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A fine structural demonstration that some benzopyrones act as vitamin P in the rat.

In rats fed a diet lacking flavonoids (but which had supplementary vitamin C) definite fine structural alterations were found in blood capillaries and tissues. These fine structural alterations were quite different from those reported in C-avitaminosis and imply a different deficiency. They were largely prevented by feeding the benzopyrones, coumarin or coumarin plus troxerutin, thus pointing to the specificity of the lesions. This implies that, for the rat, benzopyrones are vitamins and that vitamin C and "vitamin P"-deficiency states are qute distinct. In "P-avitaminosis" the basic lesion is the opening of some blood capillary endothelial intercellular junctions. Unlike in C-avitaminosis, the endothelial cells are intact, without pale, grossly swollen cytoplasms.

Animals↗

[Vitaminology for practitioners. II. Avitaminoses, risk, latency period, classification].

The concept of risk in the field of avitaminoses is very important and useful for the practitioner, who should consider two aspects: a) risk factors, which could be individual (physiological, pathological and psychological) and extra-individual (alimentary, environmental, etc.); b) subjects with an elevated risk of avitaminosis (childhood, old age, pregnancy, etc.). In these subjects the risk can be a generical one, when there is an elevated requirement for all vitamins (nursing women, sportmen, etc.) or a specific one, when there is a high requirement only for a single vitamin (osteomalacia, some professional diseases, use of oral contraceptives) or a vew of them (alcoholism, diabetes, etc.). On the basis of this kind of knowledge it is easy for the practitioner to estimate which vitamins are necessary for each subject or for a group of subjects in physiological or in pathological conditions. For example, there is an elevated risk of apyridoxinosis in old age (acalciferolosis in aged women), of athiaminosis and apyridoxinosis in diabetes, of apyridoxinosis in oral contraceptives users, of axeroftolosis in hyperthyroidism, of athiaminosis, apyridoxinosis, aniacinosis and anascorbosis in alcoholics. In the second chapter the concept of the latency period in avitaminosis is illustrated. This period corresponds to the interval between the moment when deficiency stimulus starts operating and the moment when its effect, that is the picture of avitaminosis, appears. The latency time is not measurable, on account of the difficulties in establishing the onset of the deficiency stimulus; generally it is very long and is followed by the period of biochemical symptomatology and subsequently by the one of clinical symptomatology. Each of these three phases can be further divided in several steps, which have summarized in a Table. The last chapter is dedicated to the classification of avitaminoses. From the etiopathogenetic point of view avitaminoses can be due to: a) deficiency of introduction (alimentary level)); b) deficiency of absorption (enteric level); c) deficiency of utilization (tissue level). From the clinical point of view avitaminoses can be distinguished in deficiency with: a) a complete clinical symptomatology (scurvy, beriberi, pellagra, rickets, osteomalacia, xerophthalmia, hemeralopia); b) an incomplete clinical symptomatology (mono- or oligo-symptomatic or partial clinical picture); c) a biochemical symptomatology only (subclinic or clinically asymptomatic picture).

Age Factors↗

[Free and bound thiamine pyrophosphate level in rat liver mitochondria in various saturation of the body with thiamine].

Content of tree and bound thiamine pyrophosphate (TPP) was measured by means of gel filtration and equilibrium dialysis procedures in mitochondria of normal rats, the rats under conditions of alimentary B1 avitaminosis and loading with thiamine. The content of protein-bound TPP was stable and equal to 20% of its total level in the mitochondria of control rats and in the rats loaded with thiamine. The content of free form of TPP was decreased in B1 avitaminosis; a severe form of the avitaminosis was accompanied by a decrease in content of the bound form. Concentration of the free form of TPP did not increase if the organism of the rats was loaded with thiamine. These data suggest existence of specific systems controlling the vitamin uptake in mitochondria. The active transport of thiamine across the mitochondrial membranes is considered as the most important process. Administration of the high doses of the vitamin led only to an increase in the non-coenzymatic form of the vitamin, indicating the absence of thiamine pyrophosphokinase in rat liver mitochondria. A possible mechanism of TPP transport in mitochondria is discussed.

Animals↗

Hepatic or pulmonary ornithine decarboxylase and vitamin A status in Wistar rat, enzyme kinetics--influence of chloroform.

The ODC activity, initial enzyme in the polyamines synthesis, was studied in the liver and lungs of Wistar rat under avitaminosis A. In the liver: ODC activity is decreased by vitamin A deficiency but partially recovered with retinol repletion during 2 weeks. An intraperitoneal injection of chloroform markedly stimulates the ODC activity, as in the deficient rat as in the normal animal; the response following stimulation is even relatively higher under avitaminosis A. The Km value of ODC increases in the deficiency; intermediate values are obtained in retinol repletion. However the chloroform injection has no effect on the Km values under any of the nutritional state. In the lungs: The baseline ODC activity is slightly decreased in the deficient animals. The chloroform stimulation induced relatively a moderate increase in the normal rat (2 fold over baseline level); it is more intense (4 fold) in deficient animal and the ODC activity is well above those of normally fed control in absolute value. As in the liver, the enzyme Km increases in avitaminosis A and a retinol repletion partially attenuates this influence. Here again, the chloroform stimulation has no effect on the Km values.

Animals↗

[Preliminary study on nutrition and precancerous lesions of the esophagus in the adolescents].

This paper reports the prevalence of chronic esophagitis and nutritional status among 538 persons 15-26 years old in the high-risk area of esophageal cancer. 166 subjects were from households with history of esophageal cancer while 372 from households without. The frequency of chronic esophagitis among male and female adolescents in the high risk areas (37.6% and 36%) was significantly, higher than that in the low risk areas. Furthermore, the frequency of chronic esophagitis in the adolescents in households with history of esophageal cancer was also higher than that without history of this cancer. There was a positive correlation between avitaminosis C and chronic esophagitis. Suffering from avitaminosis C and B2, these people are prone to develop chronic esophagitis which, in turn, may serve as an early phase in the carcinogenesis of esophageal epithelium.

Adolescent↗

[The effect of vitamin A on the glycoprotein fraction composition of rat plasma].

Content of main glycoprotein fractions was studied in rat blood plasma under conditions of vitamin A avitaminosis and of subnormal consumption of the vitamin. Main protein fractions were estimated simultaneously with relative content of glycoproteins which was calculated per mg of total proteins. Relative content of gamma-glycoproteins was increased in avitaminosis A, which appears to occur due to elevation of gamma-globulin synthesis in response to secondary infection or intoxication, while the level of alpha 1- and alpha 2-glycoproteins was decreased simultaneously as a result of possible impairment of protein glycosylation in liver tissue. Subnormal consumption of retinol did not alter content of many protein fractions in blood, however under these conditions absolute content of alpha 1-, alpha 2- and beta 2-glycoproteins as well as relative content of alpha 2-glycoproteins were decreased, thus leading to increase in relative content of underglycosylated proteins in blood. Vitamin A appears to be essential for biosynthesis of individual but not of total blood glycoproteins.

Animals↗

[The role of vitamin E in metabolism and reception of vitamin D].

It was found that calcium exchange disturbances under vitamin E deficiency is due to changes in the metabolism of vitamin D. In vitamin E-deficient rats the serum blood levels of hydroxyvitamin D (25-OHD) showed no significant changes, whereas the concentration of the hormonal form of 1.25-hydroxyvitamin D [1.25(OH)2D], decreased by 40%. In vitro studies showed that the 25-hydroxylase D3 activity in the livers of rats with E-avitaminosis had a tendency to decrease (by 22%), whereas that of 24-hydroxylase dropped drastically (by 52%). The serum blood levels of the parathyroid hormone (PTH) and kidney levels of cAMP under E-avitaminosis were significantly lowered. Preincubation of kidney slices with the adenylate cyclase activator, forskolin, increased the activity of 1-OHase in about the same degree as that in vitamin E-rich rats. The free radical scavenger, BHT, added to kidney slices suppressed the activity of the both enzymes; this finding testifies to the low O2-binding affinity of these monooxygenases. The content of 1.25(OH)2D3 receptors occupied in vivo in the kidneys of vitamin E-deficient rats decreased 2.5-fold; however, the binding of 1.25(OH)2D3-receptor complexes to heterologous DNA was unaffected thereby. The vitamin deficiency in vivo results in the inhibition of vitamin D metabolism in the liver and kidney concomitant with the formation of active metabolites and decreases the concentration of hormone-receptor complexes in target tissues.

Animals↗

[Disorders of zinc transport through the ileal epithelium in vitamin A deficiency and ischemia].

By means of histochemical revealing of zinc and applying radioactive isotope 65Zn accumulation, absorption and distribution of cations of this metal in the mucous membrane of the iliac intestine have been studied in chicken, normal, at ischemia and at A-avitaminosis. An essential zinc-depositing ability is peculiar to coverings of mucus upon the intestine epithelium, and among intracellular components--to smooth endoplasmic reticulum. A-avitaminosis and especially ischemia result in increasing permeability of the apical part of the external membrane of epitheliocytes, in overloading of the latter with zinc cations, when they are introduced into the intestine, as well as in decreasing transepithelial transport of zinc. The changes mentioned are accompanied with certain disturbances in the barrier function of the intestinal epithelium.

Animals↗

[Results of osteologic studies of medieval pediatric skeletons with special reference to the population of Anatolia].

Causes and frequency of diseases during childhood in populations of the Middle Ages were studied. The infant skeletons of ten populations from Central Europe and Anatolia were examined by macroscopical, radiological, endoscopical, histological, and scanning-electron microscopical techniques. Because only little is known about Anatolian populations, more attention was paid to the Byzantine populations. The infant skeletons are very well preserved. Therefore, the morbidity and the mortality could be studied in detail. The following disorders were diagnosed: anemia, C-avitaminosis, D-avitaminosis, osteomyelitis, meningitis-meningoencephalitis, otitis media and mastoiditis, perisinusitis, inflammation of the cavum nasi, inflammation of the paranasal sinuses, stomatitis, periodontal diseases, caries, pleuritis, trauma, and malformations. The frequency of diseases and the mortality depended on the type and the intensity of particular external life conditions. These may have been quite different in several social groups of the same population. In summary, these studies provide new information on the etiology and the epidemiology of diseases during childhood in the Middle Ages.

Age Determination by Skeleton↗

[Effect of acute vitamin B1 deficiency caused by oxythiamine on protein biosynthesis in the spleen during immunogenesis].

Distinct increase in incorporation of 14C-protein hydrolysate of chlorella (5 microCi per an animal of 150 g body mass) into proteins of rat spleen was observed within 4 days after a single or repeated immunization of rats (180-200 g of body mass) with human blood serum gamma-immunoglobulin at a dose of 30-40 mg per 1 kg of animal mass. Under conditions of acute B1-avitaminosis caused by a single administration of hydroxythiamine at a high dose of 400 mg/kg incorporation of the label into spleen proteins of the immunized rats was decreased within 72 hrs. Thus, acute hydroxythiamine-produced B1-avitaminosis inhibited induction of protein biosynthesis stimulated during immunogenesis.

Acute Disease↗

[The effect of vitamin K on the activity of glycolysis and pentose phosphate cycle enzymes].

Effect of naphthoquinone levels on the activity of enzymes involved in glycolysis and pentose phosphate cycles was studied in male rats. Under conditions of primary and secondary K-avitaminosis the enzymatic activity, limiting these cycles, (aldolase of fructose-1,6-diphosphate, glucose phosphate isomerase and glucose-6-phosphate dehydrogenase) was increased, while the mitochondrial glutamate dehydrogenase activity was decreased. As a result of metabolic transformations under conditions of K-avitaminosis (primary and secondary) concentration of DNA in the animal tissues was lowered.

Animals↗

[Effect of different supplies of vitamin K on the biotransformation of amidopyrine and benzoic acid in the rat].

Group I rats were given orally syncumar (1.5 mg/kg/day) during 5 days to induce K-avitaminosis. Group II and III animals received vikasol, a synthetic analogue of vitamin K (3 and 30 mg/kg/day, respectively), during 6 days. Delayed biotransformation of amidopyrine was recorded in the animals with vitamin K deficiency. The total 4-aminoantipyrine excretion was reduced due to a steady decrease in the excretion of both free form of this substance and its acetylated metabolite. Delayed conversion of benzoic acid into hippuric acid and benzoyl glucuronides was noted in rats with K-avitaminosis. Vikasol administration stimulated biotransformation of amidopyrine and benzoic acid, the low doses of vikasol (3 mg/kg) being more effective as compared to the high doses (30 mg/kg).

Aminopyrine↗

[Tissue lipolytic activity with various vitamin K and E allowances in white rats].

Experiments on white male rats were performed to study the activity of tissue lipase (pH 6.8-7.2) and lipoprotein lipase (pH 8.5) in the liver, skeletal muscles and kidneys depending on the body supply with vitamins K and E. It was established that in rats with food K-avitaminosis, liver and skeletal muscle lipase and lipoprotein lipase and kidney lipoprotein lipase were activated. The analogous changes in the activity of the test enzymes were discovered in animals given antivitamins K - hydroxycoumarins (e.g. pelentan). The exception to the rule was lipase (pH 6.8-7.2) of the kidneys. E-avitaminosis was accompanied by alterations in the activity of the test enzymes in the liver, skeletal muscles and kidneys.

Animals↗

[Effect of deficient and excess thiamine on the lipid makeup of the rat liver plasma membranes].

Single administration of thiamin at a high dose (40 mg) 100 g of body weight into rats led to an increase in content of phospholipids in liver plasmatic membranes; cholesterol and the ratio between phospholipid fractions were unaltered. Maintaining of rats on a rice diet (dietary B1-avitaminosis) as well as a single administration of hydroxythiamin into animals at doses 10 mg and 40 mg per 100 g of body weight did not affect the content of cholesterol and phospholipids in liver plasmatic membranes. At the same time, the ratio of the phospholipid fraction was altered in plasmatic membranes: in dietary B1-avitaminosis content of lecithin was decreased and the content of lysolecithin was increased, high of hydroxythiamin decreased the content of sphingomyelin. Hydroxythiamin at a dose of 10 mg/kg of body weight did not affect these patterns.

Animals↗

[Encephalomalacia in partridges, quails and pheasants raised in warrens].

With the introduction of industrial methods of breeding game animals, resp., birds in confinement some new diseases have arisen, such as encephalomalacia. Due to its peculiar character this disease was first referred to as B-complex avitaminosis, respective therapeutic measures being taken. Recent studies have ruled out avitaminosis, and the disease is now confirmed as encephalomalacia. In the case of partridges, rock partridges, and pheasants some drop was found of the levels of vitamin E and selenium. Accordingly, vitamtin E and selenium therapy produced a rapid curative effect.

Animals↗

[Direct stimulatory action of blood serum, vitamin D3, and its hydroxy-analogs on calcium transport in the small intestine of chicks in vitro].

A study was made of the effect of blood serum, vitamin D3 and its hydroxy-analogs (25-hydroxyvitamin D4. 1 alpha-hydroxyvitamin D3) on Ca2+ transport across the wall of the noninverted small sac of D-avitaminosis chicken during incubation in vitro. It was shown that blood serum from chickens fed vitamin D3 in different doses (50--20 000 IU) and at varying time (1--72 h) before sacrifice produced a marked stimulating action on the cation transport 10 min after administration into the intestinal cavity as compared with the effect produced by the serum from D-avitaminosis chickens. Administration into the intestine of vitamin D3 or its hydroxy-analogs in physiological doses (6.25--25.0 ng) also significantly stimulated Ca+ transport over 10 min of incubation.

Animals↗

[Lipid makeup of erythrocyte membranes of varying age in body thiamine deficit in rats].

The influence of different methods of simulating B1 avitaminosis on the lipids of the erythrocytes membranes was studied. The greatest changes were found to occur in alimentary B1 avitaminosis. Then, in all the age populations of erythrocytes the cholesterol content decreases, in membranes of old and young erythrocytes the amount of cardiolipine rises, while in the mature ones the sphingomyelin level goes up. In a dose of 40 mg/100 g body weight oxythiamine forces down the cholesterol content in the "shadows" of old and mature erythrocytes and brings down the amount of lecithin in young cells. In a dose of 10 mg/100 g oxythiamine lowers the cholesterol level only in the membranes of mature erythrocytes. In these conditions the total phospholipids in the red blood cells remains unchanged.

Animals↗

Koro syndrome associated with alcohol-induced systemic disease in a Zulu.

A case report is presented of the genital retraction syndrome, koro, associated with alcoholic hepatitis, avitaminosis and urinary tract infection, occurring in a Zulu male. Treatment of the physical conditions resulted in resolution of the koro symptomatology. The nosological status of koro is discussed and it is proposed that the condition be regarded as a symptom-complex reaction to a variety of psychological or physical stressors rather than as a purely culture-bound syndrome.

Adult↗