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Biomedical subjects

C E Moore

Publications and source records attributed to C E Moore.

At least 73 records · Page 4Linked to original sources

Relationship of menopausal status and exercise level to HDL-cholesterol in women.

The relationship between exercise habits, menopausal status and HDL cholesterol (HDL-C) was studied in 44 long-distance runners, 47 joggers, and 45 relatively inactive females. In each group, some women were post-menopausal (Post-M) and some pre-menopausal (Pre-M). HDL-C level was higher in runners (77.6 mg/dl) and joggers (70.4 mg/dl) than in the inactive group (62.1 mg/dl), but was not different Pre-M vs Post-M. Total cholesterol (TC) and LDL-C were higher in Post-M than in Pre-M subjects, but did not differ among exercise groups. Body weight and % fat were lower in Pre-M vs Post-M groups and were lower in the runners vs inactive subjects. The HDL-C/TC ratio was higher in the runners vs inactive subjects and there was a significant exercise-menopausal interaction indicating a beneficial exercise effect. Adjustment of lipoprotein values for possible confounding variables did not alter these results. Endurance exercise by Post-M females may help prevent adverse lipid and lipoprotein changes which might predispose them to coronary heart disease.

Adult↗

The relationship of exercise and diet on high-density lipoprotein cholesterol levels in women.

The relationship of exercise and diet on high-density lipoprotein (HDL) cholesterol was investigated in 45 long-distance runners (LD), 49 joggers (J), and 47 inactive (I) women. Fasting plasma triglycerides (TG), HDL cholesterol, total cholesterol (TC), and percent body fat (%BF) were measured in women ages 24-58 yr. TG levels were significantly lower in LD compared to I (p less than 0.02). Although TC was not significantly different among groups, HDL-cholesterol was higher in LD (78 mg/dl) compared to J (70 mg/dl) or I (62 mg/dl) (p less than 0.001). Multiple regression analyses indicated that alterations of plasma lipids and lipoprotein levels could not be attributed to intake differences of nutrients. Distance run and %BF were the strongest predictors of HDL-cholesterol in women. LD (23 %BF) were leaner than J (26 %BF) or I (30 %BF); however, when results were adjusted for %BF, significant differences between exercise groups remained for HDL cholesterol.

Adult↗

Trans fatty acids: transport and positional specificity in rat placental lecithin.

Differences in positional incorporation of trans and cis isomers of octadecenoic and octadecadienoic acids in placental lecithin of rats was demonstrated. A 14C-labeled albumin complex of elaidic, oleic, linoelaidic, or linoleic acid was injected into the jugular vein of pregnant rats. 6 h later 45-64% of the total radioactivity in placental lipids was found in phospholipids (PL), with a major portion of the label incorporated into choline phosphoglycerides (CPC). Following hydrolysis of placental CPC by phospholipase A2, distribution of radioactivity within isolated fatty acids and lysolecithin suggested preferential incorporation of t,t-18:2 at position 2 and a nearly equal distribution of t-18:1 at positions 1 and 2.

Animals↗

Positional specificity of trans fatty acids in fetal lecithin.

Differences in the positional incorporation of 9-trans[1-(14)C] octadecenoic (elaidic) and 9-trans,12-trans[1-(14)C] octadecadienoic (linoelaidic) acids in fetal lecithin of rats were demonstrated. On the 20th day of gestation, a 14C-labeled albumin complex of elaidic or linoelaidic acid was injected into the jugular vein of pregnant rats. For comparative purposes, 9-cis[1-(14)C] octadecenoic (oleic) or 9-cis,12-cis[1-(14)C] octadecadienoic (linoleic acid) was injected into the maternal circulation of rats. Animals were killed 6 hr later. Distribution of label in total lipids and phospholipids (PL) of fetal issue was measured by TLC. Irrespective of the label, the highest percentage of total radioactivity was associated with PL-59 to 67%. Within PL, the major portion of radioactivity was found in choline phosphoglycerides (CPG)-53 to 67%, and in ethanolamine phosphoglycerides (EPG)-18 to 33%. While linoelaidic acid was predominantly esterified in the 2-position of CPG, elaidic acid was nearly equally distributed between positions 1 and 2 of lecithin. Distribution of radioactivity within fatty acid methyl esters (FAME) of CPG measured by radio-GLC suggested that oleic and possibly linoleic acids may be converted to nervonic and arachidonic acid, respectively, in the rat by the 20th day of gestation. Following injection of elaidate, radioacivity of FAME was distributed between palmitate and elaidic acid indicating that rat fetal tissue may metabolize elaidic acid via beta-oxidation. In contrast, following injection of linoelaidate, radioactivity of FAME was primarily associated with tt-18:2, suggesting little biotransformation to other fatty acids by fetal tissues.

Animals↗

Placental transport of trans fatty acids in the rat.

Placental transport of 9-trans [1-14C] octadecenoic (elaidic) and 9-trans,12-trans [1-14C] octadecadienoic (linoelaidic) acids was demonstrated in rats. On the 18th day of gestation, a 14C-labeled albumin complex of elaidic or linoelaidic acid was injected into the jugular vein of pregnant rats. For comparison, 9-cis [1-14C] octadecenoic (oleic) or 9-cis,12-cis [1-14C] octadecadienoic (linoleic) acid also was injected into the maternal circulation of rats. All animals were sacrificed 1 hr following injection. Lipid composition and distribution of label were determined in maternal plasma, placental and fetal tissues. Differences in specific activities of plasma, placental and fetal total lipids indicated a decreasing concentration gradient for both cis and trans isomers of octadecenoic and octadecadienoic acids. Distribution of radioactivity in various lipid components was determined by thin layer chromatography. Irrespective of the label, the highest percentage of total radioactivity was carried by triglycerides (TG) in maternal plasma (approximately 60-80%), and was incorporated mainly in phospholipids (PL) of fetal tissue (approximately 50-60%). A nearly equal distribution of the label was found between PL and TG of placental lipids (approximately 40%). Radioactivity of fatty acid methyl esters (FAME) determined by radio-gas liquid chromatography indicated that after injection of linoelaidate, radioactivity of maternal plasma, placental and fetal tissue FAME was associated only with t,t-18:2. Following injection of elaidate, all the radioactivity in placental FAME was associated with t-18:1; however, in fetal tissues, the label was distributed between 16:0 and t-18:1. These findings suggest that, in contrast to linoelaidic acid, rat fetal tissues can metabolize elaidic acid via beta oxidation to form acetyl CoA and palmitic acid.

Animals↗

Incorporation and disappearance of trans fatty acids in rat tissues.

An investigation was undertaken to study the rate of incorporation and disappearance of trans isomers of octadecenoic and octadecadienoic acids from different tissues of rats fed 15% fat diets containing trans fatty acids for 3 months. At the end of 3 months some of the animals were killed and the remaining animals were changed over to a diet containing only trace amounts of trans fatty acids. Thereafter, representative animals were killed at 2, 4, 8, and 12 weeks. The fatty acid composition of tissue lipids was measured by gas liquid chromatography. Trans octadecenoate was primarily incorporated into phospholipids and triglycerides of plasma, liver, kidney, heart, adipose tissue, and red blood cells. Trans isomers of octadecadienoate accumulated in triglycerides of plasma, liver, kidney, heart, and adipose tissue while only small amounts accumulated in tissue phospholipids and cholesteryl esters. After removal of trans fatty acids from the diet, the time of disappearance of trans isomers of octadecenoate and octadecadienoate from tissues varied. With the exception of adipose tissue, 8 weeks after the trans fatty acid diet was discontinued, only negligible amounts of trans fatty acids were present in rat tissues, demonstrating that tissues studied can metabolize trans fatty acids.

Animals↗

Effect of trans fatty acids on serum lecithin: cholesterol acyltransferase in rats.

An investigation was undertaken to study the effect of trans isomers of octadecenoic (18:1) and octadecadienoic (18:2) acids on serum lecithin:cholesterol acyltransferase (LCAT). Male rats of the Wistar strain were fed diets containing 15% fat for 9 months. The fat diets were either hydrogenated fat mixtures containing trans fatty acids, corn oil or lard. At the end of 9 months, rats were killed and serum cholesterol levels and LCAT activity were measured. It was found that free and total serum cholesterol levels were decreased when animals were fed trans fatty acids when compared with animals fed corn oil or lard. Although in vitro studies indicated that the percentage of cholesterol esterified in serum was not affected by the presence of dietary trans fatty acids, LCAT activity generally decreased when trans fatty acids were fed to rats for 9 months. In this study a negative correlation was found between serum free cholesterol and LCAT activity. Depressed total LCAT activity (mumoles of cholesterol esterified per hour per liter of serum) may have been related to a reduced amount of substrate (free cholesterol).

Animals↗

Instrumental analysis of trace elements in thumbnails of human subjects.

Human thumbnails were analyzed for trace elements by instrumental analysis using thermal neutron activation technique. The average concentration of metals studied in clinically symptom-free adult female and male subjects were: zinc, 184 vs. 153 ppm; chromium, 6.8 vs. 4.2; selenium, 0.9 vs. 0.6; gold, 2.6 vs. 0.4; mercury, 1.9 vs. 0.4; silver, 0.7 vs. 0.3; cobalt, 0.07 vs. 0.04. A summary of literature reported concentration of metals in human nail is also presented.

Adult↗

Painful ophthalmoplegia following treated squamous carcinoma of the forehead. Orbital apex involvement from centripetal spread via the supraorbital nerve.

Intraneural and perineural spread of squamous carcinoma from the face to the cranial cavity is an important cause of delayed cranial nerve palsies after local excision of a skin tumour. As exemplified in reports of two cases, signs of this type of centripetal spread of squamous cell tumour along the branches and trunk of the supraorbital nerve are (i) severe unremitting orbital and forehead pain with associated hypoaesthesia, (ii) palpable or radiological evidence of thickening of the nerve at the supraorbital notch and (iii) evolution of ophthalmoplegia, blindness, and sensory loss in the first division of the trigeminal nerve. Appearance of severe supraorbital neuralgia months or years after excision of a skin tumour from the forehead should alert the clinician to extension of tumour cells along the supraorbital nerve. This may enable him to institute timely treatment before a complete orbital apex syndrome has developed.

Aged↗