Blood serum concentration of lipids and lipoproteins and body composition
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  • 作者:A. I. Kozlov (12)
    G. G. Vershubskaya (12)
    E. D. Sanina (23)
    Yu. A. Ateeva (1)
    N. N. Potolitsyna (4)
    A. M. Kaneva (4)
    O. V. Rogachevskaya (5)
    E. R. Boiko (4)
  • 关键词:apolipoprotein E &#8211 ; cholesterol &#8211 ; triglycerides &#8211 ; lipoproteins &#8211 ; body mass index &#8211 ; body surface area &#8211 ; body muscle &#8211 ; body fat
  • 刊名:Human Physiology
  • 出版年:2012
  • 出版时间:May 2012
  • 年:2012
  • 卷:38
  • 期:3
  • 页码:324-330
  • 全文大小:163.0 KB
  • 参考文献:1. Matiegka, J., The Testing of Physical Efficiency, Am. J. Phys. Anthropol, 1921, vol. 4, no. 3, p. 223.
    2. Shephard, R.J., Body Composition in Biological Anthropology, Cambridge: Cambr. Univ. Press, 1991.
    3. Martirosov, E.G., Nikolaev, D.V., and Rudnev, S.G., Tekhnologii i metody opredeleniya sostava tela cheloveka (Technologies and Methods of Determination of Body Composition), Moscow: Nauka, 2006.
    4. Tanner, J.M., The Relation between Serum Cholesterol and Physique in Healthy Young Men, J. Physiol., 1951, vol. 115, p. 371.
    5. Montoye, H.J., Epstein, F.H., and Kjelsberg, M.O., Relationship between Serum Cholesterol and Body Fatness, Am. J. Clin. Nutr., 1966, vol. 18, p. 397.
    6. Alekseeva, T.I., Izmenchivost’ osnovnykh komponentov tela cheloveka v zavisimosti ot urovnya lipidov i belkov v syvorotke krovi, in Morfo-fiziologicheskie issledovaniya v antropologii (Variability of Main Components of Human Body Depending on Lipid and Protein Levels in Blood Serum, in Morpho-Physiological Studies in Anthropology), Moscow: Izd-vo MGU, 1970, p. 53.
    7. Gordon, E., Tobias, P.V., Mendlesohn, D., et al., The Relationship between Somatotype and Serum Lipids in Male and Female Young Adults, Hum. Biol., 1987, vol. 59, no. 3, p. 459.
    8. Kozlov, A.I., List of Ethnic Particularities in Preventive Cardiology, Tez. 1-i Mezhdunar. konf. RO EAA., (Proc. Ist Int. Conf. PO EAA) Moscow, 1998, p. 58.
    9. Kozlov, A.I., Vershubskaya, G.G., Lisitsyn, D.V., et al., Permskie i volzhskie finny: meditsinskaya antropologiya v ekologicheskoi perspektive (Perm and Volga Suomi: Medical Antropology in Ecological Prospective), Perm: PGPU, IL “ArktAn-S”, 2009.
    10. Mahley, R.W. and Rall, S.C., Apolipoporitein E: Far More Than a Lipid Transport Protein, Annu. Rev. Genomics Hum. Genet, 2000, vol. 1, p. 507.
    11. Boiko, E.R. and Kaneva, A.M., Apoprotein E and Its Role in Clinic Physiology, Usp. Fiziol. Nauk, 2009, vol. 40, no. 1, p. 3.
    12. Kozlov, A.I., Borinskaya, S.A., and Sanina, E.D., “Thrifty” Genotype ɛ4/ɛ4 of APOE Gene and Danger of Metabolic Damages in Ural People Populations, Ekol. Genet, 2011, vol. 11, no. 2, p. 17.
    13. Rall, S.C. and Mahley, R.W., The Role of Apolipoprotein E Genetic Variants in Lipoprotein Disorders, J. Int. Med., 1992, vol. 231, p. 653.
    14. Siest, G., Pillot, T., Regis-Bailly, A., et al., Apolipoprotein E: An Important Gene and Protein to Follow in Laboratory Medicine, Clin. Shem, 1995, vol. 41, no. 8, p. 1068.
    15. Zannis, V.I., Just, P.W., and Breslow, J.L., Human Apolipoprotein E Isoprotein Subclasses Are Genetically Determined, Am. J. Hum. Genet., 1981, vol. 33, p. 11.
    16. Klimov, A.N. and Nikul’cheva, N.G., Obmen lipidov i lipoproteidov i ego narusheniya (Metabolism of Lipid and Lipoproteins and Its Disorders), St. Petersburg: Piter Kom, 1999.
    17. Boerwinkle, E., Visvikis, S., Welsh, D., et al., The Use of Measured Genotype Information in the Analysis of Quantitative Phenotypes in Man. II. The Role of Apolipoprotein E Polymorphism in Determining Levels, Variability, and Covariability of Cholesterol, Beta-Lipoprotein and Triglycerides in a Sample of Unrelated Individuals, Am. J. Med. Genet., 1987, vol. 27, no. 3, p. 567.
    18. Haddy, N., De Bacquer, D., Chemaly, M.M., et al., The Importance of Plasma Apolipoprotein E Concentration in Addition to Its Common Polymorphism on InterIndividual Variation in Lipid Levels: Results from Apo Europe, Europ. J. Hum. Genet, 2002, vol. 10, no. 12, p. 841.
    19. Bohnet, K., Regis-Bailly, A., Vincent-Viry, M., et al., Apolipoprotein E Genotype e4/e2 in the STANISLAS Cohort Study-Dominance of the E2 Allele?, Ann. Hum. Genet., 1996, vol. 60, p. 509.
    20. Braeckman, L., DeBacquer, D., Rosseneu, M., and DeBacker, G., Apolipoprotein E Polymorphism in Middle-Aged Belgian Men: Phenotype Distribution and Relation to Serum Lipids and Lipoproteins, Atherosclerosis, 1996, vol. 120, p. 67.
    21. Vincent-Viry, M., Schiele, F., Gueguen, R., et al., Biological Variations and Genetic Reference Values for Apolipoprotein E Serum Concentrations: Results from the STANISLAS Cohort Study, Clin. Chem., 1998, vol. 44, p. 957.
    22. Friedewald, W.T., Levy, R.I., and Fredrickson, D.S., Estimation of the Concentration of Low-Density Lipoprotein Cholesterol in Plasma, without Use of the Preparative Ultracentrifuge, Clin. Chem., 1972, vol. 18, no. 6, p. 499.
    23. Bunak, V.V., Antropometriya (Antropometry), Moscow: Uchpedgiz, 1941.
    24. Schiele, F., De Bacquer, D., Vincent-Viry, M., et al., Apolipoprotein E Serum Concentration and Polymorphism in Six European Countries: the ApoEurope Project, Atherosclerosis, 2000, vol. 152, no. 2, p. 475.
    25. Kaneva, A.M., Potolitsyna, N.N., and Boiko, E.R., Soderzhanie apolipoproteina-E u zhitelei evropeiskogo Severa, Ekologiya Cheloveka, 2011, no. 2, p. 43.
    26. Panin, L.E., Energeticheskie osnovy adaptatsii (Energy Base of Adaptation), Leningrad: Meditsina, 1978.
    27. Kozlov, A.I., Sanina, E.D., Vershubskaya, G.G., and Ateeva, Yu.A., Requirement for Energy and Mechanisms of Lipid Metabolism Regulation in Eastern Suomi Against a Background of Normal Nutrition, Fiziol. Chel., 2009, vol. 35, no. 6, p. 122.
    28. Borinskaya, S.A., Kal’ina, N.R., Sanina, E.D., et al., Polymorphism of Apolipoprotein E gene (APOE) in populations in Russia and Contiguous Countries, Genetika, 2007, vol. 43, no. 10, p. 1434.
    29. Dallongeville, J., Lussier-Cacan, S., and Davignon, J., Modulation of Plasma Triglyceride Levels by ApoE Phenotype: a Meta-Analysis, J. Lipid Res., 1992, vol. 33, p. 447.
    30. Bennet, A.M., Di Angelantonio, E., Ye, Z., et al., Association of Apolipoprotein E Genotypes with Lipid Levels and Coronary Risk, JAMA, 2007, vol. 298, no. 11, p. 1300.
    31. Despres, J.P., Allard, C., Tremblay, A., et al., Evidence for a Regional Component of Body Fatness in the Association with Serum Lipids in Men and Women, Metabolism, 1985, vol. 34, no. 10, p. 967.
    32. Ducimetiere, P., Richard, J., Cambien, F., et al., Relationship between Adiposity Measurements and the Incidence of Coronary Heart Disease in a Middle-Aged Male Population-The Paris: Prospective Study, Amer. J. Clin. Nutr, 1985.
    33. Gudkova, L.K., Morphological Correlations, Vopr. Antropol, 2003, no. 91, p. 3.
    34. Misikova, Ya., Kautska, Ya., Krzhikava, L., et al., Ratio of Somatometric Indices to Plasma Cholesterol Level in Teenagers, Vopr. Antropol, 1977, no. 55, p. 132.
    35. Brown, J.B. and Strong, J.A., Effects of Nutritional Status and Thyroid Function on the Metabolism of Oestradiol, J. Endocrinol, 1965, vol. 32, p. 107.
    36. Frisch, R.E., Revelle, R., and Cook, S., Components of Weight at Menarche and the Initiation of the Adolescent Growth Spurt in Girls: Estimated Total Water, Lean Body Weight and Fat, Hum. Biol., 1973, vol. 45, no. 3, p. 469.
    37. Balakhonova, E.I., Variability of Somatic Parameters and Tissue Components of Body Composition in Girls of Different Maturation-Age, Vopr. Antropol, 1998, no. 89, p. 51.
    38. Yampol’skaya, Yu.A., Physical Development of Schoolboys Residing in Large Megapolis in Recent Decade: State, Tendencies, Prognosis, Method of Screening Estimatin, Extended Abstract of Doctoral (Biol) Dissertation, Moscow, 2000.
    39. Bolotin A.S. Mathematical Simulation in Recognition of States of Physiological Systems (As Exemplified by the Endocrine System and Brain Bloodstream): Diss. Cand. Sc. (Physics and Mathematics), Frunze, 1987.
    40. Bulygin, G.V., Mansurov, A.S., Mansurova, T.P., et al., Vliyanie sostoyaniya zdorov’ya na obshchuyu dinamiku antropoekologicheskogo napryazheniya v protsesse adaptatsii (Effect of State of Health on Total Time course of Antropoecological Tension During Adaptation), Krasnoyarsk, 1992.
    41. Smirnova, E.V., Mathematical Simulation of Adaptation to Extreme Situations, Effect of Group Stress and Correlation Adaptometry:, Extended Abstract of Doctoral (Physmath) Dissertation, Krasnoyarsk, 2000.
  • 作者单位:1. Perm State National Pedagogical University, Perm, 614990 Russia2. Institute of Developmental Physiology, Russian Academy of Education, Moscow, 119121 Russia3. Vavilov Institute of General Genetics, Russian Academy of Science, Moscow, 119991 Russia4. Institute of Physiology, Ural Branch, Russian Academy of Sciences, Syktyvkar, 167982 Russia5. Komi State Pedagogical Institute, Syktyvkar, 167982 Russia
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Life Sciences
    Human Physiology
    Biomedicine
    Russian Library of Science
  • 出版者:MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC.
  • ISSN:1608-3164
文摘
The goal of this study was to analyze the relationship of the blood serum apolipoprotein E (apoE), total cholesterol (TC), triglycerides (TG), and high- and low-density lipoproteins (HDLP, LDLP) levels with the body mass index (BMI), relative body surface area (RBSA), and the body muscle (BM) and body fat (BF) amounts. The study was carried out in male and female subjects aged 14&#8211;16 years (adolescent age group 1: n 1M = 141, n 1F = 151) and 18&#8211;25 years (young adult group 2: n 2M = 141, n 2F =46). No significant correlations of serum TG and HDL with the somatometric indices were found. The T-lated with the fat component (r 1 = 0.164; r 2 = 0.418) and negatively, with the muscle component of body composition (r 1 = −0.165; r 2 = −0.352) in female subject samples. Blood serum apoE is significantly correlated with body composition (r 1 = −0.168 for BF; r 1 = 0.266, p < 0.05 for BM) in female adolescent subjects. These correlations are significant (p < 0.06) in male subjects aged 14&#8211;16 years. The TC and LDLP contents are negatively correlated with RBSA (r 2 = −0.386 and −0.377, respectively) and positively correlated with BMI (r 2 = 0.413 and 0.415, respectively; p < 0.05) in young adult female subjects. With age, correlations between the fat content and apoE concentration change in female subject samples. The content of apoE decreases with increasing BF in female subjects aged 14&#8211;15 years; the correlation disappears in the age interval from 16 to 17 years. An increase in BF is accompanied by an increase in the apoE concentration in female subjects aged 18&#8211;19 years and older.

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