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Systematic Exploration of Indolizine-Based Small Fluorescent Molecules - Synthesis, Analysis, and Application - : 인돌리진 기반 형광 분자의 체계적 탐구 및 응용

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dc.contributor.advisor박승범-
dc.contributor.author이영준-
dc.date.accessioned2018-05-28T17:16:27Z-
dc.date.available2018-05-28T17:16:27Z-
dc.date.issued2018-02-
dc.identifier.other000000149918-
dc.identifier.urihttps://hdl.handle.net/10371/141182-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 자연과학대학 화학부, 2018. 2. 박승범.-
dc.description.abstractOrganic fluorophores have been extensively used in the field of molecular biology owing to their excellent photophysical property, suitable cell permeability, and synthetic flexibility. Understanding of the structure-photophysical property relationship of a given fluorophore often paves the road to the development of valuable molecular probes to visualize and transcribe biological networks. This thesis describes in-depth study of an indolizine-based fluorophore, including molecular design, organic synthesis, structure-property analysis, and quantum mechanical interpretation. Chapter 1 explains fundamental aspects of molecular fluorescence and photophysical parameters, together with a brief illustration of synthesis, general property, structure-photophysical property relationship, and bioapplication of representative organic fluorophores. Chapter 2 deals with fluorescent quantum yield and molecular lipophilicity of indolizine-based Seoul-Fluor system, by analyzing a series of relevant derivatives. Chapter 3 depicts a comprehensive study of tetrazine-embedded bioorthogonal probes, on the basis of well-studied indolizine fluorophore platform. By constructing a systematic series of tetrazine-indolizine conjugates, the usefulness of a newly suggested design strategy for fluorogenic bioorthogonal probes has been demonstrated, compared with conventional FRET- or TBET- based strategies. Chapter 4 discusses a rational approach to enhance molar absorptivity of a given fluorophore, with the guidance of calculated oscillator strength values. An unprecedented fluorophore is logically designed and synthesized, and structure-property relationship study of the novel fluorophore has been also dealt with in detail. Overall, systematic exploration of an indolizine-based fluorophore has led to development of a new microalgae lipid droplet probe (in chapter 2), colorful bioorthogonal fluorogenic probes (in chapter 3), and a bright mitochondrial probe (in chapter 4), working under live cell conditions.-
dc.description.tableofcontents1. Introduction 1
1.1 Molecular Fluorescence and Photophysical Parameters 2
1.2 Organic Fluorophores 7
1.2.1 BODIPY 8
1.2.2 Coumarin 10
1.2.3 Cyanine 12
1.2.4 Fluorescein 14
1.2.5 Rhodamine 17
1.2.6 Seoul-Fluor 20
1.3 Aims and Scope of the Thesis 24
1.4 References 26
2. A Comprehensive Studies of an Indolizine-Based Seoul-Fluor System 34
2.1 Structure and Quantum Yield Relationship Study of Seoul-Fluor 35
2.1.1 Introduction 35
2.1.2 Result and discussion 35
2.1.3 Conclusion 37
2.2 Optimization of SF-Based Lipid Droplet Bioprobes on the basis of Molecular Lipophilicity 38
2.2.1 Introduction 38
2.2.2 Result and discussion 40
2.2.3 Conclusion 49
2.3 An Overview of Seoul-Fluor System 50
2.4 References 52
2.5 Experimental Section 55
3. Tetrazine-Containing Colorful Bioorthogonal Probes based on the Indolizine Core Skeleton 62
3.1 Introduction 63
3.2 Result and Discussion 66
3.2.1 Initial design and synthesis 66
3.2.2 Change in absorption property of SFTz0105 upon TCO cycloaddition reaction 69
3.2.3 Change in fluorescence property of SFTz0105 upon cycloaddition reaction with TCO 71
3.2.4 Reaction kinetics 73
3.2.5 Rational expansion of multicolor SFTzs based on a monochromophoric strategy 74
3.2.6 TD-DFT calculation 79
3.2.7 Direct comparison of mono- vs bichromophoric SFTzs with long emission wavelength 83
3.2.8 Bioapplication 85
3.3 Conclusion 88
3.4 References 90
3.5 Experimental Section 94
4. Rational Development of Furoindolizine Core Skeleton Guided by Oscillator Strength 122
4.1 Introduction 123
4.2 Result and Discussion 124
4.2.1 Designing an unexplored fluorophore with high molar absorptivity 124
4.2.2 Library construction based on a novel furo[3,2-e]indolizine scaffold 128
4.2.3 Photophysical property analysis 130
4.2.4 Rational design of novel furoindolizine-based fluorescent compounds and bioapplication 135
4.3 Conclusion 137
4.4 References 138
4.5 Experimental Section 141
Abstract (Korean) 169
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dc.formatapplication/pdf-
dc.format.extent39970110 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectindolizine-based fluorophore-
dc.subjectstructure-property relationship-
dc.subjectquantum calculation-
dc.subjectbioprobes-
dc.subjectrational design-
dc.subjectbioorthogonal reaction-
dc.subject.ddc540-
dc.titleSystematic Exploration of Indolizine-Based Small Fluorescent Molecules - Synthesis, Analysis, and Application --
dc.title.alternative인돌리진 기반 형광 분자의 체계적 탐구 및 응용-
dc.typeThesis-
dc.contributor.AlternativeAuthorLee Youngjun-
dc.description.degreeDoctor-
dc.contributor.affiliation자연과학대학 화학부-
dc.date.awarded2018-02-
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