莊曜宇臺灣大學:電機工程學研究所陳建謀Chen, Jiann-MouJiann-MouChen2007-11-262018-07-062007-11-262018-07-062006http://ntur.lib.ntu.edu.tw//handle/246246/53103本研究發展出一種具備快速即時性、高準確性、高靈敏度之恆溫特定RNA序列偵測,更對此方法建構出造價低廉的核酸序列檢測儀器。 在本研究中指出使用恆溫RNA 擴增進行特定RNA 基因序列擴增,在90 分鐘內利用1 ng total RNA 將特定基因(TRIM28)放大至 108 倍以上,證實實驗具有相當高的靈敏度。進而將恆溫RNA 擴增與螢光能量共振轉換(Fluorescence Resonance Energy Transfer,FRET)方法做結合,進行即時性的螢光訊號偵測,藉此判斷特定RNA 序列的存在。為求提高增加實驗之準確性,特別將探針增加一組,個別標記有FRET 效應之不同螢光分子,必須兩個探針皆正確的鍵結在序特定列上,才視為真正偵測到特定基因序列,藉此增加其正確鍵結的困難度,以求得即時性、高準確性、高靈敏度之恆溫特定RNA 序列偵測。 實驗結果顯示,本論文成功地結合恆溫RNA 擴增與FRET,開發出具備即時性、高準確性、高靈敏性之核酸序列檢測方法。 由於市售之量子點顆粒過大使得FRET 並沒有顯著表現。並且進一步進行量子點的表面改質,其結果穩定性不夠,也無法應用於本研究中。 因此本論文所設計之激發光源與儀器,寄望未來量子點的顆粒能縮小,且具備更穩定的型態,使得本研究發展之具備即時性、高準確性、高靈敏度之即時性恆溫特定RNA 序列偵測,能夠在靈敏度達到更進一步。In this thesis, we develop a detecting method with high accuracy and high sensitivity for specific RNA sequences in isothermal environment. We construct a low-cost and real-time system for detection specific RNA sequences by using this method. Isothermal RNA amplification is a powerful tool to amplify specific sequences of RNA. It can successfully amplify as low as 1 ng of total RNA in 90 minutes. Therefore, we integrate isothermal RNA amplification and Fluorescence Resonance Energy Transfer (FRET) methods to real-time detect fluorescent signals for specific RNA sequences. For increase specificity, two hybridization probes which can bind to the same gene are used in our experiments to increase the accuracy. Base on this study, a novel method with higher accuracy and sensitivity for detecting specific RNA sequence in isothermal environment can be achieved. The results shown that the FRET signal of TRIM28 and UCHL1 genes have been detected in 40-60 min. Therefore, we have successfully setup a new low-cost, real-time detection system, based on combined Isothermal RNA Amplification and FRET.致謝--------------------------------------------------------------------------------------------- I 中文摘要-------------------------------------------------------------------------------------- II 英文摘要------------------------------------------------------------------------------------- III 目錄------------------------------------------------------------------------------------------- IV 圖目錄--------------------------------------------------------------------------------------- VII 第一章 緒論---------------------------------------------------------------------------------- 1 1-1 、核酸檢測簡介------------------------------------------------------------------- 1 1-2 、研究動機與目的---------------------------------------------------------------- 4 1-2.1、恆溫RNA 擴增---------------------------------------------------------- 4 1-2.2、螢光共振能量轉換------------------------------------------------------ 5 1-3 、本文概觀------------------------------------------------------------------------- 6 1-4 、貢獻------------------------------------------------------------------------------- 7 第二章 理論分析---------------------------------------------------------------------------- 9 2-1 、核酸序列擴增------------------------------------------------------------------- 9 2-1.1、恆溫RNA 擴增介紹---------------------------------------------------- 9 2-1.2、恆溫RNA 擴增之設計要點------------------------------------------- 9 2-1.3、恆溫RNA 擴增流程---------------------------------------------------10 2-1.4、恆溫RNA 擴增應用---------------------------------------------------12 2-2、螢光共振能量轉換--------------------------------------------------------------13 2-2.1、螢光原理-----------------------------------------------------------------13 2-2.2、螢光共振能量轉換原理-----------------------------------------------14 2-2.3、Förster resonance energy transfer 方程式演算--------------------16 2-2.4、螢光共振能量轉換效益-----------------------------------------------18 2-2.5、螢光共振能量轉換應用-----------------------------------------------22 第三章 實驗設計---------------------------------------------------------------------------23 3-1 、實驗架構設計-----------------------------------------------------------------23 3-2 、螢光分子核酸探針設計-----------------------------------------------------24 3-2.1、螢光分子選擇-----------------------------------------------------------24 3-2.2、螢光分子核酸探針設計-----------------------------------------------25 3-2.3、螢光量子點探針設計--------------------------------------------------26 3-3 、硬體系統設計-----------------------------------------------------------------27 3-4 、激發光源設計-----------------------------------------------------------------28 3-4.1、基板-----------------------------------------------------------------------28 3-4.2、汞燈座--------------------------------------------------------------------28 3-4.3、濾片座-------------------------------------------------------------------------29 3-4.4、聚焦鏡片座--------------------------------------------------------------29 3-4.5、光纖座--------------------------------------------------------------------29 3-4.6、封裝之前蓋--------------------------------------------------------------30 3-4.7、封裝之風扇蓋-----------------------------------------------------------30 3-4.8、封裝之機殼--------------------------------------------------------------30 3-4.9、激發光源組合-----------------------------------------------------------30 3-5 、螢光光譜訊號分析-----------------------------------------------------------31 3-5.1、光譜訊號分離處理-----------------------------------------------------31 第四章 實驗材料、設備與方法---------------------------------------------------------39 4-1、光學系統組件------------------------------------------------------------------39 4-1.1、激發光源-----------------------------------------------------------------39 4-1.2、激發光源電源供應器--------------------------------------------------39 4-1.3、激發光源濾片-----------------------------------------------------------39 4-1.4、光譜儀--------------------------------------------------------------------40 4-1.5、收光透鏡-----------------------------------------------------------------40 4-1.6、溫度調變比色管支撐器-----------------------------------------------40 4-1.7、光纖-----------------------------------------------------------------------41 4-1.8、光譜儀操作軟體--------------------------------------------------------41 4-2、引子與探針設計---------------------------------------------------------------41 4-3、生物實驗------------------------------------------------------------------------42 4-3.1、細胞培養----------------------------------------------------------------42 4-3.2、細胞Total RNA 萃取-------------------------------------------------42 4-3.3、RT-PCR(將RNA 反轉錄為cDNA)-----------------------------43 4-3.4、以PCR 反應擴增特定核酸序列------------------------------------44 4-3.5、以PCR 反應驗證螢光探針鍵結------------------------------------45 4-3.6、恆溫RNA 擴增--------------------------------------------------------45 4-3.7、恆溫RNA 擴增即時螢光偵測--------------------------------------46 4-3.8、DNA 洋菜凝膠電泳 ( DNA Agarose Gel Electrophoresis) -----46 4-3.9、恆溫RNA 擴增產物洋菜凝膠電泳) -------------------------------47 4-4、量子點探針(Quantum Dot Probe)製備----------------------------------47 4-4.1、Quantum Dot Streptavidin Conjugates DNA Probe 合成--------47 4-4.2、Quantum dot Thiol Probe 合成---------------------------------------48 4-4.2.1、Quantum dot 表面改質------------------------------------------48 4-4.2.2、Quantum Dot Thiol Probe 鍵結--------------------------------49 4-5、Förster 半徑之計算-------------------------------------------------------------50 4-6、FRET 螢光光譜分析-----------------------------------------------------------50 第五章 實驗結果與討論------------------------------------------------------------------52 5-1、激發光源之建構---------------------------------------------------------------52 5-1.1、收光系統之分析--------------------------------------------------------52 5-1.2、激發光源組合-----------------------------------------------------------55 5-1.3、硬體系統組合-----------------------------------------------------------56 5-2. 訊號處理驗證--------------------------------------------------------------------57 5-3. 恆溫RNA 擴增實驗驗證-----------------------------------------------------59 5-4. 即時性的恆溫特定RNA 序列偵測驗證------------------------------------61 5-4.1、探針雜合反應之可行性驗證-----------------------------------------61 5-4.2、使用PCR 確定引子與探針之FRET 之可行性------------------66 5-4.3、即時性的恆溫特定RNA 序列偵測---------------------------------67 5-4.3.1、即時性的恆溫特定RNA 序列偵測I ---------------------------67 5-4.3.2、即時性的恆溫特定RNA 序列偵測II --------------------------70 5-5、量子點的應用驗證------------------------------------------------------------72 5-5.1、Quantum dot 之靈敏度優勢驗證------------------------------------72 5-5.2、Quantum dot 探針之雜合反應與FRET 驗證----------------------73 5-5.3、表面改質後之Quantum dot 探針螢光表現------------------------75 5-6、討論------------------------------------------------------------------------------77 第六章 結論與未來展望------------------------------------------------------------------80 6-1 、結論-----------------------------------------------------------------------------80 6-2 、未來展望-----------------------------------------------------------------------81 第七章 參考文獻---------------------------------------------------------------------------83 附錄 ------------------------------------------------------------------------------------------872275507 bytesapplication/pdfen-US螢光共振能量轉換恆溫RNA擴增核酸偵測Fluorescence Resonance Energy TransferIsothermal RNA AmplificationNucleic Acid Detection利用螢光共振能量轉換與恆溫RNA擴增之快速即時核酸偵測系統A Rapid and Real-time Nucleic Acid Detection System by Fluorescence Resonance Energy Transfer and Isothermal RNA Amplificationthesishttp://ntur.lib.ntu.edu.tw/bitstream/246246/53103/1/ntu-95-R93921128-1.pdf