Biomedical subjects
H KAUNITZ
Publications and source records attributed to H KAUNITZ.
FOOD RESTRICTION AND LIPID METABOLISM IN PREGNANCY.
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EFFECTS OF MEDIUM- AND LONG-CHAIN SATURATED TRIGLYCERIDES ON BLOOD AND LIVER CHOLESTEROL OF CHICKENS AND RATS.
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LIPID METABOLISM IN TOXEMIA AND NORMAL PREGNANCY.
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Influence of pregnancy and an oxidized lipid diet on the fatty acid composition of blood and tissue.
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Manipulation of salt solution-fresh water drinking regimen and eating behaviour in rats.
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Studies of the generalized Shwartzman reaction produced by diet. IV. Ethyl ester fractions of cod liver oil and dihydroxystearic acid.
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STUDIES OF THE GENERALIZED SHWARTZMAN REACTION INDUCED BY DIET. V. EFFECT OF COD LIVER OIL DIETS OF TISSUE LIPIDS OF FEMALE RATS.
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STUDIES OF THE GENERALIZED SHWARTZMAN REACTION INDUCED BY DIET. VI. EFFECTS OF PREGNANCY ON LIPID COMPOSITION OF SERUM AND TISSUES.
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STUDIES OF THE GENERALIZED SHWARTZMAN REACTION INDUCED BY DIET. VII. LIPID COMPOSITION OF SERUM AND TISSUES IN THE SHWARTZMAN REACTION.
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Studies of the generalized Shwartzman reaction produced by diet. II. Feeding of fractions of oxidized cod liver oil.
By molecular distillation of oxidized cod liver oil a partial isolation of the lipid species responsible for the diet-induced generalized Shwartzman reaction in pregnant rats has been achieved. Molecular distillation produced three fractions and a residue. Qualitative and quantitative differences in each fraction were shown by determining iodine and saponification numbers and by thin layer chromatography on silicic acid. The incidence of the Shwartzman reaction was higher with fraction III than with either of the other two fractions, the residue, or the original oxidized cod liver oil. It is evident that the toxic factor or factors can be concentrated by molecular distillation. The high temperatures used in the molecular distillation destroy peroxides in the lipids. Therefore, in spite of the fact that oxidation of dietary fats is necessary to produce the reaction, peroxides in the dietary lipid are not necessary for the development of the tissue reaction. The residue fraction contains high molecular weight polymers and the incidence of the Shwartzman reaction is low in animals fed this material. It is unlikely that high molecular weight polymers are responsible for the tissue reaction. Animals that do not gain weight at a rate close to that of the normal pregnant rat do not develop the reaction. Conversion of fraction III into its ethyl esters increased the incidence of the Shwartzman reaction in two experiments. Esterification appears to "unmask" a certain amount of the active factor. The specific lipid material or materials responsible for the development of the generalized Shwartzman reaction remains to be found.
Dietary fat and tissue lipids in experimental nephrosis.
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Re-evaluation of some factors in arteriosclerosis.
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[Causality and teleology in biological occurrence].
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Food restriction and salt preference in rats.
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Pharmacologic effects of fractions of oxidized oleate and linoleate.
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Relation of saturated, medium- and long-chain triglycerides to growth, appetite, thirst and weight maintenance requirements.
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Non-energetic powers of nutrition.
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