Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule

碩士 === 國立臺灣大學 === 化學研究所 === 94 === Abstract The concept of molecular recognition has been applied extensively in the field of biochemistry and many other fields. Here, designed and synthesized cleft-like host molecule, which mimics protein structure and its binding abilities, is used in binding with...

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Main Authors: Yu-Shan Yeh, 葉育姍
Other Authors: 周必泰
Format: Others
Language:en_US
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/06625317903560727969
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spelling ndltd-TW-094NTU050650102015-12-16T04:32:15Z http://ndltd.ncl.edu.tw/handle/06625317903560727969 Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule 分子辨識之基礎與應用—以3,4,5,6-Tetrahydro-bis-(pyrido[3,2-g]indolo)[2,3-a:3’,2’–j]acridine為受體分子之研究 Yu-Shan Yeh 葉育姍 碩士 國立臺灣大學 化學研究所 94 Abstract The concept of molecular recognition has been applied extensively in the field of biochemistry and many other fields. Here, designed and synthesized cleft-like host molecule, which mimics protein structure and its binding abilities, is used in binding with biomolecules such as urea and glucopyranosides. Spectroscopic methods act as powerful tool in discriminating between free and complexed molecules and evaluating their association entities quantitatively. This thesis is organized into four chapters. We start with a brief introduction of the concept of molecular recognition. Some basic principles and experimental setups of steady-state spectrometry, the general errors and correction methods are discussed in chapter 2. In the two successive chapters, utilizing excited state proton transfer reaction, 3, 4, 5, 6-Tetrahydro-bis-(pyrido[3, 2-g]indolo)[2,3-a:3’, 2’–j]acridine acts as an ideal host molecule to bind with different biomolecules efficiently in both protic and aprotic solvents. High sensitivity and selectivity are achieved via fluorescent detection method, and the association constants are deduced accordingly. In addition, to accomplish chiral recognition, circular dichroism (CD), fluorescence-detected circular dichroism (FDCD) and theoretical approach are performed in differentiation of optical isomers. The extension of these applications into aqueous environments is still the topic of endeavor. 周必泰 2006 學位論文 ; thesis 144 en_US
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description 碩士 === 國立臺灣大學 === 化學研究所 === 94 === Abstract The concept of molecular recognition has been applied extensively in the field of biochemistry and many other fields. Here, designed and synthesized cleft-like host molecule, which mimics protein structure and its binding abilities, is used in binding with biomolecules such as urea and glucopyranosides. Spectroscopic methods act as powerful tool in discriminating between free and complexed molecules and evaluating their association entities quantitatively. This thesis is organized into four chapters. We start with a brief introduction of the concept of molecular recognition. Some basic principles and experimental setups of steady-state spectrometry, the general errors and correction methods are discussed in chapter 2. In the two successive chapters, utilizing excited state proton transfer reaction, 3, 4, 5, 6-Tetrahydro-bis-(pyrido[3, 2-g]indolo)[2,3-a:3’, 2’–j]acridine acts as an ideal host molecule to bind with different biomolecules efficiently in both protic and aprotic solvents. High sensitivity and selectivity are achieved via fluorescent detection method, and the association constants are deduced accordingly. In addition, to accomplish chiral recognition, circular dichroism (CD), fluorescence-detected circular dichroism (FDCD) and theoretical approach are performed in differentiation of optical isomers. The extension of these applications into aqueous environments is still the topic of endeavor.
author2 周必泰
author_facet 周必泰
Yu-Shan Yeh
葉育姍
author Yu-Shan Yeh
葉育姍
spellingShingle Yu-Shan Yeh
葉育姍
Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule
author_sort Yu-Shan Yeh
title Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule
title_short Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule
title_full Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule
title_fullStr Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule
title_full_unstemmed Fundamentals and Applications of molecular recognition using 3, 4, 5, 6-Tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule
title_sort fundamentals and applications of molecular recognition using 3, 4, 5, 6-tetrahydro-bis-(pyrido [3, 2-g]indolo)[2, 3-a: 3’,2’–j]acridine as host molecule
publishDate 2006
url http://ndltd.ncl.edu.tw/handle/06625317903560727969
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