조형가공기술을 이용한 인공지지체의 수산화나트륨 개질 효과

Effect of Sodium Hydroxide Treatment on Scaffold by Solid Freeform Fabrication
  • 박수아; 
  • 이정복; 
  • 김양은; 
  • 김지은; 
  • 권일근; 
  • 외 5명
Citations

WEB OF SCIENCE

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SCOPUS

1

초록

Scaffolds of tissue engineering should be biocompatible and biodegradable for cell attachment, proliferation and differentiation. In the various scaffold fabrication, 3D printing technique can make the three dimensional scaffold with interconnected pores for cell ingrowth. Polycaprolactone (PCL) is biodegradable polyester with a low melting temperature and has been approved by the Food and Drug Administration (FDA). In this study, PCL scaffold was fabricated by 3D bioprinting system and surface modification of PCL scaffold was controlled by NaOH treatment. Morphological change and wetability of NaOH-treated scaffold were observed by SEM and contact angle measurement system. The remnant of PCL treated with NaOH was measured by ATR-FTIR. In vitro study of scaffolds was evaluated with WST-1 and ALP activity assay. NaOH treatment of PCL scaffolds increased surface roughness, hydrophilicity, cell proliferation and osteogenic differentiation. These results indicate that NaOH-treated PCL scaffold made by 3D bioprinting has tissue engineered potential for the development of biocompatible material.

키워드

tissue engineering; polycaprolactone (PCL); solid freeform fabrication (SFF); surface modification; TISSUE; BONE
제목
조형가공기술을 이용한 인공지지체의 수산화나트륨 개질 효과
제목 (타언어)
Effect of Sodium Hydroxide Treatment on Scaffold by Solid Freeform Fabrication
저자
박수아; 이정복; 김양은; 김지은; 권일근; 이준희; 김완두; 김형근; 김미은; 이준식
DOI
10.7317/pk.2014.38.6.815
발행일
2014-11
저널명
Polymer(Korea)
권
38
호
6
페이지
815 ~ 819