Study on specific binding capacity of protein dependent on poly(Oligo(ethylene glycol) methacrylate) films grown from mixed SAMs혼합된 자기조립 단분자막으로부터 자란 폴리 올리고 에틸렌 글라이콜 메타크레이트 고분자 박막에서 단백질의 특정 결합양에 대한 연구.

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I. We investigated specific binding capacity of target proteins and nonspecific adsorption property by varying the lateral density between polymer brushes grown from mixed SAMs. pOEGMA films were grown from mixed SAMs consisted of UDT and ATRP-initiator on gold substrates. After polymerization, the films were activated, and then biotin coupling was treated on the films for studying specific binding capacity of streptavidin. We found that specific binding capacity of protein was influenced by varying lateral density between polymer brushes. Moreover, the nonspecific binding/adsorption property of fibrinogen and lysozyme was detected by increasing $^{sol}\chi_{UDT}$ values ranging from 0.4 to 0.8. However, the lateral density effect is disappeared by increasing polymerization time. From our results, we expected that as increasing the pOEGMA films thickness, lateral density effect did not impacted on the biotinylated pOEGMA films; the biotinylated pOEGMA films grown from mixed SAMs have only lateral effects under 8~10 nm dried ellipsometric thickness of that films. In the AFM study, we confirmed that the gap between the polymer brushes on the surface was introduced by adding UDT to the solution of mixed SAMs. In addition, we found that all the surface areas were covered by about 8~10 nm dried ellipsometric thickness of pOEGMA films. From the AFM results, we hypothesized that the phenomena, such as starting saturation of specific binding capacity of streptavidin, decreasing or nothing of nonspecific binding/adsorption property of protein, and determining the point about the lateral density effects, related to the films thickness because 8~10 nm dried ellipsometric thickness of the biotinylated pOEGMA films covered almost all of the surface areas. II. Herein we report selective immobilization of proteins onto cyclic olefin copolymer (COC) surface. We modified the surface with Azide-ATRP initiator by UV irradiation. After introduction of Azide-ATRP initiator on C...
Advisors
Choi, In-Sung S.researcher최인성researcher
Description
한국과학기술원 : 화학과,
Publisher
한국과학기술원
Issue Date
2009
Identifier
308943/325007  / 020073518
Language
eng
Description

학위논문(석사) - 한국과학기술원 : 화학과, 2009.2, [ viii, 68 p. ]

Keywords

Specific Binding Capacity of Protein; poly(Oligo(ethylene glycol) Methacrylate) Films; Mixed SAMs; Bioconjugation; COC surface; 단백질의 특정 결합양; 폴리 올리고 에틸렌 글라이콜 메타크레이트 고분자 박막; 혼합된 자기조립 단분자막; 생체물질 고정화; 고리형 올레핀 공중합체 표면; Specific Binding Capacity of Protein; poly(Oligo(ethylene glycol) Methacrylate) Films; Mixed SAMs; Bioconjugation; COC surface; 단백질의 특정 결합양; 폴리 올리고 에틸렌 글라이콜 메타크레이트 고분자 박막; 혼합된 자기조립 단분자막; 생체물질 고정화; 고리형 올레핀 공중합체 표면

URI
http://hdl.handle.net/10203/32113
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=308943&flag=dissertation
Appears in Collection
CH-Theses_Master(석사논문)
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