Controls in Real-Time Polymerase Chain Reaction Based Techniques
From its discovery in the 1980s, Polymerase chain reaction was further developed and is nowadays used as the foundation for the various PCR-based techniques used in molecular diagnosis across different species, and numerous types of samples. Real-Time PCR enables the user to monitor the amplificatio...
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Online Access: | https://doi.org/10.2478/amma-2020-0025 |
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doaj-0b7d31f6b78349eea739bd1eea2e88e12021-09-06T19:41:11ZengSciendoActa Medica Marisiensis2247-61132020-09-01663798210.2478/amma-2020-0025Controls in Real-Time Polymerase Chain Reaction Based TechniquesMoldovan Elena0Moldovan Valeriu1Emergency Institute for Cardiovascular Diseases and Transplantation, Targu Mures, RomaniaGeorge Emil Palade University of Medicine, Pharmacy, Science, and Technology of Targu Mures, RomaniaFrom its discovery in the 1980s, Polymerase chain reaction was further developed and is nowadays used as the foundation for the various PCR-based techniques used in molecular diagnosis across different species, and numerous types of samples. Real-Time PCR enables the user to monitor the amplification of a deoxyribonucleic acid (DNA) or complementary DNA (cDNA) target during the PCR run, in real-time, and not at the end, as it is the case in conventional PCR. The most frequent types of applications include gene expression analysis, gene silencing, variant analysis, and fusion temperature analysis. Given its vast field of application, a key question remains, and it is related to the controls (negative controls, positive controls, internal exogenous and endogenous controls) and their purpose in a Real-Time PCR experiment. In this paper, we set out to find how and when to use them, and which type of controls are suitable for certain experiment types, since the use of appropriate controls during Real-Time PCR experiments will reduce the effects of variables aside from the independent variable within the sample, therefore yielding accurate results, be it in research or diagnostic purposes.https://doi.org/10.2478/amma-2020-0025real-time pcrnegative controlpositive controlinternal exogenous controlinternal endogenous controls |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Moldovan Elena Moldovan Valeriu |
spellingShingle |
Moldovan Elena Moldovan Valeriu Controls in Real-Time Polymerase Chain Reaction Based Techniques Acta Medica Marisiensis real-time pcr negative control positive control internal exogenous control internal endogenous controls |
author_facet |
Moldovan Elena Moldovan Valeriu |
author_sort |
Moldovan Elena |
title |
Controls in Real-Time Polymerase Chain Reaction Based Techniques |
title_short |
Controls in Real-Time Polymerase Chain Reaction Based Techniques |
title_full |
Controls in Real-Time Polymerase Chain Reaction Based Techniques |
title_fullStr |
Controls in Real-Time Polymerase Chain Reaction Based Techniques |
title_full_unstemmed |
Controls in Real-Time Polymerase Chain Reaction Based Techniques |
title_sort |
controls in real-time polymerase chain reaction based techniques |
publisher |
Sciendo |
series |
Acta Medica Marisiensis |
issn |
2247-6113 |
publishDate |
2020-09-01 |
description |
From its discovery in the 1980s, Polymerase chain reaction was further developed and is nowadays used as the foundation for the various PCR-based techniques used in molecular diagnosis across different species, and numerous types of samples. Real-Time PCR enables the user to monitor the amplification of a deoxyribonucleic acid (DNA) or complementary DNA (cDNA) target during the PCR run, in real-time, and not at the end, as it is the case in conventional PCR. The most frequent types of applications include gene expression analysis, gene silencing, variant analysis, and fusion temperature analysis. Given its vast field of application, a key question remains, and it is related to the controls (negative controls, positive controls, internal exogenous and endogenous controls) and their purpose in a Real-Time PCR experiment. In this paper, we set out to find how and when to use them, and which type of controls are suitable for certain experiment types, since the use of appropriate controls during Real-Time PCR experiments will reduce the effects of variables aside from the independent variable within the sample, therefore yielding accurate results, be it in research or diagnostic purposes. |
topic |
real-time pcr negative control positive control internal exogenous control internal endogenous controls |
url |
https://doi.org/10.2478/amma-2020-0025 |
work_keys_str_mv |
AT moldovanelena controlsinrealtimepolymerasechainreactionbasedtechniques AT moldovanvaleriu controlsinrealtimepolymerasechainreactionbasedtechniques |
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1717766853178163200 |