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001-es BibID:BIBFORM096247
035-os BibID:(cikkazonosító)1415 (WOS)000699319500001 (Scopus)85114236612
Első szerző:Singlár Zoltán (biotechnológus)
Cím:Assessing the Potential of Nutraceuticals as Geroprotectors on Muscle Performance and Cognition in Aging Mice / Zoltán Singlár, Péter Szentesi, János Fodor, Ágnes Angyal, László Csernoch, Mónika Sztretye
Dátum:2021
ISSN:2076-3921
Megjegyzések:Aging and frailty are associated with a decline in muscle force generation, which is a direct consequence of reduced muscle quantity and quality. Among the leading contributors to aging is the generation of reactive oxygen species, the byproducts of terminal oxidation. Their negative effects can be moderated via antioxidant supplementation. Krill oil and astaxanthin (AX) are nutraceuticals with a variety of health promoting, geroprotective, anti-inflammatory, anti-diabetic and anti-fatigue effects. In this work, we examined the functional effects of these two nutraceutical agents supplemented via pelleted chow in aging mice by examining in vivo and in vitro skeletal muscle function, along with aspects of intracellular and mitochondrial calcium homeostasis, as well as cognition and spatial memory. AX diet regimen limited weight gain compared to the control group; however, this phenomenon was not accompanied by muscle tissue mass decline. On the other hand, both AX and krill oil supplementation increased force production without altering calcium homeostasis during excitation-contraction coupling mechanism or mitochondrial calcium uptake processes. We also provide evidence of improved spatial memory and learning ability in aging mice because of krill oil supplementation. Taken together, our data favors the application of antioxidant nutraceuticals as geroprotectors to improve cognition and healthy aging by virtue of improved skeletal muscle force production.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
skeletal muscle
calcium homeostasis
muscle performance
excitation-contraction coupling
astaxanthin
krill oil
nutraceutical
cognition
mitochondrial calcium
aging
Megjelenés:Antioxidants. - 10 : 9 (2021), p. 1415. -
További szerzők:Szentesi Péter (1967-) (élettanász) Fodor János (1973-) (élettanász, biotechnológus) Angyal Ágnes (1987-) (molekuláris biológus) Csernoch László (1961-) (élettanász) Sztretye Mónika (1981-) (élettanász, elektrofiziológus)
Pályázati támogatás:TKP2020-IKA-04
Egyéb
2020-4.1.1-TKP2020
Egyéb
PD-128370
Egyéb
GINOP-2.3.4-15-2016-00002
GINOP
EFOP-3.6.3-VEKOP-16-2017-00009
EFOP
OpenA/DEENK/230/2021
Egyéb
Internet cím:Szerző által megadott URL
DOI
Intézményi repozitóriumban (DEA) tárolt változat
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2.

001-es BibID:BIBFORM083077
035-os BibID:(cikkazonosító)98 (WOS)000519877100052 (Scopus)85078738942 (PMID)31979219
Első szerző:Sztretye Mónika (élettanász, elektrofiziológus)
Cím:Improved Tetanic Force and Mitochondrial Calcium Homeostasis by Astaxanthin Treatment in Mouse Skeletal Muscle / Mónika Sztretye, Zoltán Singlár, László Szabó, Ágnes Angyal, Norbert Balogh, Faranak Vakilzadeh, Péter Szentesi, Beatrix Dienes, László Csernoch
Dátum:2020
ISSN:2076-3921
Megjegyzések:BACKGROUND: Astaxanthin (AX) a marine carotenoid is a powerful natural antioxidant which protects against oxidative stress and improves muscle performance. Retinol and its derivatives were described to affect lipid and energy metabolism. Up to date, the effects of AX and retinol on excitation-contraction coupling (ECC) in skeletal muscle are poorly described. METHODS: 18 C57Bl6 mice were divided into two groups: Control and AX supplemented in rodent chow for 4 weeks (AstaReal A1010). In vivo and in vitro force and intracellular calcium homeostasis was studied. In some experiments acute treatment with retinol was employed. RESULTS: The voltage activation of calcium transients (V50) were investigated in single flexor digitorum brevis isolated fibers under patch clamp and no significant changes were found following AX supplementation. Retinol shifted V50 towards more positive values and decreased the peak F/F0 of the calcium transients. The amplitude of tetani in the extensor digitorum longus was significantly higher in AX than in control group. Lastly, the mitochondrial calcium uptake was found to be less prominent in AX. CONCLUSION: AX supplementation increases in vitro tetanic force without affecting ECC and exerts a protecting effect on the mitochondria. Retinol treatment has an inhibitory effect on ECC in skeletal muscle.
Tárgyszavak:Orvostudományok Elméleti orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
skeletal muscle
intracellular calcium
mitochondrial calcium
excitation contraction coupling
force
astaxanthin
retinol
Megjelenés:Antioxidants. - 9 : 2 (2020), p. 98. -
További szerzők:Singlár Zoltán (1994-) (biotechnológus) Szabó László (1994-) (molekuláris biológus) Angyal Ágnes (1987-) (molekuláris biológus) Balogh Norbert (1988-) (molekuláris biológus) Vakilzadeh, Faranak Szentesi Péter (1967-) (élettanász) Dienes Beatrix (1972-) (élettanász, molekuláris biológus) Csernoch László (1961-) (élettanász)
Pályázati támogatás:NKFIH-1150-6/2019
Egyéb
NKFIH PD-128370
Egyéb
Internet cím:Intézményi repozitóriumban (DEA) tárolt változat
DOI
Borító:
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