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Lonicera caerulea and Vaccinium myrtillus fruit polyphenols protect HaCaT keratinocytes against UVB-induced phototoxic stress and DNA damage
A. Svobodova, A. Zdarilova, J. Vostalova
Jazyk angličtina Země Nizozemsko
Typ dokumentu práce podpořená grantem
- MeSH
- apoptóza fyziologie účinky léků MeSH
- buněčné linie MeSH
- fenoly farmakologie chemie MeSH
- flavonoidy farmakologie chemie MeSH
- fototoxická dermatitida prevence a kontrola MeSH
- fragmentace DNA účinky léků MeSH
- interleukin-1beta agonisté metabolismus MeSH
- interleukin-6 agonisté metabolismus MeSH
- jednořetězcové zlomy DNA účinky léků MeSH
- kaspasy metabolismus účinky léků MeSH
- keratinocyty účinky léků účinky záření MeSH
- L-laktátdehydrogenasa analýza MeSH
- lidé MeSH
- Lonicera MeSH
- ovoce chemie MeSH
- polyfenoly MeSH
- přípravky chránící proti slunci farmakologie chemie MeSH
- proliferace buněk účinky léků MeSH
- rostlinné extrakty farmakologie MeSH
- ultrafialové záření škodlivé účinky MeSH
- Vaccinium chemie MeSH
- viabilita buněk fyziologie účinky léků MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- práce podpořená grantem MeSH
BACKGROUND: Sunlight is a very potent environmental factor in skin pathogenesis and can induce skin cancer. UVB irradiation is known to cause oxidative stress, inflammation and especially DNA damage. Topical application of agents with UV absorbing, antioxidant and anti-inflammatory activities is a successful strategy in the protection of the skin against UV-caused damage. OBJECTIVE: To examine the ability of the phenolic fraction of Lonicera caerulea and Vaccinum myrtillus fruits to moderate UVB-induced damage. METHODS: HaCaT keratinocytes, a well-established in vitro system for investigations on UV radiation induced cell damage, were used to assess the effects of pre- and post-treatment with L. caerulea (LCE) and V. myrtillus (VME) phenolic fractions (5-50 mg/l) on keratinocyte damage induced by a solar simulator (295-315 nm). RESULTS: In this study, a model of UVB-induced damage to HaCaT was established. LCE and VME efficiently reduced the extent of DNA breakage (especially at concentrations of 25 and 10 mg/l) together with caspase-3 and -9 activity and DNA laddering induced by UVB (100 or 200 mJ/cm(2)). LCE and VME significantly decreased RONS generation and partially diminished IL-6 expression. LCE pre-treatment also prevented keratinocytes proliferation. CONCLUSION: The results suggest that the phenolic fraction of L. caerulea and V. myrtillus fruits suppress UVB-caused injury to keratinocytes. These results now need to be demonstrated in vivo.
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- $a Rajnochová Svobodová, Alena $u Department of Medical Chemistry and Biochemistry, Faculty of Medicine and Dentistry, Palacky University, Hnevotinska 3, Olomouc, Czech Republic. alf.svoboda@seznam.cz $7 xx0114838
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- $a Lonicera caerulea and Vaccinium myrtillus fruit polyphenols protect HaCaT keratinocytes against UVB-induced phototoxic stress and DNA damage / $c A. Svobodova, A. Zdarilova, J. Vostalova
- 520 9_
- $a BACKGROUND: Sunlight is a very potent environmental factor in skin pathogenesis and can induce skin cancer. UVB irradiation is known to cause oxidative stress, inflammation and especially DNA damage. Topical application of agents with UV absorbing, antioxidant and anti-inflammatory activities is a successful strategy in the protection of the skin against UV-caused damage. OBJECTIVE: To examine the ability of the phenolic fraction of Lonicera caerulea and Vaccinum myrtillus fruits to moderate UVB-induced damage. METHODS: HaCaT keratinocytes, a well-established in vitro system for investigations on UV radiation induced cell damage, were used to assess the effects of pre- and post-treatment with L. caerulea (LCE) and V. myrtillus (VME) phenolic fractions (5-50 mg/l) on keratinocyte damage induced by a solar simulator (295-315 nm). RESULTS: In this study, a model of UVB-induced damage to HaCaT was established. LCE and VME efficiently reduced the extent of DNA breakage (especially at concentrations of 25 and 10 mg/l) together with caspase-3 and -9 activity and DNA laddering induced by UVB (100 or 200 mJ/cm(2)). LCE and VME significantly decreased RONS generation and partially diminished IL-6 expression. LCE pre-treatment also prevented keratinocytes proliferation. CONCLUSION: The results suggest that the phenolic fraction of L. caerulea and V. myrtillus fruits suppress UVB-caused injury to keratinocytes. These results now need to be demonstrated in vivo.
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