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Biomedical subjects

A Bach

Publications and source records attributed to A Bach.

At least 181 records · Page 10Linked to original sources

Serum lipids in 8- to 35-day-old Zucker rats.

The serum concentrations of triacylglycerols, cholesterol, and phospholipids were measured in 8- to 35-day-old Zucker rats. The animals were killed at 35 days of age. and their phenotype is determined on the basis of the weight of their inguinal subcutaneous fat pads. The serum lipid concentrations in all the rats increased from the 8th day of life, reaching a maximum at day 17 to 21. Weaning produced a large decrease in the concentrations of all three types of lipids. In the obese rats, the serum concentration of triacylglycerols was significantly raised from day 35 of life, that of cholesterol from day 21, and that of phospholipids from as early as day 8. At this age this latter concentration nevertheless cannot be used as a factor for detecting the obese phenotype.

Adipose Tissue↗

Improvement of amputation level by lower extremity revascularization.

Improvement of amputation level, with a resulting increase in the ambulatory rehabilitation potential, was achieved in ten patients requiring extirpation of the lower extremity because of gangrene. Arterial reconstruction, percutaneous transluminal dilation or chemical lumbar sympathectomy, or a combination of these modalities, was used to achieve primary healing at an amputation site at least one level below that initially suggested by clinical and noninvasive diagnostic means. Patients requiring amputation of the lower extremity who are good candidates for ambulatory rehabilitation should undergo an aggressive diagnostic and therapeutic search for treatable proximal arterial lesions, thereby preserving limb length and increasing the likelihood of independent prosthetic use.

Amputation, Surgical↗

Effects of medium- and long-chain triglyceride diets in the genetically obese Zucker rat.

To test whether the property of medium-chain fatty acids (which have 6-12 carbon atoms) being incorporated only in small amounts into the various tissues of a living organism could be exploited to treat obesity, genetically obese Zucker rats and their lean littermates were fed a diet containing 20% medium-chain triacylglycerols (MCT) or long-chain triacylglycerols (LCT) for 10 weeks. MCT, as compared with LCT, had the following effects: 1) MCT did not diminish weight gain in either the nonobese or the obese rats; 2) they increased ketogenesis more in the former than in the latter; 3) they increased the concentration of triacylglycerols in the liver of the obese rats but not of the lean ones; 4) they decreased the concentration of cholesterol in the liver of the lean but not of the obese rats, and 5) they did not particularly affect the concentration of proteins, glucose and insulin in the blood. We therefore conclude that the influence of the genotype is much more important in the establishment of the biochemical characteristics of rats than is the nature of the fatty acids ingested. Replacing LCT in the diet with MCT did not correct any of the major metabolic disorders in obese rats and therefore cannot unaided constitute a solution to the problem of genetic obesity.

Animals↗

Spontaneous activity and food requirements for maintenance and for growth in the genetically obese Zucker rat.

This study was undertaken in order to elucidate whether, as compared with those of their lean controls, the low maintenance requirements of genetically obese Zucker rats may be explained by a lower spontaneous activity. In 6 obese and 6 lean rats, daily body weight, food intake and spontaneous activity were recorded during 6 weeks, using a seismographic recorder. The obese rats weighed more (average + 46%) and ate more (average + 42%) than the lean rats, while there was no difference between their daily activity levels. The relationship between food intake (FI) and weight gain (delta W), both expressed per 100 g body weight, was: FI (kcal/day) = 3.3 delta W (g/day) + 20.4 for lean rats and 4.9 delta W (g/day) + 17.4 for obese rats. Thus, the food requirements for maintenance obtained for delta W = O was less than for obese than for lean rats, while for a given gain in body weight, it was higher for obese rats. This did not seem to be because of a lower daily activity level in the obese than in the lean rats.

Animals↗

Comparison of the pregnancy-associated murine protein-2 and human pregnancy-specific beta 1-glycoprotein.

Immunological cross-reaction between human pregnancy-specific beta 1-glycoprotein (SP-1) and pregnancy-associated murine protein-2 (alpha 2-PAMP, PAMP-2) was demonstrated by line immunoelectrophoresis using antibodies against the proteins raised in hens. The pattern of change of PAMP-2 and SP-1 values in serum during pregnancy was very similar. The murine placental growth-rate corresponded to PAMP-2 levels in maternal serum during pregnancy, indicating placental origin. We suggest that the mouse and its PAMP-2 can be used to study human SP-1.

Animals↗

Biological parameters of the blood in the genetically obese Zucker rat.

A study of the various biological parameters of the blood in the genetically obese Zucker rat, the nonobese Zucker rat, and the Wistar rat has revealed great similarity between the two latter types of animals. On the other hand, in genetically obese Zucker rats as compared with the nonobese ones, (1) the blood mass per unit of weight was lower; (2) the level of nitrogenous degradation compounds was the same; (3) the lipase activity was lower; (4) the levels of substances for which liver plays a crucial role--all lipid and protein fractions, glucose, and the enzyme GPT--were higher; (5) the levels of Ca, Zn, Fe, Cu and Pi were high; (6) the blood and bone-marrow cells were unremarkable.

Animals↗

Oxaloacetate deficiency in MCT-induced ketogenesis.

This study was an attempt to discover whether a deficiency in hepatic oxaloacetate can explain the acceleration of ketogenesis observed after the ingestion of medium-chain triglycerides (MCT, constituent fatty acids from C8 to C12). The method of investigation used consisted in supplying oxaloacetate (by intraperitoneal injection of oxaloacetate, aspartate, or L-tryptophan) to rats that had ingested MCT. The indirectly given oxaloacetate caused a decrease in ketone body levels in the liver. The stimulation of ketogenesis induced by an exogenous supply of MCT is therefore at least partly due to a deficiency of oxaloacetate. The results show that this can be explained both by a leakage of this metabolite into the pathway of gluconeogenesis and by its reduction into malate. Since the acetyl-CoA derived from oxidized medium-chain fatty acids cannot enter into the Krebs cycle, it is diverted to the production of ketone bodies.

Acetyl Coenzyme A↗

[Not Available].

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Demography↗

Ketogenic response to medium-chain triglyceride load in the rat.

We studied ketonemia induced in rats by a single oral load of medium-chain triglycerides (MCT) (C8:0 50.5%, C10:0 48.0%, C12:0 1.0%). Medium-chain fatty acids, rather than being incorporated into the lipids synthesized by the liver, are oxidized there, with high production of ketone bodies. Severe and long-lasting hyperketonemia developed rapidly. With increased MCT loads, ketonemia also increased, although not linearly. The level of the hyperketonemia seemed equal in the two sexes. Ingestion of MCT by fasting rats caused an additional rise in ketonemia. Long-chain triglycerides were not ketogenic, since their constituent fatty acids are incorporated into lipids and are thus less subject to oxidation. Lipids induce less severe ketonemia in genetically obese rats than in normal-weight rats.

Animals↗

Effect of the fatty acid composition of ingested fats on rat liver intermediary metabolism.

The influence of a single load of medium chain triglycerides (MCT) or long chain triglycerides (LCT) on different intermediary metabolites of the rat liver was studied. Resultes showed that acetyl-CoA increased more after MCT than after LCT. MCT are more ketogenic than LCT. Mitochondrial and cytoplasmic redox state was greatly reduced after MCT. It is particularly interesting to note that MCT produced an increase in malate and citrate levels, whereas LCT had only a minor influence on these substances.

Acetoacetates↗

[The triglycerides with medium chains].

Medium chain triglycerides (MCT) (fatty acids with 6-12 C) are absorbed more quickly than long chain triglycerides. Medium chain fatty acids are not incorporated into hepatic triglycerides, but oxidized. If MCT are given alone, they stimulate ketogenesis. Nevertheless MCT are of great interest in the diet of numerous affections of the digestive tract. When long chain triglycerides are not tolerated, MCT can replace them with efficiency.

Animals↗

Influence of a long or medium chain triglyceride diet on intermediary hepatic metabolism of the rat.

Two groups of rats were given, ad libitum, diets containing 20% fat for 4-5 weeks. The fat consisted of either long chain (LCT) or medium chain triglycerides (MCT). A third group of rats was given a low fat control diet. No difference in weight increase could be found between LCT and MCT rats. Total lipids and cholesterol concentrations in the plasma were the same whatever the diet. The high fat diets caused an increase in hepatic acetyl-CoA, citrate, malate and ketone body concentrations. Concentration of ketone bodies in the blood, however, decreased. No ketonuria occurred in any case. Hepatic levels of adenosine 5'-triphosphate, adenosine 5'-monophosphate and inoganic phosphate seemed higher in MCT rats than in LCT rats. The levels of these substrates were increased in both groups compared with the control group. LCT rats had hepatic (NS) and blood (HS) lactate and pyruvate concentrations below the corresponding figures for control rats. Hepatic and blood lactate concentrations in MCT rats were at least equal to or slightly higher (NS) than those of control rats. Hepatic glucose and glycogen and blood glucose concentrations were higher in rats given the high fat diet.

Acetyl Coenzyme A↗

Octanoate metabolism in the isolated perfused rat liver. II. Comparison with a long chain fatty acid.

Liver of fed rats was perfused in vitro with 10 mmoles/litre lactic acid. Supplementary addition of octanoic acid (1.2 mmoles/litre) increased production of ketone bodies. By doubling the quantity of medium chain fatty acid, production of ketone bodies was doubled. Octanoic acid is as ketogenic aspalmitoleic acid if the two fatty acids are compared molecule by molecule. However, C8 : O is more ketogenic that C16: 1 when the comparison is effected on the basis of an identical number of acetyl groups. Octanoic acid increases glucose production by the liver. It was not possible to show the same phenomenon in the presence of palmitoleic acid. During oxidation of fatty acids the beta-hydroxybutyrate/acetoacetate and lactate/pyruvate ratios of the perfusion medium were increased.

Acetoacetates↗

Intermediary hepatic metabolism of rat after oral medium chain triglyceride load.

Hepatic ketogenesis was studied in rats given medium chain triglycerides (MCT). Acetyl-CoA accumulated in the liver, indicating a very rapid beta-oxidation of medium chain fatty acids. Citrate level increases. Ketogenesis is strongly enhanced. Cytoplasm and particularly mitochondria are more reduced after MCT. This may explain the very high increase in hepatic malate. Under our experimental conditions, there appears to be a significant linear relationship between the hepatic acetyl-Coa level and those of total ketone bodies and malade respectively.

Acetoacetates↗