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Review and analysis of the effects of olestra, a dietary fat substitute, on gastrointestinal function and symptoms.

Olestra, a dietary fat substitute, was recently made available to consumers in savory snacks in three cities. Early reports of gastrointestinal complaints attributed to olestra attracted media coverage and fostered confusion among physicians and consumers about the nature of olestra and its effects on the digestive system. We reviewed all published studies of olestra's gastrointestinal effects and all relevant unpublished studies submitted to the Food and Drug Administration. Each study was analyzed by a group of expert gastroenterologists and epidemiologists. The symptoms reported with olestra ingestion are similar to those reported with ingestion of fiber and sorbitol, although the mechanisms involved in changing stool characteristics differ among these food additives. Olestra's effects on stool habit and characteristics are due to its presence in the stool. Large amounts are more likely to induce gastrointestinal symptoms than small amounts. There is no evidence that olestra induces pathological change in bowel function: there is no increased fluid or electrolyte nor is there altered gastrointestinal motility or microflora. Olestra and triglyceride ingestion resulted in a similar frequency of symptoms in normal adults and children and in people with chronic inflammatory bowel disease in remission. Olestra traverses the digestive tract intact to become a stool additive. Some subjects develop a change in bowel habit and stool characteristics due to the presence of more olestra in the stool. These changes resemble those associated with ingestion of sorbitol and fiber.

Controlled Clinical Trials as Topic↗

Cyclosporin absorption is impaired by the fat substitutes, sucrose polyester and tricarballylate triester, in the rat.

The effect of non-absorbable fat substitutes (sucrose polyester (SPE) and tricarballylate triester (TCTE)) on cyclosporin A (CsA) intestinal absorption was studied in the rat using in situ perfusion and gastric intubation techniques. A first experiment using the recirculating intestinal perfusion model showed that emulsions of either 5% SPE or TCTE significantly reduced (p < 0.0008) CsA absorption, whereas no difference was found between results for saline and 5% olive oil emulsion. In single-pass intestinal perfusion experiments SPE dose-dependently inhibited CsA absorption at SPE concentrations of 0.31% (p < 0.0004) and higher. Using gastric intubation, whole blood CsA concentrations significantly decreased when administered with SPE and TCTE in comparison with olive oil (p < 0.04). These results confirm that the CsA fraction dissolved in the undigested oil phase, constituted by the undigested and nonabsorbed fat substitute, is unavailable for intestinal absorption.

Animals↗

The effect of a non-absorbable fat substitute, sucrose polyester, on gastrointestinal function.

OBJECTIVES: To assess the effects of a single dose of a non-absorbable fat substitute, sucrose polyester, on gastrointestinal function. METHODS: The effects of 50 g of sucrose polyester taken as a single drink on gastric emptying, small bowel transit time (SBTT), whole gut transit time (WGTT) and faecal weight compared with a control fat were examined in double-blind studies. The effect of sucrose polyester on gallbladder ejection fraction and gastrointestinal hormones was also assessed. RESULTS: Sucrose polyester was found to accelerate gastric emptying significantly (98.33 +/- 71.0 vs. 112.92 +/- 82.0 min, P = 0.042) but to slow SBTT (153.75 +/- 36.25 vs. 128.75 +/- 47.39 min. P = 0.006). A trend to faster WGTT (37.47 +/- 15.61 vs. 46.63 +/- 20.65 h) and increased faecal weight was observed (453.33 +/- 122.05 vs. 395.0 +/- 107.85 g/48 h), but this did not reach statistical significance. There was a striking reduction in gallbladder ejection fraction with sucrose polyester (21.69 +/- 25.32 vs. 45.27 +/- 27.67%), P = 0.039) and a corresponding significant decrease in the release of cholecystokinin. Lower levels of motilin and enteroglucagon were also observed. CONCLUSIONS: Sucrose polyester has significant effects on gastrointestinal transit, gallbladder contraction and gastrointestinal hormones. These effects can be explained on the basis of decreased luminal products of digestion and may have implications for the widespread use of sucrose polyester as a fat substitute.

Administration, Oral↗

Reducing fat intake with fat substitutes.

Many Americans should reduce their dietary consumption of fat to lower their risk of conditions such as heart disease, cancer and obesity. Physicians can coordinate a comprehensive management plan for patients who need to reduce their fat intake. The newest fat substitutes offer a potentially valuable addition to such traditional diet strategies as low-fat foods and total calorie reduction.

Chemical Phenomena↗

Sugar and fat substitutes: the challenge for today and tomorrow.

Companies have contributed greatly to meeting the challenge of providing a variety of reduced calorie ingredients allowing food manufacturers to choose the most appropriate ingredient to prepare the tastiest product. These sugar and fat substitutes alone do not lead to healthier eating. The diabetes educator needs to teach clients who wish to lose weight, or to reduce sugar or fat intake, to select foods made with sugar or fat substitutes (when available) as part of a balanced meal plan that meets their nutritional requirements. These products can be a factor in achieving the balance of diet and exercise essential to a healthy life-style.

Diabetes Mellitus↗

The role of low-fat diets and fat substitutes in body weight management: what have we learned from clinical studies?

The introduction of low-fat, high-complex carbohydrate diets far the prevention and treatment of obesity was based on the causal link established between dietary fat and body fatness. Observational and mechanistic studies show that because fat possesses a lower satiating power than carbohydrate and protein, a diet rich in fat can increase energy intake. The propensity to gain weight is enhanced in susceptible persons, particularly sedentary people who have a genetic predisposition to obesity. Low-fat diets cause weight loss proportional to pretreatment body weight in a dose dependent manner; that is, weight loss is correlated positively to the reduction in dietary fat content. A reduction of 10% fat energy produces an average 5-kg weight loss in obese persons. As with traditional caloric counting diets, obese persons lose weight only if they adhere to the prescribed low-fat diet. Failure to achieve a weight loss and to maintain it may be attributed in part to lack of adherence to the diet. After a major weight loss, an ad libitum low-fat diet program appears to be superior to caloric counting in maintaining the weight loss 2 years later. Replacing some fat with protein instead of carbohydrate may increase the weight loss further. Moreover, fat substitutes may make it easier to prevent and treat obesity by making the diet palatable. More randomized, controlled, long-term dietary intervention studies are warranted to identify the optimal diet composition for the treatment of obesity.

Appetite↗

Treatment with a dietary fat substitute decreased Arochlor 1254 contamination in an obese diabetic male.

A case manifesting symptoms due to organochlorine toxicity was treated with the fat substitute olestra in his diet. Before treatment, the patient was obese, with severe type 2 diabetes mellitus and mixed hyperlipidemia, chloracne, frequent headaches, and numbness and paraesthesias of his trunk and lower limbs. Earlier attempts at weight loss had been unsuccessful due to worsening of his symptoms. After inclusion of olestra in his diet for 2 years, weight loss was successful without aggravation of his symptoms, and the patient reverted to normoglycemia and normolipidemia. Olestra may have assisted weight loss and amelioration of his diabetes by increasing fecal elimination of organochlorines, rather than by preventing the partitioning of these pollutants into tissues, where they have been reported to exert antimetabolic effects on substrate oxidation.

Adipose Tissue↗

Evaluation of clinical and biochemical parameters in children after consumption of microparticulated protein fat substitute (Simplesse).

OBJECTIVE: The objective of this randomized, double-blind, two-way crossover study in healthy children was to evaluate whether microparticulated protein (MPP, Simplesse) fat substitute had any effects on various clinical and biochemical parameters when compared to super premium ice cream (approximately 16% butterfat). METHODS: Twenty-four children (12 males, 12 females), 7-10 years of age, received their normal diet plus two consecutive 7-day treatment regimens consisting of one serving (approximately 196 mL) per day of either ice cream or a frozen dessert made with MPP. Three-day food diaries, routine hematologies, clinical chemistries, urinalyses, fasting plasma lipids and amino acids, vital signs and adverse experiences were compared between treatments. RESULTS: There were no clinically significant effects on any of the parameters following either treatment, although there were statistically significant increases in fasting plasma cholesterol and high-density lipoprotein cholesterol following ice cream when compared to MPP. There were no statistically significant differences between the two treatments in regard to macronutrient consumption. The only adverse experience related to treatment was one episode of vomiting following the ice cream. The children ingested more than five times the amount of MPP than that found in the 90th percentile of frozen dessert consumption by this age group. The protein intake (5.5 g/day) from MPP at this level of consumption would only modestly increase the total daily protein intake. CONCLUSION: Children ingesting approximately 196 mL/day of frozen dessert made with MPP did not show any clinically significant changes in various clinical and biochemical parameters.

Amino Acids↗

Authors' financial relationships with the food and beverage industry and their published positions on the fat substitute olestra.

OBJECTIVES: This study examined the association between authors' published positions on the safety and efficacy in assisting with weight loss of the Procter & Gamble (P&G) fat substitute olestra and their financial relationships with the food and beverage industry. METHODS: Journal articles about olestra, and their authors, were classified as supportive, critical, or neutral with respect to its use. Authors not known to have industry affiliations were surveyed about their financial relationships. RESULTS: Supportive authors were significantly more likely than critical or neutral authors to have financial relationships with P&G (80% vs 11% and 21%, respectively; P <.0001). All authors disclosing an affiliation with P&G were supportive. CONCLUSIONS: Because authors' published opinions were associated with their financial relationships, obtaining noncommercial funding may be more essential to maintaining objectivity than disclosing personal financial interests.

Bibliometrics↗

Fat substitution and food intake: effect of replacing fat with sucrose polyester at lunch or evening meals.

The objective of the present study was to determine the effect of replacement of fat by sucrose polyester (SPE) within a lunch or evening meal on subsequent energy intake and appetite control. The 2 x 2 design was intended to examine the effect on appetite of reducing the total energy and fat content of a meal (lunch or dinner) by replacement of natural fat with 55 g SPE. The effects were monitored by measuring motivation to eat or actual food consumption during the remainder of the test day (day 1) and throughout the following day (day 2). The 2 x 2 design yielded four conditions which were a control meal (5192 kJ, 73.2 g fat) and a fat-replaced meal (3305 kJ, 54.6 g SPE, 24 g fat) at midday (lunch) or in the early evening (dinner). No significant differences were seen in ad lib. energy intake after the test meals on day 1 or day 2. Certain differences were detected in fat intake on day 2 but these did not suggest nutrient compensation in response to the fat replacement. Subjective assessment of motivation to eat did not indicate that the fat-reduced meal had a weaker satiating efficiency than the control meal. A reduction in fat content, using fat replacement, did not reduce the satiating efficiency of a test meal given at lunch or dinner. No energy or macronutrient compensation occurred following the reduction in energy or fat intake during the rest of the test day or during the whole of the next day.

Adult↗

Esterified propoxylated glycerol soyate, a fat substitute model compound, and soy oil after heating.

The changes occurring in two oil samples [EPG-00 soyate (transesterified soybean oil) and soy oil esterified propoxylated glycerol (EPG-08 soyate, a model, fat substitute compound)] were compared after heating at approximately 190 degrees C for 12 h/day. The EPG-00 soyate sample required 48 h of heating to attain a polymer content >20%, while the EPG-08 soyate required only 36 h. After 48 h of heating the EPG-00 soyate sample, the free fatty acid value (FFA) increased from 0.19 to 0.79, the acid value (AV) increased from 0.10 to 1.59, and the p-anisidine value (p-AV) increased from 1.6 to 195.4. In comparison, after only 36 h of heating, the EPG-08 soyate sample had FFA, AV, and p-AV increases from 0.19 to 0.71, from 0.26 to 1.36, and from 1.1 to 191.7, respectively. The triacylglycerol substrate degradation rate for EPG-00 soyate was k = 0.0126 +/- 0.0003 h(-)(1), while the rate for EPG-08 soyate was k = 0.0166 +/- 0.0017 h(-)(1). The results suggest that the EPG-00 soyate or transesterified soybean oil is slightly more stable than EPG-08 soyate.

Aniline Compounds↗

[Influence of milk-fat substitute feeding on the metabolism in calves].

Investigations were made to study the effect of milk fat substitutes ("Laktin", "TZS-60") on the metabolism of 3 and 5-weeks-old calves. "Laktin" is prepared from lard and hydrogenated soya and fish oil; additionally, it contains lecithin, monoglycerides, antioxidants, vitamins and antibiotics. "TSZ-60" is a preparation containing starch and colloidal silicic acid as carrier material mixed with 60% of coarsely powdered fat (particle sizes ranging from 50 to 200 mum), which in turn, is supplemented with vitamins and antibiotics. The kinds of "Laktin" used in the present trial contained 95%, 58%-98% or 90% of fat while "TSZ-60" contained 59.4%. Both the 3-weeks-old and the 5-weeks-old calves digested the "Laktin" fat more efficiently than the kind of fat contained in "TSZ-60" ("Laktin": 94.3% to 97.3% of fat; "TSZ-60" 71.8% to 90.5%). As a consequence of this, the "Laktin"-fed calves exhibited a higher rate of nitrogen utilization and nitrogen retention. According to the results obtained in the present trial "Laktin" should be given in daily doses of 219 g (an amount corresponding to 7 litres of milk with a milk fat content of 3.13%) while "TSZ-60" should be fed in daily amounts of 245 g (corresponding to 7 litres of milk with a milk fat content of 2.1%). Higher doses ("Laktin": 323 g/day: "TSZ-60" 335 g/day) would have a detrimental effect on the metabolism of the calves. Apart from this, it was not found that higher doses would help to reduce the protein consumption of the animals.

Animal Feed↗

Polysiloxane: potential noncaloric fat substitute; effects on body composition of obese Zucker rats.

Phenylmethylpolysiloxane (PS), a noncaloric, nonabsorbable liquid oil, was studied for effects on body comparison as fat substitute in the diet. Two groups of female obese Zucker rats were fed either a control low-fat (LF) or an experimental diet containing PS (22% wt/wt) incorporated into LF. Two additional groups were fed either PS or cellulose (CE) in diet providing equivalent caloric dilution. Rats on PS lost weight whereas LF control rats gained. Dissectible fat and adipocyte size of PS were smaller than those of LF. Food intake, body water, and adipocyte number did not differ between PS and LF. Body protein on PS increased only in proportion to weight. When both diets were diluted, PS animals lost more weight than CE controls despite similar food intakes, suggesting absorption of calorigenic substances derived from partial digestion of CE but not PS by intestinal microflora. Obese rats did not compensate for caloric dilution with PS.

Adipose Tissue↗

Substrate oxidation and control of food intake in men after a fat-substitute meal compared with meals supplemented with an isoenergetic load of carbohydrate, long-chain triacylglycerols, or medium-chain triacylglycerols.

BACKGROUND: It has been suggested that hunger may be delayed and food intake reduced under metabolic conditions that spare carbohydrate oxidation. OBJECTIVE: Our objective was to examine the role of glucose metabolism in the control of food intake in men by using medium-chain triacylglycerols (MCTs) to spare carbohydrate oxidation. DESIGN: In 10 male volunteers, isolated and deprived of any time cues, we studied the effects of 4 lunches on hunger ratings, the duration of satiety, the amount of food ingested at dinner, energy expenditure, substrate oxidation, and plasma variables until the time of the dinner request. One lunch was a basic 2310-kJ meal containing 40 kJ fat substitute (Sub lunch). The 3 other lunches consisted of the same basic meal supplemented with either 1200 kJ long-chain triacylglycerols (LCT lunch), 1200 kJ MCTs (MCT lunch), or 900 kJ carbohydrate plus 300 kJ LCTs (Cho lunch). RESULTS: Energy expenditure was not significantly different after the different lunches, but carbohydrate oxidation was lower after the MCT and LCT lunches than after the Cho lunch. Fat oxidation was greater after the MCT and LCT lunches. The time of the dinner request was significantly delayed after the Cho lunch. Food intake at dinner was significantly lower after the MCT lunch than after the Sub and Cho lunches, but the dinner meal request was not delayed. CONCLUSION: Carbohydrate may have a greater role in the duration of satiety than does fat, but MCTs may play an active role in other aspects of the control of food intake, especially in satiation at the next meal.

Adult↗

Candida rugosa lipase LIP1-catalyzed transesterification to produce human milk fat substitute.

Structured lipids (SLs) containing palmitic and oleic acids were synthesized by transesterification of tripalmitin with either oleic acid or methyl oleate as acyl donor. This SL with palmitic acid at the sn-2 position and oleic acid at sn-1,3 positions is similar in structure to human milk fat triacylglycerol. LIP1, an isoform of Candida rugosa lipase (CRL), was used as biocatalyst. The effects of reaction temperature, substrate molar ratio, and time on incorporation of oleic acid were investigated. Reaction time and temperature were set at 6, 12, and 24 h, and 35, 45, and 55 degrees C, respectively. Substrate molar ratio was varied from 1:1 to 1:4. The highest incorporation of oleic acid (37.7%) was at 45 degrees C with methyl oleate as acyl donor. Oleic acid resulted in slightly lesser (26.3%) incorporation. Generally, higher percentage incorporation of oleic acid was observed with methyl oleate (transesterification) than with oleic acid (acidolysis). In both cases percentage incorporation increased with reaction time. Incorporation decreased with increase in temperature above 45 degrees C. Initially, oleic acid incorporation increased with increase in substrate molar ratio up to 1:3. LIP1 was also compared with Lipozyme RM IM as biocatalysts. The tested reaction parameters were selected on the basis of maximum incorporation of C18:1 obtained during optimization of LIP1 reaction conditions. Reaction temperature was maintained at 45, 55, and 65 degrees C. Lipozyme RM IM gave highest oleic acid incorporation (49.4%) at 65 degrees C with methyl oleate as acyl donor. Statistically significant (P < 0.05) differences were observed for both enzymes. SL prepared using Lipozyme RM IM may be more suitable for possible use in human milk fat substitutes.

Animals↗