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[Department of the Biochemistry of Muscles].

The basic scientific achievements of the Department of Biochemistry of Muscles organized at the Academy of Sciences of Ukrainian SSR in 1944 are presented in this short historical overview. The basic guidelines for activities in the scientific field are as follows: study of biochemical processes in the working muscles as well as during misfunctions and disabilities, processes of adenine nucleotides exchange and ammonia creation, biochemical characterization of Ca2+ and H+ transport through the plasma and sarcoplasmic reticulum membranes. It is shown that creatine and creatine phosphate as well as adenine nucleotide content and metabolism affect the muscle functioning, glycogen metabolism proceeds simultaneously with the lowering of content of inorganic phosphate. The facts of glucose phosphorylation and its conversion via glycolytic pathways and the backward reaction of glycolysis (the aerobic synthesis of phosphopyruvate, glycogen synthesis from glucose in the presence of phosphorylase) were determined. After the muscle work up to tiredness adenine nucleotide depletion is not limited by its dephosphorylation, but goes up to formation of inosine acid and ammonia. Deamidation is shown to be in myofibrillar fraction and in sarcoplasmic reticulum of the skeletal muscle. Deamidation activity is not registered in myocardium myofibrillar fraction but it is registered in sarcoplasmic reticulum. AMP-phosphohydrolase and adenosine desaminase were found in membranes of the sarcoplasmic reticulum. The decrease in activity of all enzymes mentioned above is registered during myocardium hypertrophy, because of aorta narrowing. These data permit creating the methods for obtaining substance "adenosine phosphate" for treatment of cardiac pathologies. Glutaminase was found to be active in the muscles. This activity depended on the organism functioning. The ammonia usage by the muscle cells goes with glutamine synthesis and consumption of energy of ATP, e.g. protein amidation. The later is of all-biological significance and is used in the fields of medicine actualls concerned with the following fact: the velocity of hydrolysis of amidated protein is different for such pathology as epilepsia, tuberculosis, poisoning with manganese oxides. The methods for diagnostics of the above pathological states were developed on this basis. It is proved that glutamine nitrogen can be also used in the reaction of transamination, particularly during synthesis of purines, inosine acid and it is stored in a form of glutaminic acid. Changes in carbohydrate and phosphorus metabolism, in nitrogen and energetic exchanges and mitochondria overfilling with calcium were determined under E-avitaminosis dystrophy.(ABSTRACT TRUNCATED)

Academies and Institutes↗

[The transketolase activity in erythrocytes as a criterion for thiamine balance in the body].

In deficiency of thiamin the transketolase activity was decreased in patients and in experimental animals. The data obtained showed the high sensitivity of transketolase from erythrocytes to hypovitaminosis B1. At the same time, in diseases, especially accompained by hypoxia (and also by avitaminosis B1), the transketolase activity was shown to be increased. The effect was observed in relation to an increase in amount of young erythrocytes, which contained more transketolase. In these cases it was reasonable to estimate not only the transketolase activity but also other characteristics of thiamin metabolism (content of the vitamin in food, urine and blood).

Animals↗

Interactions of nutrition and infection.

Interactions between malnutrition and infection contribute directly to the health of individuals and communities. The relevance of this concept to the practice of clinical medicine, dentistry, and public health is supported by an imposing collection of evidence from the clinic, laboratory, and field. Malnutrition can interfere with any body mechanism that acts as a barrier to the multiplication or progress of infectious agents. This includes formation of specific antibodies, number and activity of phagocytes, integrity of skin, mucous membranes, and other tissues. Some of the less definite, nonspecific protective substances in body fluids are also affected by malnutrition. Infectious disease adversely influences the nutritional state in several indirect ways. Loss of appetite and intolerance for food result in metabolic changes. Cultural factors lead to substitution of less nutritious diets as a presumed therapeutic measure and to administration of purgatives, antibiotics, and other medicines that reduce digestion or absorption of specific nutrients. All of these may help to precipitate kwashiorkor in children subsisting on protein-deficient diets. Classical nutritional deficiencies precipitated by infection in individuals with borderline nutrient depletion include: keratomalacia due t avitaminosis-A; scurvey from lack of ascorbic acid; beriberi as a consequence of inadequate thiamin; pellagra resulting from insufficient niacin; macrocytic anemia due to folic acid or vitamin B12 deficiency; and microcytic anemia resulting from a shortage of iron. In well nourished individuals, body reserves and normal dietary intake assure that malnutrition will not result unless infection is prolonged.

Antibody Formation↗

Anderson's disease: no linkage to the apo B locus.

We describe three patients with Anderson's disease who are members of one family; the father and mother are close relatives and three of seven children show symptoms of the disease. All patients suffered from diarrhea, failure to thrive, and recurrent infections during infancy. Although these symptoms disappeared later in life, biochemical disorders (such as low plasma levels of apolipoproteins A1 and B and cholesterol, resulting in avitaminosis E, plus failure to secrete chylomicrons after a fat meal) persisted. Electron microscopy of enterocytes of one of the patients showed accumulation of lipid vacuoles with no significant aberration of the Golgi apparatus itself. It is possible, therefore, that the disease reflects a defect in chylomicron assembly. We found that low levels of apolipoprotein (apo) B48 were present in the patients' plasma. This suggests that the processing of the B100 message resulting in apo B48 functions normally. The possibility that a mutation in the apo B gene results in an abnormal apo B48 protein is very unlikely since a variable number tandem repeat (VNTR) polymorphism probe mapped to chromosome 2 failed to show correspondence of the parent alleles with the disease. These observations confirm the suggestion that Anderson's disease is not linked to the apo B locus.

Apolipoprotein B-48↗

Nutritional status of the elderly.

Elderly become vulnerable to malnutrition owing to inappropriate dietary intake, poor economic status and social deprivation. Elderly are known to be easily subjected to inanition and avitaminosis resulting in multiple nutritional deficiencies. Urban slum dwellers, rural poor and those living alone appear to be at a higher risk of poor dietary intake. Though food consumption patterns of rural and urban elderly show a distinct difference, these are greatly influenced by regional dietary patterns. The diets of institutionalised and free living elderly reveal adequate nutrient intakes except iron and vitamin A. The nutrients least adequately supplied in the diets of Indian elderly are calcium, Iron, vitamin A, riboflavin and niacin along with energy deficits. Changes in body composition which mark the onset of the ageing process, include decline in lean body mass and increase in adipose tissue. A high prevalence of iron deficiency anaemia has also been reported among Indian elderly.

Aged↗

Oral scurvy and periodontal disease.

Although gingival bleeding is a manifestation of both scurvy and inflammatory periodontal disease, the two conditions are distinctly separate entities. The defective collagen synthesis associated with scurvy also manifests many of the same symptoms as deficient vitamin C physiology, but neither condition is associated with periodontal disease. Unlike scurvy, the various periodontal diseases are caused by oral plaque microorganisms. The body's reaction to these microorganisms is strongly influenced by the compromised functioning of leucocytes and monocytes. Although certain infections and systemic diseases cause gingival bleeding, avitaminosis-C does not cause commonly encountered periodontitis. Vitamin C should not be used for the prophylaxis or cure of periodontal disease in otherwise healthy, well-nourished individuals. A patient with bleeding gingivae warrants referral to a periodontist, oral medicine specialist, or appropriately qualified dentist for examination and treatment.

Ascorbic Acid↗

[Serum and tissue aspartate and alanine aminotransferases activity of rats with vitamin A deficiency].

The activity of aspartate-(AST) and alanine (ALT) aminotransferases was studied in the tissues and blood serum of rats under conditions of A-avitaminosis. The activity of aminotransferases is established to increase in the blood serum and liver. In the small intestine mucose it drops sharply. The activity of ALT in the heart of the A-avitaminous animals lowers as well whereas AST does not change essentially its activity. Short fasting has no effect on the activity of the mentioned enzymes.

Alanine Transaminase↗

THE FIBROBLAST.

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Arteriosclerosis↗