1.Epidemiological survey on TCM syndrome distribution and season correlation of hypertension in Hunan Province.
Jie TAN ; Guo-Dong HAN ; Jiu-Xiang TENG
Chinese Journal of Integrated Traditional and Western Medicine 2008;28(10):897-899
OBJECTIVETo analyze the epidemiologic characteristics of TCM syndrome distribution and season correlation in hypertension patients.
METHODSClinical materials regarding population, symptoms and signs, etc. of 698 hypertension patients were collected, and statistical analysis on them was conducted.
RESULTSTCM syndrome type revealed in patients, in order of frequency from high to low, were: Gan-fire flaming-up syndrome, yin-deficiency and yang-excess syndrome, phlegm-dampness accumulation syndrome, both yin-yang deficiency syndrome, and others. The incidence of various syndromes was higher in the winter/spring and rather low in the summer, and Gan-fire flaming-up syndrome was positively related to the spring and negative to the summer.
CONCLUSIONSThe syndrome types of hypertension patients are chiefly the Gan-fire flaming-up syndrome, yin-deficiency and yang-excess syndrome, phlegm-dampness accumulation syndrome, and both yin-yang deficiency syndrome; Gan-fire flaming-up syndrome is the dominance; their incidence is higher in the winter/spring and lower in the summer.
Adolescent ; Adult ; Aged ; China ; epidemiology ; Female ; Health Surveys ; Humans ; Hypertension ; diagnosis ; epidemiology ; Male ; Medicine, Chinese Traditional ; Middle Aged ; Seasons ; Young Adult
2. Identification of a novel coronavirus causing severe pneumonia in human: a descriptive study
Li Li REN ; Ye Ming WANG ; Zhi Qiang WU ; Zi Chun XIANG ; Li GUO ; Teng XU ; Yong Zhong JIANG ; Yan XIONG ; Yong Jun LI ; Hui LI ; Guo Hui FAN ; Xiao Ying GU ; Yan XIAO ; Hong GAO ; Jiu Yang XU ; Fan YANG ; Xin Ming WANG ; Chao WU ; Lan CHEN ; Yi Wei LIU ; Bo LIU ; Jian YANG ; Jie DONG ; Li LI ; Chao Lin HUANG ; Jian Ping ZHAO ; Yi HU ; Zhen Shun CHENG ; Lin Lin LIU ; Zhao Hui QIAN ; Chuan QIN ; Qi JIN ; Bin CAO ; Jian Wei WANG
Chinese Medical Journal 2020;133(0):E001-E001
Background: Human infections with zoonotic coronaviruses (CoVs), including severe acute respiratory syndrome (SARS)-CoV and Middle East respiratory syndrome (MERS)-CoV, have raised great public health concern globally. Here, we report a novel bat-origin CoV causing severe and fatal pneumonia in humans. Methods: We collected clinical data and bronchoalveolar lavage (BAL) specimens from five patients with severe pneumonia from Jin Yin-tan Hospital, Wuhan, Hubei province, China. Nucleic acids of the BAL were extracted and subjected to next-generation sequencing. Virus isolation was carried out, and maximum-likelihood phylogenetic trees were constructed. Results: Five patients hospitalized from December 18 to December 29, 2019 presented with fever, cough, and dyspnea accompanied by complications of acute respiratory distress syndrome. Chest radiography revealed diffuse opacities and consolidation. One of these patients died. Sequence results revealed the presence of a previously unknown β-CoV strain in all five patients, with 99.8–99.9% nucleotide identities among the isolates. These isolates showed 79.0% nucleotide identity with the sequence of SARS-CoV (GenBank NC_004718) and 51.8% identity with the sequence of MERS-CoV (GenBank NC_019843). The virus is phylogenetically closest to a bat SARS-like CoV (SL-ZC45, GenBank MG772933) with 87.6–87.7% nucleotide identity, but is in a separate clade. Moreover, these viruses have a single intact open reading frame gene 8, as a further indicator of bat-origin CoVs. However, the amino acid sequence of the tentative receptor-binding domain resembles that of SARS-CoV, indicating that these viruses might use the same receptor. Conclusion: A novel bat-borne CoV was identified that is associated with severe and fatal respiratory disease in humans.
3.Identification of a novel coronavirus causing severe pneumonia in human: a descriptive study.
Li-Li REN ; Ye-Ming WANG ; Zhi-Qiang WU ; Zi-Chun XIANG ; Li GUO ; Teng XU ; Yong-Zhong JIANG ; Yan XIONG ; Yong-Jun LI ; Xing-Wang LI ; Hui LI ; Guo-Hui FAN ; Xiao-Ying GU ; Yan XIAO ; Hong GAO ; Jiu-Yang XU ; Fan YANG ; Xin-Ming WANG ; Chao WU ; Lan CHEN ; Yi-Wei LIU ; Bo LIU ; Jian YANG ; Xiao-Rui WANG ; Jie DONG ; Li LI ; Chao-Lin HUANG ; Jian-Ping ZHAO ; Yi HU ; Zhen-Shun CHENG ; Lin-Lin LIU ; Zhao-Hui QIAN ; Chuan QIN ; Qi JIN ; Bin CAO ; Jian-Wei WANG
Chinese Medical Journal 2020;133(9):1015-1024
BACKGROUND:
Human infections with zoonotic coronaviruses (CoVs), including severe acute respiratory syndrome (SARS)-CoV and Middle East respiratory syndrome (MERS)-CoV, have raised great public health concern globally. Here, we report a novel bat-origin CoV causing severe and fatal pneumonia in humans.
METHODS:
We collected clinical data and bronchoalveolar lavage (BAL) specimens from five patients with severe pneumonia from Wuhan Jinyintan Hospital, Hubei province, China. Nucleic acids of the BAL were extracted and subjected to next-generation sequencing. Virus isolation was carried out, and maximum-likelihood phylogenetic trees were constructed.
RESULTS:
Five patients hospitalized from December 18 to December 29, 2019 presented with fever, cough, and dyspnea accompanied by complications of acute respiratory distress syndrome. Chest radiography revealed diffuse opacities and consolidation. One of these patients died. Sequence results revealed the presence of a previously unknown β-CoV strain in all five patients, with 99.8% to 99.9% nucleotide identities among the isolates. These isolates showed 79.0% nucleotide identity with the sequence of SARS-CoV (GenBank NC_004718) and 51.8% identity with the sequence of MERS-CoV (GenBank NC_019843). The virus is phylogenetically closest to a bat SARS-like CoV (SL-ZC45, GenBank MG772933) with 87.6% to 87.7% nucleotide identity, but is in a separate clade. Moreover, these viruses have a single intact open reading frame gene 8, as a further indicator of bat-origin CoVs. However, the amino acid sequence of the tentative receptor-binding domain resembles that of SARS-CoV, indicating that these viruses might use the same receptor.
CONCLUSION
A novel bat-borne CoV was identified that is associated with severe and fatal respiratory disease in humans.
Adult
;
Aged
;
Betacoronavirus
;
genetics
;
isolation & purification
;
Coronavirus Infections
;
diagnostic imaging
;
therapy
;
virology
;
Female
;
Humans
;
Male
;
Middle Aged
;
Pandemics
;
Pneumonia, Viral
;
diagnostic imaging
;
therapy
;
virology
;
Tomography, X-Ray
;
Treatment Outcome