wei DENG ; Wanjun GUO ; Tao LI
Neuroscience Bulletin 2023;39(12):1887-1890
5.Diagnosis, treatment and prevention of severe acute respiratory syndrome coronavirus 2 infection in children: experts′ consensus statement (Fifth Edition)updated for the Omicron variant
Rongmeng JIANG ; Zhengde XIE ; Yi JIANG ; Xiaoxia LU ; Runming JIN ; Yuejie ZHENG ; Yunxiao SHANG ; Baoping XU ; Zhisheng LIU ; Gen LU ; Jikui DENG ; Guanghua LIU ; Xiaochuan WANG ; Jianshe WANG ; Luzhao FENG ; Wei LIU ; Yi ZHENG ; Sainan SHU ; Min LU ; Wanjun LUO ; Miao LIU ; Yuxia CUI ; Leping YE ; Adong SHEN ; Gang LIU ; Liwei GAO ; Lijuan XIONG ; Yan BAI ; Likai LIN ; Zhuang WEI ; Fengxia XUE ; Tianyou WANG ; Dongchi ZHAO ; Zhengyan ZHAO ; Jianbo SHAO ; Wong Wing-kin GARY ; Yanxia HE ; Xingwang LI ; Yonghong YANG ; Kunling SHEN
Chinese Journal of Applied Clinical Pediatrics 2023;38(1):20-30
		                        		
		                        			
		                        			China has classified the Corona Virus Disease 2019(COVID-19) as a statutory category B infectious disease and managed it according to Category B since January 8, 2023.In view that Omicron variant is currently the main epidemic strain in China, in order to guide the treatment of severe acute respiratory syndrome coronavirus 2(SARS-CoV-2) infection in children with the times, refer to the Diagnosis and Treatment Protocol for Novel Coronavirus Infection (Trial 10 th Edition), Expert Consensus on Diagnosis, Treatment and Prevention of Novel Coronavirus Infection in Children (Fourth Edition) and the Diagnosis and Treatment Strategy for Pediatric Related Viral Infections.The Expert Consensus on the Diagnosis, Treatment and Prevention of Novel Coronavirus Infection in Children (Fifth Edition) has been formulated and updated accordingly on related etiology, epidemiology, pathogenic mechanism, clinical manifestations, auxiliary examination, diagnosis and treatment, and added key points for the treatment of COVID-19 related encephalopathy, fulminating myocarditis and other serious complications for clinical reference.
		                        		
		                        		
		                        		
		                        	
6.Expert consensus on the diagnosis, treatment and prevention of monkeypox in children
Rongmeng JIANG ; Yuejie ZHENG ; Lei ZHOU ; Luzhao FENG ; Lin MA ; Baoping XU ; Hongmei XU ; Wei LIU ; Zhengde XIE ; Jikui DENG ; Lijuan XIONG ; Wanjun LUO ; Zhisheng LIU ; Sainan SHU ; Jianshe WANG ; Yi JIANG ; Yunxiao SHANG ; Miao LIU ; Liwei GAO ; Zhuang WEI ; Guanghua LIU ; Gang LIU ; Wei XIANG ; Yuxia CUI ; Gen LU ; Min LU ; Xiaoxia LU ; Runming JIN ; Yan BAI ; Leping YE ; Dongchi ZHAO ; Adong SHEN ; Xiang MA ; Qinghua LU ; Fengxia XUE ; Jianbo SHAO ; Tianyou WANG ; Zhengyan ZHAO ; Xingwang LI ; Yonghong YANG ; Kunling SHEN
Chinese Journal of Applied Clinical Pediatrics 2022;37(13):964-973
		                        		
		                        			
		                        			Monkeypox is a zoonotic disease.Previous studies have shown that children are vulnerable to monkeypox and are also at high risk for severe disease or complications.In order to improve pediatricians′ understanding of monkeypox and achieve early detection, early diagnosis, early treatment and early disposal, the committee composed of more than 40 experts in the related fields of infectious diseases, pediatrics, infection control and public health formulate this expert consensus, on the basis of the latest clinical management and infection prevention and control for monkeypox released by the World Health Organization (WHO), the guidelines for diagnosis and treatment of monkeypox (version 2022) issued by National Health Commission of the People′s Republic of China and other relevant documents.During the development of this consensus, multidisciplinary experts have repeatedly demonstrated the etiology, epidemiology, transmission, clinical manifestations, laboratory examinations, diagnosis and differential diagnosis, treatment, discharge criteria, prevention, case management process and key points of prevention and control about monkeypox.
		                        		
		                        		
		                        		
		                        	
7.Diagnosis, treatment and prevention of severe acute respiratory syndrome coronavirus 2 infection in children: experts′ consensus statement (Fourth Edition)
Rongmeng JIANG ; Zhengde XIE ; Yi JIANG ; Xiaoxia LU ; Runming JIN ; Yuejie ZHENG ; Yunxiao SHANG ; Baoping XU ; Zhisheng LIU ; Gen LU ; Jikui DENG ; Guanghua LIU ; Xiaochuan WANG ; Jianshe WANG ; Luzhao FENG ; Wei LIU ; Yi ZHENG ; Sainan SHU ; Min LU ; Wanjun LUO ; Miao LIU ; Yuxia CUI ; Leping YE ; Adong SHEN ; Gang LIU ; Liwei GAO ; Lijuan XIONG ; Yan BAI ; Likai LIN ; Zhuang WEI ; Fengxia XUE ; Tianyou WANG ; Dongchi ZHAO ; Zhengyan ZHAO ; Jianbo SHAO ; Kwok-keung Daniel NG ; Wing-kin Gary WONG ; Xingwang LI ; Yonghong YANG ; Kunling SHEN
Chinese Journal of Applied Clinical Pediatrics 2022;37(14):1053-1065
		                        		
		                        			
		                        			Since December 2019, severe acute respiratory syndrome coronavirus 2(SARS-CoV-2) infections have raged globally for more than 2 years.China has always adopted scientific and effective prevention and control measures to achieved some success.However, with the continuous variation of SARS-CoV-2 cases and imported cases from abroad, the prevention and control work has become more difficult and complex.With the variation of the mutant strain, the number of cases in children changed, and some new special symptoms and complications were found, which proposed a new topic for the prevention and treatment of SARS-CoV-2 infection in children in China.Based on the third edition, the present consensus according to the characteristics of the new strain, expounded the etiology, pathology, pathogenesis, and according to the clinical characteristics and experience of children′s cases, and puts forward recommendations on the diagnostic criteria, laboratory examination, treatment, prevention and control of children′s cases for providing reference for further guidance of effective prevention and treatment of SARS-CoV-2 infection in children in China.
		                        		
		                        		
		                        		
		                        	
8.Experts′ consensus on severe acute respiratory syndrome coronavirus-2 vaccination of children
Yuejie ZHENG ; Xiaochuan WANG ; Luzhao FENG ; Zhengde XIE ; Yi JIANG ; Gen LU ; Xingwang LI ; Rongmeng JIANG ; Jikui DENG ; Miao LIU ; Baoping XU ; Zhuang WEI ; Gang LIU ; Xiaoxia LU ; Runming JIN ; Zhisheng LIU ; Yunxiao SHANG ; Sainan SHU ; Yan BAI ; Min LU ; Guanghua LIU ; Wanjun LUO ; Yuxia CUI ; Leping YE ; Likai LIN ; Dongchi ZHAO ; Adong SHEN ; Jianbo SHAO ; Lijuan XIONG ; Liwei GAO ; Tianyou WANG ; Zhengyan ZHAO ; Yonghong YANG ; Kunling SHEN
Chinese Journal of Applied Clinical Pediatrics 2021;36(18):1361-1367
		                        		
		                        			
		                        			At present, severe acute respiratory syndrome coronavirus-2(SARS-CoV-2)infection is still rampant worldwide.As of September 10, 2021, there were about 222 million confirmed cases of corona virus disease 2019(COVID-19)and more than 4.6 million deaths worldwide.With the development of COVID-19 vaccines and the gradual vaccination worldwide, the increasing number of cases in children and unvaccinated young people has drawn attention.According to World Health Organization surveillance data, the proportion of COVID-19 infection cases in children gradually increased, and the proportion of cases in the age groups of under 5 years and 5-14 years increased from 1.0% and 2.5% in January 2020 to 2.0% and 8.7% in July 2021, respectively.At present, billions of adults have been vaccinated with various COVID-19 vaccines worldwide, and their protective effects including reducing infection and transmission, reducing severe disease and hospitalization, and reducing death, as well as high safety have been confirmed.Canada, the United States, Europe and other countries have approved the emergency COVID-19 vaccination in children and adolescents aged 12 to 17 years, and China has also approved the phased vaccination of COVID-19 vaccination in children and adolescents aged 3 to 17 years. For smooth advancement and implementation of COVID-19 vaccination in children, academic institutions, including National Clinical Research Center for Respiratory Diseases, National Center for Children′s Health, and The Society of Pediatrics, Chinese Medical Association organized relevant experts to reach this consensus on COVID-19 vaccination in children.
		                        		
		                        		
		                        		
		                        	
9.Twenty key issues on severe acute respiratory syndrome coronavirus-2 vaccination in children
Baoping XU ; Zhuang WEI ; Gen LU ; Yuejie ZHENG ; Xiaochuan WANG ; Luzhao FENG ; Zhengde XIE ; Gang LIU ; Yi JIANG ; Xingwang LI ; Rongmeng JIANG ; Jikui DENG ; Miao LIU ; Xiaoxia LU ; Runming JIN ; Zhisheng LIU ; Yunxiao SHANG ; Sainan SHU ; Yan BAI ; Min LU ; Guanghua LIU ; Wanjun LUO ; Yuxia CUI ; Leping YE ; Likai LIN ; Dongchi ZHAO ; Adong SHEN ; Jianbo SHAO ; Lijuan XIONG ; Liwei GAO ; Tianyou WANG ; Zhengyan ZHAO ; Yonghong YANG ; Kunling SHEN
Chinese Journal of Applied Clinical Pediatrics 2021;36(18):1368-1372
		                        		
		                        			
		                        			Severe acute respiratory syndrome coronavirus-2(SARS-CoV-2)infection is still worldwide.As a vulnerable group, severe and dead pediatric cases are also reported.Under this severe epidemic situation, children should be well protected.With the widespread vaccination of SARS-CoV-2 vaccine in adults, the infection rate have decreased.Therefore, SARS-CoV-2 vaccine inoculation for children groups step by step is of great significance to the protection of children and the prevention and control of corona virus disease 2019(COVID-19) as a whole.But the safety of children vaccinated with SARS-CoV-2 vaccine is a main concern of parents.Therefore, in order to ensure the safety of vaccination and the implementation of vaccination work, National Clinical Research Center for Respiratory Diseases, National Center for Children′s Health and the Society of Pediatrics, Chinese Medical Association organized experts to interpret the main issue of parents about SARS-CoV-2 vaccine for children, in order to answer the doubts of parents.
		                        		
		                        		
		                        		
		                        	
10.Clinical characteristics of rhabdomyolysis in children
Guangna CAO ; Aidi WU ; Wanjun ZHAO ; Yunfeng LIU ; Yan XING
Chinese Pediatric Emergency Medicine 2021;28(12):1066-1070
		                        		
		                        			
		                        			Objective:To summarize the etiology, laboratory examinations and clinical features of rhabdomyolysis(RM)in children.Methods:The clinical data of children with RM admitted to the pediatric general ward at Third Hospital of Peking University from January 1st, 2010 to March 31st, 2021 were collected.The clinical characteristics, etiology distribution, laboratory examinations, treatments and prognosis of the children were analyzed.Results:A total of 24 children were included with 16 males and 8 females.The age ranged from 4 to 15 years old, with median age was 13years old.The etiology was exertional diseases in 14 cases(58.3%), non-exertional diseases in ten cases (41.7%, 7 cases of infection and 3 cases of other causes). The average age of exertional RM was(13.50±1.83)years, and that of non-exertional RM was(8.60±3.72)years.There was significant difference( t=3.848, P=0.002). The main clinical symptoms were muscle soreness, abnormal urine color and muscle weakness.Serum creatine kinase(CK)and serum myoglobin were significantly increased.The proportion of CK value moderate to severe increased of exercise RM children was significantly higher than that of non-exertional RM children( P=0.009). All children were treated with hydration and alkalization.Except for one case who died of critical primary disease, the other 23 children had good treatment response, and no rhabdomyolysis was found during the follow-up. Conclusion:The main causes of rhabdomyolysis in children are exercise and infection.Exertional RM is common in elder children.The increasing of CK level caused by exertional RM is more obvious.Active hydration and alkalization measures could avoid the occurrence of acute kidney injury.Most children with RM have good prognosis.
		                        		
		                        		
		                        		
		                        	
            
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