Development and biomedical applications of direct-ink-writing based 3D printing hydrogel ink with high and tunable Young’s modulus높고 조절 가능한 탄성계수를 갖는 직접 쓰기 방식의 3D 프린팅 하이드로겔 잉크 개발 및 생체의학적 활용

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Direct-Ink-Writing (DIW) of hydrogel holds great potential for biomedical applications due to its advantage of enabling accurate and realistic imitation of the human body easily and quickly. However, the scope of the applications has been limited to date by the range of the mechanical properties of DIW hydrogel ink, which is far less than actual biological tissues and organs. Herein, a facile method using salting out effect for manufacturing DIW hydrogel ink with high and variable Young’s modulus, which is based on Pluronic F-127 dimethacrylate (PF127DMA) aqueous solution, is introduced. In-depth analyzes and results for the effects of each monomer and salt on the behavior of micelles in the solution are presented, suggesting the possibility of tailoring the mechanical properties of the hydrogel by adjusting the content of the compositions. The developed hydrogel ink not only possesses required rheological properties for DIW but also exhibits a variable Young’s modulus of 0.193-1.072 MPa, which is the highest level and the widest range among those reported so far, to our best knowledge. Furthermore, applicability of simulating human blood vessels using the developed ink is demonstrated, including vascular surgery practices with excellent sense of reality. The biocompatibility of the hydrogel indicates the suitability of the developed material for biomedical applications and its potential for extension into a wider range of applications as well.
Advisors
스티브 박researcher
Description
한국과학기술원 :신소재공학과,
Publisher
한국과학기술원
Issue Date
2023
Identifier
325007
Language
eng
Description

학위논문(석사) - 한국과학기술원 : 신소재공학과, 2023.8,[v, 37 p. :]

Keywords

직접 쓰기 방식의 3D 프린팅▼a하이드로겔▼a생체의학적 응용▼a마이셀 거동▼a염석 효과▼a높고 조절 가능한 영률(탄성 계수)▼a혈관 모사; Direct-Ink-Writing▼aHydrogel▼aBiomedical application▼aMicelle behavior▼aSalting out effect▼aHigh and tunable Young’s modulus▼aBlood vessel simulation

URI
http://hdl.handle.net/10203/320652
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1045880&flag=dissertation
Appears in Collection
MS-Theses_Master(석사논문)
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