Oxidative Stress in Aging Human Skin

Окислительный стресс в стареющей коже человека
Mark Rinnerthaler, Andrea Trost, Klaus Richter, Johannes Bischof, Maria Karolin Streubel
2015-04-21

CoQ10DNA damageFenton reactionL-ascorbateNADPH oxidasesUV irradiationbeta-carotenecatalasescornified envelope compositioncyclooxygenasesendoplasmic reticulum (ER) localized proteinsepidermal barrier functionepidermal calcium gradient disruptionextrinsic agingglutathioneglutathione peroxidasesintrinsic aginglipid peroxidationlipoxygenasesmitochondrial electron transport chain (ETC)oxidative stress in skinperoxiredoxinsperoxisomal proteinsprotein oxidationreactive oxygen species (ROS)superoxide dismutasesxanthine oxidasesα-tocopherol
Oxidative stress in skin plays a major role in the aging process. This is true for intrinsic aging and even more for extrinsic aging. Although the results are quite different in dermis and epidermis, extrinsic aging is driven to a large extent by oxidative stress caused by UV irradiation. In this review the overall effects of oxidative stress are discussed as well as the sources of ROS including the mitochondrial ETC, peroxisomal and ER localized proteins, the Fenton reaction, and such enzymes as cyclooxygenases, lipoxygenases, xanthine oxidases, and NADPH oxidases. Furthermore, the defense mechanisms against oxidative stress ranging from enzymes like superoxide dismutases, catalases, peroxiredoxins, and GSH peroxidases to organic compounds such as L-ascorbate, α-tocopherol, beta-carotene, uric acid, CoQ10, and glutathione are described in more detail. In addition the oxidative stress induced modifications caused to proteins, lipids and DNA are discussed. Finally age-related changes of the skin are also a topic of this review. They include a disruption of the epidermal calcium gradient in old skin with an accompanying change in the composition of the cornified envelope. This modified cornified envelope also leads to an altered anti-oxidative capacity and a reduced barrier function of the epidermis.
1
Age-related skin changes include disruption of the epidermal calcium gradient, altered cornified envelope composition, reduced epidermal antioxidant capacity, and decreased barrier function.
2
Extrinsic aging of skin is driven largely by oxidative stress caused by UV irradiation.
3
Oxidative stress induces modifications to proteins, lipids, and DNA in skin.
4
Oxidative stress is a major driver of skin aging, affecting both intrinsic aging and more strongly extrinsic (environmental) aging.
5
Skin antioxidant defense mechanisms include enzymes (superoxide dismutases, catalases, peroxiredoxins, GSH peroxidases) and organic antioxidants (L-ascorbate, α-tocopherol, beta-carotene, uric acid, CoQ10, glutathione).
6
Sources of reactive oxygen species (ROS) in skin include mitochondrial ETC, peroxisomal and ER proteins, the Fenton reaction, cyclooxygenases, lipoxygenases, xanthine oxidases, and NADPH oxidases.

Aging human skin (epidermis and dermis)

Oxidative stress: its sources (mitochondrial ETC, peroxisomal/ER proteins, Fenton reaction, oxidase enzymes), antioxidant defenses, oxidative modifications to proteins/lipids/DNA, and resulting age-related skin changes including disrupted epidermal calcium gradient, altered cornified envelope composition, antioxidant capacity and barrier function

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2015-04-21
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Authors
Mark Rinnerthaler
Andrea Trost
Klaus Richter
Johannes Bischof
Maria Karolin Streubel
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