Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials

© 2018 The Author(s). Introduction: Induced neural stem cells (iNSCs) have the ability of differentiation into neurons, astrocytes and oligodendrocytes. iNSCs are very useful in terms of research and treatment. The present study offers an idea that biomaterials could be one of the tools that could m...

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Main Authors: Fahsai Kantawong, Chanidapa Saksiriwisitkul, Chanakan Riyapa, Suchalinee Limpakdee, Phenphichar Wanachantararak, Thasaneeya Kuboki
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Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/58324
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spelling th-cmuir.6653943832-583242018-09-05T04:38:25Z Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials Fahsai Kantawong Chanidapa Saksiriwisitkul Chanakan Riyapa Suchalinee Limpakdee Phenphichar Wanachantararak Thasaneeya Kuboki Biochemistry, Genetics and Molecular Biology Pharmacology, Toxicology and Pharmaceutics © 2018 The Author(s). Introduction: Induced neural stem cells (iNSCs) have the ability of differentiation into neurons, astrocytes and oligodendrocytes. iNSCs are very useful in terms of research and treatment. The present study offers an idea that biomaterials could be one of the tools that could modulate reprogramming process in the fibroblasts. Methods: Gelatin biomaterials were fabricated into 3 types, including (i) gelatin, (ii) gelatin with 1 mg/mL hydroxyapatite, and (iii) gelatin with hydroxyapatite and pig brain. NIH/3T3 fibroblasts were cultured on each type of biomaterial for 7, 9 and 14 days. RT-PCR was performed to investigate the gene expression of the fibroblasts on biomaterials compared to the fibroblasts on tissue culture plates. PI3K/Akt signaling was performed by flow cytometry after 24 hours seeding on the biomaterials. The biomaterials were also tested with the human APCs and PDL cells. Results: The fibroblasts exhibited changes in the expression of the reprogramming factor; Klf 4 and the neural transcription factors; NFIa, NFIb and Ptbp1 after 9 days culture. The cultivation of fibroblasts on the biomaterials for 7 days showed a higher expression of the transcription factor SOX9. The expression of epigenetic genes; Kat2a and HDAC3 were changed upon the cultivation on the biomaterials for 9 days. The fibroblasts cultured on the biomaterials showed an activation of PI3K/Akt signaling. The human APCs and human PDL cells developed mineralization process on biomaterials. Conclusion: Changes in the expression of Klf4, NFIa, NFIb, Ptbp1 and SOX9 indicated that fibroblasts were differentiated into an astrocytic lineage. It is possible that the well-designed biomaterials could work as powerful tools in the reprogramming process of fibroblasts into iNSCs. 2018-09-05T04:22:44Z 2018-09-05T04:22:44Z 2018-01-01 Journal 22285660 22285652 2-s2.0-85048143913 10.15171/bi.2018.15 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85048143913&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/58324
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Biochemistry, Genetics and Molecular Biology
Pharmacology, Toxicology and Pharmaceutics
spellingShingle Biochemistry, Genetics and Molecular Biology
Pharmacology, Toxicology and Pharmaceutics
Fahsai Kantawong
Chanidapa Saksiriwisitkul
Chanakan Riyapa
Suchalinee Limpakdee
Phenphichar Wanachantararak
Thasaneeya Kuboki
Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials
description © 2018 The Author(s). Introduction: Induced neural stem cells (iNSCs) have the ability of differentiation into neurons, astrocytes and oligodendrocytes. iNSCs are very useful in terms of research and treatment. The present study offers an idea that biomaterials could be one of the tools that could modulate reprogramming process in the fibroblasts. Methods: Gelatin biomaterials were fabricated into 3 types, including (i) gelatin, (ii) gelatin with 1 mg/mL hydroxyapatite, and (iii) gelatin with hydroxyapatite and pig brain. NIH/3T3 fibroblasts were cultured on each type of biomaterial for 7, 9 and 14 days. RT-PCR was performed to investigate the gene expression of the fibroblasts on biomaterials compared to the fibroblasts on tissue culture plates. PI3K/Akt signaling was performed by flow cytometry after 24 hours seeding on the biomaterials. The biomaterials were also tested with the human APCs and PDL cells. Results: The fibroblasts exhibited changes in the expression of the reprogramming factor; Klf 4 and the neural transcription factors; NFIa, NFIb and Ptbp1 after 9 days culture. The cultivation of fibroblasts on the biomaterials for 7 days showed a higher expression of the transcription factor SOX9. The expression of epigenetic genes; Kat2a and HDAC3 were changed upon the cultivation on the biomaterials for 9 days. The fibroblasts cultured on the biomaterials showed an activation of PI3K/Akt signaling. The human APCs and human PDL cells developed mineralization process on biomaterials. Conclusion: Changes in the expression of Klf4, NFIa, NFIb, Ptbp1 and SOX9 indicated that fibroblasts were differentiated into an astrocytic lineage. It is possible that the well-designed biomaterials could work as powerful tools in the reprogramming process of fibroblasts into iNSCs.
format Journal
author Fahsai Kantawong
Chanidapa Saksiriwisitkul
Chanakan Riyapa
Suchalinee Limpakdee
Phenphichar Wanachantararak
Thasaneeya Kuboki
author_facet Fahsai Kantawong
Chanidapa Saksiriwisitkul
Chanakan Riyapa
Suchalinee Limpakdee
Phenphichar Wanachantararak
Thasaneeya Kuboki
author_sort Fahsai Kantawong
title Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials
title_short Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials
title_full Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials
title_fullStr Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials
title_full_unstemmed Reprogramming of mouse fibroblasts into neural lineage cells using biomaterials
title_sort reprogramming of mouse fibroblasts into neural lineage cells using biomaterials
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85048143913&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/58324
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