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  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
  3. 動物科學技術學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/78009
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陳億乘(Yi-Chen Chen)
dc.contributor.authorYen-Ho Shihen
dc.contributor.author施彥合zh_TW
dc.date.accessioned2021-07-11T14:39:34Z-
dc.date.available2027-12-31
dc.date.copyright2017-02-21
dc.date.issued2017
dc.date.submitted2017-02-10
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/78009-
dc.description.abstract目前認為失智症的發生和氧化壓力造成腦損傷有很大的關聯性。PC12具有神經細胞之特性,是一株適合用以誘導氧化壓力上升和模擬失智症產生的細胞。磷脂質為神經細胞之重要化合物,高齡和失智症患者其腦內所含之磷脂質皆較年青人和正常人少。動物副產品中亦含有高量磷脂質,已有研究說明補充磷脂質具有改善老鼠之學習和記憶力之能力。
第一部份的結果顯示,經酒精萃取後,在動物副產物中,豬腦擁有最高之產率。以HPLC分析發現酒精萃取物中豬腦酒精萃取物(swine brain phospholipid, SBEE)亦有最適當之磷脂質組成份,同時也擁有萃取時間和方便性較佳之優點,因此選用豬腦酒精萃取物(SBEE)進行第二部份之實驗。確認PC12細胞型態為具有神經細胞特性之細胞株後,將0.031、0.125、0.5、2 mg/mL之SBEE對PC12細胞處理6小時後測定細胞存活率和乳酸脫氫酶釋放量,發現並不會對細胞造成毒性,但可以減緩和150 μM H2O2 處理下6小時之細胞毒性(p<0.05),而在細胞型態中亦有發現SBEE處理具有減緩150 μM H2O2所造成PC12細胞型態破裂之情形。更進一步測定了細胞的氧化狀態指標TBARS、reduced GSH量和TEAC值以及抗氧化酵素SOD、CAT和GPx,皆可以發現SBEE具有能力減緩150 μM H2O2所造成之氧化壓力(p<0.05)。細胞發炎激素TNF-α、IL-6和IL-1β以及nitrite分泌量也在添加SBEE之組別中顯著下降(p<0.05)。在促細胞凋亡基因表現的部份亦可使iNOS、Bax、Cytochrome c、Caspase9、Caspase8和Caspase3之表現量下降(p<0.05),同時使Bcl-2之表現量有上升的趨勢。綜觀上述,動物副產物中以豬腦進行酒精萃取具有較佳之產率、萃取效益和磷脂質組成,在SBEE處理下PC12細胞具有對抗氧化壓力之能力,亦可減緩發炎激素之釋放和使細胞凋亡相關基因之表現量降低,而這也顯示於細胞存活率和細胞型態之結果。
zh_TW
dc.description.abstractThe dementia is not only high incident with cerebral cortical atrophy as well as oxidative-induced damage but also coupled with the phospholipid loss in the brain. It was supposed that daily phospholipid supplementation could enhance the membrane stability of brain neuron cells, thus reducing the dementia occurrence. In comparison with other animal byproducts, brain, liver, and heart tissues are rich in phospholipids. Hence, the objectives of this study were to find out a suitable phospholipid source from animal byproducts and investigate if the extracted phospholipids own protection against oxidative stress via a neuron-like cell, PC12 cell.
The results showed that swine brain has the highest yield and phospholipid contents (p<0.05), compared to broiler brain and liver, and so are processing convenience, shorter processing time, and higher slaughtered amount. In the second part of the experiment, there were no (p<0.05) differences among viability and lactate dehydrogenase release of PC12 cells after treating 0.031, 0.125, 0.5, 2, and 4 mg/mL swine brain ethanol extraction (SBEE), but SBEE ameliorated (p<0.05) them of PC12 cells treated with 150 μM H2O2. Meanwhile, the morphological observation showed the similar results. Furthermore, TBARS, reduced GSH, and TEAC values of PC12 cells treated 150 μM H2O&not;2 were improved (p<0.05) by adding SBEE, and so were the antioxidant enzyme (SOD, CAT, and GPx) activities (p<0.05). Moreover, the SBEE addition decreased (p<0.05) the inflammatory cytokines, i.e. TNFα, IL-6, IL-1β, and nitrite level of PC12 cells treated with 150 μM H2O2. Regarding apoptosis-related gene expressions of PC12 cells, the SBEE downregulated (p<0.05) iNOS, Bax, Caspase3, Caspase8, Caspase9, and Cytochrome c expressions in PC12 cells treated with 150 μM H2O2, but the Bcl-2 expression was upregulated (p<0.05).
In conclusion, swine brain can be a suitable candidate for the phospholipid extraction with the higher yield and phospholipid content. Furthermore, SBEE also alleviates oxidative damage, reduces the inflammation cytokine, and decreases the apoptosis-related gene expressions, thus ameliorating viability and lactate dehydrogenase release in PC12 cells treated with 150 μM H2O&not;2. Altogether, our SBEE can be a potential healthy ingredient for neuron cells against oxidative stress in the niche market.
en
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Previous issue date: 2017
en
dc.description.tableofcontents中文摘要 1
Abstract 2
壹、前言 4
貳、文獻探討 6
一、老化與失智症文獻回顧 6
1. 失智症之社會成本 7
2. 失智症分類 11
二、神經細胞文獻回顧 24
1. 中樞神經系統 24
2. 周圍神經系統 30
3. PC12細胞 33
三、磷脂質文獻回顧 38
1. 磷脂質之功能和特性 39
2. 磷脂質之萃取方法 44
3. 生物體內之磷脂質 45
參、材料與方法 48
一、試驗設計 48
二、材料 49
1. 藥品 49
2. 商業套組 50
3. 儀器 51
三、動物副產物之萃取與分析 51
1. 副產物萃取 51
2. 高效液相色層分析法(high performance liquid chromatography, HPLC)分析 52
四、PC12細胞 53
五、細胞毒性測試 53
1. 細胞存活率分析 54
2. 乳酸脫氫酶釋放量分析 54
3. 細胞型態學觀察 55
六、抗氧化防禦能力評估 55
1. 硫代巴比妥酸值(Thiobarbituric acid reactive substances, TBARS)含量分析 55
2. 還原型麩胱甘肽(reduce glutathione, reduced GSH)含量分析 56
3. 總抗氧化能力(Trolox equivalent antioxidant capacity, TEAC)分析 56
4. 超氧化歧化酶(superoxide dismutase, SOD)活性分析 57
5. 過氧化氫酶(catalase, CAT)活性分析 57
6. 麩胱甘肽過氧化氫酶(glutathione reductase, GPx)活性分析 58
七、發炎細胞激素表現評估 58
1. 腫瘤壞死因子α (tumor necrosis factor α, TNFα)濃度分析 59
2. 介白素6 (interlukin-6, IL-6)濃度分析 59
3. 介白素1β (interlukin-1β, IL-1β)濃度分析 59
4. 一氧化氮濃度(nitrite level, NO)分析 60
八、細胞凋亡基因表現分析 60
1. 抽取細胞RNA 60
2. 將RNA製備為cDNA 61
3. 進行real-time PCR 61
九、統計分析 64
肆、結果與討論 65
一、動物副產物選定 65
二、PC12細胞之細胞型態 70
三、SBEE和H2O2處理下對PC12細胞之毒性、存活率和型態影響 72
四、SBEE處理下對PC12細胞抗氧化能力影響 80
五、SBEE處理下對PC12細胞發炎激素分泌量影響 84
六、SBEE處理下對PC12細胞凋亡相關基因表現量影響 86
伍、結論 90
陸、參考文獻 92
柒、附錄 114
dc.language.isozh-TW
dc.title豬腦酒精萃取物對過氧化氫誘導PC12神經細胞損傷之保護作用zh_TW
dc.titleProtective effects of swine brain ethanol extracts on H2O2-induced damages in PC12 cellsen
dc.typeThesis
dc.date.schoolyear105-1
dc.description.degree碩士
dc.contributor.oralexamcommittee張元衍(Yuan-Yen Chang),徐慶琳(Chin-Lin Hsu),曾榮凱(Jung-Kai Tseng),楊登傑(Deng-Jye Yang)
dc.subject.keyword氧化壓力,失智症,H2O2,PC12細胞,抗氧化,抗發炎,抗細胞凋亡,zh_TW
dc.subject.keywordanti-apoptosis,anti-inflammation,antioxidative,dementia,H2O2,oxidative stress,PC12 cells,phospholipids,en
dc.relation.page114
dc.identifier.doi10.6342/NTU201700501
dc.rights.note有償授權
dc.date.accepted2017-02-12
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept動物科學技術學研究所zh_TW
dc.date.embargo-lift2027-12-31-
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