Integrating Organs-on-Chips: Multiplexing, Scaling, Vascularization, and Innervation

  • Park, DoYeun; 
  • Lee, Jaeseo; 
  • Chung, Justin J.; 
  • Jung, Youngmee; 
  • Kim, Soo Hyun
Citations

WEB OF SCIENCE

88
Citations

SCOPUS

95

초록

Organs-on-chips (OoCs) have attracted significant attention because they can be designed to mimic in vivo environments. Beyond constructing a single OoC, recent efforts have tried to integrate multiple OoCs to broaden potential applications such as disease modeling and drug discoveries. However, various challenges remain for integrating OoCs towards in vivo-like operation, such as incorporating various connections for integrating multiple OoCs. We review multiplexed OoCs and challenges they face: scaling, vascularization, and innervation. In our opinion, future OoCs will be constructed to have increased predictive power for in vivo phenomena and will ultimately become a mainstream tool for high quality biomedical and pharmaceutical research.

키워드

innervation-on-a-chip; integrated organ-on-a-chip; multiplexing; organ-on-chip; scaling rules; vascularization-on-a-chip; CELL-DERIVED CARDIOMYOCYTES; LONG-TERM COCULTURE; A-CHIP; MICROPHYSIOLOGICAL SYSTEMS; HUMAN INTESTINE; TISSUE MODEL; DRUG; LIVER; NETWORK; CULTURE
제목
Integrating Organs-on-Chips: Multiplexing, Scaling, Vascularization, and Innervation
저자
Park, DoYeun; Lee, Jaeseo; Chung, Justin J.; Jung, Youngmee; Kim, Soo Hyun
DOI
10.1016/j.tibtech.2019.06.006
발행일
2020-01
유형
Review
저널명
Trends in Biotechnology
권
38
호
1
페이지
99 ~ 112