• 제목/요약/키워드: Nucleic Acid Sequence Based Amplification (NASBA)

검색결과 7건 처리시간 0.022초

Development of a Quantitative Real-time Nucleic Acid Sequence based Amplification (NASBA) Assay for Early Detection of Apple scar skin viroid

  • Heo, Seong;Kim, Hyun Ran;Lee, Hee Jae
    • The Plant Pathology Journal
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    • 제35권2호
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    • pp.164-171
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    • 2019
  • An assay for detecting Apple scar skin viroid (ASSVd) was developed based on nucleic acid sequence based amplification (NASBA) in combination with realtime detection during the amplification process using molecular beacon. The ASSVd specific primers for amplification of the viroid RNA and molecular beacon for detecting the viroid were designed based on highly conserved regions of several ASSVd sequences including Korean isolate. The assay had a detection range of $1{\times}10^4$ to $1{\times}10^{12}$ ASSVd RNA $copies/{\mu}l$ with reproducibility and precision. Following the construction of standard curves based on time to positive (TTP) value for the serial dilutions ranging from $1{\times}10^7$ to $1{\times}10^{12}$ copies of the recombinant plasmid, a standard regression line was constructed by plotting the TTP values versus the logarithm of the starting ASSVd RNA copy number of 10-fold dilutions each. Compared to the established RT-PCR methods, our method was more sensitive for detecting ASSVd. The real-time quantitative NASBA method will be fast, sensitive, and reliable for routine diagnosis and selection of viroid-free stock materials. Furthermore, real-time quantitative NASBA may be especially useful for detecting low levels in apple trees with early viroid-infection stage and for monitoring the influence on tree growth.

엔테로바이러스 검출을 위한 real-time nucleic acid sequence-based amplification (NASBA), reverse transcription-PCR (RT-PCR) 및 바이러스 배양법의 비교 (Comparison of the Real-Time Nucleic Acid Sequence-Based Amplification (NASBA) Assay, Reverse Transcription-PCR (RT-PCR) and Virus Isolation for the Detection of Enterovirus RNA.)

  • 나영란;조현철;이영숙;빈재훈;최홍식;민상기
    • 생명과학회지
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    • 제18권3호
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    • pp.374-380
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    • 2008
  • 본 연구는 무균성수막염 의심환자의 다양한 검체로부터 enterovirus의 진단을 위하여 real-time NASBA, 2 step RT-PCR 시험과 세포배양 시험을 각각 실시하여 각 시험법의 검출율, 특이도, 사용자 편리성, 시험소요 시간, 교차오염의 가능성 등을 비교 검토하였다. 비교시험 결과 전체 292건의 검체로부터 real-time NASBA에서 145건, 세포배양에서 101건, 2 step RT-PCR에서 86건이 양성으로 나타나 real-time NASBA가 가장 검출율이 높은 시험법임을 알 수 있었다. Enterovirus 외의 무균성수막염 원인바이러스에 대한 특이도 비교 시험결과 2 step RT-PCR 시험에서 rhinovirus 10건 중 1건이 위양성 반응을 나타내어 다른 시험법에 비해 특이도가 떨어지는 것으로 나타났다. Real-time NASBA는 하나의 튜브에서 증폭과 검출이 동시에 일어나 다른 시험과 비교하여 교차오염의 가능성이 낮으며 또한 시험 소요시간이 5시간 정도로 세포배양(5-14일 소요) 및 2 step RT-PCR(9시간소요) 에 비하여 신속하게 진단할 수 있어 일선병원이나 실험실에서 enterovirus를 검출을 위하여 적용할 수 있을 것으로 사료된다.

Rapid Detection of Noroviruses in Fecal Samples and Shellfish by Nucleic Acid Sequence-based Amplification

  • Kou Xiaoxia;Wu Qingping;Zhang Jumei;Fan Hongying
    • Journal of Microbiology
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    • 제44권4호
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    • pp.403-408
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    • 2006
  • The purpose of this study was to determine the efficacy of a nucleic acid sequence-based amplification (NASBA) method of detecting noroviruses in artificially and naturally contaminated shellfish. We used 58 fecal samples that tested positive for noroviruses with electron microscopy (EM) to develop an NASBA assay for these viruses. Oligonucleotide primers targeting the polymerase coding region were used to amplify the viral RNA in an isothermal process that resulted in the accumulation of RNA amplicons. These amplicons were detected by hybridization with digoxigenin-labeled oligonucleotide probes that were highly specific for genogroup I (GI) and genogroup II (GII) of noroviruses. The expected band of 327bp appeared in denaturing agarose gel without any nonspecific band. The specific signal for each amplicon was obtained through Northern blotting in many repeats. All fecal samples of which 46(79.3%) belonged to GII and 12(20.6%) belonged to GI were positive for noroviruses by EM and by NASBA. Target RNA concentrations as low as 5pg/ml were detected in fecal specimens using NASBA. When the assay was applied to artificially contaminated shellfish, the sensitivity to nucleic acid was 100pg/1.5g shellfish tissue. The potential use of this assay was also confirmed in naturally contaminated shellfish collected from different ponds in Guangzhou city of China, of which 24 (18.76%) out of 128 samples were positive for noroviruses; of these, 19 (79.6%) belonged to GII and 5 (20.4%) belonged to GI. The NASBA assay provided a more rapid and efficient way of detecting noroviruses in fecal samples and demonstrated its potential for detecting noroviruses in food and environmental samples with high specificity and sensitivity.

유리비드를 포함한 PDMS 마이크로칩을 이용한 고감도 감염성 병원균 측정에 관한 연구 (Highly Sensitive Detection of Pathogenic Bacteria Using PDMS Micro Chip Containing Glass Bead)

  • 원지영;민준홍
    • KSBB Journal
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    • 제24권5호
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    • pp.432-438
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    • 2009
  • 본 연구는 환경샘플 중 병원균을 진단하기 위한 목적을 가진다. 최소 챔버 칩에서 환경 샘플 중 병원균을 농축하고 mRNA를 증폭하여 효과적이고 간단한 진단방법을 고안하였다. PDMS로 면적 $1.5\;cm{\times}\;1.5\;cm$, 높이 $100\;{\mu}L$의 칩을 제작하여 유리에 부착시켰다. RNase에 의한 진단 오류 또는 실패를 막고자 RNase away 처리를 하고, RNA와 PDMS의 결합을 막기 위해 BSA 처리를 하였다. 수질에 있는 병원균은 매우 적은 농도로 존재하므로 농축의 과정이 필요하다. 농축의 방법에는 여러 가지가 있으나 본 연구에서는 유리 비드를 칩 내에 삽입하고 저농도의 시료를 주입함으로서 고농도로 농축을 하는 방법을 사용하였다. 그러나 부피가 작은 칩 내에서 수행하기에는 내부 압력이 작용하여 문제가 발생하여 $100\;{\mu}m$의 유리 비드를 사용하고 유리비드의 칩 내부 이탈을 방지하기 위하여 댐을 만들어 농축에 가장 적합한 칩의 형태를 잡았다. 시료의 주입속도에 따라 내부 압력이 상승하여 댐의 기능이 상실하여 유리 비드가 이탈하게 되므로 그것을 방지하기 위하여 칩 내에 댐을 강화하여 만들고 내부압력 증가가 방지되는 최적의 댐을 개발하여 시료의 주입 속도 5 mL/min까지 유리 비드의 이탈을 막았다. 유리 비드에서의 RNA 농축은 pH 5에서 효과적이고 pH가 증가할수록 유리 비드와 RNA의 결합이 끊어지는 현상을 보였으므로 시료에 pH 5의 버퍼를 첨가하여 농축을 진행하고 중성의 NASBA 용액을 주입하여 유리비드에서 탈착된 농축된 고농도의 RNA를 증폭하였다. NASBA는 항온 수조에서 온도에 변화 없이 $41^{\circ}C$에서 1시간 30분 동안 진행하며 증폭된 mRNA는 직접 확인하였다. 이 방법은 LOC 기술을 적용하여 저농도의 시료를 효과적으로 측정할 수 있도록 편리한 바이오 칩을 개발함으로써 대용량의 샘플 중 극 저농도의 대장균을 효과적으로 검출할 수 있는 장점을 가지고 있다.

Real-time Nucleic Acid Sequence Based Amplification (Real-time NASBA) for Detection of Norovirus

  • Lee, In-Soo;Choi, Dong-Hyuk;Lim, Jae-Won;Cho, Yoon-Jung;Jeong, Hye-Sook;Cheon, Doo-Sung;Bang, Hye-Eun;Jin, Hyun-Woo;Choi, Yeon-Im;Park, Sang-Jung;Kim, Sung-hyun;Lee, Hye-Young;Kim, Tae-Ue
    • 대한의생명과학회지
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    • 제17권3호
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    • pp.191-196
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    • 2011
  • Noroviruses (noroV) are the major cause of nonbacterial gastroenteritis in humans worldwide. Since noroV cannot yet be cultured in vitro and their diagnosis by electron microscopy requires at least $10^6$ viral particles/g of stool a variety of molecular detection techniques represent an important step towards the detection of noroV. In the present study, we have applied real-time nucleic acid sequence-based amplification (real-time NASBA) for simultaneous detection of NoroV genogroup I (GI) and genogroup II (GII) using standard viral RNA. For real-time NASBA assay which can detected noroV GI and GII, a selective region of the genes encoding the capsid protein was used to design primers and genotype-specific molecular beacon probes. The specificity of the real-time NASBA using newly designed primers and probes were confirmed using standard viral RNA of noroV GI and GII. To determine the sensitivity of this assay, serial 10-fold dilutions of standard viral RNA of noroV GI and GII were used for reverse transcription polymerase chain reaction (RT-PCR) and real-time NASBA. The results showed that while agarose gel electrophoresis could detect RT-PCR products with 10 pg of standard viral RNA, the real-time NASBA assay could detect 100 fg of standard viral RNA. These results suggested that the real-time NASBA assay has much higher sensitivity than conventional RT-PCR assay. This assay was expected that might detect the viral RNA in the specimens which could have been false negative by RT-PCR. There were needed to perform real-time NASBA with clinical specimens for evaluating accurate sensitivity and specificity of this assay.

Rapid Molecular Diagnosis using Real-time Nucleic Acid Sequence Based Amplification (NASBA) for Detection of Influenza A Virus Subtypes

  • Lim, Jae-Won;Lee, In-Soo;Cho, Yoon-Jung;Jin, Hyun-Woo;Choi, Yeon-Im;Lee, Hye-Young;Kim, Tae-Ue
    • 대한의생명과학회지
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    • 제17권4호
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    • pp.297-304
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    • 2011
  • Influenza A virus of the Orthomyxoviridae family is a contagious respiratory pathogen that continues to evolve and burden in the human public health. It is able to spread efficiently from human to human and have the potential to cause pandemics with significant morbidity and mortality. It has been estimated that every year about 500 million people are infected with this virus, causing about approximately 0.25 to 0.5 million people deaths worldwide. Influenza A viruses are classified into different subtypes by antigenicity based on their hemagglutinin (HA) and neuraminidase (NA) proteins. The sudden emergence of influenza A virus subtypes and access for epidemiological analysis of this subtypes demanded a rapid development of specific diagnostic tools. Also, rapid identification of the subtypes can help to determine the antiviral treatment, because the different subtypes have a different antiviral drug resistance patterns. In this study, our aim is to detect influenza A virus subtypes by using real-time nucleic acid sequence based amplification (NASBA) which has high sensitivity and specificity through molecular beacon. Real-time NASBA is a method that able to shorten the time compare to other molecular diagnostic tools and is performed by isothermal condition. We selected major pandemic influenza A virus subtypes, H3N2 and H5N1. Three influenza A virus gene fragments such as HA, NA and matrix protein (M) gene were targeted. M gene is distinguished influenza A virus from other influenza virus. We designed specific primers and molecular beacons for HA, NA and M gene, respectively. In brief, the results showed that the specificity of the real-time NASBA was higher than reverse transcription polymerase chain reaction (RT-PCR). In addition, time to positivity (TTP) of this method was shorter than real-time PCR. This study suggests that the rapid detection of neo-appearance pandemic influenza A virus using real-time NASBA has the potential to determine the subtypes.

Transmission of Apple scar skin viroid by Grafting, Using Contaminated Pruning Equipment, and Planting Infected Seeds

  • Kim, Hyun-Ran;Lee, Sin-Ho;Lee, Dong-Hyuk;Kim, Jeong-Soo;Park, Jin-Woo
    • The Plant Pathology Journal
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    • 제22권1호
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    • pp.63-67
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    • 2006
  • Apple scar skin, one of the most destructive diseases affecting apple, is caused by Apple scar skin viroid (ASSV d). Fruit dappling appeared on several cultivars in Korea and has been distributed to major cultivated areas since 2001. ASSVd was identified from infected fruits by using nucleic acid sequence-based amplification with electrochemiluminescence (NASBA-ECL). NASBA-ECL method was faster and hundredfold more sensitive than reverse transcription-polymerase chain reaction (RT-PCR) for ASSVd detection in apple leaves/ stems. ASSVd was rapidly transmitted to the entire tree in the second year after artificial inoculation. The ASSVd could be transmitted efficiently by using contaminated pruning scissors to both lignified stems (60 to $70\%$) and green shoots (20 to $40\%$) of apple tree and young plants. Dipping of contaminated scissors in $2\%$ sodium hypochlorite solution effectively prevented viroid transmission. In the ASSV d-infected fruits, the viroid was easily detected from fruit skin, seed coat, and embryo. Moreover, embryo and endosperm separately excised from the ASSVd-infected seeds were ASSVd positive in NASBA-ECL assay. Seedlings germinated from ASSVd-positive seeds showed $7.7\%$ infection rate., which indicated that ASSVd is seed-borne.