Department of Sport, Faculty of Physical Education, Kazimierz Wielki University in Bydgoszcz, 85-064 Bydgoszcz, Poland.
Department of Biochemistry, Faculty of Physical Education, Gdansk University of Physical Education and Sport, 80-336 Gdansk, Poland.
Int J Mol Sci. 2020 Sep 5;21(18):6469. doi: 10.3390/ijms21186469.
Physical training and antioxidant supplementation may influence iron metabolism through reduced oxidative stress and subsequent lowering of mRNA levels of genes that are easily induced by this stress, including those responsible for iron homeostasis. Fifteen elderly women participated in our 12-week experiment, involving six weeks of training without supplementation and six weeks of training supported by oral supplementation of 1000 mg of vitamin C daily. The participants were divided into two groups ( = 7 in group 1 and = 8 in group 2). In group 1, we applied vitamin C supplementation in the first six weeks of training, while in group 2 during the remaining six weeks of training. In both phases, the health-related training occurred three times per week. Training accompanied by vitamin C supplementation did not affect prooxidative/antioxidative balance but significantly decreased ferritin heavy chain ) and ferritin light chain () mRNA in leukocytes (for mRNA from 2^64.24 to 2^11.06, = 0.03 in group 1 and from 2^60.54 to 2^16.03, = 0.01 in group 2, for mRNA from 2^20.22 to 2^4.53, = 0.01 in group 2). We concluded that vitamin C supplementation might have caused a decrease in gene expression of two important antioxidative genes ( and had no effect on plasma prooxidative/antioxidative balance.
体能训练和抗氧化剂补充可能会通过减少氧化应激,继而降低易受这种应激影响的基因的 mRNA 水平,从而影响铁代谢,这些基因包括负责铁稳态的基因。15 名老年女性参与了我们为期 12 周的实验,其中包括 6 周的训练而不补充,以及 6 周的训练,每天口服补充 1000 毫克维生素 C。参与者被分为两组(组 1 有 7 人,组 2 有 8 人)。在组 1 中,我们在训练的前 6 周补充维生素 C,而在组 2 中,在训练的后 6 周补充维生素 C。在这两个阶段,每周进行 3 次与健康相关的训练。伴随维生素 C 补充的训练并没有影响促氧化/抗氧化平衡,但显著降低了白细胞中的铁蛋白重链()和铁蛋白轻链()mRNA(对于 mRNA,从 2^64.24 降至 2^11.06,组 1 的 = 0.03,从 2^60.54 降至 2^16.03,组 2 的 = 0.01,对于 mRNA,从 2^20.22 降至 2^4.53,组 2 的 = 0.01)。我们得出结论,维生素 C 补充可能导致两个重要抗氧化基因(和 的基因表达下降,但对血浆促氧化/抗氧化平衡没有影响。