2000Annals of Clinical Biochemistry International Journal of Laboratory MedicineRequires access

Direct polymerase chain reaction from whole blood without DNA isolation

Naoyuki Nishimura, Tomoko Nakayama, Hiroshi Tonoike, Kouichi Kojima, Shingo Kato

Open publisher page 52 citations

Abstract

Blood and other animal fluids contain a variety of substances that inhibit the polymerase chain reaction (PCR), so that isolation of DNA is generally necessary prior to PCR. We have developed a novel reagent cocktail that effectively suppresses these inhibitory substances and makes DNA isolation from blood unnecessary for PCR. When this reagent was included in the PCR mixture, DNA fragments of the beta-globin gene could be efficiently amplified directly from human blood samples treated with various anticoagulants or PCR-inhibitory substances. We confirmed the usefulness of this cocktail by examining a large number of blood samples with various PCR primer sets. In addition to fresh blood, this method enabled PCR amplification from blood samples stored at 4 degrees C, -20 degrees C or -80 degrees C for a minimum of 1 year.

About this research paper

What this paper is about

Blood and other animal fluids contain a variety of substances that inhibit the polymerase chain reaction (PCR), so that isolation of DNA is generally necessary prior to PCR. We have developed a novel reagent cocktail that effectively suppresses these inhibitory substances and makes DNA isolation from blood unnecessary for PCR. When this reagent was included in the PCR mixture, DNA fragments of the beta-globin gene could be efficiently amplified directly from human blood samples treated with various anticoagulants or PCR-inhibitory substances. We confirmed the usefulness of this cocktail by examining a large number of blood samples with various PCR primer sets. In addition to fresh blood, this method enabled PCR amplification from blood samples stored at 4 degrees C, -20 degrees C or -80 degrees C for a minimum of 1 year.

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OpenAlex reports 52 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Blood and other animal fluids contain a variety of substances that inhibit the polymerase chain reaction (PCR), so that isolation of DNA is generally necessary prior to PCR. We have developed a novel reagent cocktail that effectively suppresses these inhibitory substances and makes DNA isolation from blood unnecessary for PCR. When this reagent was included in the PCR mixture, DNA fragments of the beta-globin gene could be efficiently amplified directly from human blood samples treated with various anticoagulants or PCR-inhibitory substances. We confirmed the usefulness of this cocktail by examining a large number of blood samples with various PCR primer sets. In addition to fresh blood, this method enabled PCR amplification from blood samples stored at 4 degrees C, -20 degrees C or -80 degrees C for a minimum of 1 year.

Key concepts: Polymerase chain reaction, Primer (cosmetics), Polymerase chain reaction optimization, DNA, Molecular biology, Primer dimer, Multiplex polymerase chain reaction, Inverse polymerase chain reaction

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