1.Tick-borne pathogens infection of rodents at the border of China and the Democratic People's Republic of Korea
Zhuo WANG ; Qiong WU ; Xiao-Yang HUANG ; Guan-Peng HUANG ; You-Xin MA ; En-Rong MAO ; Guo-Shuang LENG ; Hong-Min ZHAO ; Bing LI ; Yi-Min WU
Chinese Journal of Zoonoses 2024;40(4):323-327
To investigate the existence of tick-borne pathogens infection of rodents at the border of China and the Demo-cratic People's Republic of Korea(DPRK).PCR was used to detect the spotted fever group rickettsiae(SFGR)ompA gene,Ehrlichia chaffeensis(Ec)and Anaplasma phagocytophilum(Ap)16S rRNA,Candidatus Neoehrlichia mikurensis(CNm)groEL gene,Bartonella(Ba)rpoB gene,and Francisella tularensis(Ft)fopA gene in rodents samples collected from Ji'an of Jilin province and Kuandian of Liaoning Province.The positivity rates of 132 wild rats spleen samples,SFGR,Ec,Ap,CNm,Ba,and Ft were 9.85%,12.88%,5.30%,3.79%,51.52%,and 6.06%,respectively,with statistical differences in in-fection rates(x2=149.236,P=0.000).The infection rate of Ba was the highest in wild rats in this area.There was no signifi-cant difference in the infection rate of SFGR,Ec,Ap,CNm,and Ft among different rats species,but there were significant differences in the infection rate of Ba(x2=13.36,P=0.010).The infection rate of Apodemus agrarius was the highest.A-mong 132 wild rats specimens,the coinfection rate of the two pathogens was 15.9%(21/132),with Ba as the main species(15/132),and two cases of coinfection with three pathogens were detected.The infection of six tick-borne pathogens is common in wild rats at the China/DPRK border.Co-infection of two or three pathogens indicates a risk of multiple tick-borne pathogens and mixed natural foci of multiple tick-borne infec-tious diseases.
2.Study on the application and evaluation of methods for gene and antigen detection in plague surveillance program.
Rong HAI ; Dong-zheng YU ; Xian-ming SHI ; Zhong-bing ZHANG ; Yong-jiao TANG ; Peng WANG ; Lian-xu XIA ; Shao-zhen WEI ; Bing XU ; Ying-xu QIN ; Zhi-kai ZHANG ; Guo-xiang SHI ; Xu DONG-LEI ; Hong CAI ; En-min ZHANG ; Jian-chun WEI ; Ying-zhi GENG ; De-hui HUANG ; Bin ZHAO ; Li-mao WANG ; Feng-qin MA ; Fu HUANG ; Yue WANG ; Tao ZHANG ; Jian-hua ZHANG
Chinese Journal of Epidemiology 2007;28(5):426-429
OBJECTIVETo apply and evaluate new methods regarding specific gene and antigen detection in plague surveillance program.
METHODS1798 samples from natural foci of plague were tested, using internal quality control multiple-polymerase chain reaction, F1 antigen marked by immuno chromatographic assay and enzyme linked immunosorbent assay. Culture of Yersinia pestis and reverse indirect hemagglutination assay were used as reference diagnostic methods.
RESULTSThe overall positive rate of culture on Yersinia pestis together with gene and antigen detection was 7.34%, showing an 16.81% increase when comparing to 6.28% using Yersinia pestis culture method alone. The rate of coincidence was 97.13%.
CONCLUSIONThe new standard being used for specific gene and antigen detection could increase the positive rate of diagnosis on plague.
Animals ; Bacterial Proteins ; genetics ; immunology ; Enzyme-Linked Immunosorbent Assay ; Mice ; Plague ; microbiology ; Polymerase Chain Reaction ; Yersinia pestis ; genetics ; immunology ; pathogenicity
3.Investigation and clarification of traditional measuring units of Tibetan medicine.
Qi-En LI ; Di-Gao WAN ; Fa-Rong YUAN ; Cai-Jia SUONAN ; Dai-Ji QINGMEI ; Yang-Xiu-Cuo DUOJIE ; Zhuo-Ma GENGJI ; Cuo-Mao TABA ; Peng-Cuo DAWA ; Zhong BANMA ; Cai-Rang DUOJIE ; Qu-Pei DANZENG ; Ci-Ren NIMA ; Xiao GUO
China Journal of Chinese Materia Medica 2023;48(5):1393-1401
Quantity is the key factor to ensure the safety and effectiveness of medicines. It is very important to study and determine the traditional measuring units and their quantity values of Tibetan medicine. Based on the literature records of Tibetan medicine and combined with modern experimental verification and investigation research, this study determined the reference, name, and conversion rate of traditional measuring units of Tibetan medicine. Meanwhile, through large sample sampling and repeated quantification of refe-rence of basic units, its weight and volume were clarified. The modern SI volume and weight unit values corresponding to the traditional volume and weight units of Tibetan medicine were deduced, and the correctness, reliability, and practicability of these determination results were demonstrated. This study also put forward some specific suggestions and reference values for formulating the standards of measuring units of weight and volume of Tibetan medicine. It is of great significance in guiding the processing, production, and clinical treatment of Tibetan medicine, and promoting the standardization and standardized development of Tibetan medicine.
Medicine, Tibetan Traditional
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Reproducibility of Results