Effects of the menstrual cycle on oxidative stress and antioxidant response to high-intensity intermittent exercise until exhaustion in healthy women.


Journal

The Journal of sports medicine and physical fitness
ISSN: 1827-1928
Titre abrégé: J Sports Med Phys Fitness
Pays: Italy
ID NLM: 0376337

Informations de publication

Date de publication:
Oct 2020
Historique:
pubmed: 20 6 2020
medline: 21 1 2021
entrez: 20 6 2020
Statut: ppublish

Résumé

This study aimed to investigate the effects of the menstrual cycle on the oxidative stress and antioxidant response during high-intensity intermittent exercise until exhaustion in healthy women who habitually exercised. Ten women with normal menstrual cycle completed 2 menstrual cycle phases, including the early follicular phase (FP) and the midluteal phase (LP). High-intensity exercise until exhaustion was performed on each test day. Blood samples were collected before the exercise (Pre), immediately after the exercise (Post0), and 60 minutes after the exercise (Post60). The levels of estradiol; progesterone; oxidative stress, which was measured as diacron reactive oxygen metabolites (d-ROMs); and antioxidant capacity, which was measured as the biological antioxidant potential (BAP), were assessed. The levels of serum estradiol and progesterone at Pre were significantly higher in the LP than in the FP (P<0.01). There were no significant differences in the d-ROMs, BAP, and BAP/d-ROMs between the FP and the LP at Pre, Post0, and Post60. Compared with the FP, the LP had significantly lower d-ROMs change rate from Pre at Post0 and Post60 (P<0.05). Moreover, the BAP/d-ROMs change rate from Pre showed a significantly higher trend in the LP than in the FP at Post0 and Post60 (P=0.06). In women with regular menstrual cycle, oxidative stress during exercise and recovery may be eliminated during the LP, when the estradiol and progesterone levels are higher, compared with those during the FP.

Sections du résumé

BACKGROUND BACKGROUND
This study aimed to investigate the effects of the menstrual cycle on the oxidative stress and antioxidant response during high-intensity intermittent exercise until exhaustion in healthy women who habitually exercised.
METHODS METHODS
Ten women with normal menstrual cycle completed 2 menstrual cycle phases, including the early follicular phase (FP) and the midluteal phase (LP). High-intensity exercise until exhaustion was performed on each test day. Blood samples were collected before the exercise (Pre), immediately after the exercise (Post0), and 60 minutes after the exercise (Post60). The levels of estradiol; progesterone; oxidative stress, which was measured as diacron reactive oxygen metabolites (d-ROMs); and antioxidant capacity, which was measured as the biological antioxidant potential (BAP), were assessed.
RESULTS RESULTS
The levels of serum estradiol and progesterone at Pre were significantly higher in the LP than in the FP (P<0.01). There were no significant differences in the d-ROMs, BAP, and BAP/d-ROMs between the FP and the LP at Pre, Post0, and Post60. Compared with the FP, the LP had significantly lower d-ROMs change rate from Pre at Post0 and Post60 (P<0.05). Moreover, the BAP/d-ROMs change rate from Pre showed a significantly higher trend in the LP than in the FP at Post0 and Post60 (P=0.06).
CONCLUSIONS CONCLUSIONS
In women with regular menstrual cycle, oxidative stress during exercise and recovery may be eliminated during the LP, when the estradiol and progesterone levels are higher, compared with those during the FP.

Identifiants

pubmed: 32550716
pii: S0022-4707.20.10868-5
doi: 10.23736/S0022-4707.20.10868-5
doi:

Substances chimiques

Antioxidants 0
Progesterone 4G7DS2Q64Y
Estradiol 4TI98Z838E

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1335-1341

Auteurs

Tomoka Matsuda (T)

Graduate School of Health and Sport Science, Nippon Sport Science University, Tokyo, Japan - m.tomoka0610@gmail.com.

Hazuki Ogata (H)

Graduate School of Health and Sport Science, Nippon Sport Science University, Tokyo, Japan.

Moe Kanno (M)

Graduate School of Health and Sport Science, Nippon Sport Science University, Tokyo, Japan.

Akira Ishikawa (A)

Graduate School of Health and Sport Science, Nippon Sport Science University, Tokyo, Japan.

Mizuki Yamada (M)

Department of Exercise Physiology, Nippon Sport Science University, Tokyo, Japan.

Mikako Sakamaki-Sunaga (M)

Department of Exercise Physiology, Nippon Sport Science University, Tokyo, Japan.

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Classifications MeSH