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Diurnal trends in responses of blood plasma concentrations of glucose, insulin, and C-peptide following high- and low-fat meals and their relation to fat metabolism in healthy middle-aged volunteers.

An experiment was conducted in twelve healthy middle-aged volunteers, six of each sex, with a mean BMI of 27 kg/m2 to detect differences between morning and afternoon in postprandial blood glucose, insulin and C-peptide concentrations. These responses were measured following the consumption of isoenergetic meals that were high or low in fat content, at breakfast and at lunch. Over 4 d each subject received the high-carbohydrate (L, 5.5 g mixed fat/meal) and moderately high-fat (M, 33 g mixed fat/meal) breakfasts and lunches, in three combinations (LL, MM, LM), or they fasted at breakfast time and received a moderately high-fat lunch (NM), in three Latin squares. Each evening a standard meal was given. Plasma glucose, insulin and C-peptide responses were greater following L than M meals and within both MM and LL treatments insulin and C-peptide responses were greater following breakfast than following lunch. The incremental C-peptide response to a fatty lunch following a fast at breakfast time (NM) was similar to that to a fatty breakfast, but the incremental insulin response for the same comparison was marginally lower at lunch (P = 0.06). The relationship of C-peptide and insulin concentrations was assessed. Plasma glucose response to a fatty lunch was increased by a fatty breakfast. The relationships of these metabolic events with fat metabolism are discussed.

Blood Glucose↗

Linoleic acid-rich fats reduce atherosclerosis development beyond its oxidative and inflammatory stress-increasing effect in apolipoprotein E-deficient mice in comparison with saturated fatty acid-rich fats.

The relative benefit of replacing saturated fatty acid with linoleic acids is still being debated because a linoleic acid-enriched diet increases oxidative and inflammatory stresses, although it is associated with a reduction in serum cholesterol levels. The present study was conducted to evaluate the effect of dietary supplementation of linoleic acid-rich (HL) fat, compared with a saturated fatty acid-rich (SF) fat on atherosclerotic lesion areas, serum and liver cholesterol levels, oxidative stress (urinary isoprostanes and serum malondialdehayde) and inflammatory stress (expression of aortic monocyte chemoattractant protein-1; MCP-1) in apo E-deficient mice. Male and female apo E-deficient mice (8 weeks old; seven to eight per group) were fed an AIN-76-based diet containing SF fat (50 g palm oil and 50 g lard/kg) or HL fat (100 g high-linoleic safflower-seed oil/kg) for 9 weeks. Compared with the SF diet, the HL diet lowered atherosclerosis (P<0.05). It reduced serum total cholesterol levels (P<0.05), increased HDL-cholesterol levels (P<0.05) and lowered liver esterified cholesterol levels (P<0.01). The HL diet-fed mice showed increased expression of MCP-1 mRNA (P<0.05), serum levels of malondialdehayde (P<0.05) and urinary excretion of 2,3-dinor-5,6-dihydro-8-iso-prostaglandin F2alpha; P<0.05). These results suggest that having biomarkers in vivo for oxidative stress and inflammatory status of endothelial cells does not necessarily indicate predisposition to an increased lesion area in the aortic root in apo E-deficient mice fed an HL or SF diet.

Animals↗

Palm olein in the fat blend of infant formulas: effect on the intestinal absorption of calcium and fat, and bone mineralization.

OBJECTIVE: To evaluate the published clinical data on the physiologic effects of using palm oil and its low melting fraction, palm olein (PO) as a dominant lipid source in the fat blend in infant formulas. DESIGN: A systematic search of Medline and the Cochrane Database of Systematic Reviews was performed to retrieve studies comparing infants who received infant formulas containing PO with those who received infant formulas without PO or which contained synthetic triacylglyceride as a source of palmitic acid. Outcomes of interest include intestinal fractional absorption of fat, palmitic acid and calcium; and bone mass. The effect size for each dependent variable in each published study was obtained by standardizing based on the difference in means between non-PO and PO group with respect to the standard deviation of the PO group. Trend analysis of the outcome of interest was performed when 3 or more between group comparisons were available. The comparison of effect size across different studies was based on all available data and includes results that showed no significant difference between infants fed PO or non-PO study formulas in the outcomes of interest. RESULTS: Nine publications were identified with non-PO and PO comparison groups. The gestational ages of infants in the published studies were between 28 to 42 weeks and postnatal ages were birth to 192 days at study onset. Within each published study, there was some variability in the effect size between non-PO and PO groups. The standardized results were consistently significantly (p < 0.05) positive in favor of the feeding with non-PO formulas with respect to increased intestinal fractional absorption of fat, palmitic acid and calcium. The latter two variables were significantly different by at least 0.6 SD. Bone mass measured as total body bone mineral content was significantly higher in the non-PO group by at least 0.3 SD. CONCLUSION: The use of PO in infant formulas to match the human milk content of palmitic acid has unintended physiological consequences including diminished intestinal absorption of fat, palmitic acid and calcium and lower bone mass. The avoidance of PO or its substitution with synthetic triacylglyceride in infant formulas can prevent this detrimental effect.

Calcification, Physiologic↗

Relation of smoking, physical activity and living residence to body fat and fat distribution in elderly men in Greece.

It is well-documented that body fat and body fat distribution are related to increased risk for cardiovascular disease, hyperinsulinaemia, and diabetes mellitus. The purpose of this study was to investigate the impact of smoking status, physical activity and place of living on body fat and fat distribution of Greek elderly men. The participants were 144 elderly men of mean age 71.78 +/- 6.39 years, who were free-living individuals, in Thessaloniki (104 subjects) and in the suburbs (40 subjects). According to our results, 23.9% of men who participated in the study were smokers. No association was found between skinfolds, skinfold ratio and physical activity or smoking. It is worth to mention that a triple percentage of younger elders (60-75 years) smoked, compared to the older ones. This finding could possible explain the absence in anthropometric differences between elderly smokers and non-smokers. Intervention programs aiming to yield information about changing the various modifiable risk factors in the elderly are needed.

Adipose Tissue↗

[Empty body weight gain, protein, fat and energy deposit and utilization of metabolizable energy for energy deposit in black and white bulls. 2. Protein, fat and energy deposit].

The protein, fat and energy deposition determined in 6 series of individual feeding experiments with different energy supply on slaughter steps (altogether 458 animals) and whole body analysis were generalized in this publication on nonlinear regression analyses. The protein deposition per kg empty body weight gain is influenced by empty body weight, it takes off with increase of the empty body weight. At low empty body weight (100-200 kg) the protein deposition per kg empty body weight gain is small increased with increasing of empty body weight gain, at high empty body weight it is reduced continuously. The fat deposition per kg empty body weight gain increases progressively with the empty body weight and with the empty body weight gain respectively. The energy deposition per kg empty body weight gain increases with increase of empty body weight and of empty body weight gain. It showed the same development like the fat deposition. The protein, fat and energy deposition per kg live weight gain are calculated and tabulated in dependence on the live weight and the live weight gain.

Animals↗

Effect on blood lipids, coagulation, and fibrinolysis of a fat high in myristic acid and a fat high in palmitic acid.

The hypothesis that myristic acid (C14:0) has a stronger cholesterol-increasing potential than does palmitic acid is based on very few experimental observations. A randomized, strictly controlled dietary study was therefore designed to investigate the effect of a synthetic fat that was high in myristic acid, and palm oil, which is high in palmitic acid, on lipoproteins and hemostatic variables. Twelve men were served two diets (40% of energy as fat) with 41% of fat as myristic (diet M) or palmitic acid (diet P) for 3 wk with 1 mo between the two dietary schedules. Plasma HDL cholesterol was 8% higher with diet M than with diet P: 1.10 +/- 0.06 (mean +/- SEM) vs 1.01 +/- 0.05 mmol/L (P < 0.006). Diet M raised factor VII coagulant (F VIIc) activity to 98% (77-117%) vs 96% (71-109%) (medians and ranges) after diet P (P = 0.02). Total and LDL-cholesterol concentrations did not differ between the diets. In conclusion, the myristic acid test fat was not more cholesterolemic than was palm oil, but it did induce a minor rise in F VIIc activity.

Adult↗

The influence of dietary fat levels and environmental temperature on digestible energy and absorbability of animal fat in catfish diets.

A study was conducted on the effects of three dietary levels of animal fat (5%, 10%, and 15%) and two environmental temperatures (23 and 28 degrees) on the digestible energy (DE) and apparent absorbability (AA) of animal fat in diets of 150 g catfish. Results obtained by the use of the chromic oxide indicator technique demonstrated that at 28 degrees and substitution levels up to 10% of diet, animal fat had a DE value of 7,000 kcal/kg and an AA of 94%. At the 15% level of substitution, both DE and AA were substantially reduced. At each level of substitution, DE and AA values were considerably lower in fish reared at 23 degrees. At supplemental levels up to 10% of diet, the DE and AA values for catfish at 23 degrees were 6,130 kcal/kg and 70%, respectively. Results from this study reconfirmed previous growth data which indicated that animal fat is an excellent dietary energy source for catfish which are reared at optimum temperatures.

Absorption↗

Body weight and depot fat changes as influenced by exercise and dietary fat sources in adult BHE rats.

Adult male BHE rats were fed diets containing 15% of either corn oil (CO) or medium chain triglycerides (MCT) as the dietary source of fat. Further, rats were allowed to remain sedentary or were forced to exercise by swimming for 1 hour daily, for 3 weeks, followed by swimming for 2 hours daily for 3 weeks. The exercise for 3 weeks caused significant reductions in average body weight gains. After 6 weeks of exercise the lipid content of the adipose cells was reduced by about 50%. Fat cell numbers were not changed by either fat source or exercise, but fat cell size was significantly reduced after swimming daily for 6 weeks.

Adipose Tissue↗

In vivo lipogenesis of genetically lean and fat chickens: effects of nutritional state and dietary fat.

In vivo lipogenesis was estimated in liver and carcass of male chickens selected for leanness (LL) or fatness (FL) by use of tritiated water. Effects of nutritional state and of a high fat diet (90 g/kg) were examined. Different classes of liver lipids were also measured. Fed birds exhibited enhanced hepatic lipogenesis, which was more pronounced in FL than in LL birds (+73%, mean of three experiments). Extrahepatic lipogenesis was poorly influenced by nutritional state in LL birds and not modified in FL ones. The high fat diet induced a fall in liver triacylglycerol and reduced de novo lipogenesis more drastically in liver than in carcass of both lines. Reduction of carcass lipogenesis was less pronounced in FL than in LL. Starvation led to a fall in liver triacylglycerols, nonesterified fatty acids and free cholesterol. The fat diet had similar but less pronounced effects. In most circumstances FL chickens exhibited a higher liver triacylglycerol content than LL ones. Comparison of fed and refed birds 100 min after the beginning of refeeding showed that de novo lipogenesis did not reach a plateau and differences between lines were still not significant.

Animal Feed↗

Rats fed high fat diets with increased calcium levels have fecal bile acid concentrations similar to those of rats fed a low fat diet.

The mechanism by which calcium may protect against colon carcinogenesis was studied in rats fed three levels of calcium (0.5, 1.0 and 1.5 g/100 g diet) and a high butter diet (20 g/100 g). Results were compared with values obtained using a low butter diet (5 g/100 g) supplemented with 0.5 g Ca/100 g diet. Concentration and relative proportions of individual fecal bile acids were determined by gas chromatography, and in vivo colonic cell proliferation was assessed using [3H]thymidine. Total fecal output and total fecal lipids increased as dietary calcium increased. When calcium supplementation remained at 0.5%, raising the level of fat in the diet increased the fecal concentrations of deoxycholate, omega-muricholate and total bile acids. However, when the level of fat supplementation remained constant at 20 g/100 g diet, but dietary calcium was 1.0 or 1.5 g/100 g, the concentration of these bile acids returned to the level found in feces of rats fed the low fat diet. Despite the significant decrease in the concentrations of certain fecal bile acids with increasing calcium supplementation, these differences were not reflected in substantive changes in epithelial cytokinetics. These data show that in rats fed high butter diets, 1.0% calcium is sufficient to lower total bile acid concentration and the concentrations of certain individual bile acids to those found in feces of rats fed low fat diets. Despite the significant effects of calcium on bile acid concentrations, minimal effects were observed on indices of colonic cell proliferation.

Animals↗

The effects of a high fat diet on leptin mRNA, serum leptin and the response to leptin are not altered in a rat strain susceptible to high fat diet-induced obesity.

Osborne-Mendel (OM) and S5B/Pl rats differ in their sensitivity to develop obesity when fed a high fat (HF) diet; OM rats become obese, whereas S5B/Pl rats remain thin. We have investigated the possibilities that either an impaired leptin response or resistance to leptin action underlies the sensitivity to this form of obesity in OM rats. In Experiment 1, OM and S5B/Pl rats fed a nonpurified diet were killed at d 0 or were fed either a HF (56% fat energy) or a low fat (LF, 10% fat energy) diet for 2 or 7 d. The HF diet increased serum leptin significantly by d 2 to levels that were similar in both rat strains. At 7 d, leptin levels were lower than at d 2 but remained higher than levels in the d 0 control groups. The leptin mRNA:18S RNA ratio in epididymal adipose tissue increased to higher levels in HF-fed OM rats than in S5B/Pl rats fed that diet. However, although the LF diet had no effect in S5B/Pl rats, it increased leptin mRNA levels in epididymal adipose tissue of OM rats compared with the controls fed the nonpurified diet. In Experiment 2, OM and S5B/Pl rats were fed HF or LF diets for 5 wk. At that time, their feeding response to a range of leptin doses (0, 1, 5 or 10 microgram) given intracerebroventricularly was tested after overnight food deprivation. There was a similar dose-dependent reduction in energy intake in response to leptin in both OM and S5B/Pl rats. These responses were independent of the diet. The data suggest that the susceptibility of OM rats to HF diet-induced obesity is not related to either a loss of central sensitivity to leptin or a failure to enhance leptin production acutely, although the failure to maintain chronically increased levels of serum leptin could contribute to the obesity.

Adipose Tissue↗

A mixture of the Salacia reticulata (Kotala himbutu) aqueous extract and cyclodextrin reduces the accumulation of visceral fat mass in mice and rats with high-fat diet-induced obesity.

The effects of a mixture of the Salacia reticulata (Kotala himbutu) aqueous extract and cyclodextrin (SRCD) on the development of obesity were examined. We studied the effects of SRCD on the elevation of plasma triacylglycerol levels induced by oral administration of a high-fat (HF) liquid diet to male Sprague-Dawley rats. The plasma triacylglycerol concentration was significantly lower in the SRCD-treated rats than in the control rats 4 h after HF diet administration (P<0.05). In a study of female C57BL/6 mice that consumed a solid HF diet containing 0, 0.2 or 0.5% SRCD ad libitum for 8 wk, the increases in body weight and visceral fat mass were less in those fed the diet supplemented with 0.5% SRCD than in those fed the HF diet (P<0.05). In male Sprague-Dawley rats fed a solid HF diet with or without 0.2% SRCD and restricted in energy intake to that of rats fed a normal diet for 35 d, the increases in body weight and visceral fat mass were smaller in the SRCD-supplemented rats (P<0.05). In addition, the energy efficiency and the plasma leptin and adiponectin concentrations were lower in the mice and rats that were administered SRCD than in those fed the HF diet alone (P<0.05). The inhibitory effects of SRCD on HF diet-induced obesity may be attributable to the inhibition of carbohydrate and lipid absorption from the small intestine. Therefore, SRCD may suppress the accumulation of visceral fat and the glucose intolerance that accompany this type of obesity.

Adipose Tissue↗

Fat needs of term infants and fat content of milk formulae.

Term infants have precise dietary fat requirements for their metabolic, energy and structural needs. The fat content of commercial milk formulae differs from maternal milk in that it contains no long-chain polyunsaturated derivatives or cholesterol. Artificially fed children thus have less of these molecules available for their biological needs, and hence lower levels of long-chain polyunsaturated derivatives in circulating and membrane lipids than breast-fed children. The functional effects of this difference have not been investigated thoroughly in term infants. Dietary lack of essential fatty acids and their derivatives is evident also in weaned children during the second half of their first year of life. Qualitative changes in the fat content of commercial milk formulae could help to correct some widely encountered dietary imbalances, using the pattern of fats provided in breast milk as the ideal.

Animals↗

Adaptation to high-fat diet accelerates emptying of fat but not carbohydrate test meals in humans.

Previous work has shown that the gastric emptying rate in animals and humans can adapt due to previous dietary intake. The present study investigated whether adaptation in gastric emptying rate due to consumption of a high-fat diet (HFD) is nutrient specific in humans. Gastric emptying of high-fat and high-carbohydrate test meals was measured (using gamma scintigraphy) before and after consumption of an HFD for 14 days in eight free-living male volunteers. Visual analog ratings of appetite were recorded throughout each test. There was no effect of HFD on any parameters of gastric emptying rate (lag phase, half-emptying time, and linear emptying rate) measured for carbohydrate test meals. HFD led to an acceleration of the linear emptying rate of the high-fat test meal (0.36 vs. 0.47%/min; P < 0.05). All meals reduced appetite ratings, but there were no differences between tests. These results support our previous findings of accelerated gastric emptying of high-fat test meals following an HFD and show that these changes appear to be nutrient specific, confirming recent studies in rats.

Adaptation, Physiological↗

Mapping quantitative trait loci affecting fatness and breast muscle weight in meat-type chicken lines divergently selected on abdominal fatness.

Quantitative trait loci (QTL) for abdominal fatness and breast muscle weight were investigated in a three-generation design performed by inter-crossing two experimental meat-type chicken lines that were divergently selected on abdominal fatness. A total of 585 F2 male offspring from 5 F1 sires and 38 F1 dams were recorded at 8 weeks of age for live body, abdominal fat and breast muscle weights. One hundred-twenty nine microsatellite markers, evenly located throughout the genome and heterozygous for most of the F1 sires, were used for genotyping the F2 birds. In each sire family, those offspring exhibiting the most extreme values for each trait were genotyped. Multipoint QTL analyses using maximum likelihood methods were performed for abdominal fat and breast muscle weights, which were corrected for the effects of 8-week body weight, dam and hatching group. Isolated markers were assessed by analyses of variance. Two significant QTL were identified on chromosomes 1 and 5 with effects of about one within-family residual standard deviation. One breast muscle QTL was identified on GGA1 with an effect of 2.0 within-family residual standard deviation.

Abdominal Fat↗

Effect of caffeine on the body fat and lipid metabolism of rats fed on a high-fat diet.

The intake of caffeine (CF) at 0.025, 0.05 or 0.1% for 21 days progressively reduced the body fat mass and body fat percentage in Sprague-Dawley (SD) rats fed on a high-fat diet with increasing administration level. Moreover, CF increased the serum concentrations of catecholamines and free fatty acids in SD rats orally administered with CF (5 mg/kg). These results suggest that the intake of CF reduced body fat by lipolysis via catecholamines. CF has potential as a functional food ingredient with an anti-obesity action.

Adipose Tissue↗

Low-fat versus medium-fat enteral diets. Effects on bile salt excretion in jejunostomy patients.

Nine jejunostomy patients were given three low-residue enteral diets in random order through a nasogastric tube. Total bile salt excretion in the jejunostomy contents was 13-17% lower (p less than 0.05) on low-fat diets than on a medium-fat diet. Cholate excretion was 14-20% lower, but chenodeoxycholate excretion showed no difference on the low-fat diets. The study supports the idea of a lower excretion of bile salts to the colon as an explanation of reduced diarrhoea when a low-fat diet is prescribed to patients after ileal resection.

Adult↗

Influence of canola fat on yield, fat percentage, fatty acid profile, and nitrogen fractions in Holstein milk.

Effects of canola fat on feed intake, yield, and composition of milk of early lactation dairy cows were investigated. Concentrate mixtures containing 0, 2.5, 5.0, 7.3, and 9.6% added fat as Jet-Sploded whole canola seed (0, 4.5, 9.0, 13.2, and 17.4% of DM, respectively) were fed to 15 cows in diets containing 60% concentrate and 40% forage (DM basis). Diets contained 16.5% CP, 30% alfalfa silage, and 10% whole crop oat silage (DM basis). There was a trend for a cubic effect on DMI, a quadratic effect on milk yield, and a small, but significant, linear decrease in milk protein percentage with increasing level of canola seed; the decrease was primarily in the casein fraction. Although milk fat percentage was not altered, addition of Jet-Sploded canola seed caused a substantial reduction in some short- and medium-chain fatty acids and a concomitant increase of as much as 65% in the concentration of C18:1. Results suggest that canola fat from Jet-Sploded whole canola seed can be included up to 5% of dietary DM without negative effects on DMI and with a net positive effect on milk yield.

Animals↗