博碩士論文 972210002 完整後設資料紀錄

DC 欄位 語言
DC.contributor生物物理研究所zh_TW
DC.creator陳燁萱zh_TW
DC.creatorYeh-hsuan Chenen_US
dc.date.accessioned2011-7-14T07:39:07Z
dc.date.available2011-7-14T07:39:07Z
dc.date.issued2011
dc.identifier.urihttp://ir.lib.ncu.edu.tw:88/thesis/view_etd.asp?URN=972210002
dc.contributor.department生物物理研究所zh_TW
DC.description國立中央大學zh_TW
DC.descriptionNational Central Universityen_US
dc.description.abstract本論文探討滲透壓對不飽和脂質(POPC)及不飽和脂質和飽和脂質以1:1比例(POPC:DPPC=1:1)組成的單層巨型微胞(GUVs,Giant Unilamellar Vesicles)的影響,GUVs以微胞電製法長出,將sorbitol加在GUVs外面,造成滲透壓,並且使用NBD-DOPE做為螢光分子,利用螢光顯微鏡觀察GUVs的形變。 結果顯示不飽和脂質所組成的GUVs,加完濃度為0.225 M或0.3 M sorbitol後,一分鐘內GUVs直徑縮小幅度明顯並且可以觀察到許多小微胞在GUVs內部,之後達到穩定態。然而,我們選取直徑為35-45μm的GUVs,並其外面加0.3 M sorbitol,我們可以觀察許多小微胞在GUVs內部及外部;如果選取直徑大於70μm的GUVs, 一分鐘內GUVs縮小,之後會稍微膨脹,甚至於破裂。 結果顯示不飽和脂質和飽和脂質以1:1比例(POPC:DPPC = 1:1)組成的GUVs擁有散亂或聚集的膠體區塊(gel phase domain),其行為模式有些不同。直徑小於40μm且擁有散亂的膠體區塊的GUVs,加sorbitol後,可以在GUVs裡面或是表面觀察到小微胞,且整個實驗過程GUVs維持類似球體的形狀; 直徑大於40μm且擁有散亂的膠體區塊的GUVs,加sorbitol後, 可以在GUVs裡面觀察到小微胞,GUVs的形狀變得不規則,有時GUVs甚至會破裂; 擁有聚集的膠體區塊的GUVs,加sorbitol後, 可以在GUVs裡面觀察到小微胞,並且整個實驗過程GUVs的形狀為不規則。 zh_TW
dc.description.abstractIn this work, we report experimental results on pure POPC and binary POPC/DPPC GUVs (Giant Unilamellar Vesicles) under osmotic pressure induced by sorbitol in the exterior solvent. GUVs were prepared by electroformation method. The evolution of GUVs was observed by uorescence microscopy using NBD-DOPE as the uorescent probe. The result for pure POPC GUVs is that GUVs usually shrink immediately and produce small vesicles inside themselves in the rst minute and then reach a steady state under osmotic pressure induced by 0:225 M or 0:3M sorbitol in the exterior solvent. However, under osmotic pressure induced by 0:3 M sorbitol in the exterior solvent, GUVs with initial diameter around 35 en_US
DC.subject單層巨型微胞zh_TW
DC.subject滲透壓zh_TW
DC.subject形變zh_TW
DC.subjectGiant Unilamellar Vesiclesen_US
DC.subjectOsmotic Pressureen_US
DC.subjectShape deformationen_US
DC.title滲透壓對單層巨型微胞的影響zh_TW
dc.language.isozh-TWzh-TW
DC.titleThe Effect of Osmotic Pressure on Giant Unilamellar Vesiclesen_US
DC.type博碩士論文zh_TW
DC.typethesisen_US
DC.publisherNational Central Universityen_US

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