본문 바로가기

추천 검색어

실시간 인기 검색어

학술논문

Hypoxia-dependent mitochondrial fission regulates endothelial progenitor cell migration, invasion, and tube formation

이용수 6

영문명
발행기관
대한생리학회-대한약리학회
저자명
Da Yeon Kim Seok Yun Jung Yeon Ju Kim Songhwa Kang Ji Hye Park Seung Taek Ji Woong Bi Jang Shreekris
간행물 정보
『The Korean Journal of Physiology & Pharmacology』제22권 제2호, 203~213쪽, 전체 11쪽
주제분류
의약학 > 의학일반
파일형태
PDF
발행일자
2018.03.31
4,120

구매일시로부터 72시간 이내에 다운로드 가능합니다.
이 학술논문 정보는 (주)교보문고와 각 발행기관 사이에 저작물 이용 계약이 체결된 것으로, 교보문고를 통해 제공되고 있습니다.

1:1 문의
논문 표지

국문 초록

영문 초록

Tumor undergo uncontrolled, excessive proliferation leads to hypoxic microenvironment. To fulfill their demand for nutrient, and oxygen, tumor angiogenesis is required. Endothelial progenitor cells (EPCs) have been known to the main source of angiogenesis because of their potential to differentiation into endothelial cells. Therefore, understanding the mechanism of EPC-mediated angiogenesis in hypoxia is critical for development of cancer therapy. Recently, mitochondrial dynamics has emerged as a critical mechanism for cellular function and differentiation under hypoxic conditions. However, the role of mitochondrial dynamics in hypoxia-induced angiogenesis remains to be elucidated. In this study, we demonstrated that hypoxiainduced mitochondrial fission accelerates EPCs bioactivities. We first investigated the effect of hypoxia on EPC-mediated angiogenesis. Cell migration, invasion, and tube formation was significantly increased under hypoxic conditions; expression of EPC surface markers was unchanged. And mitochondrial fission was induced by hypoxia time-dependent manner. We found that hypoxia-induced mitochondrial fission was triggered by dynamin-related protein Drp1, specifically, phosphorylated DRP1 at Ser637, a suppression marker for mitochondrial fission, was impaired in hypoxia timedependent manner. To confirm the role of DRP1 in EPC-mediated angiogenesis, we analyzed cell bioactivities using Mdivi-1, a selective DRP1 inhibitor, and DRP1 siRNA. DRP1 silencing or Mdivi-1 treatment dramatically reduced cell migration, invasion, and tube formation in EPCs, but the expression of EPC surface markers was unchanged. In conclusion, we uncovered a novel role of mitochondrial fission in hypoxia-induced angiogenesis. Therefore, we suggest that specific modulation of DRP1-mediated mitochondrial dynamics may be a potential therapeutic strategy in EPC-mediated tumor angiogenesis.

목차

INTRODUCTION
METHODS
RESULTS
DISCUSSION
ACKNOWLEDGEMENTS
CONFLICTS OF INTEREST
REFERENCES

키워드

해당간행물 수록 논문

참고문헌

교보eBook 첫 방문을 환영 합니다!

신규가입 혜택 지급이 완료 되었습니다.

바로 사용 가능한 교보e캐시 1,000원 (유효기간 7일)
지금 바로 교보eBook의 다양한 콘텐츠를 이용해 보세요!

교보e캐시 1,000원
TOP
인용하기
APA

Da Yeon Kim,Seok Yun Jung,Yeon Ju Kim,Songhwa Kang,Ji Hye Park,Seung Taek Ji,Woong Bi Jang,Shreekris. (2018).Hypoxia-dependent mitochondrial fission regulates endothelial progenitor cell migration, invasion, and tube formation. The Korean Journal of Physiology & Pharmacology, 22 (2), 203-213

MLA

Da Yeon Kim,Seok Yun Jung,Yeon Ju Kim,Songhwa Kang,Ji Hye Park,Seung Taek Ji,Woong Bi Jang,Shreekris. "Hypoxia-dependent mitochondrial fission regulates endothelial progenitor cell migration, invasion, and tube formation." The Korean Journal of Physiology & Pharmacology, 22.2(2018): 203-213

결제완료
e캐시 원 결제 계속 하시겠습니까?
교보 e캐시 간편 결제