• <noscript id="0aaaa"></noscript>
  • <noscript id="0aaaa"><kbd id="0aaaa"></kbd></noscript>
    <table id="0aaaa"><option id="0aaaa"></option></table>
    發布時間:2019-04-23 16:39 原文鏈接: QuantitativePCR

    實驗概要

    Quantitative PCR involves co-amplification of two templates: a constant amount of a preparation containing the desired target sequence and varying amounts of a reference template. After amplification, the concentration of the target sequence in the preparation of nucleic acid under test is established by interpolation into a standard curve. Quantitation of nucleic acids by PCR is best performed by real-time PCR. However, the following robust protocol, which uses radioactivity to quantify PCRproducts, remains useful when a real-time instrument is unavailable. The method can be easily adapted to other methods of quantification such as fluorometry. 

    主要試劑

    Reagents and Solutions
    • Chloroform

    • dNTP solution (pH 8.0), containing all four deoxynucleotide triphosphates, each at a concentration of 20 mM

    • MgCl2 (1 M)

    • Placental RNase inhibitor (20 units/μl)

    Enzymes and Buffers
    • Appropriate restriction enzymes and 10x buffers

    • Bacteriophage T4 DNA ligase and 10x buffer

    • Reverse transcriptase, required only if RNA is used as a template

    • Thermostable DNA polymerase and 10x amplification buffer as supplied by the manufacturer or homemade
         500 mM KCl
         100 mM Tris-Cl (pH 8.3, room temperature)
         15 mM MgCl2

    Nucleic Acids/Oligonucleotides
    • DNAmarkers for gel electrophoresis

    • Externally added reference (either DNA or RNA) of known concentration
      Use a DNA reference to measure the concentration of DNA sequences and, if possible, an RNA reference for RNA targets. A method to construct reference RNA is described in Protocol 15.2.

    • Sense and antisense primers, each 20 M in H2O
      There is nothing unusual about the primers used in quantitative PCR. The standard rules for primer design apply.

    • Target nucleic acid
      The target can be a preparation of DNA or RNA, either total or poly(A) . Dissolve preparations of total RNA in H2O at a concentration of 0.5-1.0 mg/ml and preparations of poly(A) RNA at 10-100 μg/ml. Dissolve DNA targets in 10 mM Tris-Cl (pH 7.6) at the following concentrations:mammalian genomic DNA, 100 μg/ml; yeast genomic DNA, 1 μg/ml; bacterial genomic DNA, 0.1 μg/ml; and plasmid DNA, 1-5 ng/ml.

    Radiolabeled Compounds
    • [α-32]dCTP (sp. act. 3000 Ci/mmole at 10 mCi/ml)

    Gels/Loading Buffers
    • Polyacrylamide or agarose gel

    Additional Items
    • Barrier tips for automatic pipettor

    • Fluorometer (optional; see Step 1)

    • Light mineral oil or wax bead (optional; see Step 5)

    • Materials for autoradiography or phosphorimaging

    • Microtiter plates or microfuge tubes, 0.5 ml and thin walled

    • Positive displacement pipette

    • Thermal cycler, programmed with desired amplification protocol

    • Water baths (94°C and, for RNA templates only, 75°C) 

    實驗步驟

    1. Design and prepare a reference template suitable for the task at hand. Measure the concentration of the reference template as carefully as possible, preferably by fluorometry. Alternatively, estimate the amount of reference template after gel electrophoresis and ethidium bromide staining.
    2. Make a series of tenfold dilutions (in H2O) containing concentrations of the reference template ranging from 10-6 to 10-12 M. After using the dilutions (Step 3), they should be stored at -70°C for later use in Step 8.
    3. If starting from RNA, denature the target RNA by incubating aliquots for 5 minutes at 75°C, followed by rapid chilling in ice water. Then, without delay, set up a series of reverse transcription reactions containing increasing amounts of reference template in sterile 0.5-ml microfuge tubes. For each reaction in the series, prepare the following:

    10x amplification buffer2 μl
    20 mM solution of four dNTPs (pH 8.0)1 μl
    20 μM antisense primer2.5 μl
    approximately 20 units/ μl placental RNase inhibitor1 μl
    50 mM MgCl21 μl
    denatured target RNA10 pg to 1.0 μg
    100-200 units/ μl reverse transcriptase1 μl
    tenfold dilution of reference template1 μl
    H2Oto 20 μl


    Incubate the reaction for 60 minutes at 37°C and then denature the reverse transcriptase by heating to 95°C for 20 minutes.
    4. In sterile 0.5-ml microfuge tubes, amplification tubes, or the wells of a sterile microtiter plate, set up amplification reactions with each reaction in the series from Step 3:

    reverse transcriptase reaction (Step 3) or target DNA1 μl
    20 μlM sense primer1.5 μl
    20 μlM antisense primer1.25 μl
    10x amplification buffer5 μl
    -32P]dCTP (3000 Ci/mmole)10 μCi
    20 mM solution of four dNTPs1 μl
    thermostable DNA polymerase2 units
    H2Oto 50 μl

    注意事項

    1. Do not reduce the concentration of unlabeled dCTP in the reaction mixture to increase the specific activity of the precursor pool. There is a danger that the amount of the nucleotide could become limiting at late stages in the amplification reaction.
    2. If the thermal cycler is not fitted with a heated lid, overlay the reaction mixtures with 1 drop (~50 μl) of light mineral oil. Alternatively, place a bead of wax into the tube if using hot start PCR. Place the tubes or the microtiter plate in the thermal cycler.
    3. Amplify the nucleic acids using the denaturation, annealing, and polymerization times and temperatures listed in the table.

    Cycle NumberDenaturation PolymerizationAnnealing
    30 cycles30 sec at 95°C30 sec at 55°C1 min at 72°C
    Last cycle 1 min at 94°C30 sec at 55°C1 min at 72°C

    Times and temperatures may need to be adapted to suit the particular reaction conditions.
    When using a reference template that differs from the target sequence in size:
    4. Analyze and quantitate the amplified products.
       (1) Analyze the sizes of the amplified products in a 20- μl aliquot of each of the reactions by gel electrophoresis and autoradiography.

        (2) Excise the amplified bands of the control template and target sequences from the gel and measure the amount of radioactivity in each band in a liquid scintillation counter. Alternatively, scan the gel with the appropriate detector (e.g., GEHealthcare scanner or phosphorimager).

        (3) Calculate the relative amounts of the two radiolabeled DNAs in each of the PCRs. 
        (4) Correct the amount of radioactivity to allow for differences in the molecular weights of the two radiolabeled DNAs

    When using a reference template that contains a novel restriction site or lacks a naturally occurring site:
       (1) Heat the samples to 94°C for 5 minutes following the final round of amplification.

       (2) Allow the samples to cool gradually to room temperature and then digest a 20-μl aliquot of each of the reactions with the appropriate restriction enzyme

       (3) Analyze the sizes of the amplified DNA fragments by gel electrophoresis and autoradiography or phosphorimaging.

       (4) Excise the amplified bands of the control template and target sequences from the gel and measure the amount of radioactivity in each band in a liquid scintillation counter. Alternatively, scan the gel with the appropriate detector (e.g., GEHealthcare scanner or phosphorimager).

       (5) Calculate the relative amounts of the two radiolabeled DNAs in each of the PCRs.
    5. Correct the amount of radioactivity to allow for differences in the molecular weights of the two radiolabeled DNAs.
       (1) Examine the results to determine the concentration of reference template that yields approximately the same amount of amplified product as the target sequence. Set up a second series of amplification reactions (please see Step 4) containing a narrower range of concentrations of reference template.
    It is best to generate this series of dilutions from the appropriate tenfold dilution of the reference template (Step 2).

       (2) Repeat Steps 5-7. For each amplification reaction, measure the ratio of the yield of amplified reference template to the yield of amplified target sequence. Plot this ratio against the amount of reference template added to each amplification reaction. From the resulting straight line, determine the equivalence point (i.e., the amount of reference template that gives exactly the same quantity of amplified product as the target sequence in the reaction). Calculate the concentration of the target sequence in the original sample.


    相關文章

    伯樂公司通過戰略收購與平臺推出擴展四款數字PCR產品系列

    全球生命科學研究和臨床診斷產品領域的領導者伯樂實驗室有限公司(紐約證券交易所代碼:BIO和BIO.B)近日宣布推出四款新的微滴式數字PCR(ddPCR?)平臺。新推出的儀器包括伯樂公司的QXConti......

    醫療器械優先審批申請審核結果公示(2025年第6號)

    國家藥品監督管理局醫療器械技術審評中心發布醫療器械優先審批申請審核結果公示(2025年第6號),同意了蘇州淦江生物技術有限公司申請的運動神經元存活基因1(SMN1)檢測試劑盒(PCR-熒光探針熔解曲線......

    3280萬元華中農業大學大批儀器采購意向涉PCR、蛋白純化等

    近日,華中農業大學發布多個實驗室儀器設備政府采購意向,采購的產品包括:超高分辨多色快速成像系統、熒光定量PCR儀、顯微鏡、蛋白純化系統、分析天平、電泳儀、搖床、細胞破碎儀、核酸轉染系統、純水系統等,采......

    伯樂領投Geneoscopy公司完成1.05億美元的C輪融資

    Geneoscopy公司周三宣布已完成1.05億美元的C輪融資。此輪融資由伯樂實驗室領投,兩家公司在一份聯合聲明中表示,這筆資金將用于支持Geneoscopy公司無創結直腸癌篩查檢測的推出。參與此次融......

    9.5個億!伯樂收購PCR公司

    波蘭生命科學公司ScopeFluidics近日表示,在收到交易的最后一筆款項后,該公司最近敲定了以1.3億美元(約合9.5億元人民幣)的價格將其子公司CuriosityDiagnostics出售給Bi......

    北京市聚合酶鏈反應(PCR)檢驗實驗室檢查指南(2024版)

    京藥監發〔2024〕261號各區市場監管局,房山區燕山市場監管分局,市市場監管局機場分局,經開區商務金融局,市藥監局各分局,各相關事業單位:為深入貫徹落實醫療器械生產監管相關法規要求,進一步規范北京市......

    預算近716萬某部醫院PCR分析儀、顯微鏡等設備招標采購

    項目概況2024年度攻堅第十二批醫療設備采購項目(1-5包)招標項目的潛在投標人應在通利晟信管理咨詢有限公司3樓(大連市沙河口區萬歲街135號)獲取招標文件,并于2024年10月09日09點30分(北......

    110萬,上海捷譜儀器中標上海中醫藥大學附屬曙光醫院數字PCR系統

    根據全國公共資源交易平臺公示,上海中醫藥大學附屬曙光醫院數字PCR系統等項目中標(成交)結果公布。其中,數字PCR系統的中標供應商為上海捷譜儀器設備有限公司,中標金額為1098500.00元。該公司的......

    109萬,上海捷譜中標上海中醫藥大學附屬曙光醫院數字PCR系統

    2024年9月3日,上海中醫藥大學附屬曙光醫院數字PCR系統等項目中標(成交)結果公布。其中,數字PCR系統的中標供應商為上海捷譜儀器設備有限公司,中標金額為1098500.00元。該公司的投標文件無......

    盛景不再?2024上半年PCR中標盤點,三家成交額超千萬

    書接上回,PCR市場如何?本網進行了數據整理,意在為各位讀者提供參考。上篇文章中提到近期PCR儀新品及上市情況(2024PCR儀市場亮點:國械注準新動態與前沿新品概覽),共計20款儀器問世,各廠商都在......

  • <noscript id="0aaaa"></noscript>
  • <noscript id="0aaaa"><kbd id="0aaaa"></kbd></noscript>
    <table id="0aaaa"><option id="0aaaa"></option></table>
    色av