논문투고

    축산관련 논문을 투고한 자료를 모아 정보를 제공합니다. 관련자료가 없는 성과년도는 표기되지 않습니다.

    논문명(한글), 논문명(영문), 성과주관부서, 품목코드, 학술지명, 주저자, 연도, 성과적용일, 첨부파일, 내용으로 구성된 글 상세입니다.
    논문명(한글)
    논문명(영문) Establishing porcine jejunum-derived intestinal organoids to study the function of intestinal epithelium as an alternative for animal testing
    성과주관부서 국립축산과학원 축산생명환경부 동물바이오공학과
    품목코드 생명공학 / 물질ㆍ소재 / 기타물질.소재
    학술지명 한국동물생명공학회지 주저자 이보람
    성과년도 2023 성과적용일 2024년03월
    Background: The small intestine plays a crucial role in animals in maintaining homeostasis as well as a series of physiological events such as nutrient uptake and immune function to improve productivity. Research on intestinal organoids has recently garnered interest, aiming to study various functions of the intestinal epithelium as a potential alternative to an in vivo system. These technologies have created new possibilities and opportunities for substituting animals for testing with an in vitro model. Methods: Here, we report the establishment and characterisation of intestinal organoids derived from jejunum tissues of adult pigs. Intestinal crypts, including intestinal stem cells from the jejunum tissue of adult pigs (10 months old), were sequentially isolated and cultivated over several passages without losing their proliferation and differentiation using the scaffold-based and three-dimensional method, which indicated the recapitulating capacity. Results: Porcine jejunum-derived intestinal organoids showed the specific expression of several genes related to intestinal stem cells and the epithelium. Furthermore, they showed high permeability when exposed to FITC-dextran 4 kDa, representing a barrier function similar to that of in vivo tissues. Collectively, these results demonstrate the efficient cultivation and characteristics of porcine jejunum-derived intestinal organoids. Conclusions: In this study, using a 3D culture system, we successfully established porcine jejunum-derived intestinal organoids. They show potential for various applications, such as for nutrient absorption as an in vitro model of the intestinal epithelium fused with organ-on-a-chip technology to improve productivity in animal biotechnology in future studies.
    열람하신 정보에 대해 만족하십니까?

    해당자료에 답변이 필요하신 경우 의견남기기를 하여주십시요.

    담당부서 : 기획조정과[063-238-7127] 갱신주기 : 변경시