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Dietary fat, genes, and human health.

These studies show that a macronutrient like dietary fat plays an important role in gene expression. In the cases presented here, dietary fat regulates gene expression leading to changes in carbohydrate and lipid metabolism. The interesting outcome of these studies is the finding that the molecular targets for dietary fat action did not converge with the principal targets for hormonal regulation of gene transcription, like hormone receptors. Instead, PUFA-RF targets elements that play key ancillary roles in gene transcription. This is important because it shows how PUFA can interfere with hormone regulation of a specific gene without having generalized effect on overall hormonal control, i.e. PUFA effects are promoter-specific. How PUFA-RF interferes with gene transcription will require the isolation and characterization of PUFA-RF along with the tissue-specific factors targeted by PUFA-RF. A different story emerges when fatty acids activate PPAR. Based on the studies presented here and elsewhere, long chain-highly unsaturated fatty acids (like 20:5,n-3 and 22:6, n-3) or high levels of fat activate PPAR. PPAR directly activates genes like AOX, but also inhibits transcription of genes like S14, FAS, apolipoprotein CIII, transferrin. For S14, the mechanism of inhibition involves sequestration of RXR, a critical factor for T3 receptor binding to DNA. Thus, PPAR can have generalized effects on T3 action or on other nuclear receptors, like vit. D (VDR) and retinoic acid (RAR) receptors, that require RXR for action. For apolipoprotein CIII and transferrin, PPAR/RXR heterodimers compete for HNF-4 binding sites (DR + 1). In addition to HNF-4, COUP-TF, ARP-1 and RXR all bind the DR + 1 type motif. These factors are important for tissue-specific regulation of gene transcription. PPAR can potentially interfere with the transcription of multiple genes through disruption of nuclear receptor signaling leading to changes in phenotype. Clearly, more studies are required to assess the role PPAR plays in the fatty acid regulation of gene transcription and its contribution to chronic disease. Finally, it is clear that dietary fat has the potential to affect gene expression through multiple pathways. Depending on the gene examined, PUFA might augment or abrogate gene transcription which leads to specific phenotypic changes altering metabolism, differentiation or cell growth. These effects can be beneficial to the organism, such as the n-3 PUFA-mediated suppression of serum triglycerides or detrimental, like the saturated and n-6 PUFA-mediated promotion of insulin resistance. How such effects contribute to the onset or progression of specific neoplasia is unclear. However, studies in metabolism might provide important clues for this connection.

Animals↗

Coenzyme Q content depends upon oxidative stress and dietary fat unsaturation.

The presence of Coenzyme Q (CoQ) in food, its role in cellular bioenergetics and antioxidant protection and the key role played by dietary fatty acids on membrane structure support the interest for a wide research concerning the relationship between dietary fats, CoQ content and biochemical behaviour. Several models of peroxidative stress 'in vivo' have been extensively investigated in our laboratory, with particular regards to the influence of dietary fat upon mitochondrial CoQ levels. First studies showed that the unsaturation degree of dietary fat leads to different CoQ9 and CoQ10 mitochondrial contents. The highest levels were found using polyunsaturated fat. A significant CoQ9 decrease after adriamycin peroxidative induction was found when dietary fat was polyunsaturated; on the contrary, a light increase was found in the case of monounsaturated fat. Another example of oxidative stress is that produced by food frying. The results obtained were in some cases similar to those of the previous experimental design: in fact monounsaturated dietary fats increased CoQ mitochondrial contents, whereas the polyunsaturated ones decreased CoQ levels. Finally, the combined effect of physical exercise and dietary fats on tissue and plasma CoQ levels has been studied. CoQ levels did not change during aerobic performances when dietary fat was monounsaturated whereas light increases were detected in the case of polyunsaturated fats. On the contrary, in anaerobic conditions, CoQ levels clearly increased with monounsaturated fats and no alterations were found in the case of polyunsaturated ones.

Aerobiosis↗

Critical appraisal of the evidence that dietary fat intake is related to breast cancer risk in humans.

A critical appraisal was undertaken of the evidence that dietary fat intake is related to breast cancer risk by application of the criteria for causal inference proposed by Bradford Hill to the published evidence that relates dietary fat to breast cancer risk in humans. These criteria concern the consistency, strength, and temporal relationships of possible causative associations and also require the existence of a biologic gradient and examine the extent to which the proposed causal association is in keeping with other biological and epidemiological knowledge. The published reports were inconsistent in their ability to detect a significant association between dietary fat and breast cancer risk, correlation studies that examined the effect of fat over large ranges being largely positive, and studies with stronger designs (case-control, cohort) that examined fat intake over much smaller ranges being largely negative. It was postulated that methodologic limitations associated with the design of the latter studies, in particular the small ranges of fat intake examined and inaccuracies in the measurement of fat intake, may have obscured any relationships between dietary fat and breast cancer that did exist. The remaining criteria, with the exception of temporality and epidemiological coherence, were not satisfied. Insufficient evidence existed to conclude a causal association existed between dietary fat and breast cancer risk in humans. A need for further study was identified in several areas, and it was concluded that intervention studies that examined the effect of fat over large ranges were most likely to yield the information required to determine whether dietary fat intake was causally related to breast cancer risk.

Animals↗

Influence of dietary fats on butyrylcholinesterase and esterase-1 (ES-1) activity in plasma of rats.

We studied the effects of dietary fats, especially fish oil, on the activities of esterase-1 (ES-1) and butyrylcholinesterase in the plasma of rats. The identification of nutritional determinants of these enzymes could provide clues as to their physiological function. Fish oil, when compared with corn oil, consistently caused increased activities of both enzymes. Plasma ES-1 activity, but not butyrylcholinesterase activity, was increased after isocaloric replacement of carbohydrates by coconut fat. Dietary medium-chain triglycerides, when compared with corn oil, produced decreased and increased activities of butyrylcholinesterase and ES-1, respectively. Various plant fats, such as corn oil, linseed oil, coconut fat, palm oil, palm kernel oil, soybean oil and rapeseed oil, did not differentially influence butyrylcholinesterase activities. Plasma triglyceride concentrations were lowered by fish oil and increased by coconut fat and palm kernel oil. For individual rats in 5 out of 6 experiments, weak, negative correlation coefficients of the order of 0.3 were found between the changes in plasma butyrylcholinesterase activities and in plasma triglyceride concentrations.

Animals↗

Regulation of hepatic LDL metabolism in the guinea pig by dietary fat and cholesterol.

Studies were carried out to determine the independent and interactive effects of dietary fat and cholesterol on the regulation of hepatic apoB/E receptor expression and its relationship to hepatic cholesterol concentrations and low density lipoprotein (LDL) particle characteristics. Guinea pigs were fed 15% (w/w) fat diets (lard, olive oil, or corn oil) with cholesterol levels corresponding to absorbed intakes of 6 (basal), 50, 100, or 200% endogenous cholesterol synthesis. Guinea pigs maintained stable plasma cholesterol levels until cholesterol intake equaled or exceeded endogenous synthesis (P < 0.001). Fat type independently affected plasma total and LDL cholesterol levels such that lard > corn oil, with olive oil being intermediate (P < 0.05). Hepatic membrane apoB/E receptor number (Bmax) decreased as dietary cholesterol increased (P < 0.001) without an independent effect of dietary fat saturation. Bmax values were significantly correlated with plasma LDL cholesterol levels (r = -0.632), and with hepatic free (r = 0.527) and esterified cholesterol (r = -0.512) concentrations, which were both increased with dietary cholesterol (P < 0.001). Significant interactions between dietary fat type and cholesterol mediated the extent of hepatic free and esterified cholesterol accumulation. Dietary fat and cholesterol interactions also contributed to changes in LDL particle composition and peak density. The results of these studies do not support the thesis that dietary cholesterol-mediated suppression of apoB/E receptor expression is ameliorated by intake of polyunsaturated fatty acids. Dietary fat type and cholesterol amount interactively affect hepatic cholesterol concentrations and LDL composition and size, which in part determine plasma LDL cholesterol levels.

Animals↗

Dietary fat source influences neuronal mitochondrial monoamine oxidase activity and macronutrient selection in rats.

We previously reported that qualitative changes in dietary fat influence certain monoaminergic mediated behaviours such as pain sensitivity and thermoregulation in a cold environment after an amphetamine challenge. The purpose of this study was to further explore the behavioural consequences of alterations in dietary fat intake by examining another behaviour known to be mediated by the monoamines--food intake regulation--and to begin investigating a biochemical link between dietary fat composition and behaviour. Rats were stabilized to 20% (w/w) soybean oil (SBO) or lard diets for 10 days and then allowed to select for protein (PRO) and carbohydrate (CHO) intake. While total food intake was unchanged, rats fed the SBO diet selected lower PRO (3.1 +/- 0.6 vs. 4.9 +/- 0.6 g/day, SBO vs. lard, respectively) and higher CHO (9.6 +/- 0.7 vs. 7.8 +/- 1.2) intakes than those consuming the lard based diet. Comparable differences were seen in a second trial. Current evidence suggests that the regulation of PRO and CHO intake is under serotonergic control. Therefore to determine whether dietary fat is mediating its effect on macronutrient selection via alterations in serotonin (5HT) metabolism, brain stem concentrations of 5HT and its metabolite 5-hydroxyindole acetic acid (5HIAA) and whole brain (minus brain stem) mitochondrial monoamine oxidase (MAO) activity were measured in a separate set of animals fed the SBO or lard diets for 28 days. Vmax of MAO was decreased in rats fed the SBO diets (20.2 +/- 7.4 vs. 27.9 +/- 8.9 nmol/mg prot/20') compared to those fed the lard diets. Km was unaltered by dietary fat fed. The change in activity of MAO was insufficient to alter steady-state levels of 5HT or 5HIAA. We propose that changes in neuronal functioning, induced by altered dietary fat, contributed to the differences seen in PRO and CHO selection.

Animals↗

The efficacy of dietary fat vs. total energy restriction for weight loss.

OBJECTIVE: Dietary fat restriction is currently being promoted as a weight loss strategy. However, previous investigations suggest that fat restriction alone may not be more beneficial than total energy restriction for the treatment of obesity. The purpose of this project was to assess whether an energy-restricted or fat-restricted diet was more effective at promoting weight loss, improving eating behaviors, and reducing barriers to dietary adherence. RESEARCH METHODS AND PROCEDURES: Eighty individuals (15 men and 65 women) were randomized into the two treatment conditions. Subjects were 120% to 140% of ideal body weight and 25 years to 45 years old. Treatment consisted of 24 weeks of dietary fat (22 g/day to 26 g/day) or energy restriction (4,186 kJ/day to 5,023 kJ/day), including behavior modification and exercise. Body weight change, dietary intake, eating behaviors, and barriers to adherence were measured at baseline and after treatment. RESULTS: Results show that subjects in the energy-restricted condition lost over twice as much weight as those in the fat-restricted group (11.5 kg vs. 5.2 kg). Additionally, subjects in the low-energy condition had greater improvements in eating behavior scores, enhanced feelings of wellness, a greater distaste for dietary fat, and no more pronounced feelings of deprivation than did those in the fat-restricted condition. DISCUSSION: An energy-restricted diet produces greater short-term weight loss than dietary fat restriction without many of the negative consequences commonly attributed to reducing energy intake.

Behavior Therapy↗

Effects of dietary fat feedback on behavioral and psychological variables.

This paper reports on the immediate and delayed reactions to dietary fat consumption feedback. Subjects in our study received (1) personalized dietary fat feedback and (2) information about how to alter their fat consumption. Fat consumption was measured using a brief fat assessment instrument. Subjects were categorized into three risk groups: at or below, above, and significantly above the recommended level. Emotional, cognitive, and behavioral reactions were measured immediately after receiving feedback and at 1 month postfeedback. Subjects who received high fat feedback showed greater negative emotional distress in response to the feedback and stated that they knew less about high-fat foods than subjects receiving lower feedback. By the 1-month follow-up, subjects in the highest feedback condition were least likely to report intentions to lower their dietary fat. Interventions designed to alter dietary fat consumption should take into account the emotional and cognitive consequences of risk factor feedback.

Adolescent↗

Dietary fats and the management of hypertension.

The role of dietary fat in human hypertension has been of interest recently. Examples of two intervention studies are presented to demonstrate this effect. One study was conducted at Beltsville, MD, and the other at North Karelia, Finland. Healthy people served as subjects for the experiments and the foods consumed by the subjects were typical for the regions. During the intervention periods the percentage of energy from dietary fats was lowered while the polyunsaturated fatty acids were increased. Total energy intake and salt intake were kept relatively constant. Systolic and diastolic blood pressure were decreased during the lowered fat, higher polyunsaturated fatty acids intake period and this effect was reversed during the switchback period. The data give strong support to the hypothesis that dietary fat is associated with blood pressure.

Blood Pressure↗

Children's dietary fat intake and fat practices vary by meal and day.

OBJECTIVE: This research examined the relationship between the dietary fat intake and fat practices of children by meal, day of week, and weekend day vs weekday. DESIGN: Cross-sectional study. SUBJECTS/SETTING: Fourth- to sixth-grade students (n = 520; 25% African-American, 32% white, 33% Mexican-American, 10% Asian/other, 58% girls) attending 8 parochial schools in Houston, Texas. MAIN MEASURES: Students completed daily food records in the classroom for 7 days. Food records were hand-coded for high-fat (eg, frying foods, adding fat) and low-fat (eg, removing meat fat, drinking low-fat milk) practices, and percent energy from fat. STATISTICAL ANALYSES: Descriptive statistics, Spearman correlation coefficients, and analysis of variance on fat intake and fat practices by demographic variables and weekend vs weekday. RESULTS: Students consumed 36% of total energy from fat, reported 0.59 low-fat practices, and 6.3 high-fat practices per day. Only 13% consumed 30% or less energy from fat. Significant correlations were found between percent energy from fat and high-fat practices and low-fat practices (r = 0.27, P < .001 and r = -0.15, P < .01, respectively). APPLICATIONS/CONCLUSIONS: Intervention programs targeting children's dietary fat behaviors should include teaching skills that enable children to ask for low-fat foods like fruit, vegetables, low-fat snacks and dairy foods. These foods should be made available in the home to encourage children to practice low-fat dietary behaviors, which may differ depending on meal, day, and meal source.

Child↗

Dietary fat and body fat: a multivariate study of 205 adult females.

This study examined the association between diet composition, particularly dietary fat intake, and body-fat percentage in 205 adult females. Subjects completed a written questionnaire regarding lifestyle factors, such as exercise participation and smoking, demographic data, and the diet section of the National Cancer Institute's Health Habits and History Questionnaire by Block. Skinfold-thickness measures were used to ascertain the body-fat percentage of each subject. Results showed that intake of dietary fat was related significantly with adiposity, without (F = 13.65, R2 = 0.063, P = 0.0003) and with (F = 8.74, R2 = 0.033, P = 0.0035) control for multiple potential confounding factors: age, total energy intake, total exercise time per week, years of regular physical activity, consumption of other macronutrients, and smoking. Unlike dietary fat intake, protein consumption and carbohydrate intake were not significant individual predictors of body-fat percentage when the potential confounding variables were controlled. The findings suggest that dietary fat intake may play a role in obesity beyond dietary energy content.

Adipose Tissue↗

Dietary fat, coronary heart disease, and cancer: a historical review.

OBJECTIVES: This report describes the historical development of medical theories and research concerning the relationship between dietary fat intake and breast and colorectal cancer and coronary heart disease (CHD). METHOD: The historical and medical literature on this topic was analyzed with special reference to the Woman's Health Initiative (WHI) studies. RESULTS: After 1900, changes in clothing fashions and life insurance mortality studies created strong preferences for slimness and emphasized reduced dietary fat intake as the preferred method of weight control. After midcentury, ecological correlations of countries found that national average dietary fat intake was related to national breast cancer and CHD rates. These relationships were not found in longitudinal studies of the same countries or in studies of dietary fat intake of individuals, including the WHI study. Dietary fat intake was found to affect colorectal cancer in some studies of individuals, although not the WHI. The WHI, like other intervention studies of dietary fat reduction, used unrepresentative samples and costly lifestyle change techniques that are not economically feasible in the community. CONCLUSION: The WHI concurred with many other studies in finding that dietary fat intake is not a significant risk factor for CHD or breast cancer.

Biomedical Research↗

Effect of dietary fat on lipid secretion and ketone body production in rat liver.

Perfused livers from rats fed different fats were used to examine the effect of dietary fat on the rat of hepatic lipoprotein synthesis and fatty acid metabolism. Dietary fats (10% level) used were safflower oil (18:2), camellia oil (18:1) and tristearin (18:0). The results were compared with those obtained from rats fed on a low-fat diet (1% safflower oil). When no oleate substrate was infused, triglyceride secretion rates were approximately the same among the different fat groups. Infusion of the fatty acid substrate increased the secretion of triglyceride to a similar extent in 10% fat groups while the magnitude of increase was more pronounced in the low-fat group. The magnitude of increases in ketone body production due to fatty acid supply was dependent either on the amount or the type of fat; the smallest on a low-fat diet and the greatest on a camellia oil diet. Rates of secretion cholesterol and phospholipid were modified by neither the amount nor the type of fat used. It was suggested that dietary fat may alter the rate of fatty acid catabolism without modifying lipoprotein synthesis. Safflower oil distinctly modified the fatty acid profile of triglyceride secreted. Polyunsaturated fat may exert its potent hypocholesterolemic effect through the modification of the composition of lipoprotein secreted.

Animals↗

Dietary fat level and short-term effects of a high-fat meal on food intake and metabolism.

After determining the dietary fat intake in 40 subjects based on a 7-day recording period, the effects of a high-fat breakfast (52% of metabolizable energy from fat) on postprandial fat and carbohydrate metabolism as well as on subsequent lunch intake were investigated in 28 lean, male subjects with habitual dietary fat intakes between 21 and 44% (of daily energy intake). Correlational analysis and comparisons between a low-fat group (LF; fat intake < or =35%, n = 10) and a high-fat group (HF; fat intake > or =40%, n = 11) with a similar body mass index (LF: 22.7, HF: 22.4) and a low body fat content (LF and HF: 10.7) demonstrated that the fat level of the habitual diet did not affect the baseline values and the postprandial changes in the respiratory quotient and in the plasma levels of glucose, insulin, lactate, free fatty acids, beta-hydroxybutyrate, and triglycerides induced by the high-fat breakfast. Only the area under the curve for insulin was higher, and the lactate/insulin ratio was lower in the HF group than in the LF group. Moreover, hunger and satiety ratings and lunch intake (amount, duration, microstructure of eating) after the high-fat breakfast were similar in all subjects. Thus, the habitual level of dietary fat did not alter the acute effects of a fat-rich breakfast on whole-body and hepatic fatty acid oxidation and eating behavior at lunch under the present test conditions. Yet, a long-term high fat intake appears to have subtle effects on postprandial metabolism which are consistent with early signs of a developing insulin resistance.

Adult↗

Dietary fat and experimental carcinogenesis: a summary of recent in vivo studies.

Diets high in fat have been demonstrated to enhance carcinogenesis in numerous models. Studies on the relationship between dietary fat and cancer in experimental animals have improved with the evolution in our knowledge of the carcinogenic process and with our ability to formulate better controlled diets. This paper summarizes studies conducted during the past 15-20 years on the effects of dietary fat on in vivo carcinogenesis. Relationships between skin carcinogenesis and dietary fat have received little attention during this time, but tremendous progress has been made in our understanding of mammary and colon carcinogenesis. Studies have been conducted of mammary carcinogenesis induced in various rat strains by several chemical carcinogens or by X-irradiation. Several colon carcinogenesis models have also been used to evaluate dietary fat effects. Recent studies in the lung, liver, and pancreas have shown relationships between the carcinogenic process at these sites and dietary fat; however, further studies are needed. The confounding between high fat intakes and low carbohydrate intakes and the difficulties of separating high fat intake from high caloric intake must be addressed in future research. The mechanism of the observed effects of dietary fat is unknown.

Animals↗

Dietary fat and colon cancer: animal model studies.

Since it was first suggested that high dietary fat is a risk factor in colon cancer, there have been several studies to test this hypothesis. Epidemiologic studies suggested a positive association between dietary fat and colon cancer. Laboratory animal model studies demonstrated that not only the amount of fat, but also types of fat differing in fatty acid composition are important determining factors in colon tumor development. Chemically-induced colon tumor incidence was increased in rats fed the semipurified diets containing 23% corn oil, safflower oil, lard or beef tallow (high-fat) as compared to those fed 5% corn oil, safflower oil, lard or beef tallow diets (low-fat). Diets containing 23% coconut oil, olive oil or fish oil, or high-fat diets containing varying levels of trans fat, had no colon tumor-enhancing effect compared to their respective low fat diets. The stage at which the effect of dietary fat is exerted appears to be mostly during the post-initiation phase of colon carcinogenesis. Lack of a colon tumor enhancing effect of dietary fish oil is observed both during the initiation and postinitiation phases. The mechanisms by which various dietary fats increase colon carcinogenesis are not fully understood. In most instances, however, the high-fat diet appears to enhance tumorigenesis through elevation of agents, such as secondary bile acids, that act as promoters of tumor development. Lack of colon tumor promotion by dietary fish oil and trans fat appears to be mediated through their effect on mucosal ornithine decarboxylase activity, colonic secondary bile acids and/or prostaglandin synthesis.

Animals↗

Redistribution of abdominal fat after a period of food restriction in rats is related to the type of dietary fat.

The aim of the present experiment was to test the hypothesis that during refeeding a redistribution of intra-abdominal fat takes place and that both the recovery of weight and the redistribution of intra-abdominal fat are related to the type of dietary fat. The experimental study was carried out using male Sprague-Dawley rats. Three groups of animals were fed diets with three different fatty acid profiles. Each group contained two branches, one fed normally and the other fed initially with a 50 % energy reduction followed by refeeding ad libitum with the same isoenergetic diet as the control branch, giving a total of six treatments. Measurements were made of the final and incremental weight of the rat, weight of the intra-abdominal adipose tissue (total intra-abdominal, epididymal, omental and retroperitoneal adipose tissue weight), and feed efficacy (weight increment/metabolizable energy intake). Carcass, epididymal, omental, and muscle lipid contents, carcass protein and energy density were also measured. The results revealed that diets rich in fish oil or olive oil increase catch-up growth more than diets rich in saturated fats. During refeeding the lipid content in the adipose tissue increases while that of muscle tissue decreases. A diet rich in saturated fats induces a relative increase in the amount of intra-abdominal adipose tissue. The lipid content in adipose and muscle tissues and the distribution of intra-abdominal fat can all be modified by the type of dietary fat.

Abdomen↗

Whole body and hepatic cholesterol synthesis rates in the guinea-pig: effect of dietary fat quality.

The effects of polyunsaturated, monounsaturated and saturated dietary fat on total and hepatic cholesterol synthesis were studied in the guinea-pig. Male Hartley guinea-pigs were fed semi-synthetic diets containing 7.5% (w/w) of either corn oil (CO), olive oil (OL) or lard for a period of 5 weeks and rates of endogenous cholesterol synthesis were determined from the incorporation of [3H]water into digitonin-precipitable sterols (DPS) and by measurement of sterol balance. In addition, total and expressed 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase activities were determined in hepatic microsomes. Rates of whole body cholesterol synthesis determined by incorporation of [3H]water into DPS were significantly lower for guinea-pigs on the CO diet with values of 18.7 +/- 1.8 mumol/h (n = 4) vs. 26.7 +/- 4.8 and 24.6 +/- 1.8 mumol/h for animals on the OL (n = 4) and lard (n = 3) diets (P less than 0.001), respectively. Hepatic cholesterol synthesis rates were significantly decreased in animals on the OL diet, whether determined from incorporation of [3H]water into DPS or by analysis of HMG-CoA reductase activity. Hepatic total and free cholesterol levels were not different for animals on the three dietary fats; however, cholesteryl ester levels were 35% lower in guinea-pigs fed the lard diet (P less than 0.02). Sterol balance measurements indicated that whole body cholesterol synthesis rates were not affected by dietary fat quality (51.9 +/- 12.2, 42.8 +/- 7.6 and 51.2 +/- 20.2 mg/kg per day for animals on the CO, OL and lard diets, respectively). This is in striking contrast to the observed reduction in cholesterol synthesis rates for animals on the polyunsaturated CO diet as determined by incorporation of [3H]water into DPS. One possible explanation for the discrepancy between the sterol balance and [3H]water incorporation data is a polyunsaturated fat-mediated effect on energy utilization, which affects the equilibration of NADPH with the body water pool such that the [3H]NADPH has a lower specific activity than body [3H]water.

Animals↗