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Gamma-Tocotrienol prevents cell cycle arrest in aged human fibroblast cells through p16INK4a pathway
Zainuddin, Azalina; Chua, Kien-Hui; Tan, Jen-Kit; Jaafar, Faizul; Makpol, Suzana.
Afiliação
  • Zainuddin, Azalina; Universiti Sains Malaysia. School of Medical Sciences. Department of Chemical Pathology. Kota Bharu. Malaysia
  • Chua, Kien-Hui; Universiti Kebangsaan Malaysia. Faculty of Medicine. Department of Physiology. Kuala Lumpur. Malaysia
  • Tan, Jen-Kit; Universiti Kebangsaan Malaysia Medical Centre. Faculty of Medicine. Department of Biochemistry. Kuala Lumpur. Malaysia
  • Jaafar, Faizul; Universiti Kebangsaan Malaysia Medical Centre. Faculty of Medicine. Department of Biochemistry. Kuala Lumpur. Malaysia
  • Makpol, Suzana; Universiti Kebangsaan Malaysia Medical Centre. Faculty of Medicine. Department of Biochemistry. Kuala Lumpur. Malaysia
J. physiol. biochem ; 73(1): 59-65, feb. 2017. graf, ilus
Artigo em Inglês | IBECS | ID: ibc-168393
Biblioteca responsável: ES1.1
Localização: BNCS
ABSTRACT
Human diploid fibroblasts (HDFs) proliferation in culture has been used as a model of aging at the cellular level. Growth arrest is one of the most important mechanisms responsible for replicative senescence. Recent researches have been focusing on the function of vitamin E in modulating cellular signaling and gene expression. Therefore, the aim of this study was to elucidate the effect of palm γ-tocotrienol (vitamin E) in modulating cellular aging through p16INK4a pathway in HDF cells. Primary culture of senescent HDFs was incubated with 70 μM of palm γ-tocotrienol for 24 hours. Silencing of p16INK4a was carried out by siRNA transfection. RNA was extracted from the different treatment groups and gene expression analysis was carried out by real-time reverse transcription polymerase chain reaction. Proteins that were regulated by p16INK4a were determined by western blot technique. The finding of this study showed that p16INK4a mRNA was overexpressed in senescent HDFs, and hypophosphorylated-pRb and cyclin D1 protein expressions were increased (p < 0.05). However, downregulation of p16INK4a and hypophosphorylated-pRb and cyclin D1 protein expressions (p < 0.05) by γ-tocotrienol led to modulation of the cell cycle regulation during cellular aging. In conclusion, senescent HDFs showed change in biological process specifically in cell cycle regulation with elevated expression of genes and proteins which may contribute to cell cycle arrest. Palm γ-tocotrienol may delay cellular senescence of HDFs by regulating cell cycle through downregulation of p16INK4a and hypophosphorylated-pRb and cyclin D1 protein expressions (AU)
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Coleções: Bases de dados nacionais / Espanha Base de dados: IBECS Assunto principal: Vitamina E / Regulação para Baixo / Cromanos / Senescência Celular / Ciclina D1 / Fibroblastos Tipo de estudo: Estudo prognóstico Limite: Criança / Humanos / Masculino Idioma: Inglês Revista: J. physiol. biochem Ano de publicação: 2017 Tipo de documento: Artigo Instituição/País de afiliação: Universiti Kebangsaan Malaysia Medical Centre/Malaysia / Universiti Kebangsaan Malaysia/Malaysia / Universiti Sains Malaysia/Malaysia
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Coleções: Bases de dados nacionais / Espanha Base de dados: IBECS Assunto principal: Vitamina E / Regulação para Baixo / Cromanos / Senescência Celular / Ciclina D1 / Fibroblastos Tipo de estudo: Estudo prognóstico Limite: Criança / Humanos / Masculino Idioma: Inglês Revista: J. physiol. biochem Ano de publicação: 2017 Tipo de documento: Artigo Instituição/País de afiliação: Universiti Kebangsaan Malaysia Medical Centre/Malaysia / Universiti Kebangsaan Malaysia/Malaysia / Universiti Sains Malaysia/Malaysia
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