Chaofeng Ma
Centers for Disease Control and Prevention
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Featured researches published by Chaofeng Ma.
Current Microbiology | 2010
Xiaokang Wu; Chaofeng Ma; Lei Han; Muhammad Nawaz; Fei Gao; Xuyan Zhang; Pengbo Yu; Chang’an Zhao; Lianchuan Li; Aiping Zhou; Juan Wang; John E. Moore; B. Cherie Millar; Jiru Xu
The investigation provides molecular analyses of the faecal microbiota in type 2 diabetic patients. In order to characterise the gut microbiota in diabetic patients and to assess whether there are changes in the diversity and similarity of gut microbiota in diabetic patients when compared with healthy individuals, bacterial DNAs from 16 type 2 diabetic patients and 12 healthy individuals were extracted from faecal samples and characterised by PCR-denaturing gradient gel electrophoresis (DGGE) with primers specifically targeting V3 region of the 16S rRNA gene, as well as been sequenced for excised gel bands. The counts of Bacteroides vulgatus, Clostridium leptum subgroup and Bifidobacterium genus were assessed using quantitative PCR. By comparing species diversity profiles of two groups, we observed that there were no significant differences between diabetic and healthy group, although a few diabetic individuals (D6, D8) exhibited a remarkable decrease in species profiles. As for the similarity index, it was lower in inter-group than that in intra-group, which showed that the composition of gut microbiota in diabetic group might be changed due to diabetes status. Sequencing results also revealed that bacterial composition of diabetic group was different from that of the healthy group. B. vulgatus and Bifidobacterium genus were low represented in the microbiota of diabetic group, and the significant decrease was observed for Bifidobacterium by real-time PCR. Taken together, in this work we observed the characterisation of gut microbiota in diabetic patients, which suggestes that the gut microbiota of diabetes patients have some changes associated with occurrence and development of diabetes.
Microbiology and Immunology | 2013
Pengbo Yu; Chaofeng Ma; Muhammad Nawaz; Lei Han; Jianfang Zhang; Quanli Du; Lixia Zhang; Qunling Feng; Jingjun Wang; Jiru Xu
Outbreaks of ARD associated with HAdV have been reported in military populations in many countries. Here, we report an ARD outbreak caused by HAdV‐7 in a military training camp in Shaanxi Province, China, from February to March of 2012. Epidemic data and samples from the patients were collected, and viral nucleotides from samples and viral isolations were detected and sequenced. IgG and IgA antibodies against HAdV, and the neutralization antibodies against the viral strain isolated in this outbreak, were detected. Epidemiological study showed that all personnel affected were males with an average age of 19.1 years. Two peaks appeared on the epicurve and there was an 8‐day interval between peaks. Laboratory results of viral nucleotide detection carried out with clinical specimens were positive for HAdV (83.33%, 15/18). Further study through serum antibody assay, virus isolation and phylogenetic analysis showed that HAdV‐7 was the etiological agent responsible for the outbreak. IgA antibody began to appear on the 4th day after the onset and showed 100% positivity on the 8th day. The virus strain in the present outbreak was highly similar to the virus isolated in Hanzhong Shaanxi in 2009. We conclude that HAdV‐7 was the pathogen corresponding to the outbreak, and this is the first report of an ARD outbreak caused by HAdV‐7 in military persons in China. Vaccine development, as well as enhanced epidemiological and virological surveillance of HAdV infections in China should be emphasized.
Current Microbiology | 2011
Chaofeng Ma; Xiaokang Wu; Muhammad Nawaz; Jinsong Li; Pengbo Yu; John E. Moore; Jiru Xu
The study provides molecular analyses of fecal microbiota of diarrhea patients infected with four different types of viruses. Fecal specimens from 52 patients with viral diarrhea (13 each of adenovirus, norovirus, rotavirus, and astrovirus) and six healthy individuals were collected and etiological viral agent was confirmed by enzyme immunoassay and specific PCR. To assess the changes in microbial diversity in patients with viral diarrhea, DNA from stool were extracted and characterized by PCR-denaturing gradient gel electrophoresis (DGGE) with universal primers specific for the V3 region of 16S rRNA gene. The strongest bands of the DGGE profiling were excised and sequenced to identify the dominant groups. Bacteroides vulgatus, Bifidobacterium, and Lactobacillus genera were also enumerated by real time PCR. The results revealed that bacterial diversity and similarity in feces from viral diarrhea groups were significantly lower (mean H′/
Virology Journal | 2015
Meng Xun; Chaofeng Ma; Quanli Du; Yan-Hong Ji; Ji-Ru Xu
PLOS Neglected Tropical Diseases | 2015
Huaiyu Tian; Pengbo Yu; Angela D. Luis; Peng Bi; Bernard Cazelles; Marko Laine; Shanqian Huang; Chaofeng Ma; Sen Zhou; Jing Wei; Shen Li; Xiao-Ling Lu; Jianhui Qu; Jian-Hua Dong; Shilu Tong; Jingjun Wang; Bryan T. Grenfell; Bing Xu
H_{ \max }^{\prime }
Viruses | 2014
Chaofeng Ma; Zengguo Wang; Shen Li; Yuan Xing; Rui Wu; Jing Wei; Muhammad Nawaz; Huaiyu Tian; Bing Xu; Jingjun Wang; Pengbo Yu
PLOS Pathogens | 2017
Huaiyu Tian; Pengbo Yu; Ottar N. Bjørnstad; Bernard Cazelles; Hua Tan; Shanqian Huang; Yujun Cui; Lu Dong; Chaofeng Ma; Changan Ma; Sen Zhou; Marko Laine; Xiaoxu Wu; Yanyun Zhang; Jingjun Wang; Ruifu Yang; Nils Chr. Stenseth; Bing Xu
0.89–0.94, 29–43, respectively) as compared with those of healthy individuals (mean H′/
Proceedings of the National Academy of Sciences of the United States of America | 2017
Huaiyu Tian; Pengbo Yu; Bernard Cazelles; Lei Xu; Hua Tan; Shanqian Huang; Bo Xu; Jun Cai; Chaofeng Ma; Jing Wei; Shen Li; Jianhui Qu; Marko Laine; Jingjun Wang; Shilu Tong; Nils Chr. Stenseth; Bing Xu
Epidemiology and Infection | 2015
Pengbo Yu; Huaiyu Tian; Chaofeng Ma; C. A. Ma; Jing Wei; X. L. Lu; Z. Wang; Sen Zhou; Shoujun Li; Jian-Hua Dong; J. R. Xu; Bing Xu; Jie Wang
H_{ \max }^{\prime }
Microbiological Research | 2014
Wei Li; Lei Han; Pengbo Yu; Chaofeng Ma; Xiaokang Wu; Jiru Xu