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Interactions between adipose tissue and the immune system

Published online by Cambridge University Press:  11 October 2007

Caroline M. Pond
Affiliation:
Department of Biology, The Open University, Milton Keynes, MK7 6AA
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Abstract

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Type
Principal Symposium on ‘Lipid absorption and metabolism: physiological and molecular aspects’
Copyright
Copyright © The Nutrition Society 1996

References

Abate, N. & Garg, A. (1995). Heterogeneity in adipose tissue metabolism: causes, implications and management of regional obesity. Progress in Lipid Research 34, 5370.CrossRefGoogle Scholar
Ailhaud, G., Grimaldi, P. & Négrel, R. (1992). Cellular and molecular aspects of adipose tissue development. Annual Reviews of Nutrition 12, 207233.CrossRefGoogle ScholarPubMed
Al, M. D. M., van Houwelingen, A. C., Kester, A. D. M., Hasaart, T. H. M., de Jong, A. E. P. & Hornstra, G. (1995). Maternal essential fatty acid patterns during normal pregnancy and their relationship to the neonatal essential fatty acid status. British Journal of Nutrition 74, 5568.CrossRefGoogle Scholar
Ardawi, M. S. M. & Newsholme, E. A. (1985). Metabolism in lymphocytes and its importance in the immune response. Essays in Biochemistry 21, 143.Google ScholarPubMed
Bélisle, C., Sainte-Marie, G. (1981). Topography of the deep cortex of lymph nodes of various mammalian species. Anatomical Record 201, 553561.CrossRefGoogle ScholarPubMed
Björntorp, P. (1987). Adipose tissue distribution and morbidity. Recent Advances in Obesity Research 5, 6065.Google Scholar
Blau, J. N. (1977). A comparative study of the microcirculation in the guinea-pig thymus, lymph nodes and Peyer's patches. Clinical and Experimental Immunology 27, 340347.Google Scholar
Buttke, T. M. (1984). Inhibition of lymphocyte proliferation by free fatty acids. 1. Differential effects on mouse B and T lymphocytes. Immunology 53, 235242.Google Scholar
Calder, P. C. (1993). The effects of fatty acids on lymphocyte functions. Brazilian Journal of Medical Biological Research 26, 901917.Google ScholarPubMed
Calder, P. C., Bond, J. A., Bevan, S. J., Hunt, S. V. & Newsholme, E. A. (1991). Effect of fatty acids on the proliferation of concanavalin A-stimulated rat lymph node lymphocytes. International Journal of Biochemistry 23, 579588.CrossRefGoogle ScholarPubMed
Calder, P. C. & Newsholme, E. A. (1992). Polyunsaturated fatty acids suppress human peripheral blood lymphocyte proliferation and interleukin-2 production. Clinical Science 82, 695700.CrossRefGoogle ScholarPubMed
Calder, P. C., Yaqoob, P., Harvey, D. J., Watts, A. & Newsholme, E. A. (1994). Incorporation of fatty acids by concanavalin A-stimulated lymphocytes and the effect on fatty acid composition and membrane fluidity. Biochemical Journal 300, 509518.CrossRefGoogle ScholarPubMed
Colby, R. H. & Pond, C. M. (1993). Site-specific differences in the responses of guinea-pig adipose tissue to changes in the fatty acid composition of the diet. Nutrition Research 13, 12031212.CrossRefGoogle Scholar
Cooper, G. & Schiller, A. L. 1975 Anatomy of the Guinea Pig Cambridge, Mass.: Harvard University Press.Google Scholar
Cousin, B., Casteilla, L., Dani, C., Muzzin, P. & Revelli, J. P. (1993). Adipose tissues from various anatomical sites are characterized by different patterns of gene expression and regulation. Biochemical Journal 292, 873876.CrossRefGoogle ScholarPubMed
Erickson, K. L., Hubbard, N. E. & Somers, S. D. (1992). Dietary fat and immune function. In Nutrition and Immunology 81104 Chandra, R. K. St John's, Newfoundland: ARTS Biomedical.Google Scholar
Fernandes, G., Mohan, N., Tomar, V. & Ventkatraman, J. T. (1992). Effect of calorie restriction and omega-3 lipid diet on therapy in murine AIDS. In Nutrition and Immunology 255268 Chandra, R. K. St John's, Newfoundland: ARTS Biomedical.Google Scholar
Fielding, C. J. (1993). Lipid transfer proteins: catalysts, transmembrane carriers and signalling intermediates for intracellular and extracellular lipid reactions. Current Opinion in Lipidology 4, 218222.CrossRefGoogle Scholar
Frayn, K. N., Humphreys, S. M. & Coppack, S. W. (1995). Fuel selection in white adipose tissue. Proceedings of the Nutrition Society 54, 177189.CrossRefGoogle ScholarPubMed
Girard, J., Ferré, P., Pégorier, J.-P., Duée, P.-H. (1992). Adaptations of glucose and fatty acid metabolism during perinatal and suckling-weaning transition. Physiological Reviews 72, 507562.CrossRefGoogle ScholarPubMed
Grimble, R. F. (1989). Cytokines: their relevance to nutrition. European Journal of Clinical Nutrition 43, 217230.Google ScholarPubMed
Grünfeld, C. & Feingold, K. R. (1991). The metabolic effects of tumor necrosis factor and other cytokines. Biotherapy 3, 143158.CrossRefGoogle ScholarPubMed
Grünfeld, C. & Feingold, K. R. (1992). Tumor necrosis factor, interleukin, and interferon induced changes in lipid metabolism as part of host defense (43424). Proceedings of the Society for Experimental Biology and Medicine 200, 224227.CrossRefGoogle Scholar
Grünfeld, C., Gulli, R., Moser, A. H., Gavin, L. A. & Feingold, K. R. (1989). Effect of tumour necrosis factor administration in vivo on lipoprotein lipase activity in various tissues of the rat. Journal of Lipid Research 30, 579585.CrossRefGoogle ScholarPubMed
Hardardottir, I., Doerrler, W., Feingold, K. R. & Grünfeld, C. (1992). Cytokines stimulate lipolysis and decrease lipoprotein lipase activity in cultured fat cells by a prostaglandin independent mechanism. Biochemical and Biophysical Research Communications 15, 237243.CrossRefGoogle Scholar
Heath, T. & Brandon, R. (1983). Lymphatic and blood vessels of the popliteal node in sheep. Anatomical Record 207, 461472.CrossRefGoogle ScholarPubMed
Henry, K., Farrer-Brown, G. 1981 A Colour Arias of the Thymus and Lymph Nodes London: Wolfe Medical Publications.Google Scholar
Herman, P. G., Yamamoto, I. & Mellins, H. Z. (1972). Blood microcirculation in the lymph node during the primary immune response. Journal of Experimental Medicine 136, 697714.CrossRefGoogle ScholarPubMed
Hotamisligil, G. S., Shargill, N. S. & Spiegelman, B. M. (1993). Adipose expression of tumor necrosis factor-α: direct role in obesity-linked insulin resistance. Science 259, 8791.CrossRefGoogle ScholarPubMed
Hunter, D. J., Rimm, E. B., Sacks, F. M., Stampfer, M. J., Colditz, G. A., Litin, L. B. & Willett, W. C. (1992). Comparison of measures of fatty acid intake by subcutaneous fat aspirate, food frequency questionnaire, and diet records in a free-living population of US men. American Journal of Epidemiology 135, 418427.CrossRefGoogle Scholar
Kampmeier, O. F. 1969 Evolution and Comparative Morphology of the Lymphatic System Springfield. Ill.: Charles C. Thomas.Google Scholar
Keast, D., Cameron, K. & Morton, A. R. (1988). Exercise and the immune response. Sports Medicine 5, 248267.CrossRefGoogle ScholarPubMed
Kowala, M. C. & Schoefl, G. I. (1986). The popliteal lvmph node of the mouse: internal architecture, vascular distribution and lymphatic supply. Journal of Anatomy 148, 2546.Google ScholarPubMed
Lin, D. S., Connor, W. E. & Spenler, C. W. (1993). Are dietary saturated, monounsaturated, and polyunsaturated fatty acids deposited to the same extent in adipose tissue of rabbits?. American Journal of Clinical Nutrition 58, 174179.CrossRefGoogle Scholar
McCarthy, D. O., Kluger, M. J. & Vander, A. J. (1985). The role of fever in appetite suppression after endotoxin administration. American Journal of Clinical Nutrition 40, 310316.CrossRefGoogle Scholar
Marchington, J. M. & Pond, C. M. (1990). Site-specific properties of pericardial and epicardial adipose tissue: the effects of insulin and high-fat feeding on lipogenesis and the incorporation of fatty acids in vivo. International Journal of Obesity 14, 10131022.Google Scholar
Mattacks, C. A. & Pond, C. M. (1996). The organization of adipose tissue surrounding lymph nodes in guinea-pigs and methods of studying local interactions between adipose and lymphoid tissue. Proceedings of the Nutrition Society 55, 116A.Google Scholar
Mattacks, C. A., Sadler, D. & Pond, C. M. (1987). The effects of exercise on the activities of hexokinase and phosphofructokinase in superficial, intra-abdominal and intermuscular adipose tissue of guinea-pigs. Comparative Biochemistry and Physiology 87B, 533542.Google Scholar
Morris, B. (1986). The ontogeny and comportment of lymphoid cells of fetal and neonatal sheep. Immunological Reviews 91, 219233.CrossRefGoogle ScholarPubMed
Patton, J. S., Shepard, H. M., Wilking, H., Lewis, G., Aggarwal, B. B., Eessalu, T. E., Gavin, L. A. & Grünfeld, C. (1986). Interferon and tumor necrosis factors have similar catabolic effects on 3T3-L1 cells. Proceedings of the National Academy of Sciences, USA 83, 83138317.CrossRefGoogle Scholar
Pereira, M. E. & Pond, C. M. (1995). Organization of white adipose tissue in lemuridae. American Journal of Primatology 35, 113.CrossRefGoogle ScholarPubMed
Pond, C. M. (1977). The significance of lactation in the evolution of mammals. Evolution 31, 177199.CrossRefGoogle ScholarPubMed
Pond, C. M. (1978). Morphological aspects and the ecological and mechanical consequences of fat deposition in wild vertebrates. Annual Review of Ecology and Sytematics 9, 519570.CrossRefGoogle Scholar
Pond, C. M. (1983). Parental feeding as a determinant of ecological relationships in mesozoic terrestrial ecosystems. Acta Palaeontological Polonica 28, 215224.Google Scholar
Pond, C. M. (1992). An evolutionary and functional view of mammalian adipose tissue. Proceedings of the Nutrition Society 51, 367377.CrossRefGoogle ScholarPubMed
Pond, C. M. (1994). The structure and organization of adipose tissue in naturally obese non-hibernating mammals. In Obesity in Europe '93. Proceedings of the 5th European Congress of Obesity 419426 Ditschuneit, H., Gries, F. A., Hauner, H., Schusdziarra, V. & Wechsler, J. G. London: J. Libbey & Co..Google Scholar
Pond, C. M. & Mattacks, C. A. (1987a). Comparative aspects of hexokinase and phosphofructokinase activity in intermuscular adipose tissue. Comparative Biochemistry and Physiology 87B, 543551.Google Scholar
Pond, C. M. & Mattacks, C. A. (1987b). The anatomy of adipose tissue in captive Macaca monkeys and its implications for human biology. Folia Primatologia 48, 164185.CrossRefGoogle ScholarPubMed
Pond, C. M. & Mattacks, C. A. (1991). The effects of noradrenaline and insulin on lipolysis in adipocytes isolated from nine different adipose depots of guinea pigs. International Journal of Obesity 15, 609618.Google ScholarPubMed
Pond, C. M. & Mattacks, C. A. (1995). Interactions between adipose tissue around lymph nodes and lymphoid cells in vivo. Journal of Lip id Research 36, 22192231.CrossRefGoogle Scholar
Pond, C. M., Mattacks, C. A. & Sadler, D. (1992). The effects of exercise and feeding on the activity of lipoprotein lipase in nine different adipose depots of guinea-pigs. International Journal of Biochemistry 24, 18251831.CrossRefGoogle ScholarPubMed
Raclot, T. & Groscolas, R. (1993). Differential mobilization of white adipose tissue fatty acids according to chain length, unsaturation, and positional isomerism. Journal of Lipid Research 34, 15151526.CrossRefGoogle ScholarPubMed
Shields, J. W. (1992). Lymph, lymph glands and homeostasis. Lymphology 25, 147153.Google ScholarPubMed
Steeber, D. A., Erickson, C. M., Hodde, K. C. & Albrecht, R. M. (1987). Vascular changes in popliteal lymph nodes due to antigen challenge in normal and lethally irradiated mice. Scanning Microscopy 1, 831839.Google ScholarPubMed
Suzuki, T. (1952). Histological studies on lymphatic apparatus in human adipose tissue. Acta School of Medicine of the University of Kyoto 30, 174182.Google ScholarPubMed
Teruya, J., Cluette-Brown, J., Szczepiorkowski, Z. M. & Laposata, M. (1995). Modes of transport of fatty acid to endothelial cells influences intracellular fatty acid metabolism. Journal of Lipid Research 36, 266276.CrossRefGoogle Scholar
Tjønneland, A., Overvad, K., Thorling, E. & Ewertz, M. (1993). Adipose tissue fatty acids as biornarkers of dietary exposure in Danish men and women. American Journal of Clinical Nutrition 57, 629633.CrossRefGoogle Scholar
Valero-Garrido, D., López-Frias, M., Llopis, J., López-Jurado, M. (1990). Influence of dietary fats on the lipid composition of perirenal adipose tissue of rats. Annals of Nutrition and Metabolism 34, 327332.CrossRefGoogle Scholar
Woodward, B. (1992). Influence of wasting protein-energy malnutrition on apparent thymic T-cell inductive capacity and on recirculation lymphocyte pool sizes in the weanling mouse. In Nutrition and Immunology 163177 Chandra, R. K. St John's, Newfoundland: ARTS Biomedical.Google Scholar
Yaqoob, P., Newsholme, E. A. & Calder, P. C. (1994). The effect of dietary lipid manipulation on rat lymphocyte subsets and proliferation. Immunology 82, 603610.Google ScholarPubMed
Yoffey, J. M. & Courtice, F. C. 1970 Lymphatics, Lymph and the Lymphomyeloid Complex London and New York: Academic Press.Google Scholar