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Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts

Niemann-Pick disease type C (NPC) is a neurodegenerative and lysosomal lipid storage disorder, characterized by the abnormal accumulation of unesterified cholesterol and glycolipids, which is caused by mutations in the NPC1 genes. Here, we report the generation of human induced neural stem cells fro...

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Autores principales: Sung, Eun-Ah, Yu, Kyung-Rok, Shin, Ji-Hee, Seo, Yoojin, Kim, Hyung-Sik, Koog, Myung Guen, Kang, Insung, Kim, Jae-Jun, Lee, Byung-Chul, Shin, Tae-Hoon, Lee, Jin Young, Lee, Seunghee, Kang, Tae-Wook, Choi, Soon Won, Kang, Kyung-Sun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5689620/
https://www.ncbi.nlm.nih.gov/pubmed/29156730
http://dx.doi.org/10.18632/oncotarget.19976
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author Sung, Eun-Ah
Yu, Kyung-Rok
Shin, Ji-Hee
Seo, Yoojin
Kim, Hyung-Sik
Koog, Myung Guen
Kang, Insung
Kim, Jae-Jun
Lee, Byung-Chul
Shin, Tae-Hoon
Lee, Jin Young
Lee, Seunghee
Kang, Tae-Wook
Choi, Soon Won
Kang, Kyung-Sun
author_facet Sung, Eun-Ah
Yu, Kyung-Rok
Shin, Ji-Hee
Seo, Yoojin
Kim, Hyung-Sik
Koog, Myung Guen
Kang, Insung
Kim, Jae-Jun
Lee, Byung-Chul
Shin, Tae-Hoon
Lee, Jin Young
Lee, Seunghee
Kang, Tae-Wook
Choi, Soon Won
Kang, Kyung-Sun
author_sort Sung, Eun-Ah
collection PubMed
description Niemann-Pick disease type C (NPC) is a neurodegenerative and lysosomal lipid storage disorder, characterized by the abnormal accumulation of unesterified cholesterol and glycolipids, which is caused by mutations in the NPC1 genes. Here, we report the generation of human induced neural stem cells from NPC patient-derived fibroblasts (NPC-iNSCs) using only two reprogramming factors SOX2 and HMGA2 without going through the pluripotent state. NPC-iNSCs were stably expandable and differentiated into neurons, astrocytes, and oligodendrocytes. However, NPC-iNSCs displayed defects in self-renewal and neuronal differentiation accompanied by cholesterol accumulation, suggesting that NPC-iNSCs retain the main features of NPC. This study revealed that the cholesterol accumulation and the impairments in self-renewal and neuronal differentiation in NPC-iNSCs were significantly improved by valproic acid. Additionally, we demonstrated that the inhibition of cholesterol transportation by U18666A in WT-iNSCs mimicked the impaired self-renewal and neuronal differentiation of NPC-iNSCs, indicating that the regulation of cholesterol homeostasis is a crucial determinant for the neurodegenerative features of NPC. Taken together, these findings suggest that NPC-iNSCs can serve as an unlimited source of neural cells for pathological study or drug screening in a patient specific manner. Furthermore, this direct conversion technology might be extensively applicable for other human neurodegenerative diseases.
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spelling pubmed-56896202017-11-17 Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts Sung, Eun-Ah Yu, Kyung-Rok Shin, Ji-Hee Seo, Yoojin Kim, Hyung-Sik Koog, Myung Guen Kang, Insung Kim, Jae-Jun Lee, Byung-Chul Shin, Tae-Hoon Lee, Jin Young Lee, Seunghee Kang, Tae-Wook Choi, Soon Won Kang, Kyung-Sun Oncotarget Research Paper Niemann-Pick disease type C (NPC) is a neurodegenerative and lysosomal lipid storage disorder, characterized by the abnormal accumulation of unesterified cholesterol and glycolipids, which is caused by mutations in the NPC1 genes. Here, we report the generation of human induced neural stem cells from NPC patient-derived fibroblasts (NPC-iNSCs) using only two reprogramming factors SOX2 and HMGA2 without going through the pluripotent state. NPC-iNSCs were stably expandable and differentiated into neurons, astrocytes, and oligodendrocytes. However, NPC-iNSCs displayed defects in self-renewal and neuronal differentiation accompanied by cholesterol accumulation, suggesting that NPC-iNSCs retain the main features of NPC. This study revealed that the cholesterol accumulation and the impairments in self-renewal and neuronal differentiation in NPC-iNSCs were significantly improved by valproic acid. Additionally, we demonstrated that the inhibition of cholesterol transportation by U18666A in WT-iNSCs mimicked the impaired self-renewal and neuronal differentiation of NPC-iNSCs, indicating that the regulation of cholesterol homeostasis is a crucial determinant for the neurodegenerative features of NPC. Taken together, these findings suggest that NPC-iNSCs can serve as an unlimited source of neural cells for pathological study or drug screening in a patient specific manner. Furthermore, this direct conversion technology might be extensively applicable for other human neurodegenerative diseases. Impact Journals LLC 2017-08-07 /pmc/articles/PMC5689620/ /pubmed/29156730 http://dx.doi.org/10.18632/oncotarget.19976 Text en Copyright: © 2017 Sung et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Sung, Eun-Ah
Yu, Kyung-Rok
Shin, Ji-Hee
Seo, Yoojin
Kim, Hyung-Sik
Koog, Myung Guen
Kang, Insung
Kim, Jae-Jun
Lee, Byung-Chul
Shin, Tae-Hoon
Lee, Jin Young
Lee, Seunghee
Kang, Tae-Wook
Choi, Soon Won
Kang, Kyung-Sun
Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts
title Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts
title_full Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts
title_fullStr Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts
title_full_unstemmed Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts
title_short Generation of patient specific human neural stem cells from Niemann-Pick disease type C patient-derived fibroblasts
title_sort generation of patient specific human neural stem cells from niemann-pick disease type c patient-derived fibroblasts
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5689620/
https://www.ncbi.nlm.nih.gov/pubmed/29156730
http://dx.doi.org/10.18632/oncotarget.19976
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