A Potential Differentiation of Adipose and Hair Follicle-derived Mesenchymal Stem Cells to Generate Neurons Induced with EGF, FGF, PDGF and Forskolin.

Human Adipose Derived Mesenchymal Stem Cells (HADMSCs) and Human Hair Follicle Derived Mesenchymal Stem Cells (HHFDMSCs) have attracted great interest because of their multilineage differentiation potential, selfrenewal properties, and their possible use of cell and gene therapies. This present stud...

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Main Authors: Fedik Abdul Rantam, Fedik Abdul Rantam, Alexander Patera Nugraha, Alexander Patera Nugraha, Ferdiansyah, Ferdiansyah, Purwati, Purwati, Candra Bumi, Candra Bumi, Helen Susilowati, Helen Susilowati, Eryk Hendrianto, Eryk Hendrianto, Dwikora Novembri Utomo, Dwikora Novembri Utomo, Heri Suroto, Heri Suroto, Christijogo Sumartono, Christijogo Sumartono, Rosy Setiawati, Rosy Setiawati, Cita Rosita Prakoeswa, Cita Rosita Prakoeswa, Diah Mira Indramaya, Diah Mira Indramaya
Format: Article PeerReviewed
Language:English
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Published: A and V Publication 2020
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Online Access:https://repository.unair.ac.id/96299/1/9.%20A%20Potential%20Differentiation%20of%20Adipose%20and%20Hair%20Follicle-Derived%20Mesenchymal%20Stem%20Cells.pdf
https://repository.unair.ac.id/96299/3/9.%20TURNITIN%20A%20Potential%20Differentiation%20of%20Adipose%20and%20Hair%20Follicle-derived%20Mesenchymal%20Stem%20Cells%20to%20Generate%20Neurons%20Induced.pdf
https://repository.unair.ac.id/96299/6/9.%20PEER_REVIEWER%20A%20Potential%20Differentiation%20of%20Adipose%20and%20Hair%20Follicle-derived%20Mesenchymal%20Stem%20Cells%20to%20Generate%20Neurons%20Induced%20with%20EG..pdf
https://repository.unair.ac.id/96299/9/11.%20A%20Potential%20Differentiation%20of%20Adipose%20and%20Hair%20Follicle-derived.pdf
https://repository.unair.ac.id/96299/
http://rjptonline.org/AbstractView.aspx?PID=2020-13-1-56
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Institution: Universitas Airlangga
Language: English
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Summary:Human Adipose Derived Mesenchymal Stem Cells (HADMSCs) and Human Hair Follicle Derived Mesenchymal Stem Cells (HHFDMSCs) have attracted great interest because of their multilineage differentiation potential, selfrenewal properties, and their possible use of cell and gene therapies. This present study to investigate the neurogenic differentiation ability of hADMSCs and hHFDMSCs induced by Epidermal Growth Factors (EGF), Fibroblast Growth Factor (FGF), Platelet Derived Growth Factor (PDGF) and Forskolin. This study was true experimental with longitudinal study design. The sample size determined with minimal sample size formula and it was randomly chosen. These studies employed an in vitro design for the expansion and proliferation of Mesenchymal Stem Cells (MSCs) and examined the heterogeneity of these cells using the markers CD105, CD90, OCT4, and SOX2. MSCs from adipose tissue and hair follicles were induced with EGF, FGF, PDGF and Forskolin to differentiate and generate neurons. The capacity of MSCs to generate neurons were verified using glial fibrillary acidic protein, nestin, and β-tubulin III . The expression of neural markers and morphological changes in Mesenchymal stem cells from hADMSCs and hHFDMSCs were confirmed. hADMSCs and hHFDMSCs share a similar capacity to differentiate and generate neurons, which is beneficial for the development of neuronal restoration for future therapies for patients suffering from neurological diseases.