09.12.2012 Views

Food Lipids: Chemistry, Nutrition, and Biotechnology

Food Lipids: Chemistry, Nutrition, and Biotechnology

Food Lipids: Chemistry, Nutrition, and Biotechnology

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

246. Y. B. Kim, R. Nakajima, T. Matsuo, T. Inoue, T. Sekine, M. Komuro, T. Tamura, K.<br />

Tokuyama, <strong>and</strong> M. Suzuki. Gene expression of insulin signal-transduction pathway<br />

intermediates is lower in rats fed a beef tallow diet than in rats fed a safflower oil diet.<br />

Metabolism 45:1080 (1996).<br />

247. A. L. Thompson, M. Y. C. Lim-Fraser, E. W. Kraegen, <strong>and</strong> G. J. Cooney. Effects of<br />

individual fatty acids on glucose uptake <strong>and</strong> glycogen synthesis in soleus muscle in<br />

vitro. Am. J. Physiol. Endocrinol. Metab. 279:E577 (2000).<br />

248. J. Luo, S. W. Rizkalla, J. Boillot, C. Alamowitch, H. Chaib, F. Bruzzo, N. Desplanque,<br />

A. M. Dalix, G. Dur<strong>and</strong>, <strong>and</strong> G. Slama. Dietary (n-3) polyunsaturated fatty acids improve<br />

adipocyte insulin action <strong>and</strong> glucose metabolism in insulin-resistant rats: Relation<br />

to membrane fatty acids. J. Nutr. 126:1951 (1996).<br />

249. L. A. Baur, J. O’Connor, D. A. Pan, A. D. Kriketos, <strong>and</strong> L. H. Storlien. The fatty acid<br />

composition of skeletal muscle membrane phospholipid: Its relationship with the type<br />

of feeding <strong>and</strong> plasma glucose levels in young children. Metabolism 47:106 (1998).<br />

250. O. Ezaki, E. Tsuji, K. Momomura, M. Kasuga, <strong>and</strong> H. Itakura. Effects of fish <strong>and</strong><br />

safflower oil feeding on subcellular glucose transporter distributions in rat adipocytes.<br />

Am. J. Physiol. 263:E94 (1992).<br />

251. T. H. Malasanos <strong>and</strong> P. W. Stacpoole. Biological effects of omega-3 fatty acids in<br />

diabetes mellitus. Diabetes Care 14:1160 (1991).<br />

252. D. Lemmonier. Effect of age, sex, <strong>and</strong> site on the cellularity of the adipose tissue in<br />

mice <strong>and</strong> rats rendered obese by a high fat diet. J. Clin. Invest. 51:2907 (1972).<br />

253. M. R. Greenwood <strong>and</strong> J. Hirsch. Postnatal development of adipocyte cellularity in the<br />

normal rat. J. Lipid Res. 15:474 (1974).<br />

254. P. R. Johnson, J. S. Stern, M. R. C. Greenwood, <strong>and</strong> J. Hirsch. Adipose tissue hyperplasia<br />

<strong>and</strong> hyperinsulinemia in Zucker obese female rats: A developmental study. Metabolism<br />

27:1941 (1978).<br />

255. B. Obst, R. Schemmel, Czajka-Narins, <strong>and</strong> R. L. Merkel. Adipocyte size <strong>and</strong> number<br />

in dietary resistant <strong>and</strong> susceptible rats. Am. J. Physiol. 240:E47 (1981).<br />

256. F. Bourgeois, A. Alexiu, <strong>and</strong> D. Lemmonier. Dietary-induced obesity: Effects of dietary<br />

fats on adipose cellularity in mice. Br. J. Nutr. 49:17 (1983).<br />

257. P. Bjorntorp, M. Karlsson, <strong>and</strong> P. Petterrson. Expansion of adipose tissue storage capacity<br />

at different ages in rats. Metabolism 31:366 (1982).<br />

258. I. M. Faust, P. R. Johnson, J. S. Stern, <strong>and</strong> J. Hirsch. Diet-induced adipocyte number<br />

increase in adult rats: A new model of obesity. Am. J. Physiol. 235:E279 (1978).<br />

259. D. Lemmonier <strong>and</strong> A. Alexiu. <strong>Nutrition</strong>al, genetic <strong>and</strong> hormonal aspects of adipose<br />

tissue cellularity. In: The Regulation of the Adipose Tissue Mass (J. Vague <strong>and</strong> J. Boyer,<br />

eds.). Excerpta Medica, Amsterdam, 1974, p. 158.<br />

260. M. Launay, N. Vodovar, <strong>and</strong> J. Raulin. Developpement du tissu adipeux: Nombre et<br />

taille des cellules en fonction de la valeur energetique et de l’insaturation des lipides<br />

du regime. Bull. Soc. Chim. Biol. 50:439 (1968).<br />

261. J. Raulin <strong>and</strong> M. Launay. Enrichissement en ADN et ARN du tissue adipeux epididymaire<br />

du rat administration de lipides insatures. Nutr. Diet. 9:208 (1967).<br />

262. J. Raulin, D. Lapous, P. Dauvillier, <strong>and</strong> C. Loriette. Remaniements structuraux du tissu<br />

adipeux et apport excessif d’acides gras essentiels. Nutr. Metab. 13:249 (1971).<br />

263. D. Lemmonier, A. Alexiu, <strong>and</strong> M. T. Lanteaume. Effect of two dietary lipids on the<br />

cellularity of the rat adipose tissue. J. Physiol. (Paris) 66:729 (1973).<br />

264. G. Shillabeer <strong>and</strong> D. C. W. Lau. Regulation of new fat cell formation in rats: The role<br />

of dietary fats. J. Lipid Res. 35:592 (1994).<br />

265. J. Kirtl<strong>and</strong>, M. Gurr, <strong>and</strong> E. M. Widdowson. Body lipids of guinea pigs exposed to<br />

different dietary fats from mid-gestation to 3 months of age. I. The cellularity of<br />

adipose tissue. Nutr. Metab. 20:338 (1976).<br />

Copyright 2002 by Marcel Dekker, Inc. All Rights Reserved.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!