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111 REFERENCE

1. Abe-K; Araki-T; Kogure-K, Recovery from edema and of protein synthesis differs between the cortex and caudate following transient focal cerebral ischemia in rats.

J-Neurochem. 1988 Nov; 51(5): 1470-6

2. Abu-RS; Trembovler-V; Shohami-E; Lazarovici-P, A tissue culture ischemic device to study eicosanoid release by pheochromocytoma PC12 cultures. J-Neurosci-Methods.

50(2):197-203 1993

3. Akira-T; Henry-D; Baldwin-RA; Wasterlain-CG, Nitric oxide participates in excitotoxic mechanisms induced by chemical hypoxia. Brain-Res. 1994 May 9;

645(1-2): 285-90

4. Arya-G; Garcia-VF, The interval between a septic stimulus and hypoxia/reoxygenation affects cytokine elaboration by murine peritoneal macrophages. J-Pediatr-Surg. 1996 Nov; 31(11): 1469-74

5. Beutler HO, Michal G.,1974. L-Glutamate. Determination with glutamate dehydrogenase, diaphorase, and tetrazolium salts. In: Bergmeyer, H.U., Gawehn, K.

(Eds.), Methods of Enzymatic Analysis, vol. 4. Academic Press, New York, NY, pp.

1708-1713.

6. Boneh-A; Hochman-Meyuchas-R; Sicsic-C; Brenner-T, Effect of sphingosine on rat glial cells: inhibition of prostaglandin E2 and insensitivity of nitric oxide generation.

Neurosci-Lett. 1997 Jul 4; 229(3): 181-4

7. Brewer-GJ; Cotman-CW, NMDA receptor regulation of neuronal morphology in cultured hippocampal neurons. Neurosci-Lett. 1989 May 8; 99(3): 268-73.

8. Bruckner-BA; Ammini-CV; Otal-MP; Raizada-MK; Stacpoole-PW, Regulation of brain glucose transporters by glucose and oxygen deprivation. Metabolism. 1999 Apr; 48(4):

422-31

112

9. Cabaud PG, Wroblewski F, Am. J. Clin. Pathol., 30, 234-239(1958).

10. Chiu-JH; Wang-JC; Lui-WY; Wu-CW; Hong-CY. Effect of magnolol on in vitro mitochondrial lipid peroxidation and isolated cold-preserved warm-reperfused rat livers. J-Surg-Res. 1999 Mar; 82(1): 11-6

11. Clark-AM; El-Feraly-FS; Li-WS, Antimicrobial activity of phenolic constituents of Magnolia grandiflora L. J-Pharm-Sci. 1981 Aug; 70(8): 951-2.

12. Dagani-F; Erecinska-M, Relationships among ATP synthesis, K+ gradients, and neurotransmitter amino acid levels in isolated rat brain synaptosomes. J-Neurochem.

1987 Oct; 49(4): 1229-40.

13. Denizot-F; Lang-R, Rapid colorimetric assay for cell growth and survival.

Modifications to the tetrazolium dye procedure giving improved sensitivity and reliability. J-Immunol-Methods. 1986 May 22; 89(2): 271-7.

14. Ellis-EF; Wright-KF; Wei-EP; Kontos-HA, Cyclooxygenase products of arachidonic acid metabolism in cat cerebral cortex after experimental concussive brain injury.

J-Neurochem. 1981 Oct; 37(4): 892-6

15. Endoh-K; Ueno-K; Miyashita-A; Satoh-T, An experimental model of acute liver injury using multicellular spheroids composed of rat parenchymal and non-parenchymal liver cells. Res-Commun-Chem-Pathol-Pharmacol. 1993 Dec; 82(3): 317-29

16. Engelhardt-G; Bogel-R; Schnitzler-C; Utzmann-R, Meloxicam: influence on arachidonic acid metabolism. Part II. In vivo findings. Biochem-Pharmacol. 1996 Jan 12; 51(1):

29-38

17. Fink-M, Cytopathic hypoxia in sepsis. Acta-Anaesthesiol-Scand-Suppl. 1997; 110:

87-95

18. Forsyth-R; Fray-A; Boutelle-M; Fillenz-M; Middleditch-C; Burchell-A, A role for astrocytes in glucose delivery to neurons? Dev-Neurosci. 1996; 18(5-6): 360-70

113

19. Fujita M, Itokawa H, Sashida Y, Honokiol, a new phenolic compound isolated from the bark of magnolia obovata Thunb. Chem Pharm Bull 20:212-213(1972).

20. Fujita-S; Taira-J, Biphenyl compounds are hydroxyl radical scavengers: their effective inhibition for UV-induced mutation in Salmonella typhimurium TA102.

Free-Radic-Biol-Med. 1994 Sep; 17(3): 273-7).

21. Gerschenson-LE; Rotello-RJ, Apoptosis: a different type of cell death. FASEB-J. 1992 Apr; 6(7): 2450-5

22. Gibson-G; Toral-Barza-L; Huang-HM, Cytosolic free calcium concentrations in synaptosomes during histotoxic hypoxia. Neurochem-Res. 1991 Apr; 16(4): 461-7 23. Goldberg-MP; Weiss-JH; Pham-PC; Choi-DW, N-methyl-D-aspartate receptors

mediate hypoxic neuronal injury in cortical culture. J-Pharmacol-Exp-Ther. 1987 Nov;

243(2): 784-91

24. Hardin-Pouzet-H, Krakowski-M, Bourbonniere-L, Didier-Bazes-M, Tran-E, Owens-T.

Glutamate metabolism is down-regulated in astrocytes during experimental allergic encephalomyelitis. Glia. 1997 May; 20(1): 79-85.

25. Hong, C.Y., Huang, S.S., and Tsai, S.K. Magnolol reduces infarct size and suppresses ventricular arrhythmia in rats subjected to coronary ligation. Clin. Exp. Pharmacol.

Physiol. 23(8):660-4, 1996.

26. Huang HM, Seaton A, Gibson GE, Neuroscience 19:1,89-95(1993).

27. Huang-HM; Toral-Barza-L; Sheu-KF; Gibson-GE, The role of cytosolic free calcium in the regulation of pyruvate dehydrogenase in synaptosomes. Neurochem-Res. 1994 Jan;

19(1): 89-95).

28. Jessop-JJ; Hoffman-T, Production and release of IL-1 beta by human peripheral blood monocytes in response to diverse stimuli: possible role of "microdamage" to account for unregulated release. Lymphokine-Cytokine-Res. 1993 Feb; 12(1): 51-8

114

29. Johnson-JD; Conroy-WG; Isom-GE, Effect of pentobarbital on cyanide-induced tremors in mice and calcium accumulation in PC12 cells. Biochem-Pharmacol. 1987 May 15;

36(10): 1747-9.

30. Jones-MG; Bickar-D; Wilson-MT; Brunori-M; Colosimo-A; Sarti-P, A re-examination of the reactions of cyanide with cytochrome c oxidase. Biochem-J. 1984 May 15;

220(1): 57-66).

31. José SP, Pilar G, J. Neurochem. 50, 1322-1324(1988).

32. Kanthasamy-AG; Maduh-EU; Peoples-RW; Borowitz-JL; Isom-GE, Calcium mediation of cyanide-induced catecholamine release: implications for neurotoxicity.

Toxicol-Appl-Pharmacol. 1991 Sep 1; 110(2): 275-82).

33. Klegeris-A Walker-DG, McGeer-PL, Regulation of glutamate in cultures of human monocytic THP-1 and astrocytoma U-373 MG cells. J-Neuroimmunol. 1997 Sep;

78(1-2): 152-61

34. Kusterer-K; Blochle-C; Konrad-T; Palitzsch-KD; Usadel-KH; Rat liver injury induced by hypoxic ischemia and reperfusion: protective action by somatostatin and two derivatives. Regul-Pept. 1993 Apr 8; 44(3): 251-6

35. Lee-MM; Kuo-JS; Hsieh-MT; Yeh-FT; Huang-HM, Magnolol protects cortical neuronal cells from chemical hypoxia in rats. accepted by Neuroreport, 1998.

36. Lerond-L, Action of Daflon 500 mg on the principal inflammatory mediators.

PHLEBOLOGY. Phlebology. 9/SUPPL. 1 (34-39) 1994

37. Lo, Y.C., Teng, C.M., Chen, C.F., Chen, C.C., and Hong, C.Y. Magnolol and honokiol isolated from Magnolia officinalis protect rat heart mitochondria against lipid peroxidation. Biochem. Pharmacol. 9; 47(3): 549-53, 1994.

38. Maiese-K; Boniece-I; DeMeo-D; Wagner-JA, Peptide growth factors protect against ischemia in culture by preventing nitric oxide toxicity. J-Neurosci. 1993 Jul; 13(7):

115 3034-40.

39. Marrif-H; Juurlink-BH, Astrocytes respond to hypoxia by increasing glycolytic capacity.

J-Neurosci-Res. 1999 Jul 15; 57(2): 255-60

40. Martin-LJ; Al-Abdulla-NA; Brambrink-AM; Kirsch-JR; Sieber-FE;

Portera-Cailliau-C, Neurodegeneration in excitotoxicity, global cerebral ischemia, and target deprivation: A perspective on the contributions of apoptosis and necrosis.

Brain-Res-Bull. 1998 Jul 1; 46(4): 281-309

41. Marubayashi-S; Dohi-K; Ochi-K; Kawasaki-T, Protective effects of free radical scavenger and antioxidant administration on ischemic liver cell injury.

Transplant-Proc. 1987 Feb; 19(1 Pt 2): 1327-8.

42. Masao Hattori, Yoshiyuki Endo, Sachiko Takebe, Kyoichi Kobachi, Noboru Fukasaku and Tsuneo Namba, Metabolism of magnolol from Magnoliae cortex.II. Absorption, metabolism and excretion of (ring-14C) magnolol in rats. Chem. Pharm. Bull. 34(1) 158-167, 1986.

43. Matsuoka-S; Jarmakani-JM; Young-HH; Uemura-S; Nakanishi-T, The effect of glutamate on hypoxic newborn rabbit heart. J-Mol-Cell-Cardiol. 1986 Sep; 18(9):

897-906.

44. Matsuo-R; Ukida-M; Nishikawa-Y; Omori-N; Tsuji-T, The role of Kupffer cells in complement activation in D-Galactosamine/lipopolysaccharide-induced hepatic injury of rats. Acta-Med-Okayama. 1992 Oct; 46(5): 345-54

45. McKenna-MC; Tildon-JT; Stevenson-JH; Huang-X; New insights into the compartmentation of glutamate and glutamine in cultured rat brain astrocytes.

Dev-Neurosci. 1996; 18(5-6): 380-90

46. Mills-EM; Gunasekar-PG; Pavlakovic-G; Isom-GE, Cyanide-induced apoptosis and oxidative stress in differentiated PC12 cells. J-NEUROCHEM.

Journal-of-Neurochemistry. 67/3 (1039-1046) 1996

116

47. Molina-Holgado-F; Lledo-A; Guaza-C, Evidence for cyclooxygenase activation by nitric oxide in astrocytes. Glia. 1995 Oct; 15(2): 167-72

48. Nicholls D., Attwell D.,1990, The release and uptake of excitatory amino acids. Trends Pharmachol. Sci. 11,462-468.

49. Niiro-H; Otsuka-T; Izuhara-K; Yamaoka-K; Ohshima-K; Tanabe-T; Hara-S; Nemoto-Y;

Tanaka-Y; Nakashima-H; Niho-Y, Regulation by interleukin-10 and interleukin-4 of cyclooxygenase-2 expression in human neutrophils. Blood. 89(5):1621-8 1997

50. Norenberg-MD, Astrocyte responses to CNS injury. J-Neuropathol-Exp-Neurol. 1994 May; 53(3): 213-20

51. Paller-MS; Manivel-JC, Prostaglandins protect kidneys against ischemic and toxic injury by a cellular effect. Kidney-Int. 1992 Dec; 42(6): 1345-54

52. Pappius-HM; Wolfe-LS, Functional disturbances in brain following injury: search for underlying mechanisms. Neurochem-Res. 1983 Jan; 8(1): 63-72

53. Patel MN, Ardelt BK, Yim GK, Isom GE. Cyanide induces Ca(2+)-dependent and -independent release of glutamate from mouse brain slices. Neurosci. Lett. 1991 Sep 30; 131(1): 42-4.

54. Pearce-WJ, Mechanisms of hypoxic cerebral vasodilatation. Pharmacol-Ther. 1995 Jan; 65(1): 75-91

55. Persson SA, Cassel G, Sellstrom A, Acute cyanide intoxication and central transmitter systems. Fundam. Appl. Toxicol. 1985 Dec; 5(6 Pt 2): S150-9

56. Piani D, Fontana A, Involvement of cystine transporter system xc- in the macrophage-induced glutamate-dependent cytotoxity to neurons. J. Immunol. 152, 3578-3585(1994).

57. Schwartz-WJ; Smith-CB; Davidsen-L; Savaki-H; Sokoloff-L; Mata-M; Fink-DJ;

Gainer-H, Metabolic mapping of functional activity in the

117

hypothalamo-neurohypophysial system of the rat. Science. 1979 Aug 17; 205(4407):

723-5

58. Shashidharan-P; Clarke-DD; Ahmed-N; Moschonas-N; Plaitakis-A; Nerve tissue-specific human glutamate dehydrogenase that is thermolabile and highly regulated by ADP. J-Neurochem. 1997 May; 68(5): 1804-11

59. Shetty-M; Loeb-JN; Ismail-Beigi-F, Enhancement of glucose transport in response to inhibition of oxidative metabolism: pre- and posttranslational mechanisms.

Am-J-Physiol. 1992 Feb; 262(2 Pt 1): C527-32

60. Shih-SC; Claffey-KP, Hypoxia-mediated regulation of gene expression in mammalian cells. Int-J-Exp-Pathol. 1998 Dec; 79(6): 347-57

61. Shimizu-E; Shirasawa-H; Kodama-K; Kuroyanagi-H; Shirasawa-T; Sato-T; Simizu-B.

Glutamate dehydrogenase mRNA is immediately induced after phencyclidine treatment in the rat brain. Schizophr-Res. 1997 Jun 20; 25(3): 251-8

62. Shirabe-K; Kin-S; Shinagawa-Y; Chen-S; Payne-WD; Sugimachi-K, Inhibition of thromboxane A2 activity during warm ischemia of the liver. J-Surg-Res. 1996 Feb 15;

61(1): 103-7

63. Sibson-NR; Dhankhar-A; Mason-GF; Rothman-DL; Behar-KL; Shulman-RG, Stoichiometric coupling of brain glucose metabolism and glutamatergic neuronal activity. Proc-Natl-Acad-Sci-U-S-A. 1998 Jan 6; 95(1): 316-21

64. Siesjö BK,(1978) Brain energy metabolism (Wiley, New York)

65. Slepko-N; Minghetti-L; Polazzi-E; Nicolini-A; Levi-G, Reorientation of prostanoid production accompanies "activation" of adult microglial cells in culture. J-Neurosci-Res.

1997 Aug 1; 49(3): 292-300

66. Sokoloff-L; Reivich-M; Kennedy-C; Des-Rosiers-MH; Patlak-CS; Pettigrew-KD;

Sakurada-O; Shinohara-M, The [14C]deoxyglucose method for the measurement of

118

local cerebral glucose utilization: theory, procedure, and normal values in the conscious and anesthetized albino rat. J-Neurochem. 1977 May; 28(5): 897-916

67. Sokoloff-L; Reivich-M; Kennedy-C; Des-Rosiers-MH; Patlak-CS; Pettigrew-KD;

Sakurada-O; Shinohara-M, The [14C]deoxyglucose method for the measurement of local cerebral glucose utilization: theory, procedure, and normal values in the conscious and anesthetized albino rat. J-Neurochem. 1977 May; 28(5): 897-916

68. Taira J, Ikemoto T, Mimura K et al., Free. Radic. Res. Commun. 19 Suppl 1, S71-77(1993).

69. Takeshima-T; Shimoda-K; Sauve-Y; Commissiong-JW, Astrocyte-dependent and -independent phases of the development and survival of rat embryonic day 14 mesencephalic, dopaminergic neurons in culture. Neuroscience. 1994 Jun; 60(3):

809-23.

70. Teng-CM; Chen-CC; Ko-FN; Lee-LG; Huang-TF; Chen-YP; Hsu-HY, Two antiplatelet agents from Magnolia officinalis. Thromb-Res. 1988 Jun 15; 50(6): 757-65).

71. Teng-CM; Yu-SM; Chen-CC; Huang-YL; Huang-TF, EDRF-release and Ca+(+)-channel blockade by magnolol, an antiplatelet agent isolated from Chinese herb Magnolia officinalis, in rat thoracic aorta. Life-Sci. 1990; 47(13): 1153-61.

72. Trinder P: Determination of glucose in blood using glucose oxidase with an alternative oxygen acceptor. Ann. Clin. Biochem 6: 24, 1969.

73. Tsacopoulos-M, Poitry-Yamate-CL, Poitry-S, Perrottet-P, Veuthey-AL. The nutritive function of glia is regulated by signals released by neurons. Glia. 1997 Sep; 21(1):

84-91.

74. Tsai-TH; Lee-TF; Chen-CF; Wang-LC, Modulatory effects of magnolol on potassium-stimulated 5-hydroxytryptamine release from rat cortical and hippocampal slices. Neurosci-Lett. 1995 Feb 15; 186(1): 49-52.

119

75. Tsai-TH; Tsai-WJ; Chou-CJ; Chen-CF, Magnolol inhibits collagen-induced platelet serotonin release. Thromb-Res. 1995 May 1; 78(3): 265-70.

76. Tsai-TH; Westly-J; Lee-TF; Chen-CF; Wang-LC, Effects of honokiol and magnolol on acetylcholine release from rat hippocampal slices [letter]. Planta-Med. 1995 Oct;

61(5): 477-9

77. Tsujimoto-Y; Shimizu-S; Eguchi-Y; Kamiike-W; Matsuda-H, Bcl-2 and Bcl-xL block apoptosis as well as necrosis: possible involvement of common mediators in apoptotic and necrotic signal transduction pathways. Leukemia. 1997 Apr; 11 Suppl 3: 380-2 78. Vannicci-RC; Connor-JR; Mauger-DT; Palmer-C; Smith-MB; Towfighi-J; Vannucci-SJ,

Rat model of perinatal hypoxic-ischemic brain damage. J-Neurosci-Res. 1999 Jan 15;

55(2): 158-63,

79. Vannicci-RC; Connor-JR; Mauger-DT; Palmer-C; Smith-MB; Towfighi-J; Vannucci-SJ, Rat model of perinatal hypoxic-ischemic brain damage. J-Neurosci-Res. 1999 Jan 15;

55(2): 158-63,

80. Wang JP, Hsu MF, Raung SL et al., Naunyn Schmiedebergs Arch. Pharmacol. 346, 707-712(1992).

81. Wang-JP; Chen-CC. Magnolol induces cytosolic-free Ca2+ elevation in rat neutrophils primarily via inositol trisphosphate signalling pathway. Eur-J-Pharmacol. 1998 Jul 10;

352(2-3): 329-34

82. Wang-JP; Ho-TF; Chang-LC; Chen-CC, Anti-inflammatory effect of magnolol, isolated from Magnolia officinalis, on A23187-induced pleurisy in mice. Journal of Pharm.

Pharmacol. 47, 857-860(1995).

83. Wang-JP; Hsu-MF; Raung-SL; Chang-LC; Tsao-LT; Lin-PL; Chen-CC. Inhibition by magnolol of formylmethionyl-leucyl-phenyl alanine-induced respiratory burst in rat neutrophils. J-Pharm-Pharmacol. 1999 Mar; 51(3): 285-94

120

84. Watanabe-K; Watanabe-H; Goto-Y; Yamaguchi-M; Yamamoto-N; Hagino-K, Pharmacological properties of magnolol and honokiol extracted from Magnolia officinalis: central depressant effects. Planta-Med. 1983 Oct; 49(2): 103-8.

85. Yang-Y; Shuaib-A; Li-Q, Quantification of infarct size on focal cerebral ischemia model of rats using a simple and economical method. J-Neurosci-Methods. 1998 Oct 1;

84(1-2): 9-16.

86. Yang-CW; Rathinavelu-A; Borowitz-JL; Isom-GE, Activation of a calcium- and pH-dependent phospholipase A2 by cyanide in PC12 cells. Toxicol-Appl-Pharmacol.

1994 Feb; 124(2): 262-7

87. Yong-Hua MA, Jia-Nan Ye, Noboru Fukasaku, Masao Hattori and Tsuneo Namba, Metabolism of magnolol from Magnoliae cortex (IV). Enterohepatic circulation and gastrointestinal excretion of (ring-14C) magnolol in rats. Shoyakugggaku Zasshi 42(2), 130-134, 1988.

88. Yoshida-S; Inoh-S; Asano-T; Sano-K; Kubota-M; Shimazaki-H; Ueta-N, Effect of transient ischemia on free fatty acids and phospholipids in the gerbil brain. Lipid peroxidation as a possible cause of postischemic injury. J-Neurosurg. 1980 Sep;

53(3): 323-31

89. Yudkoff M., Nissim I., Daikhin Y., Lin ZP, Nelson D., Pleasure D., Erecinska M., 1993, Brain glutamate metabolism: Neuronal-astroglial relationship. Dev. Neurosci., 15, 343-350.

90. Yu-S; Ding-WG, The 45 kDa form of glucose transporter 1 (GLUT1) is localized in oligodendrocyte and astrocyte but not in microglia in the rat brain. Brain-Res. 1998 Jun 22; 797(1): 65-72

91. Zierler-K, Whole body glucose metabolism. Am-J-Physiol. 1999 Mar; 276(3 Pt 1):

E409-26

121

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