RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%

Dengue Hemorrhagic Fever (DHF) is caused by dengue viruses that belong to Flaviviridae. The disease is known to be caused by 4 types of dengue viruses, namely DENV-1, DENV-2, DENV-3, and DENV-4 associated with antigenic. Dengue virus is a virus RNA that causes illness with clinical manifestations of...

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Main Authors: Anisa Maharani, -, Teguh Hari Sucipto, -, Harsasi Setyawati, -, Siti Churrotin, -, Ilham Harlan Amarullah, -, Puspa Wardhani, -, Aryati, -, Shuhai Ueda, -, Soegeng Soegijanto, -
Format: Article PeerReviewed
Language:English
English
English
Published: Lembaga Penyakit Tropis Universitas Airlangga 2018
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https://e-journal.unair.ac.id/IJTID/article/view/6748
http://dx.doi.org/10.20473/ijtid.v7i3.6748
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spelling id-langga.1138042022-02-24T01:28:15Z https://repository.unair.ac.id/113804/ RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70% Anisa Maharani, - Teguh Hari Sucipto, - Harsasi Setyawati, - Siti Churrotin, - Ilham Harlan Amarullah, - Puspa Wardhani, - Aryati, - Shuhai Ueda, - Soegeng Soegijanto, - R Medicine (General) RB37-56.5 Clinical pathology. Laboratory technique Dengue Hemorrhagic Fever (DHF) is caused by dengue viruses that belong to Flaviviridae. The disease is known to be caused by 4 types of dengue viruses, namely DENV-1, DENV-2, DENV-3, and DENV-4 associated with antigenic. Dengue virus is a virus RNA that causes illness with clinical manifestations of Dengue Fever, Dengue Hemorrhagic Fever and Dengue Shock Syndrome. The aim of research was to determine the effectiveness of dimethyl sulfoxide, acetone, and ethanol 70% as precipitation solvent in the process of RNA isolation. The method used was Reverse Transcription - Polymerase Chain Reaction (RT-PCR) and Polymerase Chain Reaction (PCR) with specific primers for dengue virus type 1 (DENV-1). RNA isolation can be done easily using an RNA Isolation Kit. Use of RNA Isolation Kit results in a purer RNA isolate from contaminants and from RNA degradation. In generally the isolation is using cold ethanol / alcohol with concentration 90-95%. Ethanol / Alcohol does not dissolve RNA and light density of alcohol lighter than water makes RNA rise and hover on the surface. In RNA isolation solvent precipitation that used are acetone, ethanol 70%, and DMSO. In qualitative RNA measurements using agarose gel electrophoresis and was examined under the UV light-illuminator and quantitative RNA measurements using Nanodrop spectrophotometry with absorbance ratio at 260/280 and 260/230 showed a good result indicated by the appearance of the band on electrophoresis results in PCR. While the measurement quantitatively is showed that there was still protein contamination but the results are quite good because it does not much different from the ratio set in the reference. Acetone, ethanol 70%, and DMSO can be used as a substitute of 96% ethanol in the process of RNA isolation in DENV-1 virus and can also be applied to other dengue virus because the structure of the 4th antigen serotype is very similar one with the other and no effect. Lembaga Penyakit Tropis Universitas Airlangga 2018-09 Article PeerReviewed text en https://repository.unair.ac.id/113804/1/24%20Similarity.pdf text en https://repository.unair.ac.id/113804/2/24%20Artikel.pdf text en https://repository.unair.ac.id/113804/3/24.pdf Anisa Maharani, - and Teguh Hari Sucipto, - and Harsasi Setyawati, - and Siti Churrotin, - and Ilham Harlan Amarullah, - and Puspa Wardhani, - and Aryati, - and Shuhai Ueda, - and Soegeng Soegijanto, - (2018) RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%. Indonesian Journal of Tropical and Infectious Disease, 7 (3). pp. 62-66. ISSN 2356-0991 https://e-journal.unair.ac.id/IJTID/article/view/6748 http://dx.doi.org/10.20473/ijtid.v7i3.6748
institution Universitas Airlangga
building Universitas Airlangga Library
continent Asia
country Indonesia
Indonesia
content_provider Universitas Airlangga Library
collection UNAIR Repository
language English
English
English
topic R Medicine (General)
RB37-56.5 Clinical pathology. Laboratory technique
spellingShingle R Medicine (General)
RB37-56.5 Clinical pathology. Laboratory technique
Anisa Maharani, -
Teguh Hari Sucipto, -
Harsasi Setyawati, -
Siti Churrotin, -
Ilham Harlan Amarullah, -
Puspa Wardhani, -
Aryati, -
Shuhai Ueda, -
Soegeng Soegijanto, -
RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%
description Dengue Hemorrhagic Fever (DHF) is caused by dengue viruses that belong to Flaviviridae. The disease is known to be caused by 4 types of dengue viruses, namely DENV-1, DENV-2, DENV-3, and DENV-4 associated with antigenic. Dengue virus is a virus RNA that causes illness with clinical manifestations of Dengue Fever, Dengue Hemorrhagic Fever and Dengue Shock Syndrome. The aim of research was to determine the effectiveness of dimethyl sulfoxide, acetone, and ethanol 70% as precipitation solvent in the process of RNA isolation. The method used was Reverse Transcription - Polymerase Chain Reaction (RT-PCR) and Polymerase Chain Reaction (PCR) with specific primers for dengue virus type 1 (DENV-1). RNA isolation can be done easily using an RNA Isolation Kit. Use of RNA Isolation Kit results in a purer RNA isolate from contaminants and from RNA degradation. In generally the isolation is using cold ethanol / alcohol with concentration 90-95%. Ethanol / Alcohol does not dissolve RNA and light density of alcohol lighter than water makes RNA rise and hover on the surface. In RNA isolation solvent precipitation that used are acetone, ethanol 70%, and DMSO. In qualitative RNA measurements using agarose gel electrophoresis and was examined under the UV light-illuminator and quantitative RNA measurements using Nanodrop spectrophotometry with absorbance ratio at 260/280 and 260/230 showed a good result indicated by the appearance of the band on electrophoresis results in PCR. While the measurement quantitatively is showed that there was still protein contamination but the results are quite good because it does not much different from the ratio set in the reference. Acetone, ethanol 70%, and DMSO can be used as a substitute of 96% ethanol in the process of RNA isolation in DENV-1 virus and can also be applied to other dengue virus because the structure of the 4th antigen serotype is very similar one with the other and no effect.
format Article
PeerReviewed
author Anisa Maharani, -
Teguh Hari Sucipto, -
Harsasi Setyawati, -
Siti Churrotin, -
Ilham Harlan Amarullah, -
Puspa Wardhani, -
Aryati, -
Shuhai Ueda, -
Soegeng Soegijanto, -
author_facet Anisa Maharani, -
Teguh Hari Sucipto, -
Harsasi Setyawati, -
Siti Churrotin, -
Ilham Harlan Amarullah, -
Puspa Wardhani, -
Aryati, -
Shuhai Ueda, -
Soegeng Soegijanto, -
author_sort Anisa Maharani, -
title RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%
title_short RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%
title_full RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%
title_fullStr RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%
title_full_unstemmed RNA ISOLATION OF DENGUE VIRUS TYPE 1 WITH DIFFERENT PRECIPITATION SOLVENTS: DIMETHYL SULFOXIDE, ACETONE, AND ETHANOL 70%
title_sort rna isolation of dengue virus type 1 with different precipitation solvents: dimethyl sulfoxide, acetone, and ethanol 70%
publisher Lembaga Penyakit Tropis Universitas Airlangga
publishDate 2018
url https://repository.unair.ac.id/113804/1/24%20Similarity.pdf
https://repository.unair.ac.id/113804/2/24%20Artikel.pdf
https://repository.unair.ac.id/113804/3/24.pdf
https://repository.unair.ac.id/113804/
https://e-journal.unair.ac.id/IJTID/article/view/6748
http://dx.doi.org/10.20473/ijtid.v7i3.6748
_version_ 1726147213708492800