1.Development and evaluation of a Multiplex Polymerase Chain Reaction for the detection of Salmonella species
Thong, K.L. ; Teh, C.S.J. ; Chua, K.H.
Tropical Biomedicine 2014;31(4):689-697
The present study aims to develop a system which consists of four pairs of primers
that specifically detects Salmonella spp., Salmonella serovar Typhi and Salmonella serovar
Paratyphi A with an internal amplification control. The system, when applied in Polymerase
Chain Reaction (PCR) under specific conditions, reaction mixture and cycling temperatures
produced four bands; 784 bp, 496 bp, 332 bp and 187 bp. The DNA band 784 bp is present in
all Salmonella spp., while the bands of 496 bp and 332 bp are only present in S. Paratyphi A
and S. Typhi, respectively. An internal amplification control as indicated by the 187 bp shows
the system is working in optimum condition in all the tests. This multiplex PCR was evaluated
on 241 bacterial cultures and 691 naturally contaminated samples. Overall, this multiplex
PCR detection system provides a single step for simultaneous detection of DNAs of Salmonella
spp., S. Typhi and S. Paratyphi A.
2.Application of amplified ribosomal DNA restriction analysis in identification of Acinetobacter baumannii from a Tertiary Teaching Hospital, Malaysia
Kong, B.H., ; Hanifah, Y.A. ; Yusof, M.Y. ; Thong, K.L.,
Tropical Biomedicine 2011;28(3):563-568
Acinetobacter baumannii, genomic species 3 and 13TU are being increasingly
reported as the most important Acinetobacter species that cause infections in hospitalized
patients. These Acinetobacter species are grouped in the Acinetobacter calcoaceticus-
Acinetobacter baumannii (Acb) complex. Differentiation of the species in the Acb-complex
is limited by phenotypic methods. Therefore, in this study, amplified ribosomal DNA restriction
analysis (ARDRA) was applied to confirm the identity A. baumannii strains as well as to
differentiate between the subspecies. One hundred and eighty-five strains from Intensive
Care Unit, Universiti Malaya Medical Center (UMMC) were successfully identified as A.
baumannii by ARDRA. Acinetobacter genomic species 13TU and 15TU were identified in 3
and 1 strains, respectively. ARDRA provides an accurate, rapid and definitive approach
towards the identification of the species level in the genus Acinetobacter. This paper reports
the first application ARDRA in genospecies identification of Acinetobacter in Malaysia.
3.A real-time loop-mediated isothermal amplification assay for rapid detection of Shigella species
Liew, P.S. ; Teh, C.S.J. ; Lau, Y.L. ; Thong, K.L.
Tropical Biomedicine 2014;31(4):709-720
Shigellosis is a foodborne illness caused by the genus Shigella and is an important
global health issue. The development of effective techniques for rapid detection of this
pathogen is essential for breaking the chain of transmission. Therefore, we have developed
a novel loop-mediated isothermal amplification (LAMP) assay targeting the invasion plasmid
antigen H (ipaH) gene to rapidly detect Shigella species. This assay could be performed in 90
min at an optimal temperature of 64ºC, with endpoint results visualized directly. Notably, the
method was found to be more sensitive than conventional PCR. Indeed, the detection limit for
the LAMP assay on pure bacterial cultures was 5.9 x 105 CFU/ml, while PCR displayed a limit
of 5.9 x 107 CFU/ml. In spiked lettuce samples, the sensitivity of the LAMP assay was 3.6 x 104
CFU/g, whereas PCR was 3.6 x 105 CFU/g. Overall, the assay accurately identified
32 Shigella spp. with one enteroinvasive Escherichia coli displaying positive reaction while
the remaining 32 non-Shigella strains tested were negative.