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The Journal of Nutritional Biochemistry 2001: Vol 12 Index PDF

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Author Index Aalinkeel, R.: See Srinivasan, M., 5 term high fiber diet consumption on rat Dayanandan, A., Kumar, P., and Panneer- Akatsuka, N.: See Hara, H., 450 exocrine pancreatic function after selvam, C. Protective role of L-carnitine Alpers, D.H.: See Brada, N., 200 chronic ethanol intake, 338 on liver and heart lipid peroxidation in Amaral, M.E.C.: See Vieira, E.C., Briske-Anderson, M.: See Reeves, P.G., atherosclerotic rats, 254 Aoyama, Y.: See Hara, H., 450 674 Dehne, M.G.: See Miihling, J., 46 Arivazhagan, P., Ramanathan K., and Brooks, S.P.J., and Lampi, B.J. Fatty acid Del Angel-Meza, A.R., Feria-Velasco, A., Panneerselvam, C. Effect of DL-a- oxidation and fatty acid synthesis in Ontiveros-Martinez, L., Gallardo, L., lipoic acid on the status of lipid peroxi- energy restricted rats, 422 Gonzalez-Burgos, I., and Beas-Zarate, dation and antioxidants in mitochondria Brown, M., Evans, M., and McIntosh, M. C. Protein- and tryptophan-restricted di- of aged rats, 2 Linoleic acid partially restores the tri- ets induce changes in rat gonadal hor- Atkinson, S.A.: See Bertolo, R.F.P., 66, 73 glyceride content of conjugated linoleic mone levels, 192 Austic, R.E.: See Keene, J.C., 274 acid-treated cultures of 3T3-L1 preadi- Delguingaro-Augusto, V.: See Vieira, E.C., pocytes, 381 285 Butler, J.A.: See Sun, Y., 88 Demaison, L.: See Joffre, F., 554 Badillo, A.: See Oliart Ros, R.M., 207 de Moura, E.G.: See Fonseca Passos, M.C., Banos, G.: See El Hafidi, M., 396 300 Bauman, D.E.: See Corl, B.A., 622 Calvo, J.J.: See Bragado, M.J., : Ding, S.-T., and Mersmann, H.J. Fatty Baumgard, L.H.: See Corl, B.A., 622 Caride, B.: See Gonzalez, M., 5 acids modulate porcine adipocyte diifer- Beas-Zarate, C.: See Del Angel-Meza, Carlini, C.R.: See Vasconcelos, rf entiation and transcripts for transcription A.R., 192 Carneiro, E.M.: See Vieira, E.C., 285 factors and adipocyte-characteristic pro- Berlin, E.: See Bhathena, S.J., 529 Carter, L.C.: See Quasney, M.E., 310 teins, 10] Bertolo, R.F.P., Bettger, W.J., and Atkin- Carvalho, A.d.F.F.U.: See Vasconcelos, Dorian, C.L.: See Leifert, W.R., 365 son, S.A. Calcium competes with zinc I.M., 55 Draijer, R.: See Lin, Y., 183 for a channel mechanism on the brush Castelar, L .L.d.M.: See Vasconcelos, I.M., Du, C., Sato, A., Watanabe, S., Ikemoto, border membrane of piglet intestine, 66 me A., Fujii, Y., and Okuyama, H. Effect of Bertolo, R.F.P., Bettger, W.J., and Atkin- Chang Q.: See Zhang, Z., 144 dietary oils enriched with n-3 fatty acids son, S.A. Divalent metals inhibit and Cheema, S.K., and Clandinin, M.T. Diet- on survival of mice, 474 lactose stimulates zinc transport across and diabetes-induced change in insulin Dubuisson, J.G., Murph, W.S., Griffin, brush border membrane vesicles from binding to the nuclear membrane in S.R., and Gaubatz, J.W. Cytosolic en- piglets, 73 spontaneously diabetic rats is associated zymes from rat tissues that activate the Bettger, W.J., McCorquodale, M.L., and with change in the fatty acid composi- cooked meat mutagen metabolite N- Blackadar, C.B. The effect of a Tropae- tion of phosphatidylinositol, 213 Hydroxyamino-1-methyl-6-phenylimi- olum speciosum oil supplement on the Chen, H.-L.: See Yang, M.-H., 14 dazo[4,5-b]pyridine (N-OH-PhIP), 518 nervonic acid content of sphingomyelin Chen, Z.-Y.: See Zhang, Z., 144 Dufresne, C.J., and Farnworth, E.R. A in rat tissues, 492 Cheng, T.-Y., Zhu, Z., Masuda, S., and review of latest research findings on the Bettger, W.J.: See Bertolo, R.F.P., 73, 66 Morcos, N.C. Effects of multinutrient health promotion properties of tea, 404 Bhat, K.S.: See Reddy, G.B., 121 supplementation on antioxidant defense During, A., Smith, M.K., Piper, J.B., and Bhathena, S.J., Berlin, E.. McClure, D., systems in healthy human beings, 388 Smith, J.C. B-Carotene 15,15'-Dioxyge- and Peters, R.C. Effects of dietary fats Christon, R.: See Linard, A., 481 nase activity in human tissues and cells: on red blood cell membrane insulin Clandinin, M.T.: See Cheema, S.K., 213 evidence of an iron dependency, 640 receptor in normo- and hypercholester- Cook, L.S.: See Kummerow, F.A., 602 Dutra, S.C.P.: See Fonseca Passos, M.C., olemic miniature swine, 529 Corino, C.: See Oriani, G., 138 300 Bhatnagar, D.: See John, S., 500 Corl, B.A., Baumgard, L.H., Dwyer, D.A., Dwyer, D.A.: See Corl, B.A., 622 Blackadar, C.B.: See Bettger, W.J., 492 Griinari, J.M., Phillips, B.S., and Bau- Blum, J.W.: See Hiisler, B.R., 304 man, D.E. The role of A’-desaturase in Borojevic, R.: See Fortuna, V.A., 610 the production of cis-9, trans-11 CLA, El Hafidi, M., Cuéllar, A., Ramirez, J., and Boschero, A.C.: See Vieira, E.C., 285 622 Banos, G. Effect of sucrose addition to Bosqueiro, J.R.: See Vieira, E.C., 285 Cornelius, S.G.: See Spurlock, M.E., 81 drinking water, that induces hyperten- Boston, T.: See Vukovich, M.D., 631 Crespi, C.: See Proenza, A.M., 431 sion in the rats, on liver microsomal A9 Brada, N., Gordon, M.M., Wen, J., and Cuéllar, A.: See El Hafidi, M., 396 and A5-desaturase activities, 396 Alpers, D.H. Transfer of cobalamin Escrich, E., Solanas, M., Soler, M., Ruiz de from intrinsic factor to transcobalamin Villa, C., Sanchez, J.A., and Segura, R. il, 200 da Fonte Ramos, C.: See Fonseca Passos, Dietary polyunsaturated n-6 lipids ef- Bragado, M.J., Garcia, L.J., Lopez, M.A., M.C., 300 fects on the growth and fatty acid com- and Calvo, |.J. Protective effect of long Dagli, M.L.Z.: See Naves, M.M.V., 685 position of rat mammary tumors, 536 0955-2863/01/$ — see front matter © 2001 Elsevier Science Inc. All rights reserved. PII: $0955-2863(01)00200-5 Author Index Aalinkeel, R.: See Srinivasan, M., 5 term high fiber diet consumption on rat Dayanandan, A., Kumar, P., and Panneer- Akatsuka, N.: See Hara, H., 450 exocrine pancreatic function after selvam, C. Protective role of L-carnitine Alpers, D.H.: See Brada, N., 200 chronic ethanol intake, 338 on liver and heart lipid peroxidation in Amaral, M.E.C.: See Vieira, E.C., Briske-Anderson, M.: See Reeves, P.G., atherosclerotic rats, 254 Aoyama, Y.: See Hara, H., 450 674 Dehne, M.G.: See Miihling, J., 46 Arivazhagan, P., Ramanathan K., and Brooks, S.P.J., and Lampi, B.J. Fatty acid Del Angel-Meza, A.R., Feria-Velasco, A., Panneerselvam, C. Effect of DL-a- oxidation and fatty acid synthesis in Ontiveros-Martinez, L., Gallardo, L., lipoic acid on the status of lipid peroxi- energy restricted rats, 422 Gonzalez-Burgos, I., and Beas-Zarate, dation and antioxidants in mitochondria Brown, M., Evans, M., and McIntosh, M. C. Protein- and tryptophan-restricted di- of aged rats, 2 Linoleic acid partially restores the tri- ets induce changes in rat gonadal hor- Atkinson, S.A.: See Bertolo, R.F.P., 66, 73 glyceride content of conjugated linoleic mone levels, 192 Austic, R.E.: See Keene, J.C., 274 acid-treated cultures of 3T3-L1 preadi- Delguingaro-Augusto, V.: See Vieira, E.C., pocytes, 381 285 Butler, J.A.: See Sun, Y., 88 Demaison, L.: See Joffre, F., 554 Badillo, A.: See Oliart Ros, R.M., 207 de Moura, E.G.: See Fonseca Passos, M.C., Banos, G.: See El Hafidi, M., 396 300 Bauman, D.E.: See Corl, B.A., 622 Calvo, J.J.: See Bragado, M.J., : Ding, S.-T., and Mersmann, H.J. Fatty Baumgard, L.H.: See Corl, B.A., 622 Caride, B.: See Gonzalez, M., 5 acids modulate porcine adipocyte diifer- Beas-Zarate, C.: See Del Angel-Meza, Carlini, C.R.: See Vasconcelos, rf entiation and transcripts for transcription A.R., 192 Carneiro, E.M.: See Vieira, E.C., 285 factors and adipocyte-characteristic pro- Berlin, E.: See Bhathena, S.J., 529 Carter, L.C.: See Quasney, M.E., 310 teins, 10] Bertolo, R.F.P., Bettger, W.J., and Atkin- Carvalho, A.d.F.F.U.: See Vasconcelos, Dorian, C.L.: See Leifert, W.R., 365 son, S.A. Calcium competes with zinc I.M., 55 Draijer, R.: See Lin, Y., 183 for a channel mechanism on the brush Castelar, L .L.d.M.: See Vasconcelos, I.M., Du, C., Sato, A., Watanabe, S., Ikemoto, border membrane of piglet intestine, 66 me A., Fujii, Y., and Okuyama, H. Effect of Bertolo, R.F.P., Bettger, W.J., and Atkin- Chang Q.: See Zhang, Z., 144 dietary oils enriched with n-3 fatty acids son, S.A. Divalent metals inhibit and Cheema, S.K., and Clandinin, M.T. Diet- on survival of mice, 474 lactose stimulates zinc transport across and diabetes-induced change in insulin Dubuisson, J.G., Murph, W.S., Griffin, brush border membrane vesicles from binding to the nuclear membrane in S.R., and Gaubatz, J.W. Cytosolic en- piglets, 73 spontaneously diabetic rats is associated zymes from rat tissues that activate the Bettger, W.J., McCorquodale, M.L., and with change in the fatty acid composi- cooked meat mutagen metabolite N- Blackadar, C.B. The effect of a Tropae- tion of phosphatidylinositol, 213 Hydroxyamino-1-methyl-6-phenylimi- olum speciosum oil supplement on the Chen, H.-L.: See Yang, M.-H., 14 dazo[4,5-b]pyridine (N-OH-PhIP), 518 nervonic acid content of sphingomyelin Chen, Z.-Y.: See Zhang, Z., 144 Dufresne, C.J., and Farnworth, E.R. A in rat tissues, 492 Cheng, T.-Y., Zhu, Z., Masuda, S., and review of latest research findings on the Bettger, W.J.: See Bertolo, R.F.P., 73, 66 Morcos, N.C. Effects of multinutrient health promotion properties of tea, 404 Bhat, K.S.: See Reddy, G.B., 121 supplementation on antioxidant defense During, A., Smith, M.K., Piper, J.B., and Bhathena, S.J., Berlin, E.. McClure, D., systems in healthy human beings, 388 Smith, J.C. B-Carotene 15,15'-Dioxyge- and Peters, R.C. Effects of dietary fats Christon, R.: See Linard, A., 481 nase activity in human tissues and cells: on red blood cell membrane insulin Clandinin, M.T.: See Cheema, S.K., 213 evidence of an iron dependency, 640 receptor in normo- and hypercholester- Cook, L.S.: See Kummerow, F.A., 602 Dutra, S.C.P.: See Fonseca Passos, M.C., olemic miniature swine, 529 Corino, C.: See Oriani, G., 138 300 Bhatnagar, D.: See John, S., 500 Corl, B.A., Baumgard, L.H., Dwyer, D.A., Dwyer, D.A.: See Corl, B.A., 622 Blackadar, C.B.: See Bettger, W.J., 492 Griinari, J.M., Phillips, B.S., and Bau- Blum, J.W.: See Hiisler, B.R., 304 man, D.E. The role of A’-desaturase in Borojevic, R.: See Fortuna, V.A., 610 the production of cis-9, trans-11 CLA, El Hafidi, M., Cuéllar, A., Ramirez, J., and Boschero, A.C.: See Vieira, E.C., 285 622 Banos, G. Effect of sucrose addition to Bosqueiro, J.R.: See Vieira, E.C., 285 Cornelius, S.G.: See Spurlock, M.E., 81 drinking water, that induces hyperten- Boston, T.: See Vukovich, M.D., 631 Crespi, C.: See Proenza, A.M., 431 sion in the rats, on liver microsomal A9 Brada, N., Gordon, M.M., Wen, J., and Cuéllar, A.: See El Hafidi, M., 396 and A5-desaturase activities, 396 Alpers, D.H. Transfer of cobalamin Escrich, E., Solanas, M., Soler, M., Ruiz de from intrinsic factor to transcobalamin Villa, C., Sanchez, J.A., and Segura, R. il, 200 da Fonte Ramos, C.: See Fonseca Passos, Dietary polyunsaturated n-6 lipids ef- Bragado, M.J., Garcia, L.J., Lopez, M.A., M.C., 300 fects on the growth and fatty acid com- and Calvo, |.J. Protective effect of long Dagli, M.L.Z.: See Naves, M.M.V., 685 position of rat mammary tumors, 536 0955-2863/01/$ — see front matter © 2001 Elsevier Science Inc. All rights reserved. PII: $0955-2863(01)00200-5 Author Index / Journal of Nutritional Biochemistry 12 (2001) 7 Evans, M.: See Brown, M., 381 Guitard, R.: See Pericas, J., 444 alanine or histidine increase the activity of hepatic threonine dehydrogenase, phenylalanine hydroxylase or histidase, Falconer, J.: See Read, M.A., 258 Hadley, K.B., and Sunde, R.A., Selenium respectively, and prevent growth depres- Fallon, K.: See Vukovich, M.D., 631 regulation of thioredoxin reductase ac- sions in chicks caused by dietary ex- Farnworth, E.R.: See Dufresne, C.J., 404 tivity and mRNA levels in rat liver, 693 cesses of threonine, phenylalanine, or Feliu, M.S., and Slobodianik, N.H. Activ- Hara, H., Akatsuka, N., and Aoyama, Y. histidine, 274 ities of adenosine deaminase (ADA) and Non-essential amino acids play an im- Khan, F.A.: See Qureshi, A.A., 318 purine nucleoside phosphorylase (PNP) portant role in adaptation of the rat Koo, S.I.: See Noh, S.K., 330 on undernourished and renourished rats’ exocrine pancreas to high nitrogen feed- Kreeft, A.: See Lin, Y., 183 thymus, 125 ing, 450 Kriill, M.: See Miihling, J., 46 Feria-Velasco, A.: See Del Angel-Meza, Hayashi, T.: See Fotovati, A., 153 Kumar, P.: See Dayanandan, A., 254 A.R., 192 Hedemann, M.S.: See Lauridsen, C., 219 Kummerow, F.A., Cook, L.S., Wasowicz, Fernandez, M.L., West, K.L., Roy, S., and Hempelmann, G.: See Miihling, J., 46 E., and Jelen, H. Changes in the phos- Ramjiganesh, T. Dietary fat saturation Hennig, B. Letter to the Editor, 380 pholipid composition of the arterial cell and gender/hormonal status modulate Hennig, B.: See Lee, Y.W., 648 can result in severe atherosclerotic le- plasma lipids and lipoprotein composi- Hili, A.S., Marks, S.L., and Rogers, Q.R. sions. 602 tion, 703 Quantitation of urinary 3-methylhisti- Kummerow, F.A.: See Olinescu, R.M., 162 Fonseca Passos, M.C., da Fonte Ramos, C., dine excretion in growing dogs as an Kushwaha, R.S., VandeBerg, J.F., Jackson, Dutra, S.C.P., and de Moura, E.G. index of in vivo skeletal muscle catabo- E.M., and VandeBerg, J.L. High and Transfer of iodine through the milk in lism, 346 low responding strains of laboratory protein-restricted lactating rats, 300 Hiroyuki, F., Tomohide, Y., and Kazunori, opossums differ in sterol 27-hydroxy- Fortuna, V.A., Trugo, L.C., and Borojevic, O. Efficacy and safety of Touchi Ex- lase and acyl-coenzyme A:cholesterol R. Acyl-CoA: retinol acyltransferase tract, an a-glucosidase inhibitor derived acyltransferase activities on a high cho- (ARAT) and lecithin:retinol acyltrans- from fermented soybeans, in non-insu- lesterol diet, 664 ferase (LRAT) activation during the li- lin-dependent diabetic mellitus, 351 Kuske, J.L.: See Spurlock, M.E., 81 pocyte phenotype induction in hepatic Ho, W.K.K.: See Zhang, Z., 144 stellate cells, 610 Huang, Y.: See Zhang, Z., 144 Fotovati, A., Hayashi, T., and Ito, T. Lipo- Huertas, J.R.: See Ochoa-Herrera, J.J., 357 Lamas, A.: See Gonzalez, M., 512 lytic effect of BRL 35 135, a 83 agonist, Hiisler, B.R., and Blum, J.W. Blood Lampi, B.J.: See Brooks, S.P.J., 422 and its interaction with dietary lipids on plasma response and urinary excretion Latorraca, M.Q.: See Vieira, E.C., 285 the accumulation of fats in rat body, 153 of nitrite and nitrate in milk-fed calves Lauber, R.P.: See Nelson, H.K., 242 Frank, G.R.: See Spurlock, M.E., 81 after oral nitrite and nitrate administra- Lauridsen, C., Hedemann, M.S., and Fuchs, M.: See Miihling, J., 46 tion, 304 Jensen, S.K. Hydrolysis of tocopheryl] Fujii, Y.: See Du, C., 474 and retinyl esters by porcine carboxyl Ibrahim, S.A., and Ghafoorunissa. Influ- ester hydrolase is affected by their car- Gallardo, L.: See Del Angel-Meza, A.R., ence of dietary partially hydrogenated boxylate moiety and bile acids, 219 192 fat high in trans fatty acids on lipid Lee, Y.W., Park, H.J.. Hennig, B., and Garcia, L.J.: See Bragado, M.J., 338 composition and function of intestinal Toborek, M.J. Linoleic acid induces Garg, M.L.: See Nair, S.S.D., 7 brush border membrane in rats, 116 MCP-1I gene expression in human mi- Garg, M.L.: See Read, M.A., 258 Ikemoto, A.: See Du, C., 474 crovascular endothelial cells through an Gaubatz, J.W.: See Dubuisson, J.G., 518 Ito, T.: See Fotovati, A., 153 oxidative mechanism, 648 Genty, M.: See Joffre, F., 554 Leifert, W.R., Dorian, C.L., Jahangiri, A., German, J.B.: See Quasney, M.E., 310 McMurchie, E.J. Dietary fish oil pre- Jackson, E.M.: See Kushwaha, R.S., 664 Gershwin, M.E.: See Quasney, M.E., 310 vents asynchronous contractility and al- Jahangiri, A.: See Leifert, W.R., 365 Ghafoorunissa: See Ibrahim, G.A., 116 ters Ca 2 + handling in adult rat cardi- Jelen, H.: See Kummerow, F.A., 602 Glahn, R.P.: See Yeung, A.C., 292 omyocytes, 365 Jensen, S.K.: See Lauridsen, C., 219 Godat, R.L.: See Spurlock, M.E., 81 Leitch, J.: See Nair, S.S.D., 7 Ji, S.Q.: See Spurlock, M.E., 81 Gonter, J.: See Miihling, J., 46 Leitch, J.W.: See Read, M.A., 258 Joffre, F., Martin, J.-C., Genty, M., Demai- Gonzalez, M., Caride, B., Lamas, A., and Levi, B., and Werman, M.J. Fructose trig- son, L., Loreau, O., Noél, J.-P., and Taboada, C. Nutritional value of the gers DNA modification and damage in Sébédio, J.-L. Kinetic parameters of he- marine invertebrates Anemonia viridis an Escherichia coli plasmid, 235 patic oxidation of cyclic fatty acid and Haliothis tuberculata and effects on Lewis, D.A., and Shaw, G.P. A natural monomers formed from linoleic and lin- serum cholesterol concentration in rats, flavonoid and synthetic analogues pro- olenic acids, 554 Bt IP tect the gastric mucosa from aspirin- John, S., Kale, M., Rathore, N., and Bhat- Gonzalez-Burgos, I.: See Del Angel-Meza, induced erosions, 95 nagar, D. Protective effect of vitamin E A.R., 192 Libal-Weksler, Y., Gotlibovitz, O., Stark, in dimethoate and malathion induced Gordon, M.M.: See Brada, N., 200 A.H., and Madar, Z. Diet and diabetic oxidative stress in rat erythrocytes, 500 Gotlibovitz, O.: See Libal-Weksler, Y., 458 state modify glycogen synthase activity Johnson, L.: See Reeves, P.G., 674 Grases, F., Simonet, B.M., Prieto, R.M., and expression in rat hepatocytes, 458 Jones, P.J.H.: See Vanstone, C.A., 565 and March, J.G. Variation of InsP$4, Lin, Y., Kreeft, A., Schuurbiers, J.A.E., InsP$5 and InsP$6 levels in tissues and and Draijer, R. Different effects of con- biological fluids depending on dietary Kale, M.: See John, S., 500 jugated linoleic acid isomers on lipopro- phytate, 595 Kazunori, O.: See Hiroyuki, F., 351 tein lipase activity in 3T3-L1 adipo- Griffin, S.R.: See Dubuisson, J.G., 518 Keene, J.C., and Austic, R.E. Dietary sup- cytes, 183 Griinari, J.M.: See Corl, B.A., 622 plements of mixtures of indispensable Linard, A., Macaire, J.-P., and Christon, R Guerrero, O.A.: See Oliart Ros, R.M., 207 amino acids lacking threonine, phenyl- Phospholipid hydroperoxide glutathione 714 Author Index / Journal of Nutritional Biochemistry 12 (2001) 712-715 peroxidase activity and vitamin E level tabolism and protein kinase C activity in Pericas, J., Oliver, P., Guitard, R., Picd, C., in the liver microsomal membrane: ef- adult porcine cardiac myocytes, 7 and Palou, A. Sexual dimorphism in fects of age and dietary a-linolenic acid Naves, M.M.V., Silveira, E.R., Dagli, age-related changes in UCP2 and leptin deficiency, 481 M.L.Z., and Moreno, F.S. Effects of gene expression in subcutaneous adi- Looker, A.C.: See Sempos, C.T., 170 B-carotene and vitamin A on oval cell pose tissue in humans, 444 Lépez, M.A.: See Bragado, M.J., 338 proliferation and connexin 43 expres- Peters, R.C.: See Bhathena, S.J., 529 Loreau, O.: See Joffre, F., 554 sion during hepatic differentiation in the Petridou, A.: See Mougios, V., 585 rat, 685 Phillips, B.S.: See Corl, B.A., 622 Nayak, S.: See Reddy, G.B., 121 Picd, C.: See Pericas, J., 444 Macaire, J.-P.: See Linard, A., 481 Nazzaro, F.: See Tedesco, I., 505 Piper, J.B.: See During, A., 640 Macchi, M.B.: See Vukovich, M.D., 631 Nelson, H.K., Lauber, R.P., and Sheard, Prieto, R.M.: See Grases, F., 595 Madar, Z.: See Libal-Weksler, Y., 458 N.F. Effect of various levels of supple- Proenza, A.M., Crespi, C., Roca, P., and Maia, A.A.B.: See Vasconcelos, I.M., 55 mentation with sodium pivalate on tis- Palou, A. Gender related differences in March, J.G.: See Grases, F., 595 sue carnitine concentrations and urinary the effect of aging on blood amino acid Margareto, J., Marti, A., and Martinez, J.A. excretion of carnitine in the rat, 242 compartmentation, 431 Changes in UCP mRNA expression lev- Newburg, D.S.: See Wiederschain, G.Ya., els in brown adipose tissue and skeletal muscle after feeding a high-energy diet 559 Quagiotto, P.: See Read, M.A., 258 and relationships with leptin, glucose Nikolaidis, M.: See Mougios, V., ° Quandt, D.: See Miihling, J., 46 and PPARy, 130 Noél, J.-P.: See Joffre, F., 554 Quasney, M.E., Carter, L.C., Oxford, C., Marks, S.L.: See Hill, A.S., 346 Noh, S.K., and Koo, S.I. Enteral infusion Watkins, S.M., Gershwin, M.E., and of phosphatidylcholine increases the Marti, A.: See Margareto, J., 130 German, J.B. Inhibition of proliferation Martin, J.-C.: See Joffre, F., 554 lymphatic absorption of fat, but lowers and induction of apoptosis in SNU-1 a-tocopherol absorption in rats fed a low Martinez, J.A.: See Margareto, J., 130 human gastric cancer cells by the plant zinc diet, 330 Masuda, S.: See Cheng, T.-Y., 388 sulfolipid, sulfoquinovosyldiacylglyc- erol, 310 Matsakas, A.: See Mougios, V., 585 Quiles, J.L.: See Ochoa-Herrera, J.J., 357 Ochoa-Herrera, J.J., Huertas, J.R., Quiles, McClure, D.: See Bhathena, S.J., 529 Qureshi, A.A., Sami, S.A., Salser, W.A.., J.L., and Mataix, J. Dietary oils high McCorquodale, M.L.: See Bettger, W.J., and Khan, F.A. Synergistic effect of 492 in oleic acid, but with different non- tocotrienol-rich fraction (TRF$2$5) of McIntosh, M.: See Brown, M., 381 glyceride contents, have different ef- rice bran and lovastatin on lipid param- Melissopoulou, A.: See Mougios, V., 585 fects on lipid profiles and peroxidation eters in hypercholesterolemic humans, in rabbit hepatic mitochondria, 357 318 Oda, H.: See Mochizuki, H., 109 Mersmann, H.J.: See Ding, S.-T., 101 Okuyama, H., See Du, C., 474 Miller, D.D.: See Yeung, A.C., 292 Oliart Ros, R.M., Torres-Marquez, M.E., Raeini-Sarjaz, M.: See Vanstone, C.A., § Mochizuki, H., Oda, H., and Yokogoshi, H. Badillo, A., and Guerrero, O.A. Dietary Ramanathan, K.: See Arivazhagan, P.., Dietary taurine potentiates polychlori- fatty acids effects on sucrose-induced Ramirez, J.: See El Hafidi, M., 396 nated biphenyl-induced hypercholester- cardiovascular syndrome in rats, 207 Ramjiganesh, T.: See Fernandez, M.L., 703 olemia in rats, 109 Olinescu, R.M., and Kummerow, F.A. Fi- Rathmacher, J.: See Vukovich, M.D., 631 Mock, D.M.: See Zempleni, J., 465 brinogen is an efficient antioxidant, 162 Rathore, N.: See John, S., 500 Momiilovic, B., and Reeves, P.G. Idior- Oliveira, J.T.A.: See Vasconcelos, I.M., 55 Read, M.A., Leitch, J.W., Osmond, D., rhythmic zinc dose-rate induction of in- Oliver, P.: See Pericas, J., 444 Quagiotto, P., Falconer, J., and Garg, testinal metallothionein in rats depends Omay, S.T.: See Zhang, P., 38 M.L. Dietary n-3 fatty acids alter the upon their nutritional zinc status, 225 Ontiveros-Martinez, L.: See Del Angel- contractile response to thromboxane Morcos, N.C.: See Cheng, T.-Y., 388 Meza, A.R., 192 A$2 agonists of porcine coronary arter- Moreno, F.S.: See Naves, M.M.V., 685 Oriani, G., Corino, C., Pastorelli, G., Pan- ies, 258 Mougios, V., Matsakas, A., Petridou, A., taleo, L., Ritieni, A., and Salvatori, G. Reddy, G.B., Nayak, S., Reddy, P.Y., and Ring, S., Sagredos, A., Melissopoulou, xidative status of plasma and muscle Bhat, K.S. Reduced levels of rat lens A., Tsigilis, N., and Nikolaidis, M. Ef- in rabbits supplemented with dietary antioxidant vitamins upon in vitro UVB fect of supplementation with conjugated vitamin E, 138 irradiation, 12] linoleic acid on human serum lipids and Osmond, D.: See Read, M.A., 258 Reddy, P.Y.: See Reddy, G.B., 121 body fat, 585 Oxford, C.: See Quasney, M.E., 310 Reeves, P.G., Briske-Anderson, M., and Miihling, J., Sablotzki, A., Fuchs, M., Johnson, L. Pre-treatment of Caco-2 Krill, M., Dehne, M.G., Weiss, S., cells with zinc during the differentiation Gonter, J., Quandt, D., and Hempel- Palou, A.: See Pericas, J., 444 phase alters the kinetics of zinc uptake mann, G. Effects of diazepam on neu- Palou, A.: See Proenza, A.M., 431 and transport, 674 trophil (PMN) free amino acid profiles Palumbo, R.: See Tedesco, I., 505 Reeves, P.G.: See MomCilovi¢, B., 225 and immune functions in vitro. Meta- Panneerselvam, C.: See Arivazhagan, P., 2 Ring, S.: See Mougios, V., 585 bolic and immunological consequences Panneerselvam, C.: See Dayanandan, A.., Ritieni, A.: See Oriani, G., 138 of L-alanyl-L-glutamine supplementa- 254 Roca, P.: See Proenza, A.M., 431 tion, 46 Pantaleo, L.: See Oriani, G., 138 Rogers, Q.R.: See Hill, A.S., 346 Murchie, E.J.: See Leifert, W.R., 365 Park, H.J.: See Lee, Y.W., 648 Roy, S.: See Fernandez, M.L., 703 Murph, W.S.: See Dubuisson, J.G., 518 Paski, S.C., and Xu, Z. Labile intracellular Ruiz deVilla, C.: See Escrich, E., 536 zinc is associated with 3T3 cell growth, Russo, G.L.: See Tedesco, I., 505 Nair, S.S.D., Leitch, J., and Garg, M.L. 655 Russo, M.: See Tedesco, I., 505 N-3 polyunsaturated fatty acid supple- Pastoreili, G.: See Oriani, G., 13 mentation alters inositol phosphate me- Patel, M.S.: See Srinivasan, M., 575 Sablotzki, A.: See Miihling, J., 46 dex Journal of Nutritional B Sagredos, A.: See Mougios, V., 585 Sunde, R.A.: See Hadley, K.B.., Wasowicz. E.: Se Kummerow Salser, W.A.: See Qureshi, A.A., 318 Watanabe, S.: See Du, ¢ Salvatori, G.: See Oriani, G., 138 Taboada, C See Gonzalez, M., 512 Watkins, S.M.: See Quasi Sami, S.A.: See Qureshi, A.A., 318 Tedesco, I Russo, Gi Nazzaro, F Weiss, S.: See Mihling, J Sanchez, J.A.: See Escrich, E., 536 Russo, M., and Palumbo, R. Antioxidant W en, J See Brada, N > & Sarria, B., and Vaquero, M.P. Zinc and iron effect of red wine anthocyanins in nor- Werman, M.J.: See Levi bioavailability in a powder or in-bottle- mal and catalase-inactive human eryth- West, K.L.: See Fernandez sterilized infant formula estimated by in rocytes, 505 Whanger, P.D.: See Sun, ‘ vitro and in suckling rats, 266 Teitelbaum, J.E.. and Walker, W.A. Re- Wiederschain, G.Ya., Sato, A.: See Du, C., 474 view: the role of omega 3 fatty acids in Glycoconjugate stability in h Schuurbiers, J.A.E.: See Lin, Y., 183 intestinal inflammation, 2 slycosidase activities an Sébédio, J.-L.: See Joffre, F., 554 59 Toborek, M.: See Lee, Y.W., 648 Segura, R.: See Escrich, E., 536 Tomohide, Y.: See Hiroyuki, F., 351 is, G.M Sempos, C.T., and Looker, A.C. Iron status Torres-Marquez, M.E.: See Oliart Ros, and the risk of coronary heart disease: an R.M., 207 example of the use of nutritional epide- Trugo, L.C.: See Fortuna, V.A., 610 miology in chronic disease research, 170 Tsigilis, N.: See Mougios, V., 585 Shaw, G.P.: See Lewis, D.A., 95 Yang, M.-H., Wang, C.-H.. Turner, M.J.: See Vukovich, M.D., 631 Sheard, N.F.: See Nelson, H.K., 242 H.-L. Green, oolong and Siebra, E.A.: See Vasconcelos, I.M., 55 tracts modulate lipid metat Silveira, E.R.: See Naves, M.M.V., 685 VandeBerg, J.F.: See Kushwaha, R.S., 664 perlipidemia rats fed h Simonet, B.M.: See Grases, F., 595 VandeBerg, J.L.: See Kushwaha, R.S., 664 i4 Slater, G.: See Vukovich, M.D., 631 Vanstone, C.A., Raeini-Sarjaz, M., and Slobodianik, N.H.: See Feliu, M.S., 125 Jones, P.J.H. Injected phytosterols Yeung, A.C., Glahn, R.P., and Mill Smith, J.C.: See During, A., 640 stanols suppress plasma cholesterol lev- Dephosphorylation of sodiun Smith, M.K.: See During, A., 640 els in hamsters, 565 enzymatically hydrolyzed caseir Solanas, M.: See Escrich, E., 536 Vaquero, M.P.: See Sarria, B., 266 sein phosphopeptides by intestin Soler, M.: See Escrich, E., 536 Vasconcelos, I.M., Maia, A.A.B.. Siebra., line phosphatase implication Song, F.: See Srinivasan, M., 575 E.A., Oliveira, J.T.A., Carvalho, availability, 292 Spurlock, M.E., Ji, S.Q., Godat, R.L., \.d.F.F.l Melo, V.M.M., Carlini, Kuske, J.L., Willis, G.M., Frank, G.R.., C.R., and Castelar, L.I.d.M. Nutritional and Cornelius, $.G. Changes in the ex- study of two Brazilian soybean (Glycine Yokogoshi, H.: See Mochizuk pression of uncoupling proteins and max) cultivars differing in the contents lipases in porcine adipose tissue and of antinutritional and toxic proteins, 55 Zempleni, J., Stanley. skeletal muscle during feed deprivation, Vieira, E.C., Carneiro, E.M., Latorraca D.M Proliferation of 81 M.Q., Delguingaro-Augusto, V., Ama- mononuclear cells cau Srinivasan, M., Song, F., Aalinkeel, R., and ral, M.E.C., Bosqueiro, J.R., and Bos- pression of the scdium-de Patel. M.S. Molecular adaptations in chero, A.C Low protein diet confers tivitamin transporter gene islets from neonatal rats reared artifi resistance to the inhibitory effects of uptake of pantothenic cially on a high carbohydrate milk for- interleukin 18 on insulin secretion in Zhang, P.., and Omaye., mula, 575 pancreatic islets, 285 interactions with Stanely, J.S.: See Zempleni, J., 465 Vukovich, M.D.. Slater, G.. Macchi, M.B.. ascorbic acid in micro Stark, A.H.: See Libal-Weksler, Y., 458 Turner. M.J., Fallon. K.. Boston, T., and oxidation, 38 Sullivan, J.L. Misconceptions in the debate Rathmacher, J. B-hydroxy-B-imethylbu- Zhang, Z.. Chang, Q., Zhu on the iron hypothesis, 32 tyrate (HMB) kinetics and the influence Ho, W.K.K.. and Chen Sun, Y., Butler, J.A.. and Whanger, P.D of glucose ingestion in humans, 631 ization of antioxidant Glutathione peroxidase activity and sel thorn fruits, 144 enoprotein W levels in different brain Walker. W.A.: See Teitelbaum, J.E Zhu, M.: See Zhang, Z.. regions of selenium-depleted rats, 88 Wang, C.-H.: See Yang, M.-H., 14 Zhu, Z.: See Cheng, T Subject Index Absorption, 674 Cardiovascular, 404 Exocrine pancreas, 450 ACAT, 664 Cardiovascular diseases, 207 Acetylcholinesterase, 500 Carnitine, 242, 254 Fat, 330 Acyl-coenzyme A:cholesterol Carnitine deficiency, 242 Fatty acid composition, 536 acyltransferase, 664 B-Carotene, 38, 121, 640, 685 Fatty acid synthesis, 422 Adenosine deaminase, 125 Casein, 292, 512 Fatty acids, 101, 183, 536 Adipocyte differentiation, 101 Casein phosphopeptides, 292 Fiber, 338 Adipocyte fatty acid binding protein, 101 Catalase, 500, 505 Fibrinogen, 162 Adipocytes, 101 C/EBPa, 101 Fish oil, 21, 365 Adipose tissue, 444 B cell, 285 Flavonoids, 95, 144 8-Adrenergic receptor, 130 Cell proliferation, 310, 655 Fructose, 235 B-Adrenoceptor agonists, 153 Cell signaling, 7 Fucose, 559 Age, 431 Channel, 66 Ageing, 2, 444, 481 Chicks, 274 Alkaline phosphatase, 292 Cholecystokinin, 338 Gastrointestinal tract as a sensory organ, Amino acid catabolism, 274 Cholesterol, 14, 109, 512, 529, 585 Z25 Amino acid excess, 274 Cholesteryl esters, 585 Gender, 703 Amino acids, 46 Cleavage, 640 Gender effect, 431 Amylase, 450 Cobalamin binding proteins, 200 Glucose, 631 Anemonia viridis, 512 Competition, 66 a-Glucosidase inhibitor, 351 Anti-hyperglycemic effect, 351 Conjugated linoleic acid, 183, 381, 622 GLUT 2, 458 Anti-inflammatory, 21 Connexin 43, 685 Glutathione peroxidase, 88 Antioxidants, 2, 121, 162, 254, 388, 404, Cooked meat mutagens, 518 Glutathione peroxidase-1, 693 505 Corn, 192 Glutathione peroxidase-4, 693 Antioxidative enzymes, 388 Coronary artery, 258 Glutathione-S-transferase, 500 Apoptosis, 310 Coronary heart disease, 602 Glycation, 235 ARAT, 610 Cyclic fatty acid monomers, 554 Glycine max, 55 Arterial bifurcations, 602 Cyclopropene fatty acids, 622 Glycogen synthase, 458 Ascorbic acid, 38 Cytokines, 285 Glycosidases, 559 Atherosclerosis, 162, 648 Gonadotrophic hormones 2,2’-azobis (2-amidino-propane) Growing dogs, 346 dihydrochloride (AAPH), 38 A’-Desaturase, 622 1,1'-azobis (cyclohexane-carbonitrile) Desaturase activities, 396 (ACCN), 38 Desferrioxamine, 640 Haliotis tuberculata, 512 Diabetes, 213 Hamster, 565 Diazepam, 46 Hawthorn fruit, 144 Beef tallow, 153 Diet, 492 HDL, 109, 585 Bioavailability, 266, 292 Dietary amino acids, 450 Health, 404 Blood amino acid compartmentation, 431 Dietary fat, 213, 422 Hepatic differentiation, 685 Body fat, 422 Dietary fat saturation, 703 Hepatic stellate cells, 610 BRL 35135, 153 Dietary fatty acids, 648 Hepatocytes, 458 Brown adipose tissue, 130 Dietary protein, 274 Heterocyclic amines, 518 Brush border membrane, 66, 73, 116 Diet-induced hyperlipidemia, 664 High-energy diet, 130 Dieting, 422 HMB, 631 Differentiation, 381 Hormonal status, 703 Ca’, 365 DL-a-lipoic acid, 2 HPLC, 121 Caco-2 cells, 674 DMBA- induced breast cancer, 536 Human, 465, 640 Calcium, 66, 338, 602 DNA damage, 518 Human IF, 200 Calf, 304 DNA synthesis, 655 Human milk, 559 Cancer, 404 Docosahexaenoic acid (DHA), 365, 474 Human TCII, 200 Cancer metastasis, 648 Humans, 431 Canine, 346 Hypercholesterolemia, 109 Carboxyl ester hydrolase, 219 Erythrocyte, 505 Hypercholesterolemic human subjects, Carcinogen metabolism, 518 Esterification, 610 318 Cardiac myocytes, 7 Ethanol, 338 Hyperlipidemia, 254 0955-2863/01/$ — see front matter © 2001 Elsevier Science Inc. All rights reserved. PII: S0955-2863(01)00201-7 Subject Index / Journal of Nutritional Biochemistry 12 (2001) 716-717 Hypertension, 207, 396 Miniature swine, 529 Preproinsulin gene expression, 575 Hypertriglyceridemia, 396 Mitochondria, 2, 357 Proliferation, 465 Mitochondrial oxidation, 554 Protein malnutrition, 285 Monodelphis domestica, 664 Protein quality, 55 Immune function, 46 Mouse, 474 Protein restriction, 192, 300 Infant formula, 73, 266 Muscle turnover, 346 PUFA, 536 Inflammatory bowel disease, Purine nucleoside phosphorylase, 125 Injection, 565 Inositol hexaphosphate, ‘ n-3 fatty acids, 365, 481, 529 Inositol pentaphosphate, n-6 fatty acids, 529 Quality dietary protein, 125 Inositol tetraphosphate, ‘ n-3 polyunsaturated fatty acids, 258 Quantitation, 346 InsP,, 595 n-3 PUFA, 7 Insulin, 207, 213, 631 N-acetylhexosamines, 559 Insulin binding, 529 N-acetylneuraminic acid, 559 Rabbits, 138, 357 Insulin secretion, 285 Nervonic acid, 492 Rapeseed oil, Interleukin 16, 285 Neutrophils, 46 Rat, 242, 492 Intestinal absorption, 330 Nitrate, 304 Rat brain, 88 Intestinal metallothionein induction, 225 Non-essential amino acids, 450 Rat IF, 200 Intestine, 73, 116, 640 Non-esterified fatty acids, 585 Rat lens, 121 Iodine, 300 Non-glyceride fraction, 357 Rat tissues, 518 Iron, 266, 292 Non-insulin-dependent diabetic mellitus, Rats, 109, 116, 213, 300, 450, 458 Islets of Langerhans, 575 351 Reactive oxygen species (ROS), 505 Isoproterenol, 153 Nucleus, 213 Red wine anthocyanins, 505 Nutrition, 388 Renal function, 474 Nutritional modification, 575 Renutrition, 125 Kinases, 575 Nutritional value, 512 Requirements, 693 Review, 404 Ribonuclease protection analysis, 693 Labile intracellular zinc, 655 OGTT, 631 ROMs, 138 Laboratory opossum, 664 Olive oil, 357 Lactation, 300 Omega 3 fatty acids, 21 L-alanyl-L-glutamine, 46 Organophosphate pesticides, 500 Seed protein, 55 L-Ascorbic acid, 121 Oval cell, 685 Selenoprotein P, 693 LDL cholesterol, 703 Oxidative stress, 648 Selenoprotein W, 88 Leptin, 444 Oxygen free radicals, 162 Serotonin, 192 Leucocyanidin, 95 Oxysterols, 602 Sitostanol, 565 Linoleic acid, 381 Skeletal muscle, 130 Lipase, 81 SNU-1 cancer cells, 310 Pancreas, 338 Lipid, 14 Sodium-dependent multivitamin Pancreatic enzymes, 219 Lipid composition, 116 transporter, 465 Pancreatic islets, 285 Lipid parameters, 318 Soybean, 55 Pantothenic acid, 465 Lipid peroxidation, 2, 38, 357, Sphingomyelin, 492, 602 Peripheral blood mononuclear cells, 465 Lipid peroxides, 254 Starvation, 81] Peroxisomal oxidation, 554 Lipolysis, 153 Stenosis, 602 Peroxisome proliferator-activated recepter Lipoperoxidation, 138 Sterculic acid, 622 y2, 130 Lipoprotein composition, 703 Sterilization, 266 Pharmokinetics, 631 Lipoprotein lipase, 101, 183 Sterol 27-hydroxylase, 664 Phase II activation, 518 Lipoproteins, 664 Structured dietary intake, 225 Phenolic compounds, 357 Liver, 610, 640 Sucrose intake, 396 PhIP, 518 Longevity, 474 Sucrose-rich diet, 14 Phosphatidylcholine, 330 Lovastatin, 318 Sugar phosphates, 235 Phospholipid hydroperoxide glutathione ' Low density lipoprotein, 144 Sulfolipid, 310 peroxidase, 481 LRAT, 610 Sulfoquinovosyldiacylglycerol, 310 Phospholipids, 585 Superoxide dismutase, 500 Phytosterol, 565 Supplement, 388 Maillard reaction, 266 Pig, 81, 258 Mammary carcinomas, 536 Piglet, 66, 73 > Membrane, 481 Pivalic acid, 242 4 cells, 655 Membrane function, 116 PKC, 7 é - 4 LI adipocytes, 183 - Membrane lipid profile, 357 Plantain banana, 95 3T33- L1 preadipocytes, 381 Metabolic control, 422 Plasma, 631 Taurine, 109 Metabolism, 422 Plasma cholesterol, 565 Tea, 14, 404 3-Methylhistidine, 346 Plasma insulin, 529 Thioredoxin, 693 Michaelis-Menten kinetic, 219 Plasmid DNA, 235 Thromboxane A,, 258 Microsomes, 38 Polychlorinated biphenyls, 109 Thymus, 125 Milk, 300 Polyunsaturated fatty acids, 207 a-Tocopherol, 38, 121, 138, 144, 330 Milk fat, 622 Polyunsaturated n-6 diet, 536 a-Tocopheryl acetate, 219 Mineral, 388 Porcine, 101 a-Tocophery! nicotinate, 219 Mineral interactions, 73 PPARy, 101 a-Tocopheryl succinate, 219 Subject Index / Journal of Nutritional Biochemistry 12 (2001) 716-717 Tocotrienols, 318 UCP2, 444 Vitamin B,,, 200 Touchi-extract, 351 Ulcer, 95 Vitamin E, 481 Toxicity, 55 Uncoupling proteins, 81, 130 Vitamins, 254 Trace elements, 674 Undernourished rats, 125 Trans fatty acid, 622 Urine, 631 Western blot, 88 trans fatty acids, 116 UVB radiation, 121 Transcription factors, 575 Transport, 465 Vascular endothelium, 648 Zinc, 66, 266, 330, 655 Transport kinetics, 674 Vegetable oils, 153 Zinc dose-rate idiorrhythm, 225 Triacylglycerols, 585 Ventricular myocyte, 365 Zinc nutritional status, 225 Triglyceride, 14 Very long chain fatty acids, 492 Zinc repletion rate, 225 Triglyceride content, 381] Vitamin, 388 Zinc transport, 73, 674 Trypsin, 450 Vitamin A, 610, 685 Zinc uptake, 674

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