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Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy

Neuroblastoma is the second most common pediatric malignancy and has a high rate of spontaneous remission. Uncovering the mechanisms underlying neuroblastoma cell differentiation is critical for therapeutic purposes. A neuroblastoma cell line (N2a) treated with either serum withdrawal (<2.5%) or...

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Autores principales: Lee, Wen‐Jui, Chen, Li‐Ching, Lin, Juo‐Han, Cheng, Tzu‐Chun, Kuo, Ching‐Chuan, Wu, Chih‐Hsiung, Chang, Hui‐Wen, Tu, Shih‐Hsin, Ho, Yuan‐Soon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6712479/
https://www.ncbi.nlm.nih.gov/pubmed/31274246
http://dx.doi.org/10.1002/cam4.2389
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author Lee, Wen‐Jui
Chen, Li‐Ching
Lin, Juo‐Han
Cheng, Tzu‐Chun
Kuo, Ching‐Chuan
Wu, Chih‐Hsiung
Chang, Hui‐Wen
Tu, Shih‐Hsin
Ho, Yuan‐Soon
author_facet Lee, Wen‐Jui
Chen, Li‐Ching
Lin, Juo‐Han
Cheng, Tzu‐Chun
Kuo, Ching‐Chuan
Wu, Chih‐Hsiung
Chang, Hui‐Wen
Tu, Shih‐Hsin
Ho, Yuan‐Soon
author_sort Lee, Wen‐Jui
collection PubMed
description Neuroblastoma is the second most common pediatric malignancy and has a high rate of spontaneous remission. Uncovering the mechanisms underlying neuroblastoma cell differentiation is critical for therapeutic purposes. A neuroblastoma cell line (N2a) treated with either serum withdrawal (<2.5%) or melatonin (>0.1 nmol/L) for 24 hours was used as a cell differentiation research model. Interestingly, the hyaluronan synthase 3 (HAS3) protein was induced in differentiated N2a cells. N2a‐allografted nude mice received an intraperitoneal injection of melatonin (40 or 80 mg/kg/day for 3 weeks). The mean tumor volume in mice treated with 80 mg/kg melatonin was smaller than that in PBS‐treated mice (1416.3 and 3041.3 mm(3), respectively, difference = 1625 mm(3), *P = 0.0003, n = 7 per group). Compared with the vector control group, N2a cells with forced HAS3 overexpression showed significantly increased neuron length (*P = 0.00082) and neurite outgrowth (*P = 0.00059). Intracellular changes in autophagy, including distorted mitochondria with abnormal circular inner membranes, were detected by transmission electron microscopy (TEM). Our study demonstrated that HAS3‐mediated signaling activated by physiological concentrations of melatonin (>0.1 nmol/L) triggered significant N2a cell differentiation. These results provide molecular data with potential clinical relevance for therapeutic drug development.
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spelling pubmed-67124792019-09-04 Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy Lee, Wen‐Jui Chen, Li‐Ching Lin, Juo‐Han Cheng, Tzu‐Chun Kuo, Ching‐Chuan Wu, Chih‐Hsiung Chang, Hui‐Wen Tu, Shih‐Hsin Ho, Yuan‐Soon Cancer Med Cancer Biology Neuroblastoma is the second most common pediatric malignancy and has a high rate of spontaneous remission. Uncovering the mechanisms underlying neuroblastoma cell differentiation is critical for therapeutic purposes. A neuroblastoma cell line (N2a) treated with either serum withdrawal (<2.5%) or melatonin (>0.1 nmol/L) for 24 hours was used as a cell differentiation research model. Interestingly, the hyaluronan synthase 3 (HAS3) protein was induced in differentiated N2a cells. N2a‐allografted nude mice received an intraperitoneal injection of melatonin (40 or 80 mg/kg/day for 3 weeks). The mean tumor volume in mice treated with 80 mg/kg melatonin was smaller than that in PBS‐treated mice (1416.3 and 3041.3 mm(3), respectively, difference = 1625 mm(3), *P = 0.0003, n = 7 per group). Compared with the vector control group, N2a cells with forced HAS3 overexpression showed significantly increased neuron length (*P = 0.00082) and neurite outgrowth (*P = 0.00059). Intracellular changes in autophagy, including distorted mitochondria with abnormal circular inner membranes, were detected by transmission electron microscopy (TEM). Our study demonstrated that HAS3‐mediated signaling activated by physiological concentrations of melatonin (>0.1 nmol/L) triggered significant N2a cell differentiation. These results provide molecular data with potential clinical relevance for therapeutic drug development. John Wiley and Sons Inc. 2019-07-05 /pmc/articles/PMC6712479/ /pubmed/31274246 http://dx.doi.org/10.1002/cam4.2389 Text en © 2019 The Authors. Cancer Medicine published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Cancer Biology
Lee, Wen‐Jui
Chen, Li‐Ching
Lin, Juo‐Han
Cheng, Tzu‐Chun
Kuo, Ching‐Chuan
Wu, Chih‐Hsiung
Chang, Hui‐Wen
Tu, Shih‐Hsin
Ho, Yuan‐Soon
Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy
title Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy
title_full Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy
title_fullStr Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy
title_full_unstemmed Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy
title_short Melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy
title_sort melatonin promotes neuroblastoma cell differentiation by activating hyaluronan synthase 3‐induced mitophagy
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6712479/
https://www.ncbi.nlm.nih.gov/pubmed/31274246
http://dx.doi.org/10.1002/cam4.2389
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