Optimizing Centrifugation Speed of Blood Samples for Molecular Based Examination of Type 2 Diabetes Melitus (T2D)
Optimasi Kecepatan Sentrifugasi Sampel Darah untuk Pemeriksaan Diabetes Melitus Tipe 2 (T2D) Berbasis Molekuler
DOI:
https://doi.org/10.21070/ups.5476Keywords:
Type II Diabetes Mellitus, sentrifugation, spectrophotometer, electrophoresisAbstract
Type 2 Diabetes Mellitus (T2D) is a metabolic disorder caused by dysfunction insulin secretion by pancreatic beta cells. Blood isolation samples from the buffy coat, contained higher levels of DNA than whole blood samples. The aim of this research is to find out the differences centrifugation speed of blood samples to determine the concentration and purity of DNA in Diabetes examination
Molecular-based Type 2 Mellitus (T2D). The research was carried out quantitatively with descriptive research type experimentally with purposive sampling technique. The samples used were 5 blood samples from T2D patients which were divided into 5 treatment groups (without centrifugation, centrifugation speed 500 rpm, 1500 rpm, 3000 rpm, and 4500 rpm for 5 minutes). Test examinations are carried out qualitatively (electrophoresis) and quantitatively (Uv-Vis Spectrophotometer). Research data was analyzed using the one way Annova test. No there were significant differences in treatment.
Downloads
References
U. Galicia-Garcia, A. Benito-Vicente, S. Jebari, A. Larrea-Sebal, H. Siddiqi, K. B. Uribe, H. Ostolaza, and C. Martín. “Pathophysiology of Type 2 Diabetes Mellitus”. International Journal of Molecular Sciences, 21(17), 6275. 2020. Doi: https://doi.org/10.3390/ijms21176275.
R. A. Salasa, H. Rahman, and Andiani. “Faktor Risiko Diabetes Mellitus Tipe 2 Pada Populasi Asia: A Systematic Review”. Jurnal Biosainstek 1(1), 95–107.2019. Doi:https://doi.org/52046/biosainstek.v1i01.306
Dinkes Jatim. “Profil Kesehatan 2021”. 2021 Diakses dari :https://dinkes.jatimprov.go.id/userfile/dokumen/PROFIL%20KESEHATAN%202021%20JATIM.
T. Willmer, R. Johnson, J. Louw, and C. Pheiffer. “Blood-Based DNA Methylation Biomarkers for Type 2 Diabetes: Potential for Clinical Applications. Frontiers in endocrinology”. 9, 744. 2018. Doi: https://doi.org/10.3389/fendo.2018.00744
S. M. Aghaei Zarc, M. D. Tezerjani, M. Talebi, and M. Y. V. Mehrjardi. “Molecular Biomarkers in Diabetes Mellitus (DM). Medical journal of the Islamic Republic of Iran, 34, 28. 2020. https://doi.org/10.34171/mjiri.34.28
S. S. Shams, S. Z. Vahed., F. Soltanzad, V. Kafil, A. Barzegari, S. Atashpaz, and J. Barar. “Highly Effective DNA Extraction Method From Fresh, Frozen, Dried and Clotted Blood Samples”. BioImpacts : BI, 1(3), 183–187.2011. Doi: https://doi.org/10.5681/bi.2011.025
P. Guha, A. Das, S. Dutta, and T. K. Chaudhuri. “A Rapid And Efficient DNA Extraction Protocol From Fresh and Frozen Human Blood Samples”. Journal of Clinical Laboratory Analysis, 32(1), e22181.2017. Doi: https://doi.org/10.1002/jcla.22181
M. Faatih. “Isolasi dan Digesti DNA Kromosom”. Jurnal Penelitian Sains & Teknologi 10 (1), 61 - 67.2009.Diakses dari: https://publikasiilmiah.ums.ac.id/bitstream/handle/11617/432/7.%20FATIH.pdf?sequence=1&isAllowed=y
J. H. Ginkel, Broek, D. A. Kuik, J. D Linders, R. de Weger, S.M. Willems, and M. M. H. Huibers. “Preanalytical Blood Sample Workup For Cell-Free DNA Analysis Using Droplet Digital PCR For Future Molecular Cancer Diagnostics”. Cancer medicine, 6(10), 2297–2307.2017. Doi: https://doi.org/10.1002/cam4.1184
A. C. Wardana, and M Mushlih. “Comparison The Quality Of Template DNA Isolated By Column Method With and Without Centrifugation”. Indonesian Journal of Innovation Studies, 15, 10-21070.2021.
J. E. Siswanto, T. Berlian, E. Putricahya, L. V. Panggalo, and L. Yuniani “Isolasi DNA pada Sampel Darah Tepi dan Swab Buccal pada Bayi Penderita ROP: Perbandingan Hasil Uji Konsentrasi dan Indeks Kemurnian”. Sari Pediatri,18(4), 270. 2017. Doi: https://doi.org/10.14238/sp18.4.2016.270
J. L. Sherwood, C. Corcoran, H. Brown, A. D. Sharpe, M. Musilova, and A. Kohlmann. “Optimised Pre-Analytical Methods Improve KRAS Mutation Detection in Circulating Tumour DNA (ctDNA) from Patients with Non-Small Cell Lung Cancer (NSCLC)”. PloS one, 11(2), e0150197. 2016. Doi: https://doi.org/10.1371/journal.pone.0150197
Permenkes. “Cara Penyelenggaraan Laboratorium Klinik yang Baik”. 2013.
L. Rosita, A. A. C. Pramana, and F. R. Arfira.”Hematologi Dasar”. 2019. Diakses dari https://dspace.uii.ac.id/bitstream/handle/123456789/33788/978-602-450-371-0.pdf?sequence=1&isAllowed=y
S. Sundari, and B. Priadi. “Teknik Isolasi dan Elektroforesis DNA Ikan Tapah. Buletin Teknik Litkayasa Akuakultur”, 17(2), 87-90.2020.
M. Mushlih. “Aplikasi Dasar Di Dunia Kesehatan”. Umsida Press, 1-66.2019. Doi: https://doi.org/10.21070/2019/978-623-6081-07-5
N. Triani. “Isolasi DNA Tanaman Jeruk dengan Menggunakan Metode CTAB (Cetyl Trimethyl Ammonium Bromide). G-Tech: Jurnal Teknologi Terapan, 3(2), 221-226.2020.
P. A. Dewanata, and M. Mushlih. “Differences In DNA Purity Test Using UV-Vis Spectrophotometer And Nanodrop Spectrophotometer In Type 2 Diabetes Mellitus Patients”. Indonesian Journal of Innovation Studies, 15, 10-21070.2021.
A. Pascawinata, A. Andriansyah, and R. Bismanevi. “Pengaruh Kecepatan dan Lama Waktu Sentrifugasi Darah Terhadap Jumlah Trombosit pada Proses Pembuatan platelet Rich Fibrin. B-Dent: Jurnal Kedokteran Gigi
Universitas Baiturrahmah, 8(3), 285–292.2021. https://doi.org/10.33854/jbd.v8i3.604
Tejasari, and F. Zakaria. “Senyawa Bioaktif Rimpang Jahe (Zingiber officinale roscue) Meningkatkan Respon Sitolitik Sel Nk Terhadap Sel Kanker Darah K-562 In Vitro”. Jurnal Teknoogi dan Industri Pangan, 18(2). 2006. Diakses dari: https://journal.ipb.ac.id/index.php/jtip/article/view/424
Downloads
Additional Files
Posted
License
Copyright (c) 2024 UMSIDA Preprints Server
This work is licensed under a Creative Commons Attribution 4.0 International License.