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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/21764
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor張惠婷(Hui-Ting Chang)
dc.contributor.authorYen-Ting Chenen
dc.contributor.author陳彥廷zh_TW
dc.date.accessioned2021-06-08T03:45:47Z-
dc.date.copyright2019-02-15
dc.date.issued2019
dc.date.submitted2019-02-13
dc.identifier.citation李漢中、鄭森松、劉如芸、張上鎮 (2003) 不同地理品系土肉桂葉部精油之化學多態性。中華林學季刊 36(4): 411-422。
何坤益 (2006) 台灣產土肉桂、山肉桂及胡氏肉桂 (樟科) 之遺傳變異與分類地位。生物學報41(2): 93-102。
胡大維、林耀堂、何政坤 (1985) 台灣土肉桂葉部精油化學成分之天然變異。林業試驗所試驗報告。No.78。第 296-313頁。
黃惠琪、黃宗正 (2012) 阿茲海默症精神行為症狀的藥物治療。台灣醫學。16(4): 382-389。
葉茂生 (1998) 山地特用植物資源及其利用。原住民植物資源及利用研討會專刊。第 125-141 頁。
楊政川、李世傑、何坤益、林敏宜 (2010) 台灣森林特產物—土肉桂。科學發展446: 28-33。
劉如芸 (2006) 六種化學品系土肉桂葉子精油抗細菌,腐朽菌,病媒蚊幼蟲及室塵蟎活性。臺灣大學森林環境暨資源學研究所學位論文。79 頁。
Adams, R. P. (2007) Identification of Essential Oil Components by Gas Chromatography/mass Spectrometry. Allured Publishing Corporation. Carol Stream. 804 pp.
Afify, E. A., H. M. Alkreathy, A. S. Ali, H. A. Alfaifi, and L. M. Khan (2017) Characterization of the antinociceptive mechanisms of khat extract (Catha edulis) in mice. Frontiers in Neurology 8: 69. doi: 10.3389/fneur.2017.00069.
Apfeld, J. and C. Kenyon (1999) Regulation of lifespan by sensory perception in Caenorhabditis elegans. Nature 402(6763): 804-809.
Avenevoli, S., J. Swendsen, J. P. He, Burstein, M., and K. R. Merikangas (2015) Major depression in the National Comorbidity Survey–Adolescent Supplement: prevalence, correlates, and treatment. Journal of the American Academy of Child & Adolescent Psychiatry 54(1): 37-44.
Avetisyan, A., A. Markosian, M. Petrosyan, N. Sahakyan, A. Babayan, S. Aloyan, and Trchounian (2017) Chemical composition and some biological activities of the essential oils from basil Ocimum different cultivars. BMC Complementary and Alternative Medicine 17(1): 60. doi: 10.1186/s12906-017-1587-5.
Ban, N. K., N. T. K. Thoa, T. M. Linh, P. Van Kiem, N. X. Nhiem, B. H. Tai, and S. H. Kim (2018) Labdane-type diterpenoids from Vitex limonifolia and their antivirus activities. Journal of Natural Medicines 72(1): 290-297.
Bereczki, E., P. T. Francis, D. Howlett, J. B. Pereira, K. Höglund, A. Bogstedt, and Ballard, C. (2016) Synaptic proteins predict cognitive decline in Alzheimer's disease and Lewy body dementia. Alzheimer's and Dementia 12(11): 1149-1158.
Boasquívis, P. F., G. M. M. Silva, F. A. Paiva, R. M. Cavalcanti, C. V. Nunez, and R. de Paula Oliveira (2018) Guarana (Paullinia cupana) extract protects Caenorhabditis elegans models for Alzheimer disease and huntington disease through activation of antioxidant and protein degradation pathways. Oxidative Medicine and Cellular Longevity 2018: 9241308. doi: 10.1155/2018/9241308.
Braff, D. L., and M. A. Geyer (1990) Sensorimotor gating and schizophrenia: human and animal model studies. Archives of General Psychiatry 47(2): 181-188.
Brenner, S. (1974) The genetics of Caenorhabditis elegans. Genetics 77(1): 71-94.
Bronner, K., R. Perneczky, R. McCabe, A. Kurz, and J. Hamann (2016) Which medical and social decision topics are important after early diagnosis of Alzheimer’s Disease from the perspectives of people with Alzheimer’s Disease, spouses and professionals? BMC Research Notes 9:149. doi: 10.1186/s13104-016-1960-3.
Buckner, R. L., A. Z. Snyder, B. J. Shannon, G. LaRossa, R. Sachs, A. F. Fotenos, and M. A. Mintun (2005) Molecular, structural, and functional characterization of Alzheimer's disease: evidence for a relationship between default activity, amyloid, and memory. Journal of Neuroscience 25(34): 7709-7717.
Butterweck, V., G. Jürgenliemk, A. Nahrstedt, and H. Winterhoff (2000) Flavonoids from Hypericum perforatum show antidepressant activity in the forced swimming test. Planta Medica 66(01): 3-6.
Caputo, L., M. Reguilon, J. Minarro, V. De Feo, and M. Rodriguez-Arias (2018) Lavandula angustifolia essential oil and linalool counteract social aversion induced by social defeat. Molecules 23(10): E2694. doi: 10.3390/molecules23102694.
Cascella, M., S. Bimonte, M. R. Muzio, V. Schiavone, and A. Cuomo (2017) The efficacy of epigallocatechin-3-gallate (green tea) in the treatment of Alzheimer’s disease: an overview of pre-clinical studies and translational perspectives in clinical practice. Infectious Agents and Cancer 12:36. doi: 10.1186/s13027-017- 0145-6.
Cheng, S. S., J. Y. Liu, C. G.Huang, Y. R. Hsui, W. J. Chen, and S. T. Chang (2009) Insecticidal activities of leaf essential oils from Cinnamomum osmophloeum against three mosquito species. Bioresource Technology 100(1): 457-464.
Cheng, S. S., J. Y. Liu, Y. R. Hsui, and S. T. Chang (2006) Chemical polymorphism and antifungal activity of essential oils from leaves of different provenances of indigenous cinnamon (Cinnamomum osmophloeum). Bioresource Technology 97(2): 306-312.
Choi, S. M., B. C. Kim, Y. H. Cho, K. H. Choi, J. Chan, M. S. Park, and J. K. Kim (2014) Effects of flavonoid compounds on β-amyloid-peptide-induced neuronal death in cultured mouse cortical neurons. Chonnam Medical Journal 50(2): 45-51.
Chukhraev, N., A. Vladimirov, W. Zukow, O. Chukhraiyeva, V. Levkovskaya (2017) Combined physiotherapy of anxiety and depression disorders in dorsopathy patients. Journal of Physical Education and Sport 17(1): 414-417.
Delacourte, A. and A. Defossez (1986) Alzheimer's disease: Tau proteins, the promoting factors of microtubule assembly, are major components of paired helical filaments. Journal of the Neurological Sciences 76(2): 173-186.
Di Petrillo, A., A. M. Gonzalez-Paramas, B. Era, R. Medda, F. Pintus, C. Santos-Buelga, and A. Fais (2016) Tyrosinase inhibition and antioxidant properties of Asphodelus microcarpus extracts. BMC complementary and alternative medicine 16(1): 453. doi: 10.1186/s12906-016-1442-0.
Dilworth-Anderson, P., and B. E. Gibson (2002) The cultural influence of values, norms, meanings, and perceptions in understanding dementia in ethnic minorities. Alzheimer Disease and Associated Disorders 16: 56-63.
Diniz, B. S., M. A. Butters, S. M. Albert, M. A. Dew, and C. F. Reynolds (2013) Late-life depression and risk of vascular dementia and Alzheimer's disease: systematic review and meta-analysis of community-based cohort studies. The British Journal of Psychiatry 202(5): 329-335.
Dowd, E. T. (2004) Depression: Theory, assessment, and new directions in practice. International Journal of Clinical and Health Psychology 4(2): 413-423.
Drake, J., C. D. Link, and D. A. Butterfield (2003) Oxidative stress precedes fibrillar deposition of Alzheimer’s disease amyloid β-peptide (1–42) in a transgenic Caenorhabditis elegans model. Neurobiology of Aging 24(3): 415-420.
Du, K., M. Liu, X. Zhong, W. Yao, Q. Xiao, Q. Wen, B. Yang, and M. Wei (2018) Epigallocatechin gallate reduces amyloid β‐induced neurotoxicity via inhibiting endoplasmic reticulum stress‐mediated apoptosis. Molecular Nutrition and Food Research 62(8): 1-10.
Ferreira-Vieira, T. H, I. M Guimaraes, F. R Silva, and F. M Ribeiro (2016) Alzheimer's disease: targeting the cholinergic system. Current Neuropharmacology 14(1): 101-115.
Firenzuoli, F., and L. Gori (2007) Herbal medicine today: clinical and research issues. Evidence-Based Complementary and Alternative Medicine 4(S1): 37-40.
Fu, H., G. A. Rodriguez, M. Herman, S. Emrani, E. Nahmani, G. Barrett, and K. E. Duff (2017) Tau pathology induces excitatory neuron loss, grid cell dysfunction, and spatial memory deficits reminiscent of early Alzheimer’s disease. Neuron 93(3): 533-541.
Gawade, S. (2012) Acetic acid induced painful endogenous infliction in writhing test on mice. Journal of Pharmacology and Pharmacotherapeutics 3(4): 348. doi: 10.4103/0976-500X.103699.
Golden, J. W., and D. L. Riddle (1984) The Caenorhabditis elegans dauer larva: developmental effects of pheromone, food, and temperature. Developmental Biology 102(2): 368-378.
Gotti, C., M. Moretti, I. Bohr, I. Ziabreva, , S. Vailati, S. Longhi, and D. Aarsland (2006) Selective nicotinic acetylcholine receptor subunit deficits identified in Alzheimer's disease, Parkinson's disease and dementia with Lewy bodies by immunoprecipitation. Neurobiology of Disease 23(2): 481-489.
Gutierrez-Zepeda, A., R. Santell, Z. Wu, M. Brown, Y. Wu, I. Khan, and Y. Luo (2005) Soy isoflavone glycitein protects against beta amyloid-induced toxicity and oxidative stress in transgenic Caenorhabditis elegans. BMC Neuroscience 6(1): 54. doi: 10.1186/1471-2202-6-54.
Guzman-Gutierrez, S. L., R. Gomez-Cansino, J. C. Garcia-Zebadua, N. C. Jimenez-Perez, and R. Reyes-Chilpa (2012) Antidepressant activity of Litsea glaucescens essential oil: identification of β-pinene and linalool as active principles. Journal of Ethnopharmacology 143(2): 673-679.
Hardy, J. and D. J.Selkoe (2002) The amyloid hypothesis of Alzheimer's disease: progress and problems on the road to therapeutics. Science 297(5580): 353-356.
Hong, K. B., Y. Park, and H. J. Suh (2018) Two combined amino acids promote sleep activity in caffeine-induced sleepless model systems. Nutrition Research and Practice 12(3): 208-214.
James, G. M., P. Baldinger-Melich, C. Philippe, G. S. Kranz, T. Vanicek, A. Hahn, and M. Mitterhauser (2017) Effects of selective serotonin reuptake inhibitors on interregional relation of serotonin transporter availability in major depression. Frontiers in Human Neuroscience 11: 48. doi: 10.3389/fnhum.2017.00048.
Jokinen, V., T. Lilius, J. Laitila, M. Niemi, O. Kambur, E. Kalso, and P. Rauhala (2017) Do diuretics have antinociceptive actions: Studies of spironolactone, eplerenone, furosemide and chlorothiazide, individually and with oxycodone and morphine. Basic and Clinical Pharmacology and Toxicology 120(1): 38-45.
Lee, D. Y., H. G. Kim, Y. G. Lee, J. H. Kim, J. W. Lee, B. R. Choi, and N. I. Baek (2018) Isolation and quantification of ginsenoside Rh23, a new anti-melanogenic compound from the leaves of Panax ginseng. Molecules 23(2): E267. doi: 10.3390/molecules23020267.
Lee, H. C., S. S. Cheng, and S. T. Chang (2005) Antifungal property of the essential oils and their constituents from Cinnamomum osmophloeum leaf against tree pathogenic fungi. Journal of the Science of Food and Agriculture 85(12): 2047-2053.
Lee, M. G., S. Y. Kuo, S. Y. Yen, H. F. Hsu, C. H. Leung, D. L. Ma, Z. H. Wen, and H. M. D. Wang (2015) Evaluation of Cinnamomum osmophloeum Kanehira extracts on tyrosinase suppressor, wound repair promoter, and antioxidant. The Scientific World Journal 2015:303415. doi: 10.1155/2015/303415.
Lee, S. C., J. S. Hsu, C. C. Li, K. M. Chen, and C. T. Liu (2015) Protective effect of leaf essential oil from Cinnamomum osmophloeum Kanehira on endotoxin-induced intestinal injury in mice associated with suppressed local expression of molecules in the signaling pathways of TLR4 and NLRP3. PLoS One 10(3):e0120700. doi: 10.1371/journal.pone.0120700.
Lee, S. C., S. Y. Wang, C. C. Li, and C. T. Liu (2018) Anti-inflammatory effect of cinnamaldehyde and linalool from the leaf essential oil of Cinnamomum osmophloeum Kanehira in endotoxin-induced mice. Journal of Food and Drug Analysis 26(1): 211-220.
Lee, S. M., B. S. Bae, H.W. Park, N.G. Ahn, B.G. Cho, Y.L. Cho, Y. S. Kwak (2015) Characterization of Korean red ginseng (Panax ginseng Meyer): History, preparation method, and chemical composition. Journal of Ginseng Research 39(4): 384-391.
Leserman, J., J. M. Petitto, R. N. Golden, B. N. Gaynes, H. Gu, D. O. Perkins, S. G. Silva, J. D. Folds, D. L. Evans (2000) Impact of stressful life events, depression, social support, coping, and cortisol on progression to AIDS. American Journal of Psychiatry 157(8): 1221-1228.
Leung, M. C., P. L. Williams, A. Benedetto, C. Au, K. J. Helmcke, M. Aschner, and J. N. Meyer (2008) Caenorhabditis elegans: an emerging model in biomedical and environmental toxicology. Toxicological Sciences 106(1): 5-28.
Lin, T. Y., J. W. Liao, S. T. Chang, and S. Y. Wang (2011) Antidyslipidemic activity of hot‐water extracts from leaves of Cinnamomum osmophloeum Kaneh. Phytotherapy Research 25(9): 1317-1322.
Link, C. D. (1995) Expression of human beta-amyloid peptide in transgenic Caenorhabditis elegans. Proceedings of the National Academy of Sciences 92(20): 9368-9372.
Lopez, O. L., J. T. Becker, R. A. Sweet, W. Klunk, D. I. Kaufer, J. Saxton, and S. T. DeKosky (2003) Psychiatric symptoms vary with the severity of dementia in probable Alzheimer's disease. Journal of Neuropsychiatry and Clinical Neurosciences 15(3): 346-353.
Lopez, V., B. Nielsen, M. Solas, M. J. Ramirez, and A. K. Jager (2017) Exploring pharmacological mechanisms of lavender (Lavandula angustifolia) essential oil on central nervous system targets. Frontiers in Pharmacology 8:280. doi: 10.3389/ fphar.2017.00280.
Machado, D. G., L. E. Bettio, M. P. Cunha, J. C. Capra, J. B. Dalmarco, M. G. Pizzolatti, and A. L. S. Rodrigues (2009) Antidepressant-like effect of the extract of Rosmarinus officinalis in mice: involvement of the monoaminergic system. Progress in Neuro-Psychopharmacology and Biological Psychiatry 33(4): 642-650.
Mahmoudi, M., M. A. Ebrahimzadeh, A. Dooshan, A. Arimi, N. Ghasemi, and F. Fathiazad (2014) Antidepressant activities of Sambucus ebulus and Sambucus nigra. European Review for Medical and Pharmacological Sciences 18(22): 3350-3353.
Mahmoudi, M., M. A. Ebrahimzadeh, M. Abdi, Y. Arimi, and H. Fathi (2015) Antidepressant activities of Feijoa sellowiana fruit. European Review for Medical and Pharmacological Sciences 19(3): 2510-2513.
Mantovani, M., R. Pertile, J. B. Calixto, A. R. Santos, and A. L. S. Rodrigues (2003) Melatonin exerts an antidepressant-like effect in the tail suspension test in mice: evidence for involvement of N-methyl-D-aspartate receptors and the L-arginine-nitric oxide pathway. Neuroscience Letters 343(1): 1-4.
Martin, A. and P. Fedio (1983) Word production and comprehension in Alzheimer's disease: The breakdown of semantic knowledge. Brain and Language 19(1): 124-141.
Masters, C. L., G. Simms, N. A. Weinman, G. Multhaup, B. L. McDonald, and K. Beyreuther (1985) Amyloid plaque core protein in Alzheimer disease and Down syndrome. Proceedings of the National Academy of Sciences of the United States of America 82(12): 4245-4249.
McColl, G., B. R. Roberts, T. L. Pukala, V. B. Kenche, C. M. Roberts, C. D. Link, and R. A. Cherny (2012) Utility of an improved model of amyloid-beta (Aβ 1-42) toxicity in Caenorhabditis elegans for drug screening for Alzheimer’s disease. Molecular Neurodegeneration 7(1): 57. doi: 10.1186/1750-1326-7-57.
Morgan, D., D. M. Diamond, P. E. Gottschall, K. E. Ugen, C. Dickey, J. Hardy, and Connor, K. (2000) Aβ peptide vaccination prevents memory loss in an animal model of Alzheimer's disease. Nature 408(6815): 982-985.
Morris, J. C., M. Storandt, J. P. Miller, D. W. McKeel, J. L. Price, E. H. Rubin, and L. Berg (2001) Mild cognitive impairment represents early-stage Alzheimer disease. Archives of Neurology 58(3): 397-405.
Nikolaev, A., T. McLaughlin, D. D. O’Leary, and M. Tessier-Lavigne (2009) APP binds DR6 to trigger axon pruning and neuron death via distinct caspases. Nature 457(7232): 981-989.
Pervin, M., K. Unno, T. Ohishi, H. Tanabe, N. Miyoshi, and Y. Nakamura (2018) Beneficial effects of green tea catechins on neurodegenerative diseases. Molecules 23(6): E1297. doi: 10.3390/molecules23061297.
Ochalek, A., B. Mihalik, H. X. Avci, A. Chandrasekaran, A. Téglási, I. Bock, and Nielsen, J. E. (2017) Neurons derived from sporadic Alzheimer’s disease iPSCs reveal elevated TAU hyperphosphorylation, increased amyloid levels, and GSK3B activation. Alzheimer's Research and Therapy 9(1):90. doi: 10.1186/s13195- 017-0317-z.
Qiang, W., W. M. Yau, J. X. Lu, J. Collinge, and R. Tycko (2017) Structural variation in amyloid-β fibrils from Alzheimer's disease clinical subtypes. Nature 541(7636): 217-221.
Kilicgun, H. and G. Goksen (2012) Life span effects of Hypericum perforatum extracts on Caenorhabditis elegans under heat stress. Pharmacognosy Magazine 8(32): 325-328.
Rahimi, V. B., V. Askari, A. Tajani, A. Hosseini, and H. Rakhshandeh (2018) Evaluation of the sleep-prolonging effect of Lagenaria vulgaris and Cucurbita pepo extracts on pentobarbital-induced sleep and possible mechanisms of action. Medicina 54(4): E55. doi: 10.3390/medicina54040055.
Rajdev, K., S. Jain, C. H.Mahendra, and Bhattacharaya, S. K. (2018) Antinociceptive effect of Ficus bengalensis bark extract in experimental models of pain. Cureus 10(3): 1-7.
Reisberg, B., J. Borenstein, S. P. Salob, and S. H. Ferris (1987) Behavioral symptoms in Alzheimer's disease: phenomenology and treatment. The Journal of Clinical Psychiatry 48 Suppl: 9-15.
Reisberg, B., R. Doody, A. Stöffler, F. Schmitt, S. Ferris, and H. J. Möbius (2003) Memantine in moderate-to-severe Alzheimer's disease. New England Journal of Medicine 348(14): 1333-1341.
Roubroeks, J. A., R. G. Smith, D. L. van den Hove, and K. Lunnon (2017) Epigenetics and DNA methylomic profiling in Alzheimer's disease and other neurodegenerative diseases. Journal of Neurochemistry 143(2): 158-170.
Roy, D. S., A. Arons, T. I. Mitchell, M. Pignatelli, T. J. Ryan, and S. Tonegawa (2016) Memory retrieval by activating engram cells in mouse models of early Alzheimer’s disease. Nature 531(7595): 508-512.
Scheltens, N. M., F. Galindo-Garre, Y. A. Pijnenburg, A. E. van der Vlies, L. L. Smits, T. Koene, and W. M. van der Flier (2016) The identification of cognitive subtypes in Alzheimer's disease dementia using latent class analysis. Journal of Neurology, Neurosurgery and Psychiatry 87(3): 235-243.
Seo, Y. M., S. J. Choi, C. K. Park, M. C. Gim, and D. H. Shin (2018) Synergistic effect of Korean red ginseng and Pueraria montana var. lobata against trimethyltin-induced cognitive impairment. Food Science and Biotechnology 27(4): 1193-1200.
Shen, Y. C., C. J. Chou, Y. H. Wang, C. F. Chen, Y. C. Chou, and M. K. Lu (2004) Anti-inflammatory activity of the extracts from mycelia of Antrodia camphorata cultured with water-soluble fractions from five different Cinnamomum species. FEMS Microbiology Letters 231(1): 137-143.
Singh, N. A., A. K. A. Mandal, and Z. A. Khan (2015) Potential neuroprotective properties of epigallocatechin-3-gallate (EGCG). Nutrition Journal 15(1): 60. doi: 10.1186/s12937-016-0179-4.
Smith, K. (2014) Mental health: a world of depression. Nature News 515(7526): 180.
Stilwell, B. L., R. M. Dow, C. Lamers, and R. T. Woods (2016). Language changes in bilingual individuals with Alzheimer's disease. International Journal of Language and Communication Disorders 51(2): 113-127.
Strittmatter, W. J., A. M. Saunders, D. Schmechel, M. Pericak-Vance, J. Enghild, G. S. Salvesen, and A. D. Roses (1993) Apolipoprotein E: high-avidity binding to beta-amyloid and increased frequency of type 4 allele in late-onset familial Alzheimer disease. Proceedings of the National Academy of Sciences of the United States of America 90(5): 1977-1981.
Su, B., X. Wang, A. Nunomura, P. I. Moreira, H. G. Lee, G. Perry, and X. Zhu (2008). Oxidative stress signaling in Alzheimer's disease. Current Alzheimer Research 5(6): 525-532.
Suffredini, I. B., M. L. B. Paciencia, S. A. Frana, A. D. Varella, and R. N. Younes, (2007) In vitro breast cancer cell lethality of Brazilian plant extracts. Die Pharmazie-An International Journal of Pharmaceutical Sciences 62(10): 798-800.
Waite, L. M. (2015) Treatment for Alzheimer’s disease: has anything changed?. Australian Prescriber 38(2): 60-63.
Wang, X., X. Zhou, G. Li, Y. Zhang, Y. Wu, and W. Song (2017) Modifications and trafficking of APP in the pathogenesis of Alzheimer’s disease. Frontiers in Molecular Neuroscience 10:294. doi: 10.3389/fnmol.2017.00294.
Webster, D., P. Taschereau, R. J. Belland, C. Sand, and R. P. Rennie (2008) Antifungal activity of medicinal plant extracts; preliminary screening studies. Journal of Ethnopharmacology 115(1): 140-146.
Yang, J., X. B. Huang, Q. L. Wan, A. J. Ding, Z. L. Yang, M. H. Qiu, and H. R. Luo (2017) Otophylloside B protects against Aβ toxicity in Caenorhabditis elegans models of Alzheimer’s disease. Natural Products and Bioprospecting 7(2): 207-214.
Yin, X., N. Jin, J. Shi, Y. Zhang, Y. Wu, C. X. Gong, and F. Liu (2017) Dyrk1A overexpression leads to increase of 3R-tau expression and cognitive deficits in Ts65Dn Down syndrome mice. Scientific Reports 7(1): 619. doi: 10.1038/s41598- 017-00682-y.
Zhao, W., Y. Li, W. Ma, Y. Ge, and Y. Huang (2015) A study on quality components and sleep-promoting effects of GABA black tea. Food and Function 6(10): 3393-3398.
Zhu, S., H. Li, J. Dong, W. Yang, T. Liu, Y. Wang, and Zhi, D (2017) Rose essential oil delayed Alzheimer’s disease-like symptoms by SKN-1 pathway in C. elegans. Journal of Agricultural and Food Chemistry 65(40): 8855-8865.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/21764-
dc.description.abstract本研究主要進行伽羅木醇型土肉桂葉子精油的化學組成分析與生物活性評估,經由 GC-MS 分析確定伽羅木醇型土肉桂葉子精油的主要成分為 Linalool,佔了總成分的 93.2%。在小鼠的強迫游泳試驗中,顯示伽羅木醇型土肉桂葉子精油在 400 mg/kg 時具有良好之抗憂鬱活性的效果。在 GMC101 基因轉殖秀麗隱桿線蟲的麻痺試驗中,線蟲在 25℃ 環境中 48 hr 後,可以觀察到伽羅木醇型土肉桂葉子精油在濃度 100 μg/mL、200 μg/mL與 400 μg/mL時能夠有效降低線蟲的麻痺率,而在72 hr 後,伽羅木醇型土肉桂葉子精油濃度在 200 μg /mL與 400 μg /mL亦有降低線蟲麻痺率的效果。綜合上述結果顯示,伽羅木醇型土肉桂葉子精油具有抗憂鬱活性與抗阿茲海默症效果,值得後續進一步的研究與開發應用。zh_TW
dc.description.abstractThe purposes of the study were to analysize the chemical composition of the leaf essential oil of Cinnamomum osmophloeum ct. linalool, and evaluate the bioactivities of leaf essential oil. The main component of the leaf essential oil of C. osmophloeum ct. linalool was confirmed by GC-MS analysis; the leaf essential oil is rich in linalool (93.2%). Results revealed that the leaf essential oil of C. osmophloeum ct. linalool had the good antidepressant activity in the forced swimming test in mice at the concentration of 400 μg/ml. In the paralysis assay, the leaf essential oil can reduce the paralysis rate of Caenorhabditis elegans transgenic strain GMC101 at the concentrations of 100 μg/ml, 200 μg/ml and 400 μg/ml after 25℃ and 48 hr of paralysis test. The leaf essential oil can also reduce the paralysis rate of C. elegans transgenic strain GMC101 at the concentrations of 200 μg/ml and 400 μg/ml after 72-hr paralysis test. According to the results, the leaf essential oil of C. osmophloeum ct. linalool has the antidepressant activity and the anti-Alzheimer's effect, and it is worthy of further research and exploitation.en
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Previous issue date: 2019
en
dc.description.tableofcontents摘 要 I
Abstract II
表目錄 VII
圖目錄 X
壹、前言 1
貳、文獻回顧 3
一、土肉桂植物 3
(一) 簡介 3
(二) 土肉桂植物之生物活性 4
1. 抗氧化活性 4
2. 抗發炎活性 5
3. 抗真菌活性 7
4. 抗高血脂活性 7
二、植物抽出物抗憂鬱活性之相關研究 8
(一) 憂鬱症之簡介 8
(二) 憂鬱症病因 8
1. 生物學因素 9
2. 心理學因素 9
3. 社會學因素 9
(三) 常見的憂鬱試驗評估模式 9
1. 強迫游泳試驗 9
2. 尾部懸吊試驗 10
(四) 植物抽出物治療憂鬱症之研究 10
1. 西洋接骨木 10
2. 斐濟果 12
3. 迷迭香 12
三、植物抽出物治療阿茲海默症之相關研究 13
(一) 阿茲海默症之簡介 13
(二) 阿茲海默症的病因 14
1. 膽鹼性假說 15
2. β類澱粉胜肽 15
3. Tau蛋白假說 15
4. 其他病因 16
(三) 植物抽出物治療阿茲海默症之研究 16
1. 山葛抽出物與韓國紅蔘抽出物 16
2. 玫瑰精油 21
3. EGCG 22
參、材料與方法 28
一、試驗材料 28
(一) 試材 28
(二) 實驗小鼠 28
(三) 秀麗隱桿線線蟲與菌種 28
1. 秀麗隱桿線線蟲 28
2. 大腸桿菌 28
(四) 試驗藥品與溶劑 28
1. 藥品 28
2. 溶劑 29
二、試驗方法 29
(一) 精油成分分析 29
(二) 強迫游泳試驗 (憂鬱動物模型) 30
(三) 熱刺激甩尾法試驗 (鎮痛動物模型) 30
(四) 巴比妥誘導催眠小鼠睡眠試驗 30
(五) 抑制酪胺酸酶活性之試驗 30
(六) 斑馬魚試驗 31
(七) 線蟲培養 31
1. E.coli OP50製備 31
2. NGM agar plate製備 31
3. E.coli OP50的NGM agar plate製備 31
4. 線蟲培養 32
5. 線蟲同齡化 32
6. 試驗樣品之NGM agar plate製備 32
(八) 基因轉殖線蟲GMC101麻痺試驗 32
(九) 秀麗隱桿線蟲之耐熱性試驗 33
(十) 統計分析 33
肆、結果與討論 34
一、伽羅木醇型土肉桂葉子精油成分與含量分析 34
二、伽羅木醇型土肉桂葉子精油之質譜分析 36
(一) Linalool 36
(二) Camphor 37
(三) trans-Cinnamaldehyde 38
(四) β-Caryophyllene 39
(五) Coumarin 40
(六) Caryophyllene oxide 41
二、以小鼠模式評估伽羅木醇型土肉桂葉子精油之抗憂鬱與其他活性 42
(一) 伽羅木醇型土肉桂葉子精油對小鼠體重變化之影響 42
(二) 伽羅木醇型土肉桂葉子精油之抗憂鬱活性評估 44
(三) 伽羅木醇型土肉桂葉子精油對小鼠熱刺激甩尾法試驗之影響 51
(四) 伽羅木醇型土肉桂葉子精油對小鼠睡眠時間之影響 53
三、伽羅木醇型土肉桂葉子精油抑制黑色素生成之活性評估 55
(一) 伽羅木醇型土肉桂葉子精油對蕈類酪胺酸酶的抑制效果 55
(二) 伽羅木醇型土肉桂葉子精油對斑馬魚黑色素的抑制效果 58
四、以秀麗隱桿線蟲模式評估伽羅木醇型土肉桂葉子精油對生物耐熱性與抗阿茲海默症活性的影響 60
(一) 伽羅木醇型土肉桂葉子精油對秀麗隱桿線蟲之耐熱性影響 60
(二) 伽羅木醇型土肉桂葉子精油對基因轉殖線蟲GMC101之麻痺率影響 61
伍、結論 65
陸、參考文獻 66
dc.language.isozh-TW
dc.title伽羅木醇型土肉桂葉精油成分及生物活性探討zh_TW
dc.titleChemical Composition and Bioactivities of Leaf Essential Oil of Cinnamomum osmophloeum ct. Linaloolen
dc.typeThesis
dc.date.schoolyear107-1
dc.description.degree碩士
dc.contributor.oralexamcommittee葉汀峰(Ting-Feng Yeh),許富蘭(Fu-Lan Hsu)
dc.subject.keyword土肉桂,抗憂鬱活性,伽羅木醇,秀麗隱桿線蟲,阿茲海默症,zh_TW
dc.subject.keywordAntidepressant activity,Caenorhabditis elegans,Cinnamomum osmophloeum,Linalool,en
dc.relation.page75
dc.identifier.doi10.6342/NTU201900484
dc.rights.note未授權
dc.date.accepted2019-02-13
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept森林環境暨資源學研究所zh_TW
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