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dc.contributor.advisor이혁진-
dc.contributor.author정한샘-
dc.creator정한샘-
dc.date.accessioned2017-08-27T11:08:06Z-
dc.date.available2017-08-27T11:08:06Z-
dc.date.issued2017-
dc.identifier.otherOAK-000000137820-
dc.identifier.urihttp://dcollection.ewha.ac.kr/jsp/common/DcLoOrgPer.jsp?sItemId=000000137820en_US
dc.identifier.urihttps://dspace.ewha.ac.kr/handle/2015.oak/236145-
dc.description.abstract표적세포에 유전물질을 전달하기 위한 효율적이고 안전한 비-바이러스성 전달체의 개발은 임상 적용에서 매우 중요한 과제이다. 비-바이러스 전달체로써 2개의 유전자 전달체, CBA-106 polymer 와 102-C10 lipidoid가 개발되었다. 플라즈미드 DNA를 효율적으로 전달하기 위해 이황화 구조를 갖는 CBA와 34개의 아민을 사용해서 생분해성 poly(amido amine)s을 만들었다. 스크리닝 한 후에, 선도물질을 선택하고 특성을 분석하였다. CBA-106 polymer는 생리적 조건 하에서 높은 혈청 안정성 및 GSH에 의한 생체 내 분해 능을 가지며 높은 세포 생존력을 갖는다. 체내로 mRNA를 전달하기 위하여 8개의 amine과 4개의 epoxide를 사용해서 lipid 와 유사한 물질을 만들었고, 이 것을 lipidoid라고 부른다. 스크리닝 후에, 선도물질로 102-C10을 선택했고 다른 리포좀 제형성분인 DSPC, PEG 및 cholesterol과 혼합되어 mRNA가 표적 조직으로 잘 전달 될 수 있고 생체 내에서 단백질이 발현될 수 있음을 보였다. 이러한 결과로부터, CBA-106 과 102-C10은 유전자 치료를 위한 새로운 전달체로서의 잠재력이 있음을 결론 지을 수 있다.;To deliver genetic materials into target cells, the development of efficient and safe non-viral carrier is highly important for clinical application. As novel non-viral delivery systems, we report two different gene delivery carriers : CBA-106 bioreducible polymer and 102-C10 lipidoid. To efficiently deliver plasmid DNA, we prepared bioreducible poly(amido amine)s by reacting cystamine bisacrylamide (CBA) with 34 different small amines. After screening, we selected lead substances and characterized. CBA-106 polymer had high serum stability and bioreducible ability under physiological conditions and showed relatively low cytotoxicity. To deliver mRNA for in vivo applications, we synthesized lipid-like materials, called the lipidoids using 8 of small amines and 4 of epoxide lipids. After screening, we selected lead lipidoids molecules, 102-C10. Our lead compound, 102-C10, was mixed with other liposome formulating components to efficiently deliver mRNA in vivo. Formulation having DSPC, PEG-ceramide, and lipidoids showed that mRNA can be well delivered to the target tissue and protein expression can be achieved in vivo. From our results, we can conclude that the lead substances such as CBA-106 and 102-C10 have great potential as a novel delivery carrier for gene therapy applicationsTo deliver genetic materials into target cells, the development of efficient and safe non-viral carrier is highly important for clinical application. As novel non-viral delivery systems, we report two different gene delivery carriers : CBA-106 bioreducible polymer and 102-C10 lipidoid. To efficiently deliver plasmid DNA, we prepared bioreducible poly(amido amine)s by reacting cystamine bisacrylamide (CBA) with 34 different small amines. After screening, we selected lead substances and characterized. CBA-106 polymer had high serum stability and bioreducible ability under physiological conditions and showed relatively low cytotoxicity. To deliver mRNA for in vivo applications, we synthesized lipid-like materials, called the lipidoids using 8 of small amines and 4 of epoxide lipids. After screening, we selected lead lipidoids molecules, 102-C10. Our lead compound, 102-C10, was mixed with other liposome formulating components to efficiently deliver mRNA in vivo. Formulation having DSPC, PEG-ceramide, and lipidoids showed that mRNA can be well delivered to the target tissue and protein expression can be achieved in vivo. From our results, we can conclude that the lead substances such as CBA-106 and 102-C10 have great potential as a novel delivery carrier for gene therapy applications.-
dc.description.tableofcontents1 Introduction 1 A. The development of CBA-106 polymer for pDNA delivery 1 B. The development of 102-C10 lipidoid for mRNA delivery 3 2 Materials and Methods 5 A. The development of CBA-106 polymer for pDNA delivery 5 2.1 Materials 5 2.2 CBA amine polymer synthesis 5 2.3 Gel retardation test for characterization of CBA polymer 6 2.4 Size measurement of CBA polymer using DLS 6 2.5 Verify CBA structure using NMR 6 2.6 Characterization of CBA by MALDI-TOF 7 2.7 AFM imaging 7 2.8 Bioreducible and serum stability test 7 2.9 Transgene expression experiment in vitro 8 2.10 Cell viability assay 9 B. The development of 102-C10 lipidoid for mRNA delivery 9 2.1 Materials 9 2.2 Lipidoid synthesis 9 2.3 mRNA/lipidoid formulation 10 2.4 Cell culture 11 2.5 Lipidoid screening 11 2.6 Cytotoxicity test of mRNA/102-C10 lipoplexes 12 2.7 Size measurement of formulation using DLS 12 2.8 Gel test for characterization of formulation 12 2.9 AFM imaging 13 2.10 Animal experiment 13 3 Results 15 A. The development of CBA-106 polymer for pDNA delivery 15 3.1 Synthesis of CBA-amine polymer 15 3.2 Screening of poly(amido amine)s 16 3.3 Size measurement of CBA polymer using DLS 17 3.4 Polymer screening with gene transduction 18 3.5 Characterization of pDNA/CBA-106 polyplexes 19 3.6 Bioreducible test of CBA-106 23 3.7 Identification the morphology of pDNA/CBA-106 polyplexes 23 3.8 Serum stability test of polyplexes 24 3.9 Stability test of polyplexes under polyanionic sulfated GAGs 27 3.10 Efficiency of CBA-106 in vitro 28 3.11 Cytotoxicity of CBA-106 in vitro 31 B. The development of 102-C10 lipidoid for mRNA delivery 32 3.1 Lipidoid synthesis 32 3.2 Lipidoid screening 33 3.3 Cytotoxicity test of mRNA/102-C10 lipoplexes 34 3.4 Size measurement of formulation using DLS 34 3.5 Gel test for characterization of formulation 35 3.6 Identification the morphology of formulation 36 3.7 In vivo delivery of formulation in mice 37 3.8 In vivo delivery of formulation according to mRNA concentration 38 4 Discussion 40 A. The development of CBA-106 polymer for pDNA delivery 40 B. The development of 102-C10 lipidoid for mRNA delivery 41 5 Conclusion 43 6 References 44-
dc.formatapplication/pdf-
dc.format.extent2532643 bytes-
dc.languageeng-
dc.publisher이화여자대학교 대학원-
dc.subject.ddc600-
dc.titleDevelopment of Non-viral delivery system for gene therapy-
dc.typeMaster's Thesis-
dc.format.pagevi, 48 p.-
dc.identifier.thesisdegreeMaster-
dc.identifier.major대학원 약학과-
dc.date.awarded2017. 2-
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