Vitamin C supplementation and exercise influence pro/antioxidative status and the cellular stress response. We tested the effects of exercise training for 6 weeks, supported by 1000 mg of vitamin C supplementation in elderly women. Thirty-six women were divided into two groups: a control group (CON) (n = 18, age 69.4 ± 6.4 years, 70.4 ±10.4 kg body mass) and a supplemented group (SUPP) (n = 18, aged 67.7 ± 5.6 years, body mass 71.46 ± 5.39 kg). Blood samples were taken twice (at baseline and 24 h after the whole period of training), in order to determine vitamin C concentration, the total oxidative status/capacity (TOS/TOC), total antioxidant status/capacity (TAS/TAC), and gene expression associated with cellular stress response: encoding heat shock factor (HSF1), heat shock protein 70 (HSPA1A), heat shock protein 27 (HSPB1), and tumor necrosis factor alpha (TNF-α). We observed a significant increase in TOS/TOC, TAS/TAC, and prooxidant/antioxidant balance in the SUPP group. There was a significant decrease inHSPA1Ain the CON group and a different tendency in the expression ofHSF1andTNF-αbetween groups. In conclusion, vitamin C supplementation enhanced the pro-oxidation in elderly women with a normal plasma vitamin C concentration and influenced minor changes in training adaptation gene expression.

Differences in the pro/ntioxidative status and cellular stress response in elderly women after 6 weeks of exercise training supported by 1000 mg of vitamin C supplementation / Żychowska, Małgorzata; Sadowska-Krępa, Ewa; Damiani, Elisabetta; Tiano, Luca; Ziemann, Ewa; Nowak-Zaleska, Alicja; Lipińska, Patrycja; Piotrowska, Anna; Czerwińska-Ledwig, Olga; Pilch, Wanda; Antosiewicz, Jędrzej. - In: BIOMEDICINES. - ISSN 2227-9059. - ELETTRONICO. - 10:10(2022), p. 2641. [10.3390/biomedicines10102641]

Differences in the pro/ntioxidative status and cellular stress response in elderly women after 6 weeks of exercise training supported by 1000 mg of vitamin C supplementation

Elisabetta Damiani;Luca Tiano;
2022-01-01

Abstract

Vitamin C supplementation and exercise influence pro/antioxidative status and the cellular stress response. We tested the effects of exercise training for 6 weeks, supported by 1000 mg of vitamin C supplementation in elderly women. Thirty-six women were divided into two groups: a control group (CON) (n = 18, age 69.4 ± 6.4 years, 70.4 ±10.4 kg body mass) and a supplemented group (SUPP) (n = 18, aged 67.7 ± 5.6 years, body mass 71.46 ± 5.39 kg). Blood samples were taken twice (at baseline and 24 h after the whole period of training), in order to determine vitamin C concentration, the total oxidative status/capacity (TOS/TOC), total antioxidant status/capacity (TAS/TAC), and gene expression associated with cellular stress response: encoding heat shock factor (HSF1), heat shock protein 70 (HSPA1A), heat shock protein 27 (HSPB1), and tumor necrosis factor alpha (TNF-α). We observed a significant increase in TOS/TOC, TAS/TAC, and prooxidant/antioxidant balance in the SUPP group. There was a significant decrease inHSPA1Ain the CON group and a different tendency in the expression ofHSF1andTNF-αbetween groups. In conclusion, vitamin C supplementation enhanced the pro-oxidation in elderly women with a normal plasma vitamin C concentration and influenced minor changes in training adaptation gene expression.
2022
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11566/307522
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