Back to Search Start Over

Relation of Redox and Structural Alterations of Rat Skin in the Function of Chronological Aging

Authors :
Bato Korac
Luciano Saso
Aleksandra Jankovic
Aleksandra Korac
Source :
Oxidative Medicine and Cellular Longevity, Oxidative Medicine and Cellular Longevity, Vol 2019 (2019)
Publication Year :
2018

Abstract

Accumulation of oxidative insults on molecular and supramolecular levels could compromise renewal potency and architecture in the aging skin. To examine and compare morphological and ultrastructural changes with redox alterations during chronological skin aging, activities of antioxidant defense (AD) enzymes, superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GSH-Px), glutathione reductase (GR), thioredoxin reductase (TR), and methionine sulfoxide reductase A (MsrA), and the markers of oxidative damage of biomolecules—4-hydroxynonenal (HNE) and 8-oxoguanine (8-oxoG)—were examined in the rat skin during life (from 3 days to 21 months). As compared to adult 3-month-old skin, higher activities of CAT, GSH-Px, and GR and a decline in expression of MsrA are found in 21-month-old skin. These changes correspond to degenerative changes at structural and ultrastructural levels in epidermal and dermal compartments, low proliferation capacity, and higher levels of HNE-modified protein aldehydes (particularly in basal lamina) and 8-oxoG positivity in nuclei and mitochondria in the sebaceous glands and root sheath. In 3-day-old skin, higher activities of AD enzymes (SOD, CAT, GR, and TR) and MsrA expression correspond to intensive postnatal development and proliferation. In contrast to 21-month-old skin, a high level of HNE in young skin is not accompanied by 8-oxoG positivity or any morphological disturbances. Observed results indicate that increased activity of AD enzymes in elderly rat skin represents the compensatory response to accumulated oxidative damage of DNA and proteins, accompanied by attenuated repair and proliferative capacity, but in young rats the redox changes are necessary and inherent with processes which occur during postnatal skin development. Мorphological and ultrastructurаl changes are in line with the redox profile in the skin of young and old rats.

Subjects

Subjects :
Male
dermoepidermal junction
Aging
Antioxidant
cycline
medicine.medical_treatment
Glutathione reductase
animal cell
Biochemistry
aldehyde
fibroblast
Skin Aging
analogs and derivatives
mitochondrion
chemistry.chemical_classification
integumentary system
lcsh:Cytology
Glutathione peroxidase
adult
thioredoxin reductase
lipid peroxidation
General Medicine
postnatal development
mitochondria
aged
cutaneous parameters
oxidation reduction state
Glutathione Reductase
subcutaneous tissue
Collagen
MSRA
medicine.medical_specialty
Article Subject
enzymes
rough endoplasmic reticulum
wistar
keratinocyte
Oxidative phosphorylation
animal tissue
03 medical and health sciences
lcsh:QH573-671
Rats, Wistar
sebaceous gland
4 hydroxynonenal
protein expression
Aldehydes
animal model
superoxide dismutases
Fibroblasts
030104 developmental biology
Endocrinology
peptides
ultrastructural changes
oxidation reduction reaction
0301 basic medicine
methionine sulfoxide reductase a
Time Factors
Thioredoxin reductase
biomolecules
basal lamina
msra protein
time factor
oxidative stress
rat
animal
oxidoreductase
skin cell
Skin
biology
Chemistry
article
Catalase
ultrastructure
8-oxo-7-hydrodeoxyguanosine
enzyme activity
8-Hydroxy-2'-Deoxyguanosine
immunohistochemistry
manganese
Oxidoreductases
damage
Oxidation-Reduction
Research Article
Thioredoxin-Disulfide Reductase
4-hydroxy-2-nonenal
extracellular matrix
enzymology
animal experiment
amino acids
peptides, glutathione peroxidase
glutathione reductase
methionine sulfoxide reductase
structural alterations
ultrastructural changes, rats, 4 hydroxynonenal
8 hydroxyguanine
catalase
collagen
glutathione peroxidase
superoxide dismutase
deoxyguanosine
msra protein, rat
thioredoxin reductase, adult
aging
cell proliferation
controlled study
dna damage
erythroid precursor cell
male
nonhuman
metabolism
pathology
skin
wistar rat, aging
capacity
development
peptides, aging
aldehydes
animals
fibroblasts
oxidation-reduction
oxidoreductases
proliferating cell nuclear antigen
rats, wistar
thioredoxin-disulfide reductase
time factors
Superoxide dismutase
Internal medicine
Proliferating Cell Nuclear Antigen
medicine
Animals
Cell Proliferation
Glutathione Peroxidase
030102 biochemistry & molecular biology
Superoxide Dismutase
Deoxyguanosine
Cell Biology
rats
wistar rat
biology.protein
DNA Damage

Details

ISSN :
19420994
Volume :
2019
Database :
OpenAIRE
Journal :
Oxidative medicine and cellular longevity
Accession number :
edsair.doi.dedup.....8081711e4da0e165a632358b22818b73