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Biomedical subjects

L Hummel

Publications and source records attributed to L Hummel.

At least 37 records · Page 2Linked to original sources

Characterization of the hormone-sensitive Ca2+ uptake activity of the hepatic endoplasmic reticulum.

The characteristics and kinetics of calcium uptake activity were studied in isolated hepatic microsomes. The sustained accumulation of calcium was ATP- and oxalate-dependent. Glucagon increased microsomal Ca2+ uptake upon either in vivo injection, or in vitro perfusion of the hormone in the liver. In contrast, the effect of insulin depended on the route of administration. Calcium accumulation by subsequently isolated hepatic microsomes increased when insulin was injected intraperitoneally whereas it decreased when the hormone was perfused directly into the liver. These effects of glucagon and insulin were dose dependent. When insulin was added to the perfusate prior to the addition of glucagon, insulin blocked the glucagon-stimulated increase in microsomal Ca2+ uptake. Cyclic AMP mimicked the effect of glucagon on microsomal Ca2+ accumulation when the cyclic nucleotide was perfused into the liver. The effects of glucagon and insulin on the kinetics of hepatic microsomal Ca2+ uptake were investigated. In microsomes isolated from perfused rat livers treated with glucagon the V of the uptake was significantly increased over the control values (12.2 vs. 8.6 nmol Ca2+ per min per mg protein, P less than 0.02). In contrast, the addition of insulin to the perfusate significantly decreased the V of Ca2+ uptake by subsequently isolated microsomes (6.8 vs. 8.3 nmol Ca2+ per min per mg protein, P less than 0.05). However, neither hormone had an effect on the apparent Km for Ca2+ (4.1 +/- 0.5 microM) of the reaction. The effect of these hormones on the activity of Ca2+-stimulated ATPase was also studied. No significant changes in either V or Km for Ca2+ of the enzymatic reaction were detected.

Adenosine Triphosphatases↗

Studies on the disappearance of palmitate-1-14C from the plasma of pregnant rats.

Intravenously injected radioactive fatty acids disappear from the circulation at an ever-decreasing rate; about 1% of the injected label remains in plasma for hours. This slow elimination of label can be explained by an extensive recycling of label or by a slows turnover of a portion of the injected label. The results show that a recycling of label can not be responsible for the slow elimination of label, because 1. the specific activities of the tissue fatty acids were much lower than the specific activity of the plasma free fatty acids, and 2. reinjection of the remaining label of 1% into control animals showed the same slow elimination of label. An interpretation of the experiments could be that some fatty acids (about 1%) have a dissociation rate from albumin that is much lower than others, and thus they might be responsible for the late portion of the disappearance curve.

Adipose Tissue↗

Oxidation and synthesis of fatty acids in human and rat placental and fetal tissues.

The rat fetus (day 21 of pregnancy) covers its fatty acid (FA) demands at equal amounts both by maternal-fetal FA transfer and fetal FA synthesis. At the end of the first trimester the human fetal FA synthesis is too small to cover the fetal FA requirements. Therefore, the transfer of FA from the mother to the fetus seems to be the predominant source of fetal FA. The FA oxidation is greater than the FA synthesis in human and rat placenta as well as in the human fetus at the end of the first trimester, whereas the rat fetus (day 21 of pregnancy) oxidizes and synthesizes FA at equal amounts.

Animals↗

The Münchausen syndrome as a psychiatric condition.

In this presentation of two cases it is suggested that many Münchausen syndrome patients present with psychiatric symptoms. This syndrome, however, should be differentiated from other clinical psychiatric conditions.

Adult↗

Quantitative evaluation of the fetal fatty acid oxidation in the rat.

The fetal fatty acid oxidation has been measured by [14C]-palmitate in vitro oxidation experiments. The fetal fatty acid oxidation was determined to be 0.12 +/- 0.03 mumoles fatty acids/min/litter. The conclusion can be drawn that approximately equal amounts of fetal fatty acids are synthesized, oxidized and transferred from the mother to the fetus.

Animals↗

Studies on the fatty acid synthesis in maternal and fetal rats.

The fatty acid synthesis as measured by in vitro incorporation of 1-[14C]-acetate and 3H2O into maternal and fetal tissues of the rat has been quantitatively determined. The results showed that because of the endogenous dilution the incorporation of [14C]-acetate does not provide a quantitative measure of fatty acid synthesis. The incorporation of tritium per g of tissue into the fatty acid fraction of maternal and fetal liver (day 21 of pregnancy) was found to be 260 and 130 nmoles per g per min, respectively. The incorporation was lesser in liver of female non-pregnant rats (31 nmoles per g per min) and placenta (4.0 nmoles per g per min). The calculated rates of synthesis of fatty acids were used to support the following views: At the end of gestation about 25% of all fatty acids synthesized within the fetus arise from fetal liver. From day 15 to 21 of pregnancy the fetal fatty acid synthesis supplies about half of the amount of fatty acids which are accumulated due to growth.

Acetates↗

Quantitative evaluation of the fetal fatty acid synthesis in the rat.

The fetal fatty acid synthesis has been evaluated by 3H2O in vivo incorporation experiments. The results indicate that the fetus synthesizes 0,16 mumoles fatty acids/min/litter. From the results the conclusion can be drawn that the fetus gets fatty acids from the mother and from its own fetal fatty acid synthesis at equal amounts.

Animals↗

Studies on the paraplacental free fatty acid transport in rats.

Using the tracer method and a mathematical model the paraplacental transport of free fatty acids (FFA) (via uterine fluid--yolk sac--fetus) has been investigated in 21 days pregnant rats. The results show that only 0.3 nmoles FFA per min pass into the fetus via this paraplacental route. This accounts for less than 1% of FFA transported from the maternal plasma across the placenta into the fetus (0.14 mumoles FFA per min). From these results we would like to draw the conclusion that the paraplacental transport of FFA to the rat fetus is of minor importance from the quantitative point of view.

Animals↗

Studies on the hypertriglyceridemia in the pregnant rat.

The in vivo tracer method and in vitro incorporation experiments were used to obtain information on the mechanism responsible for the hypertriglyceridemia found in 21 days pregnant rats. The results indicate that the uptake of plasma free fatty acids (FFA) by liver triglycerides of pregnant rats (2.0 mumoles FFA/min/300 g) did not differ from that of non-pregnant rats (2,1 mumoles FFA/min/300 g). The rate of liver fatty acid synthesis in pregnant rats (0,4 mumoles fatty acids/min/liver) is higher than that of non-pregnant rats (0,05 mumoles fatty acids/min/liver). In non-pregnant female and pregnant rats the turnover rates of plasma chylomicron and VLDL triglycerides were almost identical (about 2.8 mumoles triglyceride fatty acids/min/300 g, and about 2.3 mumoles triglyceride fatty acids/min/300 g, respectively). These various observations, when taken together, strongly suggest that increased hepatic triglyceride production cannot be the mechanism responsible for the hypertriglyceridemia in pregnant rats.

Animals↗

Synthesis, turnover and compartment analysis of the free fatty acids in the placenta of rats.

The in vivo tracer method and in vitro acetate incorporation experiments were used to investigate the metabolism of placental free fatty acids. Analysis of data revealed that free fatty acids pass into the fetus from maternal plasma through a small placental compartment, which accounts for only 5 percent of all of the placental free fatty acids. The turnover time of this compartment is 0.57 min. The rate of placental fatty acid synthesis evaluated by both methods is very small and amounts to 0.003 mumols fatty acids/min/all placentas of one litter.

Acetyl-CoA Carboxylase↗

Maternal plasma triglycerides as a source of fetal fatty acids.

The transfer of plasma triglyceride fatty acids from mother to fetus was studied in rats. Following i.v. injection of labelled chylomicron and very low density lipoprotein (VLDL) triglycerides into the mother, the time courses of the plasma triglycerides, free fatty acids, and fetal radioactivity were determined. The data were analysed using a mathematical model. From the results the following conclusions were drawn: To cover the need of fetal fatty acids, the placenta utilizes only VLDL triglycerides but not chylomicron triglycerides. Comparison of the amount of VLDL triglyceride fatty acids (0.04 micromoles/min/litter) and of maternal plasma free fatty acids (0.08 micronmoles/min/litter) transferred into the fetus indicates that the maternal plasma triglycerides are a source of fetal fatty acids, that cannot be neglected.

Chylomicrons↗

Quantitative evaluation of the maternal-fetal transfer of free fatty acids in the rat.

On the 21st day of pregnancy the amount of fatty acids transferred from the mother to the fetuses was determined using the tracer technique and a mathematical model. The present study showed that 0.19 mu-mol fatty acids/min pass into the fetuses from the maternal circulation. The amount of fatty acids required for the growth and development of the rat fetuses amounts to 0.25 mu-mol fatty acids/min. From these data one can conclude that the maternal circulation is an even more important source of fetal fatty acids than the fatty acid synthesis in fetal tissue.

Animals↗

Transfer of maternal plasma free fatty acids into the rat fetus.

The amount of maternal plasma free fatty acids passing to the fetus has been determined to be 0.09 mumoles fatty acids per min per each litter. Taking account of the increase of the total fetal fatty acid pool due to the fetal growth (0.2 mumoles fatty acids per min for each litter) we conclude that the maternal circulation is the source of about half of fetal fatty acids on day 21 of pregnancy.

Animals↗

Studies on the metabolism of free fatty acids of the plasma in non-pregnant female and pregnant rats.

In non-pregnant female and pregnant rats the concentration (0.41 mumoles/ml and 0.49 mumoles/ml), the turnover time (0.6 min and 0.8 min), and the irreversible disposal rate (8 mumoles/min and 7 mumoles/min) of plasma free fatty acids (FFA) were determined. The results indicate that there are no major differences in the metabolism of the plasma FFA between non-pregnant female and pregnant rats.

Animals↗

Studies on the synthesis of liver phospholipids and the turnover of plasma phospholipids in non pregnant female rats using radioactive palmitate.

Using the tracer method and a compartmental model we found that 0.9 mumoles plasma free fatty acids per min are esterified to liver phospholipids. The turnover rate of plasma phospholipid fatty acids was determined to be 0.5 mumoles phospholipid fatty acids per min. The turnover time of the plasma phospholipid fatty acids was calculated to be 0.9 hours. The results indicate that only 69 per cent of plasma free fatty acids esterified to liver phospholipids are secreted by the liver into the plasma.

Animals↗