기업조회

본문 바로가기 주메뉴 바로가기

논문 기본정보

(특별기획 : 앱타머를 이용한 나노진단 및 분리기술) 앱타머 및 FET 기반의 multiplexing 진단

논문 개요

기관명, 저널명, ISSN, ISBN 으로 구성된 논문 개요 표입니다.
기관명 NDSL
저널명 NICE = News information for chemical engineers
ISSN 1229-4284,
ISBN

논문저자 및 소속기관 정보

저자, 소속기관, 출판인, 간행물 번호, 발행연도, 초록, 원문UR, 첨부파일 순으로 구성된 논문저자 및 소속기관 정보표입니다
저자(한글)
저자(영문)
소속기관
소속기관(영문)
출판인
간행물 번호
발행연도 2008-01-01
초록 We fabricated poly(lactide-co-glycolide)(PLGA) scaffolds impregnated 0, 10, 20, 40, and 80 wt% demieneralized bone particle(DBP)(PLGA/DBP) to investigate the effect of cell viability and proliferation of intervertebral disc(IVD) cells. PLGA is a biodegradable synthetic polymer with acceptable mechanical strength and well-controlled degradation rate. DBP contains bioactive molecules. Annulus fibrosus(AF) and nucleus pulposus (NP) cells were seeded in PLGA and PLGA/DBP scaffold to evaluate mRNA expression and a proliferation of AF and NP cells according to content of DBP. Cellular viability and proliferation were assayed by 3-(4,5-dimethylthiazole-2-l)-2,5-diphenyltetrazolium-bromide(MTT) test. Reverse transcription polymerase chain reaction(RT-PCR) was assessed to measure mRNA expression for Type I collagen and Type II collagen of IVD cells in scaffolds. Scaffolds were implanted in subcutaneous of athymic nude mouse for histology in vivo. The formation of disc-like tissue appeared in PLGA/DBP scaffold than control. Especially, 40 and 80 wt% of DBP positively affected to proliferation and maintenance of phenotype in scaffold. These information would contribute to design of PLGA/DBP scaffold for tissue engineered IVD regeneration.
원문URL http://click.ndsl.kr/servlet/OpenAPIDetailView?keyValue=03553784&target=NART&cn=NART50319914
첨부파일

추가정보

과학기술표준분류, ICT 기술분류,DDC 분류,주제어 (키워드) 순으로 구성된 추가정보표입니다
과학기술표준분류
ICT 기술분류
DDC 분류
주제어 (키워드)