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Dive into the research topics where Chotechana Wilailuckana is active.

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Featured researches published by Chotechana Wilailuckana.


Journal of Antimicrobial Chemotherapy | 2012

Emergence of NDM-1- and IMP-14a-producing Enterobacteriaceae in Thailand

Benchamas Rimrang; Aroonwadee Chanawong; Aroonlug Lulitanond; Chotechana Wilailuckana; Nicha Charoensri; Pipat Sribenjalux; Waewta Phumsrikaew; Lumyai Wonglakorn; Anusak Kerdsin; Ploenchan Chetchotisakd

OBJECTIVES To detect carbapenemases in clinical isolates of Enterobacteriaceae collected from patients in a university hospital in Thailand between October 2010 and August 2011. METHODS A total of 4818 Enterobacteriaceae isolates were screened for the presence of carbapenemases by ertapenem and imipenem disc diffusion tests. All positive screening isolates were subjected to modified Hodge test, phenylboronic acid- and EDTA-carbapenem combined disc tests and two multiplex PCRs of bla(IMP), bla(VIM), bla(SPM), bla(SIM) and bla(GIM), and of bla(KPC), bla(NDM) and bla(OXA-48). Carbapenemase-producing isolates were typed by PFGE and then characterized by antimicrobial susceptibility tests. Conjugation was performed using a broth culture mating method. RESULTS Two isolates each of Escherichia coli, Klebsiella pneumoniae and Citrobacter freundii produced NDM-1, whereas two other isolates of K. pneumoniae produced IMP-14a. DNA fingerprints revealed that the metallo-β-lactamase (MBL)-producing isolates were of different strains except for clonal strains of C. freundii. In vitro transfer of carbapenem resistance was successful for the eight MBL-producing isolates. All MBL producers were susceptible to colistin and tigecycline. The six NDM-producing isolates were recovered from the urine of three patients, who had no history of travel outside Thailand. Interestingly, one patient had chronic urinary tract infections caused by a K. pneumoniae strain and two strains of E. coli producing NDM-1. CONCLUSIONS Surveillance of carbapenemases, particularly NDM-1, in Enterobacteriaceae is urgently needed to control and prevent the spread of these resistance determinants in our country.


BMC Infectious Diseases | 2013

ST9 MRSA strains carrying a variant of type IX SCCmec identified in the Thai community.

Aroonlug Lulitanond; Teruyo Ito; Shanshuang Li; Xiao Han; Xiao Xue Ma; Chulapan Engchanil; Aroonwadee Chanawong; Chotechana Wilailuckana; Netchanok Jiwakanon; Keiichi Hiramatsu

BackgroundInfections caused by methicillin-resistant Staphylococcus aureus (MRSA) in Thailand occur most frequently in healthcare facilities. However, reports of community-associated MRSA are limited.MethodsWe characterized 14 MRSA isolates from outpatients (O-1 to O-14) by phenotypic and genotypic methods and compared them with 5 isolates from inpatients (I-1 to I-5). Thai MRSA isolates from a healthcare worker (N-1) and a pig (P-1) were also included as ST9 MRSA strains from other sources.ResultsAll MRSA isolates from the outpatients and inpatients were multidrug-resistant (resistant to ≥3 classes of antimicrobials). All of them except strains O-2 and I-3 carried type III SCCmec and belonged to agrI, coagulase IV, spa type t037 or t233, which related to ST239. The strain O-2 (JCSC6690) carried type IX SCCmec and belonged to agrII, coagulaseXIc, spa type t337 and ST9, whereas the strain I-3 carried a type III SCCmec and belonged to ST1429. Nucleotide sequence determination revealed that the type IX SCCmec element in strain O-2 was distinct from that in a Thai ST398 strain (JCSC6943) previously identified in 2011; nucleotide identities of ccrA and ccrB were 93 and 91%, respectively and several open reading frames (ORFs) at the joining regions were different. PCR experiments suggested that strain O-2 and N-1 carried similar SCCmec element, whereas that of strain P-1 was different, suggesting that distinct ST9-MRSA–IX clones might be spreading in this province.ConclusionsThe SCCmecIX-ST9 MRSA clones of distinct SCCmec subtypes might have emerged in the Thai community and might also have disseminated into the hospital.


Journal of Virological Methods | 2016

High sensitivity, loop-mediated isothermal amplification combined with colorimetric gold-nanoparticle probes for visual detection of high risk human papillomavirus genotypes 16 and 18.

Ratchanida Kumvongpin; Patcharee Jearanaikool; Chotechana Wilailuckana; Nattaya Sae-ung; Prinya Prasongdee; Sakda Daduang; Metee Wongsena; Patcharee Boonsiri; Wansika Kiatpathomchai; Sukumarn Sanersak Swangvaree; Alisa Sandee; Jureerut Daduang

High-risk human papillomavirus (HR-HPV) causes cervical cancer. HPV16 and HPV18 are the most prevalent strains of the virus reported in women worldwide. Loop-mediated isothermal amplification (LAMP) is an alternative method for DNA detection under isothermal conditions. However, it results in a turbid amplified product which is not easily detected by the naked eye. This study aimed to develop an improved technique by using gold nanoparticles (AuNPs) attached to a single-stranded DNA probe for the detection of HPV16 and HPV18. Detection of the LAMP product by AuNP color change was compared with detection by visual turbidity. The optimal conditions for this new LAMP-AuNP assay were an incubation time of 20min and a temperature of 65°C. After LAMP amplification was complete, its products were hybridized with the AuNP probe for 5min and then detected by the addition of magnesium salt. The color changed from red to blue as a result of aggregation of the AuNP probe under high ionic strength conditions produced by the addition of the salt. The sensitivity of the LAMP-AuNP assay was greater than the LAMP turbidity assay by up to 10-fold for both HPV genotypes. The LAMP-AuNP assay showed higher sensitivity and ease of visualization than did the LAMP turbidity for the detection of HPV16 and HPV18. Additionally, AuNP-HPV16 and AuNP-HPV18 probes were stable for over 1year. The combination of LAMP and the AuNP-probe colorimetric assay offers a simple, rapid and highly sensitive alternative diagnostic tool for the detection of HPV16 and HPV18 in district hospitals or field studies.


PLOS ONE | 2016

Chronic Opisthorchis viverrini Infection Changes the Liver Microbiome and Promotes Helicobacter Growth

Upsornsawan Itthitaetrakool; Porntip Pinlaor; Somchai Pinlaor; Chariya Chomvarin; Rungtiwa Dangtakot; Apisit Chaidee; Chotechana Wilailuckana; Arunnee Sangka; Aroonlug Lulitanond; Puangrat Yongvanit

Adults of Opisthorchis viverrini reside in the biliary system, inducing inflammation of bile ducts and cholangitis, leading to hepatobiliary disease (HBD) including cholangiocarcinoma. O. viverrini infection also has major implications for the bacterial community in bile ducts and liver. To investigate this in chronic O. viverrini infection (≥ 8 months p.i.), bacterial genomic DNA from livers of hamsters and from worms was investigated using culture techniques, PCR for Helicobacter spp. and high-throughput next-generation sequencing targeting the V3-V4 hypervariable regions of prokaryotic 16S rRNA gene. Of a total of 855,046 DNA sequence reads, 417,953 were useable after filtering. Metagenomic analyses assigned these to 93 operational taxonomic units (OTUs) consisting of 80 OTUs of bacteria, including 6 phyla and 42 genera. In the chronic O. viverrini-infected group, bacterial community composition and diversity were significantly increased compared to controls. Sequences of Fusobacterium spp. were the most common (13.81%), followed by Streptococcus luteciae (10.76%), Escherichia coli (10.18%), and Bifidobacterium spp. (0.58%). In addition, Helicobacter pylori (0.17% of sequences) was also identified in the liver of chronic O. viverrini infections, but not in normal liver. The presence of H. pylori was confirmed by PCR and by use of an antibody against bacterial antigen, supporting the metagenomics data. The identities of bacteria cultured for enrichment suggested that chronic O. viverrini infection changes the liver microbiome and promotes Helicobacter spp. growth. There may be synergy between O. viverrini and the liver microbiome in enhancing immune response-mediated hepatobiliary diseases.


Journal of Medical Microbiology | 2015

SCCmec IX in meticillin-resistant Staphylococcus aureus and meticillin-resistant coagulase-negative staphylococci from pigs and workers at pig farms in Khon Kaen, Thailand

Siwaporn Sinlapasorn; Aroonlug Lulitanond; Sunpetch Angkititrakul; Aroonwadee Chanawong; Chotechana Wilailuckana; Ratree Tavichakorntrakool; Kanoksak Chindawong; Charinya Seelaget; Mana Krasaesom; Sarawut Chartchai; Lumyai Wonglakorn; Pipat Sribenjalux

Livestock-associated meticillin-resistant Staphylococcus aureus, clonal complex (CC) 398, has been reported in Europe, whereas CC9 MRSA has mostly been found in Asia. Therefore, we aimed to detect MRSA on pig farms in north-eastern Thailand. A total of 257 nasal swabs (159 samples from pigs and 98 from pig-farm workers) were collected from three pig farms in north-eastern Thailand from 2010 to 2011. MRSA isolates were confirmed for femA and mecA genes by PCR. The MICs of eight antimicrobials, namely vancomycin (VA), cefazolin (CZ), ofloxacin (OF), tetracycline (TET), erythromycin (ER), oxacillin (OX), cefoxitin (FOX) and gentamicin (GN), were tested by agar dilution method. The virulence genes for Panton-Valentine leukocidin toxin (lukSF-PV), toxic shock syndrome toxin-1 (tst) and α-haemolysin (hla) were detected by PCR. Strain typing was performed by staphylococcal cassette chromosome (SCC) mec, agr, spa and multilocus sequence typing. Four MRSA were isolated: three from workers and one from a pig. All the MRSA isolates were resistant to OX, GN, ER, TET and CZ, and they all carried hla only. Two MRSA from humans carried SCCmec II-sequence type (ST)764-agrII, whereas the two remaining MRSA (one each from a human and a pig) contained SCCmec IX-ST9-agrII. Interestingly, meticillin-resistant coagulase-negative Staphylococcus isolates carrying SCCmec IX were also obtained from five workers and three pigs. This study suggests that the SCCmec IX element is distributed among the Staphylococcus found in pigs and pig-farm workers, and pigs may be a reservoir for MRSA in the community.


Infection and Immunity | 2017

Coinfection with Helicobacter pylori and Opisthorchis viverrini Enhances the Severity of Hepatobiliary Abnormalities in Hamsters

Rungtiwa Dangtakot; Somchai Pinlaor; Upsornsawan Itthitaetrakool; Apisit Chaidee; Chariya Chomvarin; Arunnee Sangka; Chotechana Wilailuckana; Porntip Pinlaor

ABSTRACT Persistent infection with Opisthorchis viverrini causes hepatobiliary abnormalities, predisposing infected individuals to cholangiocarcinoma (CCA). In addition, Helicobacter pylori is highly prevalent in most countries and is a possible risk factor for CCA; however, its role in enhancing hepatobiliary abnormality is unclear. Here, we investigated the effects of coinfection with H. pylori and O. viverrini on hepatobiliary abnormality. Hamsters were divided into four groups: (i) normal, (ii) H. pylori infected (HP), (iii) O. viverrini infected (OV), and (iv) O. viverrini and H. pylori infected (OV+HP). At 6 months postinfection, PCR and immunohistochemistry were used to test for the presence of H. pylori in the stomach, gallbladder, and liver. In the liver, H. pylori was detected in the following order: OV+HP, 5 of 8 (62.5%); HP, 2 of 5 (40%); OV, 2 of 8 (25%). H. pylori was not detected in normal (control) liver tissues. Coinfection induced the most severe hepatobiliary abnormalities, including periductal fibrosis, cholangitis, and bile duct hyperplasia, leading to a significantly decreased survival rate of experimental animals. The greatest thickness of periductal fibrosis was associated with a significant increase in fibrogenesis markers (expression of alpha smooth muscle actin and transforming growth factor beta). Quantitative reverse transcription-PCR revealed that the highest expression levels of genes for proinflammatory cytokines (interleukin-1 [IL-1], IL-6, and tumor necrosis factor alpha) were also observed in the OV+HP group. These results suggest that coinfection with H. pylori and O. viverrini increased the severity of hepatobiliary abnormalities to a greater extent than either single infection did.


Journal of Infection in Developing Countries | 2015

Performance of vancomycin and teicoplanin disk diffusion test in isogenic vancomycin non-susceptible Staphylococcus aureus

Sujintana Wongthong; Karnjana Dutchanutouch; Viladda Namsaengkang; Aroonwadee Chanawong; Chotechana Wilailuckana; Aroonlug Lulitanond

INTRODUCTION Detection of heterogeneous vancomycin-intermediate Staphylococcus aureus (hVISA) is currently problematic. Although the population analysis profile with area under the curve (PAP-AUC) is the gold standard for detecting hVISA strains, this method is time consuming. This study aimed to induce vancomycin non-susceptible Staphylococcus aureus isolates in methicillin-resistant S. aureus (MRSA) and to determine the performance of the vancomycin and teicoplanin disk diffusion test for screening of induced and natural vancomycin non-susceptible isolates. METHODOLOGY Vancomycin resistance was induced in vitro in methicillin-resistant S. aureus by serial passage in media with increasing vancomycin concentrations. All test isolates were confirmed for their susceptibility to vancomycin by using a PAP-AUC method. The performance of the vancomycin and teicoplanin disk diffusion test for detecting both induced and natural hVISA/VISA isolates was analyzed using the MedCal program version 10.2.0. RESULTS The induction test revealed that 42 of 78 MRSA isolates (53.8%) became hVISA and/or VISA. Using 10, 15, 20, 30 µg vancomycin disks and a 30 µg teicoplanin disk, the highest performance (88.9%) for hVISA/VISA detection (71.1%), sensitivity, 100% specificity, 100% positive predictive value, and 75% negative predictive value) was obtained when a 20 µg vancomycin disk was used at 1.0 McFarland inoculum for a 24-hour incubation. CONCLUSIONS The results indicated that using a 20 µg vancomycin disk and bacterial inoculum of 1.0 McFarland is simple to perform and provides a primary result for hVISA/VISA screening within 24 hours.


Journal of Applied Microbiology | 2018

One step for Legionella pneumophila detection in environmental samples by DNA-gold nanoparticle probe

B. Nuthong; Chotechana Wilailuckana; Ratree Tavichakorntrakool; Patcharee Boonsiri; Sakda Daduang; G. Bunyaraksyotin; O. Suphan; Jureerut Daduang

To develop and evaluate a DNA‐gold nanoparticle (DNA‐AuNP) probe assay to detect Legionella pneumophila, which causes Legionnaires’ disease, compared with the gold standard culture method.


Journal of Antimicrobial Chemotherapy | 2017

A novel GoldNano Carb test for rapid phenotypic detection of carbapenemases, particularly OXA type, in Enterobacteriaceae, Pseudomonas aeruginosa and Acinetobacter spp.

Arpasiri Srisrattakarn; Aroonlug Lulitanond; Chotechana Wilailuckana; Nicha Charoensri; Jureerut Daduang; Aroonwadee Chanawong

Objectives: To develop a simple gold nanoparticle (AuNP)‐based colorimetric test, GoldNano Carb (GoldC), for detecting carbapenemase production in Gram‐negative bacteria, compared with updated Carba NP (CNP) and CarbAcineto NP (CAcNP) tests by using PCR methods as gold standard. Methods: Ninety‐nine carbapenemase‐producing Enterobacteriaceae (CPE), Pseudomonas spp. and Acinetobacter spp. isolates and 89 non‐CPE isolates were tested by the GoldC and CNP. Additionally, the CAcNP was performed in the Acinetobacter spp. isolates. The final imipenem (imipenem/cilastatin form) concentration was 5 mg/mL for all three tests. For the GoldC, the imipenem powder was added directly to bacterial cell suspension in distilled water prior to detection of acid product by the citrate‐capped AuNP solution. An AuNP change from red to purple, blue or green indicates carbapenemase activity. Results: The GoldC detected all carbapenemase producers except one OXA‐23‐like producer (99.0% sensitivity), whereas 11 carbapenemase producers (10 Acinetobacter and 1 P. aeruginosa) were CNP negative (88.9% sensitivity). However, the GoldC and CNP provided 100% and 98.6% sensitivity, respectively, for the CPE and Pseudomonas spp. Both tests gave one false positive from CTX‐M‐1‐like‐producing Enterobacter spp. (98.9% specificity). The GoldC and CAcNP detected 96.7% and 93.3% of the Acinetobacter spp. isolates, respectively. Interestingly, times to positivity by the GoldC were markedly shorter than those by the CNP (76.8% versus 36.2% positive at 5 min) and CAcNP (43.3% at 5 min versus 20% within 30 min). Conclusions: The GoldC is fast, easy, highly sensitive and inexpensive (˜


Japanese Journal of Infectious Diseases | 2017

Molecular Characterization of Carbapenemase-Nonproducing Clinical Isolates of Escherichia coli (from a Thai University Hospital) with Reduced Carbapenem Susceptibility

Sawitree Nuramrum; Aroonwadee Chanawong; Kamonwan Lunha; Aroonlug Lulitanond; Arunnee Sangka; Chotechana Wilailuckana; Sunpetch Angkititrakul; Nicha Charoensri; Lumyai Wonglakorn; Prajuab Chaimanee; Ploenchan Chetchotisakd

0.25 per test), suggesting that it may be suitable for routine carbapenemase detection in low‐resource settings for infection control or epidemiological purposes.

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