1.
Detection of KPC-2 and qnrS1 in clinical isolates of Morganella morganii from China
by Cai, Jia Chang
Diagnostic Microbiology & Infectious Disease, June 2012, Vol.73(2), pp.207-209

2.
Emergence of Proteus mirabilis Harboring blaKPC-2 and qnrD in a Chinese Hospital
by Hu, Yan-yan
Antimicrobial Agents and Chemotherapy, 2012, Vol. 56(5), p.2278

3.
Emergence of Escherichia coli sequence type 131 isolates producing KPC-2 carbapenemase in China.
by Cai, Jia Chang
Antimicrobial agents and chemotherapy, 2014, Vol.58(2), pp.1146-1152

4.
Dissemination of the same cfr-carrying plasmid among methicillin-resistant Staphylococcus aureus and coagulase-negative staphylococcal isolates in China.
by Cai, Jia Chang
Antimicrobial agents and chemotherapy, 2015, Vol.59(6), pp.3669-3671

5.
Molecular typing of CTX-M-producing escherichia coli isolates from environmental water, swine feces, specimens from healthy humans, and human patients.
by Hu, Yan-Yan
Applied and environmental microbiology, October 2013, Vol.79(19), pp.5988-5996

6.
Detection of plasmid-mediated IMP-1 metallo-[beta]-lactamase and quinolone resistance determinants in an ertapenem-resistant Enterobacter cloacae isolate
by Chen, Li-Rong
Journal of Zhejiang University, May 2009, pp.348-54

7.
Combination of IMP-4 metallo-β-lactamase production and porin deficiency causes carbapenem resistance in a Klebsiella oxytoca clinical isolate
by Chen, Li-Rong
Diagnostic Microbiology & Infectious Disease, 2009, Vol.65(2), pp.163-167

8.
Serotypes and extended-spectrum β-lactamase types of clinical isolates of Shigella spp. from the Zhejiang province of China
by Zhang, Rong
Diagnostic Microbiology & Infectious Disease, 2011, Vol.69(1), pp.98-104

9.
Rapid detection of porins by matrix-assisted laser desorption/ionization-time of flight mass spectrometry.
by Hu, Yan-Yan
Frontiers in microbiology, 2015, Vol.6, p.784

10.
Linezolid-resistant clinical isolates of meticillin-resistant coagulase-negative staphylococci and Enterococcus faecium from China.
by Cai, Jia Chang
Journal of medical microbiology, November 2012, Vol.61, pp.1568-1573

11.
Substitutions of Ser83Leu in GyrA and Ser80Leu in ParC Associated with Quinolone Resistance in Acinetobacter pittii
by Gu, Dan-Xia
Microbial Drug Resistance, 01 June 2015, Vol.21(3), pp.345-351

12.
Genotypic characterization and in vitro activities of tigecycline and polymyxin B for members of the Enterobacteriaceae with decreased susceptibility to carbapenems
by Zhang, Rong
Journal of medical microbiology, December 2011, Vol.60(Pt 12), pp.1813-9

13.
Emergence of Serratia marcescens, Klebsiella pneumoniae, and Escherichia coli Isolates Possessing the Plasmid-Mediated Carbapenem-Hydrolyzing {beta}-Lactamase KPC-2 in Intensive Ca...
by Cai, Jia Chang
Antimicrobial Agents and Chemotherapy, 2008, Vol. 52(6), p.2014

14.
Outbreak of Klebsiella pneumoniae carbapenemase 2-producing K. pneumoniae with high qnr prevalence in a Chinese hospital
by Zhang, Rong
Journal of medical microbiology, July 2011, Vol.60(Pt 7), pp.977-82

15.
A ten years (2000-2009) surveillance of resistant Enterobacteriaceae in Zhejiang Province, China
by Zhang, Rong
Microbial Ecology in Health and Disease, 01 December 2012, Vol.23(1)

16.
Detection of the Smqnr quinolone protection gene and its prevalence in clinical isolates of Stenotrophomonas maltophilia in China.
by Zhang, Rong
Journal of medical microbiology, April 2012, Vol.61, pp.535-539

17.
Reduced susceptibility to carbapenems in Klebsiella pneumoniae clinical isolates associated with plasmid-mediated beta-lactamase production and OmpK36 porin deficiency
by Wang, Xuan Ding
Journal of medical microbiology, September 2009, Vol.58(Pt 9), pp.1196-202

18.
High-level carbapenem resistance in a Citrobacter freundii clinical isolate is due to a combination of KPC-2 production and decreased porin expression.
by Zhang, Rong
Journal of medical microbiology, March 2008, Vol.57, pp.332-337
