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An abnormal plasma distribution of protein S occurs in functional protein S deficiency.

Protein S is a natural anticoagulant present in the plasma that serves as a cofactor for activated protein C. Patients deficient in protein S are subject to recurrent venous thrombotic disease. Protein S deficiency differs from other plasma protein deficiencies in that deficient patients often have normal or only mildly reduced levels of protein S in their plasma as detected by conventional immunologic methods but have markedly reduced functional protein S levels. This apparent discrepancy is due to the presence of two forms of protein S in plasma. The protein S is present free and in a complex with C4b-binding protein. The free form is functionally active, whereas the bound form is not. Examination by crossed immunoelectrophoresis of 31 functionally protein S-deficient individuals from seven families reveals that 29 of the 31 have all or most of their protein S complexed to C4b-binding protein with little or no free protein and have correspondingly low levels of protein S functional activity (type I deficiency). Two related protein S-deficient individuals show a different type of distribution with little or no protein S, either bound or free (type II deficiency). The detection and classification of protein S-deficient individuals requires the application of both a functional assay and an assessment of protein S distribution between bound and free forms.

Carrier Proteins↗

Production and metabolism of thyroid hormones in protein-deficient and food-restricted pregnant rats.

Thyroxine (T4) and triiodothyronine (T3) concentrations in the plasma and their metabolic clearance and production rates were studied in pregnant protein-deficient and food-restricted rats on the 20th day of gestation. Total T3 levels in the plasma were significantly reduced in malnourished dams, with those of food-restricted dams being consistently lower than those of protein-deficient dams. There were no changes in plasma total T4 concentrations as a result of dietary treatment. Unbound T4 and T3 in the plasma were significantly reduced in both protein-deficient and food-restricted dams. Maternal protein deficiency significantly lowered fetal T4, whereras food restriction caused an elevation. Metabolic clearance rates of T3 and T4 and production rate of T4 were unaffected by diet, while the production rate of T3 was significantly increased in protein deficient dams. Thyroxine to triiodothyronine ratios in malnourished dams were elevated suggesting depressed peripheral conversion of T4 to T3. Alternative factors which may lead to these effects are discussed.

Animals↗

Effects of protein deficiency and natural intestinal infection with Giardia lamblia on jejunal intraepithelial lymphocytes in rats of different ages.

1. The interaction between experimental protein deprivation and natural intestinal infection by Giardia lamblia was studied in terms of its effects on the intraepithelial lymphocyte (IEL) population and morphology of the jejunal mucosa of rats of different ages. 2. Young, adult and old male Wistar rats received a protein-deficient diet (2% casein) or a control diet (20% casein) for 42 days. Mucosal height and the number of lymphocytes located among 500 consecutive epithelial cells (EC) along the villi or crossing the basement membrane were determined in PAS-stained jejunal fragments. 3. The number of IEL increased progressively with animal age, from 14 to 25 per 100 epithelial cells, with significant differences between age ranges. However, the number of IEL did not differ between control and protein-deficient rats in any of the age groups. The proportion of lymphocytes crossing the basement membrane was approximately two-fold greater in young (2.8/100 EC) and adult (5.8/100 EC) protein-deficient animals than in their respective controls (1.6 and 2.8/100 EC). The intensity of parasite colonization was moderate, from 3 to 5/100 EC and did not differ between groups. The pattern of morphologic changes of jejunal mucosa in protozoal infection did not differ between control and protein-deficient animals in any of the three age groups. 4. We conclude that intestinal infection with Giardia lamblia probably stimulated the local immune response, masking the reduction of the IEL population induced by protein deficiency. The increase in lymphocyte numbers with age may be related to prolonged antigenic stimulation promoted by infection.

Age Factors↗

The effect of protein deficiency on growth and response of primary and metastatic hepatoma.

Although protein-energy malnutrition is common in the cancer patient, the efficacy of aggressive nutritional therapy is unclear. This study evaluates the effects of protein deficiency on tumor growth, response, and chemotherapy complications in primary and metastatic rat hepatoma. Seventy-two ACI rats (200-250 g) with implanted Morris hepatoma were divided into four groups (N = 18 for each group): 1, regular diet; 2, regular diet plus cyclophosphamide (CPM) (100 mg/kg/ip); 3, protein-free diet; and 4, protein-free diet + CPM. Forty additional rats in similar groups (5-8, ten in each group) underwent intravenous injection of 6 X 10(3) tumor cells to produce pulmonary metastases. Animals were assessed for survival, tumor size, serum albumin, number of pulmonary metastases, and hemorrhagic cystitis at 2 weeks. Survival was 50% in groups 4 and 8, and 100% in the others. Serum albumin was significantly lower in rats on protein free diets (2.59 +/- 0.37 vs 3.35 +/- 0.40 g%, P less than 0.01). Tumor volume was significantly reduced by CPM (26.0 +/- 4.2 cm3 vs 1.2 +/- 0.4 cm3, P less than 0.01). Protein-free diets resulted in lower total body weight, and reduced tumor volume without, but not with CPM (14 +/- 1.6 cm3 P less than 0.05, 1.1 +/- 0.3 cm3, P less than 0.05 vs above controls). CPM reduced the number of pulmonary metastases in regular diet groups (307.2 +/- 108.3 vs 36 +/- 11, P less than 0.01), while protein free diets did not significantly affect metastases, without or with CPM (251.7 +/- 71.4 and 22.3 +/- 12.4, P greater than 0.05 vs controls). Hemorrhagic cystitis was much more common in protein free groups compared to rats on regular diets (55 vs 11%, P less than 0.01). These data indicate that protein deficiency did not affect response to chemotherapy in a primary or metastatic rat hepatoma model. However, protein deficiency results in a significantly increased rate of mortality, weight loss, and hemorrhagic cystitis which may lead to delay or cessation of cancer therapy.

Animals↗

Pathological changes associated with dietary protein deficiency in guinea pigs.

Feeding a protein deficient diet containing corn and beans as the protein source for 100 days produced marked malnutrition in guinea pigs. The organs most affected were the liver, pancreas, and testis. Some of the clinical and histological manifestations included growth retardation, atrophy of the liver, decreased number and size of islets of Langerhans, and sterility in male animals. The animals showed clinical signs of protein-calorie malnutrition. This could be the consequence of malabsorption, poor nutrient utilization, and reduced food intake which led to inadequate dietary protein and, secondarily, to inadequate levels of other essential nutrients, especially calories. The low protein level and low biological value of plant proteins used in this study were especially effective in producing the severe pathological changes associated with chronic protein-calorie malnutrition. Some of the changes were marked and incompatible with normal function.

Animals↗

Morphometric study of the small intestinal mucosa in young, adult, and old rats submitted to protein deficiency and rehabilitation.

Linear and stereological morphometric methods were applied to the jejunal and ileal mucosa of young, adult, and old male Wistar rats submitted to protein deficiency and rehabilitation. The animals were fed ad libitum a 2% casein diet during 42 days and then received a 20% casein diet for 30 days. Food intake, body weights, and plasma protein concentrations were recorded. In the young protein deficient rats values of mucosal height, surface area, and volume of the lamina propria were significantly lower than those of their age controls in both jejunum and ileum. In adults the differences were less marked and in the old rats all parameters were found to be unaltered by the protein deficient diet. The surface-to-volume ratio showed no significant differences between control and protein deficient in all three age groups, meaning that villus pattern did not change with protein deficiency. On rehabilitation, a striking difference between jejunum and ileum was observed in the young rats; all parameters returned to control levels in the jejunum, while they remained lower than those of their controls in the ileum.

Aging↗

Cathepsin D and calcium-activated protease activities in skeletal muscle of normal and protein-deficient pregnant rats.

The role which two proteolytic enzymes (cathepsin D, CD and calcium-activated protease, CAP) might play in the early anabolic and subsequent catabolic phases of skeletal muscle protein metabolism was investigated in rats fed normal and protein-deficient (50 g/kg) diets. Enzyme measurements were performed on crude homogenate and subcellular fractions of mixed thigh muscle. In normal pregnancy there was no evidence that the changes in muscle protein mass which occurred were assisted by changes in the activities of CD or CAP. CAP activity was, however, reduced throughout protein-deficient pregnancy. Electron micrographs of gastrocnemius muscle samples taken on day 21 of pregnancy suggested increased lysosome numbers in the protein-deficient animals. However, the specific activity of CD in the muscle microsomal-mitochondrial fraction from these animals showed decreased specific activity. Thus, neither CD nor CAP play any major role in releasing amino acids from maternal skeletal muscle for placental and fetal use during protein deficiency. Changes in CAP activity in early pregnancy may indirectly help to protect the fetus from protein deficiency by allowing maternal protein mass to accumulate early in pregnancy for catabolism and use at a later stage.

Animals↗

Influence of dietary protein deficiency on lead-copper interaction in rats.

The influence of dietary protein deficiency on the effects of exposure to lead or its combination with copper was investigated in rats. The administration of lead (100 ppm in drinking water) inhibited the activity of blood delta-aminolevulinic acid dehydratase; decreased hemoglobin, brain dopamine, and 5-hydroxytryptamine; and increased urinary excretion of delta-aminolevulinic acid, blood zinc protoporphyrin, and tissue accumulation of lead more markedly in animals fed a protein-deficient diet (10% casein) than in those fed a normal diet (21% casein). The simultaneous supplementation of copper (100 ppm in diet) reduced some of the lead-induced alterations and body uptake of lead more efficiently in animals fed a normal diet than in those fed a protein-deficient diet, which shows that the beneficial effects of copper in lead toxicity are adversely affected by low dietary protein.

Aminolevulinic Acid↗

Effects of protein deficiency and diet consistency on the parotid gland and parotid saliva of rats.

Protein deficiency results in an increased susceptibility to dental caries, suggesting that oral host-defense properties are compromised. An important component of oral host defense is salivary gland function, which is affected by both protein deficiency and diet consistency. This study describes the effects on rat parotid gland growth and secretory function induced by feeding rats diets of normal (20%) or moderately low (7%) protein content, provided in either a powdered or solid form. In addition, since protein deficiency may result in a secondary zinc deficiency which, in turn, may affect salivary gland function, the effects of these diets on liver zinc concentration were also measured. From 22 to 47 days of age, rats (18/group) were fed the following diets: normal protein, powdered; normal protein, solid; low protein, powdered; and low protein, solid. With each diet consistency, liver zinc was higher for the normal protein group. Within each protein level, liver zinc was higher for the solid diet. This latter observation suggests that food mastication and the resultant stimulation of salivary gland function may also play a role in zinc metabolism. With the normal-protein diet, parotid gland weight was higher for the solid diet; with the low-protein diet, parotid gland weight was similar for both consistencies and did not differ from that of the group fed the "normal protein, powdered" diet. For both consistencies, parotid saliva protein concentration was greater for malnourished rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Comparisons of Heligmosomoides polygyrus primary infection in protein-deficient and well-nourished mice.

Primary infections of Heligmosomoides polygyrus were studied in adult male CD1 mice fed on isoenergetic synthetic diets containing either 2% or 20% protein (casein). A slight reduction in food intake was observed during infection, and this was unaffected by diet. Protein deficiency was also found to have no effect upon worm establishment. Evidence was found, though, to suggest that the worms have a more severe effect upon the host in protein-deficient mice. Hypoalbuminaemia was observed due to diet and also infection, and this was synergistic. There was an increase in non-albumin plasma protein during infection which was not effected by diet. The circulating urea concentration was reduced during protein deficiency, as was the level of essential amino acids, but non-essential amino acid levels were raised. An increase in the levels of urea and essential amino acids was observed at day 4 of infection in mice on the 20% diet, but not on the 2% diet. Splenic atrophy occurred during infection, but the splanomegaly that occurred early during infection was proportionally greater in protein-deficient mice. These results are discussed in terms of the pathophysiology of both protein deficiency and infection, and comparisons are made with human malnutrition syndromes.

Amino Acids↗

Effects of protein deficiency on lipid peroxidation in the small intestine and liver of rats.

This study investigated the influence of protein restriction on lipid peroxide content (thiobarbituric acid-reactive substances) and the intracellular antioxidant defence system in the small intestine and the liver. Weanling male Sprague-Dawley rats were divided into two groups: a low-protein group fed ad lib. a diet containing 6% casein for 4 wk, and a control group fed a diet containing 22% casein but restricted to the same dietary intake as that of the low-protein group. Compared with pair-fed controls, the protein-deficient rats exhibited a decrease in glutathione content in the small intestine and the liver. Thiobarbituric acid-reactive substances were increased in the intestine only. Data on the enzymatic antioxidant defence system in the protein-deficient animals showed an increase in catalase activity in the intestine but a decrease of this activity in the liver. The activity of selenium-dependent glutathione peroxidase was decreased in the liver and remained unchanged in the intestine. Superoxide dismutase was not modified by protein deficiency in either tissue. In control rats, enzyme activities were 6-43 times higher in the liver than in the intestine. The deleterious effects of protein deficiency appeared more marked in the intestine.

Animals↗

Protein deficiency: effects on lung mechanics and the accumulation of collagen and elastin in rat lung.

Groups of weanling (approximately 50 g) or young adult (approximately 300 g) rats were fed ad libitum casein-based diets varying in protein content from 4 to 16%. A group was also fed the 16% protein diet in an amount on a daily basis restricted to that consumed by the protein-deficient group (4% protein). The rats were fed the diets for either 4 weeks (weanling) or 6 weeks (adults). Protein-deficient or "food-restricted" rats (whether weanling or adults) were smaller and had smaller lungs than rats fed ad libitum the diets containing 16% protein. The lung elastin content was more resistant to dietary manipulation than was the lung collagen content. Lung collagen was significantly decreased in both weanling and adult rats fed the 4% protein diet. In weanling rats, pressure-volume relationships derived from saline-filled lungs (analyzed by exponential curve-fitting methods) suggested that lungs from food-restricted rats may be less compliant than lungs from rats fed the control diet ad libitum. When expressed in absolute terms, lungs from protein-deficient rats also appeared to be less compliant than normal rats; however, on a relative basis (percentage of volume at a given recoil pressure or the expression of volume on a weight basis) differences in compliance were less apparent. It is proposed that in weanling rats the differences in lung composition and compliance are the result of retarded lung growth and perhaps development.

Age Factors↗

Changes in serum and lipoprotein fatty acids of growing rats fed protein-deficient diets with low or adequate linolenic acid concentrations.

The effects of a protein-deficient diet associated with sunflower oil [adequate in 18:2(n-6), poor in 18:3(n-3)] or soybean oil [adequate in both 18:2(n-6) and 18:3(n-3)] on lipid serum and lipoprotein compositions were studied in growing rats. Four groups of rats were fed different diets: SFC (20% casein + 5% sunflower oil); SFd (2% casein + 5% sunflower oil); SC (20% casein + 5% soybean oil); Sd (2% casein + 5% soybean oil). After 28 d, both protein-deficient groups exhibited low concentrations of protein, phospholipid, triacylglycerol and total cholesterol in serum and VLDL. Compared with rats fed 20% casein diets, those fed low protein diets had lower 18:2(n-6) and 20:4(n-6) in phospholipids of serum, VLDL and HDL2-3, and the 20:4(n-6)/18:2(n-6) ratio was twofold higher in triacylglycerols of serum and VLDL. In the SFd-fed group, 22:5(n-6) was higher than in the SFC-fed group for both triacylglycerols and phospholipids in overall lipoprotein fractions studied. In addition, the 20:3(n-9)/20:4(n-6) ratio was 0.1 in HDL2-3 phospholipids of the SFd-fed group. Sunflower oil-fed rats compared with soybean oil-fed rats had greater monounsaturated fatty acids and lower total (n-3) fatty acids in both triacylglycerols and phospholipids of serum, VLDL and HDL2-3, as well as lower total (n-6) fatty acids in serum and VLDL triacylglycerols. Apolipoproteins (apo) of VLDL were drastically depressed in rats fed protein-deficient diets, whereas apo-AI of HDL2-3 showed a particular resistance. Likewise, sunflower oil-fed rats had enhanced apo-B48 of VLDL and apo-C, apo-AII and apo-AIV of HDL2-3. The present findings show that some effects of protein malnutrition were enhanced by alpha-linolenic acid deficiency, in particular reduced (n-6) and (n-3) fatty acid bioavailability.

Animals↗

Responses to protein deficiency of plasma and tissue insulin-like growth factor-I levels and proteoglycan synthesis rates in rat skeletal muscle and bone.

The relative biological importance of plasma levels of insulin-like growth factors (IGFs) is uncertain since the IGFs may act through endocrine mechanisms involving circulating IGFs secreted by the liver, or by autocrine/paracrine mechanisms with IGF production in or close to their target cells. We report here studies in rats designed to examine this problem with an investigation of the changes in plasma and tissue concentrations of IGF-I in relation to the inhibition of bone and muscle growth and proteoglycan synthesis, a putative IGF-I-sensitive process, by protein deficiency. Over a 3-week period in young well-fed growing rats, there were marked increases in plasma IGF-I, whereas in the protein-deficient animals in which growth was inhibited concentrations fell markedly. In bone, concentrations of IGF-I were initially 20% of plasma, did not increase with age and were minimally influenced by protein deficiency. In skeletal muscle, concentrations of IGF-I were initially 3% of plasma, did not increase with age, but did fall with protein deficiency. In bone, the inhibition of proteoglycan synthesis by the protein deficiency was not correlated with changes in tissue IGF-I concentrations and was poorly correlated with changes in plasma hormone concentrations, although in the latter case an exponential relationship could be fitted to the data from the initial control and subsequent protein-deficient animals. In muscle, the changes in proteoglycan synthesis were significantly linearly correlated with changes in tissue IGF-I compared with an exponential relationship with plasma concentrations from the initial control and subsequent protein-deficient animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Evaluation of a protein deficient diet in rats through blood oxidative stress biomarkers.

Protein malnutrition leads to functional impairment in several organs, which is not fully restored with nutritional recovery. Little is known about the role of oxidative stress in the genesis of these alterations. This study was designed to assess the sensitivity of blood oxidative stress biomarkers to a dietary protein restriction. Male Wistar rats were divided into two groups, according to the diet fed from weaning (21 days) to 60 day old: normal protein (17% protein) and low protein (6% protein). Serum protein, albumin, free fatty acid and liver glycogen and lipids were evaluated to assess the nutritional status. Blood glutathione reductase (GR) and catalase (CAT) activities, plasma total sulfhydryl groups concentration (TSG) as well as plasma thiobarbituric acid reactive substances (TBARs) and reactive carbonyl derivatives (RCD) were measured as biomarkers of the antioxidant system and oxidative damage, respectively. The glucose metabolism in soleus muscle was also evaluated as an index of stress severity imposed to muscular mass by protein malnutrition. No difference was observed in muscle glucose metabolism or plasma RCD concentration between both groups. However, our results showed that the low protein group had higher plasma TBARs (62%) concentration and lower TSG (44%) concentration than control group, indicating increased reactive oxygen species production in low protein group. The enhancement of erythrocyte GR (29%) and CAT (28%) activities in this group also suggest an adaptation to the stress generated by the protein deficiency. Taken together, the results presented here show that the biomarkers used were able to reflect the oxidative stress level induced by this specific protein deficient diet.

Adaptation, Physiological↗

Nippostronglylus brasiliensis infection in the rat: effect of iron and protein deficiency and dexamethasone on the efficacy of benzimidazole anthelmintics.

Malnutrition, anaemia, and gut parasites are commonly interrelated. Using the Nippostrongylus brasiliensis-rat model, the effect of iron and protein deficiency on the efficacy of benzimidazole anthelmintics was studied. It was demonstrated that the anthelmintics mebendazole and fenbendazole were significantly less effective in eradicating parasites when animals were deficient in iron and protein. This decreased efficacy of anthelmintics in iron and protein deficiency could not be overcome by intraperitoneal administration of the drug. Since nutritional deficiencies may act via impairment of the immune response, anthelmintic efficacy was determined in adequately nourished rats treated with the immunosuppressive drug dexamethasone. A similar decrease in efficacy of mebendazole was shown when these animals were treated with dexamethasone. Thus it is possible that lowered anthelmintic efficacy in iron and protein deficient animals is mediated by immune deficiency. These findings may be relevant to anthelmintic programmes in malnourished communities.

Animals↗

Dietary carbohydrate and fat do not alter the thyroid response to protein deficiency in chicks.

Consumption of low-protein diets consistently causes elevations in circulating levels of triiodothyronine (T3) in several species of animals. In chicks this is often accompanied by lower levels of circulating thyroxine (T4). Since low-protein diets are usually formulated by replacing the detected protein with carbohydrate, the question arises as to whether the changes in thyroid hormones are a result of the lower protein or higher amounts of carbohydrate in such diets. Male broiler chicks, 13-26 days of age, were fed experimental diets that contained either an adequate level of protein (24%) or levels that were slightly (17%) or moderately (10%) deficient in protein. The deleted protein was replaced, isocalorically, with either glucose, soybean oil, or hydrogenated coconut fat. Though the level of protein and source of energy differed among diets, all diets contained identical amounts of all nutrients and energy, and were of similar weight densities. Circulating levels of thyroid hormones were measured from blood samples taken at the end of the study. Plasma T3 was elevated to a similar degree in all protein-deficient animals compared with control. Plasma T4 decreased in all protein-deficient chicks and was lowest with 10% dietary protein. Changes in circulating levels of thyroid hormones occurred independently of the source of dietary energy. Therefore, it is concluded that alterations in circulating levels of thyroid hormones that occur in chicks fed low-protein diets are a specific effect of the protein deficit and are not a related to the amounts of carbohydrate or fat present in the diet.

Animals↗