• Title/Summary/Keyword: conventional-PCR

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Detection of infectious canine hepatitis virus by TaqMan real-time PCR method (TaqMan 실시간 PCR법에 의한 개 전염성 간염 바이러스의 검출)

  • Wang, Hye-young;Choi, Jae-yong;Lee, Mi-jin;Park, Jin-ho;Cho, Mae-Rim;Han, Jae-cheol;Choi, Kyoung-seong;Chae, Joon-seok
    • Korean Journal of Veterinary Research
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    • v.44 no.4
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    • pp.655-662
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    • 2004
  • The aim of this work was the validation of a rapid real-time PCR assay based on TaqMan technology for the unequivocal identification of infectious canine hepatitis (ICH) virus, to be used directly on DNA purified from blood specimens. A real-time PCR system targeting at the E3 ORFA gene sequence of canine adenovirus type 1 was optimized and validated through comparative analysis of samples using conventional PCR system. The real-time PCR assay based on TaqMan technology could disclose 23 (37.7%) out of 61 samples as PCR positive. In contrast, 18 (29.5%) samples were found PCR positive when conventional PCR was applied on these samples. The use of the ABI Prism 7700 sequence detection system allowed the efficient determination of the amplified product accumulation through a fluorogenic probe. The entire real-time TaqMan PCR assay, including DNA extraction, amplification, and detection could be completed within 3 hours. The detection method of real-time TaqMan PCR assay was 1,000 times more sensitive than conventional PCR. Real-time TaqMan probe and primer set developed and optimized in this study is a sensitive, rapid and accurate method for detection of ICH virus and can be effective screening tool for the detection of ICH in a diagnostic laboratory routines.

Quantitative Polymerase Chain Reaction for Microbial Growth Kinetics of Mixed Culture System

  • Cotto, Ada;Looper, Jessica K.;Mota, Linda C.;Son, Ahjeong
    • Journal of Microbiology and Biotechnology
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    • v.25 no.11
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    • pp.1928-1935
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    • 2015
  • Microbial growth kinetics is often used to optimize environmental processes owing to its relation to the breakdown of substrate (contaminants). However, the quantification of bacterial populations in the environment is difficult owing to the challenges of monitoring a specific bacterial population within a diverse microbial community. Conventional methods are unable to detect and quantify the growth of individual strains separately in the mixed culture reactor. This work describes a novel quantitative PCR (qPCR)-based genomic approach to quantify each species in mixed culture and interpret its growth kinetics in the mixed system. Batch experiments were performed for both single and dual cultures of Pseudomonas putida and Escherichia coli K12 to obtain Monod kinetic parameters (μmax and Ks). The growth curves and kinetics obtained by conventional methods (i.e., dry weight measurement and absorbance reading) were compared with that obtained by qPCR assay. We anticipate that the adoption of this qPCR-based genomic assay can contribute significantly to traditional microbial kinetics, modeling practice, and the operation of bioreactors, where handling of complex mixed cultures is required.

Genetic Authentication of Cynanchi Wilfordii Radix and Cynanchi Auriculati Radix by Using Conventional-PCR and Real-time PCR (Conventional-PCR 및 Real-time PCR을 이용한 백수오와 이엽우피소의 유전자 종감별 시험법 비교)

  • Ryu, Hoe Jin;Kim, Ae Kyung;Kim, Sung Dan;Jung, Sam Joo;Jang, Jung Im;Lee, Hee Jin;Lee, Jung Mi;Yu, In Sil;Jung, Kweon
    • Korean Journal of Pharmacognosy
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    • v.49 no.1
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    • pp.55-64
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    • 2018
  • Recently, it has been a big issue to distinguish the dried roots of Cynanchum wilfordii and C. auriculatum in health functional food market. The original plant species of Cynanchi Wilfordii Radix belong to the Asclepiadaceae family is differentially described in the national pharmacopoeia of Korea, China and Japan. Owing to the morphological similarities of the dried roots of this plant to those of C. auriculatum, which is often misidentified in Korean herbal medicine marketplace, distinguishing these two species is exceedingly difficult. The purpose of this study was to compare the conventional-PCR with the real-time PCR for detection of C. wilfordii and C. auriculatum DNA. We also tried to realize a quantitative real-time PCR assay using species-specific matK primers, which allowed us to estimate the ratio of C. willfordii and C. auriculatum using varying ratios of mixed genomic DNA template from the two species. The differentiation of intentional and unintentional mixture in this study would be applied to food safety management and can be helpful for protection of consumer's right and cultivators.

Comparison of Conventional Culture Method, Enzyme Immune Method, and PCR for the Rapid Detection of Salmonella spp. in Pet Food (반려동물 사료의 Salmonella spp. 신속검출을 위한 증균배양법, 면역학적 검출법 및 종 특이 프라이머를 이용한 PCR 방법 비교)

  • Yun, Hyejeong;Cha, Sun Ho;Lee, Seung-Hwa;Jeong, Min-Hee;Na, Tae-Woong;Kim, Haejin;Cho, Hyunjeong;Hong, Seong-Hee
    • Journal of Food Hygiene and Safety
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    • v.37 no.1
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    • pp.15-20
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    • 2022
  • The purpose of this study was to compare the conventional culture method, enzyme immune method and the PCR method using species-specific primer in the analysis on the Salmonella spp. found in domestically distributed pet foods. For the study, Salmonella spp. were detected from 175 samples. From the conventional culture method and the PCR method, two samples (jerky and corn gluten) were determined as positive. Also, from the enzyme immune method, one sample (corn gluten) was test-positive. The study revealed that application of the PCR method with species-specific primer allows better distinguishment between the species of the strain collected from the samples than the conventional culture method and/or the enzyme immune method.

Comparison of One-Tube Nested-PCR and PCR-Reverse Blot Hybridization Assays for Discrimination of Mycobacterium tuberculosis and Nontuberculous Mycobacterial Infection in FFPE tissues

  • Park, Sung-Bae;Park, Heechul;Bae, Jinyoung;Lee, Jiyoung;Kim, Ji-Hoi;Kang, Mi Ran;Lee, Dongsup;Park, Ji Young;Chang, Hee-Kyung;Kim, Sunghyun
    • Biomedical Science Letters
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    • v.25 no.4
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    • pp.426-430
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    • 2019
  • Currently, molecular diagnostic assays based on nucleic acid amplification tests have been shown to effectively detect mycobacterial infections in various types of specimen, however, variable sensitivity was shown in FFPE samples according to the kind of commercial kit used. The present study therefore used automated PCR-reverse blot hybridization assay (REBA) system, REBA Myco-ID HybREAD 480®, for the rapid identification of Mycobacterium species in various types of human tissue and compared the conventional one-tube nested-PCR assay for detecting Mycobacterium tuberculosis (MTB). In conventional nested-PCR tests, 25 samples (48%) were MTB positive and 27 samples (52%) were negative. In contrast, when conducted PCR-REBA assay, 11 samples (21%) were MTB positive, 20 samples (39%) were NTM positive, 8 samples (15%) were MTB-NTM double positive, and 13 samples (25%) were negative. To determine the accuracy and reliability of the two molecular diagnostic tests, the one-tube nested-PCR and PCR-REBA assays, were compared with histopathological diagnosis in discordant samples. When conducted nested-PCR assay, 10 samples (59%) were MTB positive and seven samples (41%) were negative. In contrast, when conducted PCR-REBA test, three samples (17%) were MTB positive, 10 samples (59%) were NTM positive and four samples (24%) were negative. In conclusion, the automated PCR-REBA system proved useful to identify Mycobacterium species more rapidly and with higher sensitivity and specificity than the conventional molecular assay, one-tube nested-PCR; it might therefore be the most suitable tool for identifying Mycobacterium species in various types of human tissue for precise and accurate diagnosis of mycobacterial infection.

Comparison of Conventional Culture Method and Real-time PCR for Detection of Yersinia enterocolitica in Sausage and Vegetable Salad (소시지와 야채 샐러드에서 Yersinia enterocolitica 검출을 위한 배지법과 real-time PCR법의 비교)

  • Kim, Yun-Gyeong;Chon, Jung-Whan;Lee, Jae-Hoon;Kwak, Hyo-Sun;Hwang, In-Gyun;Seo, Kun-Ho
    • Korean Journal of Food Science and Technology
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    • v.45 no.1
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    • pp.133-136
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    • 2013
  • The purpose of this study was to compare a conventional culture method and real-time PCR for the detection of Yersinia enterocolitica (Y. enterocolitica) in sausage and in vegetable salad. Food samples inoculated with Y. enterocolitica were enriched in peptone-sorbitol bile-broth, and swabs were then streaked onto cefsulodin-irgasan-novobiocin agar. Biochemical tests for suspected colonies were performed with an API 20E strip. In parallel, real-time PCR was performed, targeting the 16S rRNA gene using 1 mL of enrichment broth. In sausage, the number of positive samples detected by culture method (49 out of 60) was similar (p>0.05) with that of real-time PCR (50 out of 60). However, the number of positive samples of real-time PCR (26 out of 60) was significantly higher (p<0.05) than that of the conventional culture method (6 out of 60) in vegetable salad. Real-time PCR could be an effective screening tool for detecting Y. enterocolitica, particularly in food samples with high levels of background flora, such as a vegetable salad.

Molecular Identification and Real-time Quantitative PCR (qPCR) for Rapid Detection of Thelohanellus kitauei, a Myxozoan Parasite Causing Intestinal Giant Cystic Disease in the Israel Carp

  • Seo, Jung-Soo;Jeon, Eun-Ji;Kim, Moo-Sang;Woo, Sung-Ho;Kim, Jin-Do;Jung, Sung-Hee;Park, Myoung-Ae;Jee, Bo-Young;Kim, Jin-Woo;Kim, Yi-Cheong;Lee, Eun-Hye
    • Parasites, Hosts and Diseases
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    • v.50 no.2
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    • pp.103-111
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    • 2012
  • Intestinal giant-cystic disease (IGCD) of the Israel carp (Cyprinus carpio nudus) has been recognized as one of the most serious diseases afflicting inland farmed fish in the Republic of Korea, and Thelohanellus kitauei has been identified as the causative agent of the disease. Until now, studies concerning IGCD caused by T. kitauei in the Israel carp have been limited to morphological and histopathological examinations. However, these types of diagnostic examinations are relatively time-consuming, and the infection frequently cannot be detected in its early stages. In this study, we cloned the full-length 18S rRNA gene of T. kitauei isolated from diseased Israel carps, and carried out molecular identification by comparing the sequence with those of other myxosporeans. Moreover, conventional PCR and real-time quantitative PCR (qPCR) using oligonucleotide primers for the amplification of 18S rRNA gene fragment were established for further use as methods for rapid diagnosis of IGCD. Our results demonstrated that both the conventional PCR and real-time quantitative PCR systems applied herein are effective for rapid detection of T. kitauei spores in fish tissues and environmental water.

Identification of Mycobacterium tuberculosis in Pleural Effusion by Polymerase Chain Reaction(PCR) (흉막 삼출액에서 중합효소 연쇄반응(PCR)을 이용한 M. tuberculosis의 검출)

  • Kim, Sun-Taec;Gang, Chang Woon
    • Tuberculosis and Respiratory Diseases
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    • v.42 no.5
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    • pp.695-702
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    • 1995
  • Background: Since polymerase chain reaction(PCR) was devised by Saiki in 1985, it has been used extensively in various fields of molecular biology. Clinically, PCR is especially useful in situation when microbiological or serological diagnosis is limited by scanty amount of causative agents. Thus, PCR can provide rapid and sensitive way of detecting M. tuberculosis in tuberculosis pleurisy which is diagnosed in only about 60 % of cases by conventional method. Method: To evaluate the diagnostic usefulness of PCR in tuberculosis pleurisy, The results of PCR was compared with those of conventional method, including pleural biopsy. The pleural effusion fluid was collected from 7 proven patients, 7 clinically suspected patients and control group(7 patients with malignant effusion). We extracted DNA from pleural fluid by modified method of Eisennach method(1991). The amplification target for PCR was 123 base pair DNA, a part of IS6110. Result: 1) Sensitivity of PCR: We detected upto 50fg DNA. 2) In patients with pleural effusion of proven tuberculosis, the positive rate of PCR was 85.7%(6/7). In patients with pleural effusion of clinically suspected tuberculosis, the positive rate was 71.5%(5/7). In control group, positive rate was 0%(0/7). Conclusion: We concluded that PCR method could be a very rapid, sensitive and specific one for diagnosis of M tuberculosis in pleural effusion. Further studies should be followed for the development of easier method.

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Detection of Mycobacterium tuberculosis by PCR from Trace Clinical Specimens and Paraffin-embedded Tissues (임상가검물과 파라핀 포매 조직에서 PCR법을 이용한 결핵균의 검출)

  • 김은중;최우순;황석연
    • Biomedical Science Letters
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    • v.6 no.1
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    • pp.55-63
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    • 2000
  • This study has been carried out to investigate the sensitivity of polymerase chain reaction (PCR) method over conventional acid-fast bacilli (AFB) staining and/culture methods for the detection of Mycobacterium tuberculosis from trace body fluid and paraffin-embedded tissues (PET) specimens. A total of 65 cases were employed for the AFB staining and culture test, and a total of 50 cases were subjected to PCR and histopathological analysis. Among the specimen showing negative reaction to AFB staining, 12.1% were positive to PCR and 3.7% of the specimen representing negative result to culture test showed positive reaction to PCR. In addition, 20.0% of the specimen with AFB negative showed positive reaction to PCR. From these results, it could be concluded that PCR method overwhelms AFB staining and culture tests in sensitivity and specificity to M tuberculosis detection.

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Co-amplification at Lower Denaturation-temperature PCR Combined with Unlabled-probe High-resolution Melting to Detect KRAS Codon 12 and 13 Mutations in Plasma-circulating DNA of Pancreatic Adenocarcinoma Cases

  • Wu, Jiong;Zhou, Yan;Zhang, Chun-Yan;Song, Bin-Bin;Wang, Bei-Li;Pan, Bai-Shen;Lou, Wen-Hui;Guo, Wei
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.24
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    • pp.10647-10652
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    • 2015
  • Background: The aim of our study was to establish COLD-PCR combined with an unlabeled-probe HRM approach for detecting KRAS codon 12 and 13 mutations in plasma-circulating DNA of pancreatic adenocarcinoma (PA) cases as a novel and effective diagnostic technique. Materials and Methods: We tested the sensitivity and specificity of this approach with dilutions of known mutated cell lines. We screened 36 plasma-circulating DNA samples, 24 from the disease control group and 25 of a healthy group, to be subsequently sequenced to confirm mutations. Simultaneously, we tested the specimens using conventional PCR followed by HRM and then used target-DNA cloning and sequencing for verification. The ROC and respective AUC were calculated for KRAS mutations and/or serum CA 19-9. Results: It was found that the sensitivity of Sanger reached 0.5% with COLD-PCR, whereas that obtained after conventional PCR did 20%; that of COLD-PCR based on unlabeled-probe HRM, 0.1%. KRAS mutations were identified in 26 of 36 PA cases (72.2%), while none were detected in the disease control and/or healthy group. KRAS mutations were identified both in 26 PA tissues and plasma samples. The AUC of COLD-PCR based unlabeled probe HRM turned out to be 0.861, which when combined with CA 19-9 increased to 0.934. Conclusions: It was concluded that COLD-PCR with unlabeled-probe HRM can be a sensitive and accurate screening technique to detect KRAS codon 12 and 13 mutations in plasma-circulating DNA for diagnosing and treating PA.