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result(s) for
"Rapeseed oil"
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The effects of extra virgin olive oil and canola oil on inflammatory markers and gastrointestinal symptoms in patients with ulcerative colitis
by
Seyedian, Seyed Saeed
,
Morvaridi Mehrnaz
,
Cheraghian Bahman
in
C-reactive protein
,
Canola oil
,
Constipation
2020
Background/objectivesUlcerative colitis (UC) is an immune-mediated disease that causes inflammation in the gastrointestinal tract. Diet has an important role in the treatment of UC. This study aimed to compare the effects of extra virgin olive oil (EVOO), as a functional food, with canola oil in the treatment of UC.Subjects/methodsForty patients were participating in this crossover clinical trial. Thirty two patients completed two intervention rounds. Blood samples were taken before and after 20 days intervention. Disease activity score and gastrointestinal symptoms were evaluated using the Mayo score and gastrointestinal symptom rating scale (GSRS) respectively.ResultsErythrocyte sedimentation rate (p = 0.03) and high-sensitivity C-reactive protein (p < 0.001) were decreased significantly after EVOO consumption. Bloating, constipation, fecal urgency, incomplete defecation, and final GSRS were reduced significantly after EVOO consumption (p < 0.05).ConclusionsIntake of EVOO decreased the inflammatory markers and improved gastrointestinal symptoms in UC patients. It seems this functional food can be beneficial in the treatment of UC as a complementary medicine.
Journal Article
The effect of refining process on the physicochemical properties and micronutrients of rapeseed oils
2019
Information on the physicochemical variability in rapeseed oil from different varieties during each refining process is lacking. Our purpose was to investigate the physicochemical properties, micronutrients and oxidative stability of the oil extracted from the five varieties of rapeseeds during their different stages of refining process. Increase in the acid value, peroxide value and p-anisidine value were detected in the refining, while content of tocopherols, sterols, β-carotene and phenols, which are regarded as important nutritional compounds diminished. Moreover, the loss rate of total phytosterols of all oils during neutralization (9.23-7.3%) and deodorization (9.97-8.27%) were higher than that of degumming (3.01-0.87%) and bleaching (2.75-1.18%). Deodorization affected total tocopherols contents the most, followed by bleaching, neutralization and degumming. There was a remarkable reduction in total content of phenol, β-carotene and oxygen radical absorbance of all oils during refining. The accumulated information can be used in looking for the optimum condition to meet the basic requirements for oil and minimize micronutrients losses so as to increase their market value.
Journal Article
The effects of replacing ghee with rapeseed oil on liver steatosis and enzymes, lipid profile, insulin resistance and anthropometric measurements in patients with non-alcoholic fatty liver disease: a randomised controlled clinical trial
by
Alizadeh, Mohammad
,
Maleki Sedgi, Fatemeh
,
Mohammad Hosseiniazar, Mohammadreza
in
Adult
,
Alanine
,
Alanine transaminase
2024
Non-alcoholic fatty liver disease (NAFLD), which is a prevalent hepatic condition worldwide, is expected to develop into the leading reason for end-stage fatty liver in the forthcoming decades. Incorporating rapeseed oil into a balanced diet may be beneficial in improving NAFLD. The goal of this trial was to evaluate the impact of substituting ghee with rapeseed oil on primary outcomes such as fatty liver and liver enzymes, as well as on secondary outcomes including glycaemic variables, lipid profile and anthropometric measurements in individuals with NAFLD. Over 12 weeks, 110 patients (seventy men and forty women; BMI (mean) 28·2 (sd 1·6 kg/m2); mean age 42 (sd 9·6) years), who daily consumed ghee, were assigned to the intervention or control group through random allocation. The intervention group was advised to substitute ghee with rapeseed oil in the same amount. The control group continued the consumption of ghee and was instructed to adhere to a healthy diet. Results showed a significant reduction in the steatosis in the intervention group in comparison with the control group (P < 0·001). However, a significant change in the levels of alanine aminotransferase (–14·4 μg/l), γ-glutamyl transferase (–1·8 μg/l), TAG (–39·7 mg/dl), total cholesterol (–17·2 mg/dl), LDL (–7·5 mg/dl), fasting blood glucose (–7·5 mg/dl), insulin (–3·05 mU/l), Homeostatic Model Assessment for Insulin Resistance (–0·9), Quantitative Insulin-Sensitivity Check Index (+0·01), weight (–4·3 kg), BMI (–0·04 kg/m2), waist (–5·6 cm) and waist:height ratio (–0·04) was seen in the intervention group. The consumption of rapeseed oil instead of ghee caused improvements in liver steatosis and enzymes, glycaemic variables and anthropometric measurements among individuals with NAFLD.
Journal Article
Towards premium rapeseed oil: leveraging allelic variation in BnaFAD2.A5, BnaFAD3.A4 and BnaFAD3.C4 for molecular design breeding
2026
Background
Improving the quality and frying stability of rapeseed oil has long been an important goal in rapeseed quality breeding. This goal can be achieved through molecular marker-assisted selection (MAS) combined with speed breeding strategies. In this study, genomic data from the high-oleic-acid, low-linolenic-acid material L3 and the recessive genic male sterile (RGMS) line RG430A were used to identify functional variation sites underlying key quality traits: one governing oleic acid content and two controlling linolenic acid content. Additionally, Kompetitive Allele-Specific PCR markers were developed to efficiently genotype these oleic and linolenic acid-related variants.
Results
By integrating speed breeding with MAS and phenotypic screening, a new RGMS line was developed with high oleic acid, low linolenic acid content, and favorable agronomic performance. Compared with the original RG430A, the new line shows an approximately 15.0% increase in oleic acid content (reaching 78.0%) and an approximately 52.6% reduction in linolenic acid content (decreasing to 3.6%), with no significant alterations in major agronomic traits.
Conclusions
Our study offers strategic insights for rapeseed quality breeding, and the developed RGMS line represents a promising germplasm resource for future high-quality hybrid breeding.
Journal Article
Antioxidant (Tocopherol and Canolol) Content in Rapeseed Oil Obtained from Roasted Yellow-Seeded Brassica napus
by
Siger, Aleksander
,
Gawrysiak-Witulska, Marzena
,
Bartkowiak-Broda, Iwona
in
Acid value
,
Agriculture
,
Antioxidants
2017
In this study, the effect of temperature (140, 160, 180 °C) and roasting time (5, 10, 15 min) on the bioactive compound content (canolol, tocopherol and plastochromanol-8) of cold-pressed oil from yellow-seeded rapeseed lines of different colors was investigated. Roasting increased the peroxide value in the seed oils compared to the oils from the control samples. However, roasting did not affect the acid values of the oils, which were 1.15–1.47 and 1.30–1.40 mg KOH/g, for line PN1 03/1i/14 (yellow seeds) and line PN1 563/1i/14 (brown seeds), respectively. In this study, the seeds of line PN1 03/1i/14 were characterized by different changes in canolol content during roasting than the seeds of PN1 563/1i/14. There was a 90-fold increase in canolol for the line PN1 03/1i/14 (768.26 µg/g) and a 46-fold increase for the line PN1 563/1i/14 (576.43 µg/g). Changes in tocopherol and PC-8 contents were also observed. There was an increase in the contents of γ-T and PC-8 in the oils obtained from the seeds roasted at 180 °C for 10 and 15 min. γ-T content increased by 17–18% after 15 min of roasting, whereas the PC-8 content increased twofold.
Journal Article
Effect of Deep Frying of Potatoes and Tofu on Thermo-Oxidative Changes of Cold Pressed Rapeseed Oil, Cold Pressed High Oleic Rapeseed Oil and Palm Olein
by
Dach, Dominika
,
Wroniak, Małgorzata
,
Kruszewski, Bartosz
in
acid value
,
Antioxidants
,
Brassica napus
2021
One of the commonly used food preparation methods is frying. Fried food is admired by consumers due to its unique taste and texture. Deep frying is a process of dipping food in oil at high temperature, usually 170–190 °C, and it requires a relatively short time. The aim of this study was to analyze the thermo-oxidative changes occurring during the deep frying of products such as potatoes and tofu in cold pressed rapeseed oils and palm olein. Cold pressed rapeseed oil from hulled seeds (RO), cold pressed high oleic rapeseed oil from hulled seeds (HORO), and palm olein (PO) (for purposes of comparison) were used. Characterization of fresh oils (after purchase) and oils after 6, 12, and 18 h of deep frying process of a starch product (potatoes) and a protein product (tofu) was performed. The quality of oils was analyzed by determining peroxide value, acid value, p-anisidine value, content of carotenoid and chlorophyll pigments, polar compounds, smoke point, color (CIE L*a*b*), fatty acids content and profile, calculation of lipid nutritional quality indicators, and oxidative stability index (Rancimat). Cold pressed high oleic rapeseed oil was more stable during deep frying compared to cold pressed rapeseed oil, but much less stable than palm olein. In addition, more thermo-oxidative changes occurred in the tested oils when deep frying the starch product (potatoes) compared to the deep frying of the protein product (tofu).
Journal Article
Milk protein-based formulas containing different oils affect fatty acids balance in term infants: A randomized blinded crossover clinical trial
by
Lasekan, John
,
Souza, Carolina Oliveira de
,
Leite, Maria Efigênia Q.
in
Arachidonic acid
,
Arachidonic Acid - administration & dosage
,
Arachidonic Acid - urine
2017
Background
Palm olein is used in infant formula fat blends in order to match the fatty acid profile of human milk. While the effects on fatty acid balance have been evaluated, the use of palm olein in combination with palm kernel oil and supplementation with docosahexaenoic acid (DHA) and arachidonic acid (ARA) has not been similarly assessed in infants. This study evaluated the effects of infant formulas containing different fat compositions on the balance of fat, fatty acids, and calcium.
Methods
In this randomized, crossover, double-blinded study, 33 healthy term infants (68–159 ± 3 days of age at enrollment) were fed two formulas for 14 days in a tolerance period, followed by a 4-day metabolic balance period in 17 of the male subjects. The study compared two commercially available milk-based powdered formulas in Brazil; the PALM formula contained palm olein (44%), kernel palm oil (21.7%), and canola oil (18.5%) as the predominant fats, whereas the NoPALM formula contained other fat sources.
Results
Fat absorption (%) was greater for NoPALM versus PALM-fed infants (96.55 and 95.50%, respectively;
p
= 0.023). The absorption percentage of palmitic acid (C16:0) did not differ significantly between formulas (
p
> 0.05), but this acid was excreted at significantly higher concentrations in the PALM (29.42 mg/kg/day) than in the NoPALM (12.28 mg/kg/day) formula groups. DHA and ARA absorption percentages were also higher in NoPALM-fed infants. Calcium absorption was higher in NoPALM-fed infants (58.00%) compared to those fed PALM (40.90%), but the difference was not significant (
p
= 0.104) when calcium intake was used as a covariate. However, calcium retention was higher in NoPALM-fed infants compared to that in PALM-fed infants with or without calcium intake as a covariate. Adverse events did not differ between groups (
p
> 0.05).
Conclusions
The absorption of essential fatty acids was similar for both formulas; however, long-chain polyunsaturated fatty acids (DHA and ARA) were better absorbed from the NoPALM formula. Fat absorption and calcium retention were lower in term infants fed the PALM-based formula.
Clinical trial registration
Clinicaltrial.gov #
NCT00941564
.
Journal Article
Meal rich in rapeseed oil increases 24-h fat oxidation more than meal rich in palm oil
2018
The fatty acid composition of the diet has been linked to the prevalence of diabetes and cardiovascular diseases. Compared with monounsaturated fatty acids, saturated fatty acids decrease fat oxidation and diet-induced thermogenesis. A potential limitation of previous studies was the short duration (≦5h) of calorimetry used. The present study compared the effects of a meal rich in saturated and unsaturated fatty acids on 24-h of fat oxidation. Ten males participated in two sessions of indirect calorimetry in a whole-room metabolic chamber. At each session, subjects consumed three meals rich in palm oil (44.3% as saturated, 42.3% as monounsaturated and 13.4% as polyunsaturated fatty acid) or rapeseed oil (11.7% as saturated, 59.3% as monounsaturated and 29.0% as polyunsaturated fatty acid). Fat oxidation over 24-h was significantly higher in the meal rich in rapeseed oil (779 ± 202 kcal/day) than that rich in palm oil (703 ± 158 kcal/day, P < 0.05), although energy expenditure was similar between both meal conditions. Meal rich in unsaturated fatty acids increased the oxidation of exogenous and/or endogenous fat. The results of a long calorimetry period indicate that rapeseed oil offered an advantage toward increased 24-h fat oxidation in healthy young males.
Journal Article
Effects of Diets Enriched with Conventional or High-Oleic Canola Oils on Vascular Endothelial Function: A Sub-Study of the Canola Oil Multi-Centre Intervention Trial 2 (COMIT-2), a Randomized Crossover Controlled Feeding Study
by
West, Sheila G.
,
Jones, Peter J. H.
,
Wilson, Angela
in
Abdomen
,
Atherosclerosis
,
Blood pressure
2022
Partial replacement of saturated fatty acids (SFA) with unsaturated fatty acids is recommended to reduce cardiovascular disease (CVD) risk. Monounsaturated fatty acids (MUFA), including oleic acid, are associated with lower CVD risk. Measurement of flow-mediated dilation of the brachial artery (FMD) is the gold standard for measuring endothelial function and predicts CVD risk. This study examined the effect of partially replacing SFA with MUFA from conventional canola oil and high-oleic acid canola oil on FMD. Participants (n = 31) with an elevated waist circumference plus ≥1 additional metabolic syndrome criterion completed FMD measures as part of the Canola Oil Multi-Centre Intervention Trial 2 (COMIT-2), a multi-center, double-blind, three-period crossover, controlled feeding randomized trial. Diet periods were 6 weeks, separated by ≥4-week washouts. Experimental diets were provided during all feeding periods. Diets only differed by the fatty acid profile of the oils: canola oil (CO; 17.5% energy from MUFA, 9.2% polyunsaturated fatty acids (PUFA), 6.6% SFA), high-oleic acid canola oil (HOCO; 19.1% MUFA, 7.0% PUFA, 6.4% SFA), and a control oil blend (CON; 11% MUFA, 10% PUFA, 12% SFA). Multilevel models were used to examine the effect of the diets on FMD. No significant between-diet differences were observed for average brachial artery diameter (CO: 6.70 ± 0.15 mm, HOCO: 6.57 ± 0.15 mm, CON: 6.73 ± 0.14 mm; p = 0.72), peak brachial artery diameter (CO: 7.11 ± 0.15 mm, HOCO: 7.02 ± 0.15 mm, CON: 6.41 ± 0.48 mm; p = 0.80), or FMD (CO: 6.32 ± 0.51%, HOCO: 6.96 ± 0.49%, CON: 6.41 ± 0.48%; p = 0.81). Partial replacement of SFA with MUFA from CO and HOCO had no effect on FMD in participants with or at risk of metabolic syndrome.
Journal Article
Quality of Wood-Pressed Rapeseed Oil
2017
This study is the first report on the quality indices of Chinese wood-pressed rapeseed oil. Nineteen representative wood-pressed rapeseed oil samples (representing 80% of the factories that produce this oil in China) were collected and investigated for their physicochemical properties (acid value, peroxide value, color value, and oxidative stability index), fatty acid composition, as well as contents of tocopherols, phytosterols, polycyclic aromatic hydrocarbons (PAH), aflatoxin B
1
, arsenic, and lead. Significant differences were observed in the quality results of 19 wood-pressed rapeseed oil samples. The acid value, peroxide value, and color values, as well as the oxidative stability index were found in the ranges of 1.10–3.04 mg KOH/g, 0.84–9.34 mequiv O
2
/kg, 3.50–5.30 (
Y
= 35,
R
), and 4.43–10.34 h (120 °C), respectively. Sixteen of the analyzed oil samples had greater than 2% erucic acid. Tocopherols content ranged from 50.93 to 97.54 mg/100 g and phytosterols content ranged from 453.86 to 735.65 mg/100 g. Meanwhile, benzo[a]pyrene and PAH4 were 1.00–13.57 and 7.47–33.55 μg/kg, respectively. Fourteen samples exceeded the maximum allowable limit of benzo[a]pyrene and PAH4 (chrysene, benz[a]anthracene, benzo[b]fluroranthene, and benzo[a]pyrene) according to the European Union (EU) standards. However, the contents of aflatoxin B
1
, arsenic, and lead of the tested oil samples were all in conformance with the EU, Codex Alimentarius, and China national standards. Results showed that more attention should be paid to the problem of high PAH4 contents in wood-pressed rapeseed oil. The inspection and monitoring of raw materials and processing equipment, as well as the establishment of quality standards for the production of high-quality wood-pressed rapeseed oil are necessary.
Journal Article