Management of intracardiac defects produced by penetrating wounds of heart.
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Biomedical subjects
Publications and source records attributed to G Efron.
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Various arginine HCl supplements (0.5-3%), half added to a basal commercial rodent chow (1.8% arginine) and half to the drinking water, were given to 8- to 9-week-old male CBA/J mice for 6 days. Control animals were fed the basal chow and drank tap water. All mice ate and drank ad libitum. Weight gain and food intake were similar in all groups. All arginine supplements increased significantly: thymic weight (average 22%), thymic lymphocyte content (average 45%), and the in vitro reactivity of thymic lymphocytes judged by the incorporation of 3H-leucine into the TCA-precipitable protein fraction in response to stimulation by phytohemagglutinin and concanavalin A. All these thymic effects resulted from the 0.5% arginine hydrochloride supplement; further increases in arginine supplementation did not increase these effects. These data suggest that supplemental arginine may improve host defence mechanisms and thereby may play an important role in the care of severely injured or ill patients, since it is well established that their defense mechanisms are reduced.
The effect of 6-day dietary arginine supplementation on the weight gain, blood glucose, thymus weight, thymic lymphocyte content, and in vitro thymic lymphocyte immune reactivity was studied in obese (C57BL/6J-OB/)B) and heterozygous lean mice. Control mice were fed a commercial laboratory chow (1.8% arginine content) and drank tap water, while supplemented mice were given 0.5% arginine in the chow and 0.5% arginine solution for drinking. All mice ate and drank ad libitum. Supplemental arginine significantly decreased the weight gain (1.2 g vs. 2.2 g, p less than 0.01) and blood glucose levels (303 mg% vs 236 mg%, p less than 0.02) of the OB/OB mice; no such effects were noted in the lean heterozygotes, all of which had normal blood glucose levels. OB/OB mice had thymus glands which weighed less and contained significantly fewer lymphocytes than their lean littermates. In vitro mitogen-stimulated thymic lymphocyte protein synthetic rates were equal in chow-fed lean and OB/OB mice. In both groups, supplemental arginine significantly increased thymus weight, the number of thymic lymphocytes per gland, and thymic lymphocyte immunoreactivity in vitro. The hormonal secretagogue activity of arginine on the pituitary may explain its beneficial effects on the rate of weight gain, hyperglycemia, and depressed thymic immune function of OB/OB mice.
The optimal levels of arginine (Arg) for growth and immunity were studied in mildly depleted, noninjured rats maintained on intravenous hyperalimentation. Three groups of S-D rats (eight/group, weighing 275-300 g) underwent catheter insertion, 1 day of fasting, and then 7 days of intravenous hyperalimentation consisting of 20% dextrose, adequate minerals and vitamins, and three amino acid regimens: (1) FreAmine II (1.55 g Arg/liter); (2) FreAmine III (4.05 g Arg/liter); (3) experimental (7.5 g Arg/liter). The increase in arginine levels was achieved by lowering the glycine levels. There were no differences among the groups in terms of body weight gain (6.9 vs 8.3 vs 10.0 g) or in cumulative N balance (574 vs 660 vs 642 mg). Liver, spleen, and adrenal weights did not differ. Thymus weight was greater in groups B and C: (A) 345 +/- 27 mg vs (B) 445 +/- 34 mg, p less than 0.05, vs (C) 438 +/- 26 mg, p less than 0.05) as were the total number of lymphocytes/thymus (X 10(-9) (A) 0.93 +/- 0.12 vs (B) 1.37 +/- 0.18, p less than 0.05, vs (C) 1.46 +/- 0.15, p less than 0.05). Mitogen-induced thymocyte blastogenesis (cpm) was greatest in group C in response to phytohemagglutinin: (A) 9.558 +/- 3,799 vs (B) 20,088 +/- 5,890, NS, vs (C) 37,234 +/- 6,209, p less than 0.01 vs A and p less than 0.05 vs B) and Concanavalin A: (A) 71,035 +/- 15,228 vs (B) 111,734 +/- 15,021, NS, vs (C) 172,967 +/- 19,861, p less than 0.01 vs A and p less than 0.05 vs B). In the intravenous hyperalimentation-maintained noninjured rat ARG concentrations more than 1.55 g/liter do not enhance N retention or growth. Larger doses of ARG have strong thymic immunostimulatory effects without any toxicity or growth reduction.
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