Studies of the relationship between the composition of serum fatty acids and blood pressure are complex and controversial. Fatty acids, important constituents of biological membranes, could potentially affect vasoreactivities including blood pressure. In this study the compositions of fatty acids in serum phospholipids were compared between three types of hypertensive subjects (men, pre-menopausal women, and post-menopausal women) and their respective nrmotensive controls. Serum lipids were extracted and phospholipids were separated by thin layer chromatography. The percentage of palmitic acid (16 : 0) in serum phospholipids was significantly higher and the percentage of stearic acid (18 : 0) was significantly lower in all three hypertensive groups, compared with their corresponding control groups. Only in the group of post-menopausal women, palmitic acid was closely associated wish increases in both systolic (SBP) and diastolic blood pressure (DBP), while stearic acid was associated with decreases in both SBP and DBP. The polyunsaturated fatty acids in serum phospholipids behaved differently from saturated fatty acids. The ratios of products / precursor fatty acids, such as $\sumLCPUFA\omega6/18 : 2\omega$6, 20 : 4$\omega$6/18 : 2$\omega$6, ∑LCPUFA$\omega$3/18 : 3$\omega$3 and 22 : 6$\omega$3/20 : 5$\omega$3, were all clearly associated with both SBP and DBP in hypertensive, post-menopausal women. Desaturation and elongation in fatty acid metabolism could affect the bioavailability of eicosanoid precursors. Changes in the constituent fatty acids of phospholipids and eicosanoid precursors may also influence fluidity, ionic transport, hormone receptors and enzyme activities in biological membranes. In conclusion, both systolic and diastolic blood pressure in post-menopausal women was positively associated with the level of palmitic acid, and negatively associated with the level of stearic acid, in serum phospholipids. The relationships between serum phospholipid-$\omega$6 and $\omega$3 series fatty acids and blood pressure in women, especially in post-menopausal women, require further investigation by taking into consideration hormonal status and eicosanoid metabolism. Funker study is needed to determine the value of dietary manipulation of fatty acid constituents of serum phospholipids, relating to hypertension in women.
Serum lipid levels and fatty acid composition of serum phospholipids(PL) were investigated in 24 healthy male subjects who consumed either corn oil(CO) rich In linoleic acid(LA), perilla oil(PO) rich in $\alpha$-linolenic acid($\alpha$-LNA), or canola oil acid(OA) as a major fat source fir 5 weeks. The PO and the CNO groups showed significant(P <0.05) increases in serum high density lipoprotein-cholesterol(HDL-C) levels and in ratios of HDL- C/total cholesterol(TC) compared with initial values measured at the beginning of the study. Significantly(p <0.05) increased concentrations of serum triglycerides(TG) ware observed after 5 weeks of the CO based diet compared with both its intial value and the concentration observed after 5 weeks with the PO-based diet. fatty acid composition of serum PL reflected changes in dietary fatty acid composition and metabolism. Compared with the initial levels, significandy increased contents of eicosapentaenoic acid(EPA) and docosahexaenoic acid(DHA) were observed in serum PL of the PO group and significantly increased contents of $\alpha$-LNA and EPA were observed in the CNO group. Arachidonic acid(AA) content of serum PL did not change in the CO group during the study period, although, the increase in LA was significant(P <0.05). Compared with the CO-based diet, both the PO and the CNO-based diets seem to have beneficial effects on atherosclerosis by influencing the serum lipid profile and fatty acid composition of serum PL.
Purpose of this study was to compare serum phospholipid fatty acid composition of obese children with that of normal weight children reside in Kangnung area. Subjects were consisted of 56(41 boys and 15 girls) moderately or severely obese elementary school children, and age and sex-matched normal weight children as a control group. Level of serum phospholipid fatty acids was measured by thin layer chromatography(TLC) followed by gas chromatography(GLC). for male subjects, serum triglyceride(121 $\pm$ 4.7mg/dl) and total cholesterol(180 $\pm$ 37.1mg/dl) concentrations were significantly(p < 0.05) higher in obese group than those for control group(81.5 $\pm$ 2.5mg/dl and 161 $\pm$ 32.0mg/dl, respectively). Obese group showed significantly higher percentage of serum phospholipid myristic acid(C14:0) than the value for control group in both male and female subjects. Obese male subjects had significantly higher percentages of palmitoleic acid(16 : 1), oleic acid(18 : 1), dihomo-${\gamma}$-linoleic acid(20 : 3, $\omega$6) and docosatetraenoic acid(22 : 4, $\omega$6), and lower percentages of eicosenoic acid(20 : 1, $\omega$6), docosapentaenoic acid(22 : 5, $\omega$6), EPA(22 : 5, $\omega$3) and DHA (22 : 6, $\omega$3) compared to values for control male subjects. For male subjects, obese group showed significantly higher ratios of 16 : 1($\omega$9)/16 : 0 and 18 : 1($\omega$9)/18 : 0, and significantly lower ratios of 22 : 5($\omega$6)/22 4($\omega$6), and 22 : 6($\omega$3)/22 : 5($\omega$3) compacted to values for the control group. But there was not significant differences in elongation and desaturation indices of serum phospholipids fatty acid metabolism between obese and control group in female subjects. Most of anthropometric measurements related to obesity were negatively correlated with the percentages of PUFA, $\omega$3 fatty acids or DHA(22 : 6, $\omega$3), and positively correlated with the percentage of myristic acid(14 : 0) or $\omega$6/$\omega$3 ratio in serum phospholipids. Serum triglyceride concentration was negatively correlated with the percentage of PUFA or $\omega$3 fatty acids, and positively correlated with $\omega$6/$\omega$3 ratio in serum phospholipids. These results indicate that obesity related changes in blood lipid levels and metabolism are more significant in male subjects than in female subjects. Also changes in serum phospholipid fatty acid composition observed in obese children appear to demonstrate the increased susceptibility of these children to cardiovascular disease and other related chronic diseases.
To examine the effects of pomegranate on cerebral blood flow and obesity, we observed regional cerebral blood flow in normal rats, as well as body weight, serum total cholesterol, serum HDL-cholesterol, serum LDL-cholesterol, serum triglycerides, serum total lipids, serum phospholipids and serum free fatty acid levels in rats fed a high fat diet. The results were as follows. Pomegranate seed extract significantly increased regional cerebral blood flow and the peel extract increased regional the cerebral blood flow in a dose dependent manner. In addition, the pomegranate extracts(seed, peel, juice) decreased body weight, serum total cholesterol, serum LDL-cholesterol, serum triglycerides, serum total lipids, serum phospholipids and serum free fatty acid levels, and increased serum HDL-cholesterol in the rats fed a high fat diet. More specially the seed extract significantly decreased serum total cholesterol, serum triglycerides and serum phospholipid levels.
Essential fatty acids are important essential nutrients during pregnancy. The objective of this study was to compare fatty acid composition of serum phospholipids and essential fatty acid intakes between Korean pregnant women with a single baby and Korean pregnant women with twins. A total of 116 pregnant women who had maintained their health without any symptoms of pregnancy complications participated in the study. The subjects consisted of 57 women of singleton pregnancy and 58 women of twin pregnancy at the 1st, 2nd, or 3rd trimester of pregnancy. A 24-hour dietary recall was administered to each subject to obtain dietary information. The mean ages of the singleton pregnancy group and the twin pregnancy group were 31.44 years and 32.27 years, respectively, and the mean height values were 161.86 cm and 160.64 cm, respectively. The mean daily energy intakes in the singleton pregnancy group were 1639.95 kcal, 1904.71 kcal, and 1882.82 kcal for the 1st, 2nd, and 3rd trimester group, respectively. The mean daily energy intakes in the twin pregnancy group were 1745.99 kcal, 2203.46 kcal, and 2092.26 kcal for the 1st, 2nd, and 3rd trimester group, respectively. There were no significant differences in the mean fatty acid intakes by the type of pregnancy (i.e., singleton vs. twins) and the stage of pregnancy (i.e., 1st vs. 2nd vs. 3rd trimester). However, the mean total fatty acid intake of those at the 1st trimester among the singleton pregnancy group tended to be higher than that of those at the 1st trimester among the twin pregnancy group. Such a trend seemed to be retro-versed. That is, the mean total fatty acid intakes of the twin pregnancy group were higher compared to the singleton pregnancy group for the 2nd and 3rd trimester group. The LA and total n6 concentrations of serum phospholipids of the singleton pregnancy group were significantly higher as the gestational age increased(p<0.05). The $\alpha-LNA$(p<0.05), EPA(p<0.05), and total n3(p<0.001) concentrations of serum phospholipids of the twin pregnancy group were significantly lower as the gestational age increased. The $\alpha-LNA$ concentrations of serum phospholipids in the singleton pregnancy group at the 3rd trimester were significantly higher than that in the twin pregnancy group at the same trimester(p<0.05). The serum phospholipids levels of AA and DHA of the twin pregnancy group were generally higher compared to those of the singleton pregnancy group. Particularly the differences reached at the level of statistical significance for those at the 1st trimester(p<0.01). It is concluded that the study findings imply that fatty acid metabolism may meaningfully differ by the type and stage of pregnancy. Future research needs to be conducted to more elucidate grounding etiology and possible roles of dietary fatty acid intake levels in relation to the study findings.
Glaucoma is one of the leading causes of blindness worldwide and is characterized by degeneration of the optic nerve. Elevated intraocular pressure (IOP) is the major contributing factor to optic nerve damage. However, some patients develop glaucoma even with normal IOP. Other factors, including age, race, myopia, and nutrition, can affect glaucoma risk. Dietary fat intake and serum fatty acid composition are closely related with the fatty acid profile of the retina and thus can modulate glaucoma risk. In this study, we collected serum samples from 34 glaucoma patients (26 primary open angle glaucoma (POAG) and 8 normal tension glaucoma (NTG)) and 45 healthy controls and analyzed their serum phospholipid fatty acid concentrations. The results show that the ratio of oleic acid to stearic acid (OA/SA), which is an indicator of stearoyl-CoA desaturase activity, was higher in POAG patients when compared to normal controls. The ratio of eicosapentaenoic acid to arachidonic acid (EPA/AA), which is an indirect marker of eicosanoid biosynthesis, was also higher in glaucoma patients (p=0.048). These results imply that dietary fatty acid intake and serum fatty acid profile can influence glaucoma risk. Additional study is necessary to identify the relationship between fatty acids and glaucoma.
The effects of various dietary docosahexaenoix acid(DHA) levels on the brain phospholipids and serum and liver lipid compositions were studied in rats using DHA concentrated oil and corn oil as a control for 4 weeks. Serum total cholesterol and HDL cholesterol levels tended to be the lowest by adding 20% DHA to corn oil. Serum triglyceride levels significantly decreased by adding 30% DHA. Liver cholesterol and triglyceride levels were apparently decreased in the groups added above 20% DHA, especially, the lowest at adding 30% DHA. Brain weight and phospholipid content were not different among groups. The ratios of arachidonic to linoleic acids in serum and liver phosphatidylcholine(PC) were significantly decreased by adding dietary DHA and showed a flat form above 20% of dietary DHA. DHA levels of serum PC were gradually increased according to dietary DHA level. The fatty acid compositions of the brain PC and phosphatidylethanolamine(PE) did not appear any changes with accordance of the dietary DHA levels. However, compared with those of serum and liver in general, linoleic and arachidonic acid levels were very low. Oleic acids were apparently higher than those in the other tissues. DHA were higher than those in the other tissues rigardless of the dietary DHA, especially in brain PE. The ratios of arachidonic to linoleic acid were not apparent tendency in brain PC and PE. However, the ratios of brain PE were above 2 times higher than those of brain PC. As the results, the hypolipidemic effects of dietary DNA were remarkable in liver. Especially in regard to tendency of liver lipid levels and desaturation indices in serum and liver PC, the effects indicated significantly higher by adding 20-30% DHA to diet(n-6/n-3 ratio, about 4-7). Thus, in this study, these dietary DHA levels seemed to be appropriate, at least in these lipid paramenters.(Korean J Nutrition 34(2) : 132∼140, 2001)
Serum and liver lipid levels and fatty acid composition of liver phospolipids (PL) were investigated in 36 rats which consumed either one of five different dietary fats or a high carbohydrate diet for 4 weeks. As the sources of five dietary fats, concentrated cicosapentaenoic acid(EPA), fish oil (FO), perilla oil(PO), corn oil(CO) and beef tallow (BT) were provided to the rats. As a control group, cron starch (CS) replaced dietary fat. The FO group showed lower serum total cholesterol (TC), high density lipiprotein cholesterol(HDL-C) and serum PL levels than those of the CO group(p<0.05). There were no significant differences in serum TC and serum HDL-C levels between the polyunsatured fatty acid(PUFA) groups and the EPA, FO and PO groups. The CS group showed the highest level serum TC. Compared with the CS group, both the EPA and CO groups showed significantly lower atherogenic indices(AI). However, there were no significant differences in AI among different dietary fat groups. No significant differences in liver triglyceride (TG) , TC and PL levels were detected among the six experimental groups. Phosphatidylcholine(PC) and phosphatidylethanolamine(PE) composed 30-40% and 15-20% of total liver PL, respectively. The fatty acid composition of liver PC and PE reflected dietary fatty acid composition . Compared to the different dietary fat based diets used in our study, the high carbohydrate diet had the most adverse effects on serum lipid profiles. However, we can not conclude from this result that long chain n-3 PUFA diets such as the EPA and FO based diets have more beneficial effects on serum lipid profiles than n-6 PUFA diet such as the CO based diet or shorter chain n-3 PUFA diets like the PO based diet.
Journal of the Korean Applied Science and Technology
/
v.13
no.2
/
pp.55-65
/
1996
The antioxidant effects of freeze-drying acorn were examined to find how much the freeze-drying acorn can reduce peroxidized corn oil poisoning, which influenced cholesterol, triglyceride, phospholipids, lipidperoxides, GOT(glutamate oxaloacetate transaminase), GPT(glutamate pyruvate transaminase) in serum, and cholesterol, triglyceride, lipidperoxides, fatty acid of phospholipids, SOD(superoxide dismutase), catalase in liver. In this experiment, male rats of Sprague-Dawley strain were used. The rats were divided into 6 groups, which were fed differently for 5 weeks : basal diet, 10% peroxidized corn oil added to basal diet, 1% acorn flour and 10% peroxidized corn oil added to basal diet, 5% acorn flour and 10% peroxidized corn oil added to basal diet, 10% acorn flour and 10% peroxidized corn oil added to basal diet, and 0.25% tannic acid and 10% peroxidized corn oil added to basal diet. The results were as follows : It was found that the peroxidized corn oil-fed 5 weeks induced the elevation of cholesterol, triglycerides, lipid peroxides, GOT, GPT in serum, and cholesterol, triglycerides, lipid peroxides in liver as compared to the basal diet-fed rats, but the acorn flour-fed rats reduced the elevation of these components. In addition, saturated fatty acid in rat liver phospholipids induced the elevation by feeding of peroxidized corn oil and, on the other hand, the acorn flour-fed rats reduced the elevation of saturated fatty acids. The acorn flour-fed rats reduced the activity of SOD in liver while they enhanced the activity of catalase in liver as compared with the peroxidized corn oil-fed rats.
Lipid consumption in early life has been implicated with arteriosclerosis in later life. It has been also claimed that lipid contents of serum in early life would reflect coronary atherosclerosis in later life. Present study has been undertaken to look for serum lipid contents of mother and newborn simultaneously to determine the difference of various lipid classes. Lipids were extracted by Folch method. Total lipid was determined gravimetrically; cholesterol by Zak's method, phospholipids by Fiske-Subba-Row's method, and triglycerides by Sugiura's method. Fatty acids were analysed by gas liguid chromatography. Values of the total lipids of mother was significantly higher than those of newborn. HDI-cholesterol/total cholesterol ratio of newborn's was higher than mother's. The amount of saturated fatty acids in the serum cholesteryl ester of newborn was significantly higher than mother's.
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