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專業比較 HOME > NTU 568紅麴菌株研究成果 > 專業比較

與常見記憶保健食品比較
 

 

 參考文獻:
1. Lee, C. L.; Kuo, T. F.; Wang, J. J.; Pan, T. M., Red mold rice reduces Alzheimer’s Risk Factors and Amyloid Beta Deposition, and Increases sAPPalpha Secretion in hyperlipidemic Aβ40-infused rats. J Neurosci Res 2008, (Submitted).
2. Lee, C. L.; Wang, J. J.; Pan, T. M., Red mold rice extract represses amyloid beta peptide-induced neurotoxicity via potent synergism of anti-inflammatory and anti-oxidative effect. Appl Microbiol Biotechnol 2008, (Revised).
3. Lee, C. L.; Kuo, T. F.; Wang, J. J.; Pan, T. M., Red mold rice ameliorates impairment of memory and learning ability in intracerebroventricular amyloid beta-infused rat by repressing amyloid beta accumulation. J Neurosci Res 2007, 85, 3171-3182.
4. Cole, G. M.; Lim, G. P.; Yang, F.; Teter, B.; Begum, A.; Ma, Q.; Harris-White, M. E.; Frautschy, S. A., Prevention of Alzheimer's disease: Omega-3 fatty acid and phenolic anti-oxidant interventions. Neurobiol Aging 2005, 26 Suppl 1, 133-136.
5. Smith, J. V.; Luo, Y., Elevation of oxidative free radicals in Alzheimer's disease models can be attenuated by Ginkgo biloba extract EGb 761. J Alzheimers Dis 2003, 5, 287-300.
6. Hashimoto, M.; Hossain, S.; Agdul, H.; Shido, O., Docosahexaenoic acid-induced amelioration on impairment of memory learning in amyloid beta-infused rats relates to the decreases of amyloid beta and cholesterol levels in detergent-insoluble membrane fractions. Biochim Biophys Acta 2005, 1738, 91-98.
7. Hashimoto, M.; Tanabe, Y.; Fujii, Y.; Kikuta, T.; Shibata, H.; Shido, O., Chronic administration of docosahexaenoic acid ameliorates the impairment of spatial cognition learning ability in amyloid beta-infused rats. J Nutr 2005, 135, 549-555.
8. Luo, Y.; Smith, J. V.; Paramasivam, V.; Burdick, A.; Curry, K. J.; Buford, J. P.; Khan, I.; Netzer, W. J.; Xu, H.; Butko, P., Inhibition of amyloid-beta aggregation and caspase-3 activation by the Ginkgo biloba extract EGb761. Proc Natl Acad Sci U S A 2002, 99, 12197-12202.
9. McCarty, M. F., Toward prevention of Alzheimers disease--potential nutraceutical strategies for suppressing the production of amyloid beta peptides. Med Hypotheses 2006, 67, 682-697.
10. Lim, G. P.; Calon, F.; Morihara, T.; Yang, F.; Teter, B.; Ubeda, O.; Salem, N., Jr.; Frautschy, S. A.; Cole, G. M., A diet enriched with the omega-3 fatty acid docosahexaenoic acid reduces amyloid burden in an aged Alzheimer mouse model. J Neurosci 2005, 25, 3032-3040.
11. Yao, Z. X.; Han, Z.; Drieu, K.; Papadopoulos, V., Ginkgo biloba extract (Egb 761) inhibits beta-amyloid production by lowering free cholesterol levels. J Nutr Biochem 2004, 15, 749-756.
12. Colciaghi, F.; Borroni, B.; Zimmermann, M.; Bellone, C.; Longhi, A.; Padovani, A.; Cattabeni, F.; Christen, Y.; Di Luca, M., Amyloid precursor protein metabolism is regulated toward alpha-secretase pathway by Ginkgo biloba extracts. Neurobiol Dis 2004, 16, 454-460.
13. Su, Y. C.; Wang, J. J.; Lin, T. T.; Pan, T. M., Production of the secondary metabolites gamma-aminobutyric acid and monacolin K by Monascus. J Ind Microbiol Biotechnol 2003, 30, 41-46.
14. Wang, J. J.; Lee, C. L.; Pan, T. M., Improvement of monacolin K, gamma-aminobutyric acid and citrinin production ratio as a function of environmental conditions of Monascus purpureus NTU 601. J Ind Microbiol Biotechnol 2003, 30, 669-676.
15. Lee, C. L.; Wang, J. J.; Kuo, S. L.; Pan, T. M., Monascus fermentation of dioscorea for increasing the production of cholesterol-lowering agent-monacolin K and antiinflammation agent-monascin. Appl Microbiol Biotechnol 2006, 72, 1254-1262.
16. Akihisa, T.; Tokuda, H.; Ukiya, M.; Kiyota, A.; Yasukawa, K.; Sakamoto, N.; Kimura, Y.; Suzuki, T.; Takayasu, J.; Nishino, H., Anti-tumor-initiating effects of monascin, an azaphilonoid pigment from the extract of Monascus pilosus fermented rice (red-mold rice). Chem Biodivers 2005, 2, 1305-1309.
17. Akihisa, T.; Tokuda, H.; Yasukawa, K.; Ukiya, M.; Kiyota, A.; Sakamoto, N.; Suzuki, T.; Tanabe, N.; Nishino, H., Azaphilones, furanoisophthalides, and amino acids from the extracts of Monascus pilosus-fermented rice (red-mold rice) and their chemopreventive effects. J Agric Food Chem 2005, 53, 562-565.
18. Aniya, Y.; Ohtani, I. I.; Higa, T.; Miyagi, C.; Gibo, H.; Shimabukuro, M.; Nakanishi, H.; Taira, J., Dimerumic acid as an antioxidant of the mold, Monascus anka. Free Radic Biol Med 2000, 28, 999-1004.
19. Juzlova, P.; Rezanka, T.; Martinkova, L.; Kren, V., Long-chain fatty acids from Monascus purpureus. Phytochemistry 1996, 43, 151-153.
20. Lee, C. L.; Tsai, T. Y.; Wang, J. J.; Pan, T. M., In vivo hypolipidemic effects and safety of low dosage Monascus powder in a hamster model of hyperlipidemia. Appl Microbiol Biotechnol 2006, 70, 533-540.
21. Setnikar, I.; Senin, P.; Rovati, L. C., Antiatherosclerotic efficacy of policosanol, red yeast rice extract and astaxanthin in the rabbit. Arzneimittelforschung 2005, 55, 312-317.
22. Lee, C. L.; Hung, H. K.; Wang, J. J.; Pan, T. M., Red mold dioscorea has greater hypolipidemic and antiatherosclerotic effect than traditional red mold rice and unfermented dioscorea in hamsters. J Agric Food Chem 2007, 55, 7162-7169.
23. Hsieh, P. S.; Tai, Y. H., Aqueous extract of Monascus purpureus M9011 prevents and reverses fructose-induced hypertension in rats. J Agric Food Chem 2003, 51, 3945-3950.
24. Jeon, T.; Hwang, S. G.; Hirai, S.; Matsui, T.; Yano, H.; Kawada, T.; Lim, B. O.; Park, D. K., Red yeast rice extracts suppress adipogenesis by down-regulating adipogenic transcription factors and gene expression in 3T3-L1 cells. Life Sci 2004, 75, 3195-3203.
25. Chen, W. P.; Lee, C. L.; Lee, C. H.; Pan, T. M., Red mold rice causes the prevention of obesity, dyslipidemia and hyperinsulinemia induced by high-fat diet Int J Obesity 2008, (Revised).
26. Chen, C. C.; Liu, I. M., Release of acetylcholine by Hon-Chi to raise insulin secretion in Wistar rats. Neurosci Lett 2006, 404, 117-121.
27. Song, W. L.; Lawson, J. A.; Reilly, D.; Rokach, J.; Chang, C. T.; Giasson, B.; FitzGerald, G. A., Neurofurans, novel indices of oxidant stress derived from docosahexaenoic acid. J Biol Chem 2008, 283, 6-16.
28. Arendash, G. W.; Jensen, M. T.; Salem, N., Jr.; Hussein, N.; Cracchiolo, J.; Dickson, A.; Leighty, R.; Potter, H., A diet high in omega-3 fatty acids does not improve or protect cognitive performance in Alzheimer's transgenic mice. Neuroscience 2007, 149, 286-302.
29. Montine, T. J.; Morrow, J. D., Fatty acid oxidation in the pathogenesis of Alzheimer's disease. Am J Pathol 2005, 166, 1283-1289.
30. Tada, Y.; Kagota, S.; Kubota, Y.; Nejime, N.; Nakamura, K.; Kunitomo, M.; Shinozuka, K., Long-term feeding of Ginkgo biloba extract impairs peripheral circulation and hepatic function in aged spontaneously hypertensive rats. Biol Pharm Bull 2008, 31, 68-72.



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