Recloning and Characterization of C2C12 Myoblast and Its Clonal Derivatives

The C2C12 myoblasts are adult murine muscle stem cells which isolated after injury to induce muscle regeneration. The cells are widely used in pharmaceutical and biological researches to represent skeletal muscle cells. In our laboratory, we utilize the cells for glucose uptake assay after insulin t...

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Main Authors: Pekik Wiji Prasetyaningrum, Endah Puji Septisetyani, Ahmad Suyoko, Adi Santoso
Format: Article
Language:English
Published: Indonesian Society for Cancer Chemoprevention 2021-10-01
Series:ISCC (Indonesian Journal of Cancer Chemoprevention)
Online Access:https://ijcc.chemoprev.org/index.php/ijcc/article/view/368
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author Pekik Wiji Prasetyaningrum
Endah Puji Septisetyani
Ahmad Suyoko
Adi Santoso
author_facet Pekik Wiji Prasetyaningrum
Endah Puji Septisetyani
Ahmad Suyoko
Adi Santoso
author_sort Pekik Wiji Prasetyaningrum
collection DOAJ
description The C2C12 myoblasts are adult murine muscle stem cells which isolated after injury to induce muscle regeneration. The cells are widely used in pharmaceutical and biological researches to represent skeletal muscle cells. In our laboratory, we utilize the cells for glucose uptake assay after insulin treatment and studying the muscle regeneration. In this study we conducted recloning of C2C12 cells by limiting dilution cloning (LDC) and investigated the biological properties incuding cell proliferation, adhesion and differentiation of the clonal cells in comparison to the parental cells. Cell proliferation rate had been determined by WST assay, cell adhesion had been observed after cell detachment by EDTA and cell differentiation into multinucleated myotube had been investigated after induction and incubation with horse serum. As results, two clonal derivatives of C2C12 myoblast cells had been retrieved by LDC and used for cell assays. Moreover, the results indicated that parental cells showed faster proliferation rate and better differentiation ability than that of clonal cells. In the contrary the parental cells exhibited weaker adhesion rate than clonal cells. To conclude, C2C12 parental cells are better for performing the glucose uptake or muscle regeneration assays since they showed better differentiation capability. Keywords: C2C12 cells, cells differentiation, myoblast, myotube, recloning.
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spelling doaj.art-8b6fc0ac159d40c1be6d66210acf65272022-12-22T02:10:41ZengIndonesian Society for Cancer ChemopreventionISCC (Indonesian Journal of Cancer Chemoprevention)2088-01972355-89892021-10-011229910510.14499/indonesianjcanchemoprev12iss2pp99-105228Recloning and Characterization of C2C12 Myoblast and Its Clonal DerivativesPekik Wiji Prasetyaningrum0Endah Puji Septisetyani1Ahmad Suyoko2Adi Santoso3Research Center for Biotechnology, Indonesian Institute of Sciences (LIPI)Research Center for Biotechnology, Indonesian Institute of Sciences (LIPI)Research Center for Biotechnology, Indonesian Institute of Sciences (LIPI)Research Center for Biotechnology, Indonesian Institute of Sciences (LIPI)The C2C12 myoblasts are adult murine muscle stem cells which isolated after injury to induce muscle regeneration. The cells are widely used in pharmaceutical and biological researches to represent skeletal muscle cells. In our laboratory, we utilize the cells for glucose uptake assay after insulin treatment and studying the muscle regeneration. In this study we conducted recloning of C2C12 cells by limiting dilution cloning (LDC) and investigated the biological properties incuding cell proliferation, adhesion and differentiation of the clonal cells in comparison to the parental cells. Cell proliferation rate had been determined by WST assay, cell adhesion had been observed after cell detachment by EDTA and cell differentiation into multinucleated myotube had been investigated after induction and incubation with horse serum. As results, two clonal derivatives of C2C12 myoblast cells had been retrieved by LDC and used for cell assays. Moreover, the results indicated that parental cells showed faster proliferation rate and better differentiation ability than that of clonal cells. In the contrary the parental cells exhibited weaker adhesion rate than clonal cells. To conclude, C2C12 parental cells are better for performing the glucose uptake or muscle regeneration assays since they showed better differentiation capability. Keywords: C2C12 cells, cells differentiation, myoblast, myotube, recloning.https://ijcc.chemoprev.org/index.php/ijcc/article/view/368
spellingShingle Pekik Wiji Prasetyaningrum
Endah Puji Septisetyani
Ahmad Suyoko
Adi Santoso
Recloning and Characterization of C2C12 Myoblast and Its Clonal Derivatives
ISCC (Indonesian Journal of Cancer Chemoprevention)
title Recloning and Characterization of C2C12 Myoblast and Its Clonal Derivatives
title_full Recloning and Characterization of C2C12 Myoblast and Its Clonal Derivatives
title_fullStr Recloning and Characterization of C2C12 Myoblast and Its Clonal Derivatives
title_full_unstemmed Recloning and Characterization of C2C12 Myoblast and Its Clonal Derivatives
title_short Recloning and Characterization of C2C12 Myoblast and Its Clonal Derivatives
title_sort recloning and characterization of c2c12 myoblast and its clonal derivatives
url https://ijcc.chemoprev.org/index.php/ijcc/article/view/368
work_keys_str_mv AT pekikwijiprasetyaningrum recloningandcharacterizationofc2c12myoblastanditsclonalderivatives
AT endahpujiseptisetyani recloningandcharacterizationofc2c12myoblastanditsclonalderivatives
AT ahmadsuyoko recloningandcharacterizationofc2c12myoblastanditsclonalderivatives
AT adisantoso recloningandcharacterizationofc2c12myoblastanditsclonalderivatives