[Lipid peroxidation in stress-induced tissue damage in adrenal gland insufficiency]. 1984

T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ

The authors studied lipid peroxidation in adrenal failure and acute emotional painful stress under total adrenalectomy. Experiments were made on white male rats with the use of a complex of indicators marking the state of lipid peroxidation in blood and tissues (myocardium, periodontium) and indicators of bone tissue mineralization. Adrenal failure activates lipid peroxidation in the tissues under study. Corticosteroid deficiency reduces activation of lipid peroxidation during the stress syndrome and potentiates its demineralization effect.

UI MeSH Term Description Entries
D008054 Lipid Peroxides Peroxides produced in the presence of a free radical by the oxidation of unsaturated fatty acids in the cell in the presence of molecular oxygen. The formation of lipid peroxides results in the destruction of the original lipid leading to the loss of integrity of the membranes. They therefore cause a variety of toxic effects in vivo and their formation is considered a pathological process in biological systems. Their formation can be inhibited by antioxidants, such as vitamin E, structural separation or low oxygen tension. Fatty Acid Hydroperoxide,Lipid Peroxide,Lipoperoxide,Fatty Acid Hydroperoxides,Lipid Hydroperoxide,Lipoperoxides,Acid Hydroperoxide, Fatty,Acid Hydroperoxides, Fatty,Hydroperoxide, Fatty Acid,Hydroperoxide, Lipid,Hydroperoxides, Fatty Acid,Peroxide, Lipid,Peroxides, Lipid
D008297 Male Males
D008903 Minerals Native, inorganic or fossilized organic substances having a definite chemical composition and formed by inorganic reactions. They may occur as individual crystals or may be disseminated in some other mineral or rock. (Grant & Hackh's Chemical Dictionary, 5th ed; McGraw-Hill Dictionary of Scientific and Technical Terms, 4th ed) Mineral
D009206 Myocardium The muscle tissue of the HEART. It is composed of striated, involuntary muscle cells (MYOCYTES, CARDIAC) connected to form the contractile pump to generate blood flow. Muscle, Cardiac,Muscle, Heart,Cardiac Muscle,Myocardia,Cardiac Muscles,Heart Muscle,Heart Muscles,Muscles, Cardiac,Muscles, Heart
D010024 Osteoporosis Reduction of bone mass without alteration in the composition of bone, leading to fractures. Primary osteoporosis can be of two major types: postmenopausal osteoporosis (OSTEOPOROSIS, POSTMENOPAUSAL) and age-related or senile osteoporosis. Age-Related Osteoporosis,Bone Loss, Age-Related,Osteoporosis, Age-Related,Osteoporosis, Post-Traumatic,Osteoporosis, Senile,Senile Osteoporosis,Osteoporosis, Involutional,Age Related Osteoporosis,Age-Related Bone Loss,Age-Related Bone Losses,Age-Related Osteoporoses,Bone Loss, Age Related,Bone Losses, Age-Related,Osteoporoses,Osteoporoses, Age-Related,Osteoporoses, Senile,Osteoporosis, Age Related,Osteoporosis, Post Traumatic,Post-Traumatic Osteoporoses,Post-Traumatic Osteoporosis,Senile Osteoporoses
D010146 Pain An unpleasant sensation induced by noxious stimuli which are detected by NERVE ENDINGS of NOCICEPTIVE NEURONS. Suffering, Physical,Ache,Pain, Burning,Pain, Crushing,Pain, Migratory,Pain, Radiating,Pain, Splitting,Aches,Burning Pain,Burning Pains,Crushing Pain,Crushing Pains,Migratory Pain,Migratory Pains,Pains, Burning,Pains, Crushing,Pains, Migratory,Pains, Radiating,Pains, Splitting,Physical Suffering,Physical Sufferings,Radiating Pain,Radiating Pains,Splitting Pain,Splitting Pains,Sufferings, Physical
D010519 Periodontium The structures surrounding and supporting the tooth. Periodontium includes the gum (GINGIVA), the alveolar bone (ALVEOLAR PROCESS), the DENTAL CEMENTUM, and the PERIODONTAL LIGAMENT. Paradentium,Parodontium,Tooth Supporting Structures,Paradentiums,Parodontiums,Periodontiums,Structure, Tooth Supporting,Structures, Tooth Supporting,Supporting Structure, Tooth,Supporting Structures, Tooth,Tooth Supporting Structure
D001842 Bone and Bones A specialized CONNECTIVE TISSUE that is the main constituent of the SKELETON. The principal cellular component of bone is comprised of OSTEOBLASTS; OSTEOCYTES; and OSTEOCLASTS, while FIBRILLAR COLLAGENS and hydroxyapatite crystals form the BONE MATRIX. Bone Tissue,Bone and Bone,Bone,Bones,Bones and Bone,Bones and Bone Tissue,Bony Apophyses,Bony Apophysis,Condyle,Apophyses, Bony,Apophysis, Bony,Bone Tissues,Condyles,Tissue, Bone,Tissues, Bone
D001862 Bone Resorption Bone loss due to osteoclastic activity. Bone Loss, Osteoclastic,Osteoclastic Bone Loss,Bone Losses, Osteoclastic,Bone Resorptions,Loss, Osteoclastic Bone,Losses, Osteoclastic Bone,Osteoclastic Bone Losses,Resorption, Bone,Resorptions, Bone
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man

Related Publications

T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
January 1999, In vivo (Athens, Greece),
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
April 1982, Biulleten' eksperimental'noi biologii i meditsiny,
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
May 1990, Biulleten' eksperimental'noi biologii i meditsiny,
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
July 1998, Age,
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
January 2023, Environmental science and pollution research international,
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
January 1986, Ukrainskii biokhimicheskii zhurnal (1978),
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
December 1995, Clinical chemistry,
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
May 1991, Nippon Ganka Gakkai zasshi,
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
December 1994, Environmental health perspectives,
T A Deviatkina, and L M Tarasenko, and O N Voskresenskiĭ
March 2005, Postepy higieny i medycyny doswiadczalnej (Online),
Copied contents to your clipboard!