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Biomedical subjects

B Tandler

Publications and source records attributed to B Tandler.

At least 127 records · Page 7Linked to original sources

Fusion of the envelope of mucous droplets with the luminal plasma membrane in acinar cells of the cat submandibular gland.

The release of mucus from acinar cells of the cat submandibular gland was examined by electron microscopy. The limiting membrane of mucous droplets fuses with the luminal plasma membrane to form a five-layered contact. This is converted to a three-layered membrane (unit membrane) by avulsion of the plasmalemma. Attenuation and rupture of this membranous barrier permits the contents of the mucous droplets to flow into the lumen.

Animals↗

Relationship between hepatic mitochondrial oxidative metabolism and morphology during riboflavin deficiency and recovery in mice.

Changes in hepatic mitochondrial oxidative metabolism were examined during the development of severe riboflavin deficiency in mice, and during recovery from this deficiency. There was a marked reduction in oxidative rates for all substrates tested, with the decline being most pronounced with palmitoyl-1-carnitine. These effects were not enhanced by addition of galactoflavin to the riboflavin-deficient diet. Treatment of the deficient mice with riboflavin restored hepatic mitochondrial oxidation to normal within 24 hours in those mice fed a simple riboflavin-deficient diet, but required 72 hours in galactoflavin-supplemented mice. These metabolic changes in hepatic mitochondria appear to be temporally independent of the striking morphological changes occurring in these organelles during ariboflavinosis and recovery.

Animals↗

The failure of supplemental dietary copper to prevent cuprizone-induced alterations in mouse hepatocytes.

Weaning mice were fed a powdered complete diet containing either 0.5% cuprizone, 0.5% cuprizone + 0.01% copper sulfate, or 0.01% copper sulfate. With cuprizone as the sole additive, hepatic mitochondria became greatly enlarged. When the diet contained cuprizone + copper sulfate, giant mitochondria were still present, and, in addition, numerous lysosome-like structures became evident. When only copper sulfate was added to the normal diet, the mitochondria were of normal size, but the hepatocytes contained abundant lysosomes. Dietary supplementation with cuprizone or with cuprizone + copper sulfate resulted in considerably depressed (20-50%) rates of mitochondrial oxidation. Supplementation solely with copper sulfate produced virtually no changes in oxidative activity. It may be concluded that the subcellular effects of cuprizone are not based on its ability to produce copper deficiency by chelation of copper, but on other properties of this drug.

Animal Nutritional Physiological Phenomena↗

Riboflavin and mouse hepatic cell structure and function. Mitochondrial oxidative metabolism in severe deficiency states.

Weanling mice were fed a riboflavin-deficient diet or the same diet with added galactoflavin. Both diets produced changes in hepatic mitochondrial morphology, the most striking of which was the development of giant mitochondria. The livers from these animals were fractionated, and the nuclear and mitochondrial fractions were examined by electron microscopy. The nuclear fraction contained giant mitochondria; the mitochondrial fraction contained the remaining normal to moderately enlarged mitochondria. Oxidative studies were carried out on the mitochondrial fractions. It was found that both experimental diets resulted in a marked reduction in fatty acid oxidation by the mitochondria. In addition, the mitochondria of mice with advanced riboflavin deficiency (induced simply by a riboflavin-free diet) showed a severely decreased state 3 (ADP-stimulated) respiration and depressed respiratory control ratios, but normal ADP/O ratios. In contrast, mitochondrial performance (aside from fatty acid oxidation) in galactoflavin-supplemented, riboflavin-deficient mice was related to the gross appearance, i.e., color, of the liver from which these organelles were derived. In mice fed this diet, the livers were either red or yellow. Mitochondria from yellow livers showed normal oxidative phosphorylation. Mitochondria from red livers showed a serious reduction in state 3 oxidation. This study demonstrates that in the mouse, riboflavin deficiency, however produced, not only results in altered mitochondrial morphology but also results in significantly impaired mitochondrial function.

Adenosine Diphosphate↗