TY - JOUR
T1 - 器官芯片的制备及生物医学工程应用
AU - Yang, Qingzhen
AU - Lü, Xuemeng
AU - Liu, Yan
AU - Zhang, Hui
AU - Ji, Yuan
AU - Gao, Bin
N1 - Publisher Copyright:
© 2021, Science Press. All right reserved.
PY - 2021/1
Y1 - 2021/1
N2 - Organ-on-a-chip has emerged as a new technique for constructing normal or diseased models in vitro, attracting rapidly increasing attention from researchers and clinics. Similar to other traditional methods, the main advantages of organ-on-a-chip are its high portability, high throughput and ability to replicate microenvironment cells. Thus organ-on-a-chip holds great potential in disease pathogenesis study, drug screening, etc. In this paper, we reviewed the history of organ-on-a-chip and discussed the main constitutions and materials of organs-on-chips. Through evaluating the existing organs-on-chips, we proposed that a highly integrated organ-on-a-chip should include four elements, microfluidic chip, cells or microtissues, microenvironment building implementing parts, and microsensors. The manufacturing methods were summarized for each item. Besides, the latest developments in organ-on-a-chip and clinical technology problems have been added. In the end, this paper addressed organ-on-a-chip's future directions.
AB - Organ-on-a-chip has emerged as a new technique for constructing normal or diseased models in vitro, attracting rapidly increasing attention from researchers and clinics. Similar to other traditional methods, the main advantages of organ-on-a-chip are its high portability, high throughput and ability to replicate microenvironment cells. Thus organ-on-a-chip holds great potential in disease pathogenesis study, drug screening, etc. In this paper, we reviewed the history of organ-on-a-chip and discussed the main constitutions and materials of organs-on-chips. Through evaluating the existing organs-on-chips, we proposed that a highly integrated organ-on-a-chip should include four elements, microfluidic chip, cells or microtissues, microenvironment building implementing parts, and microsensors. The manufacturing methods were summarized for each item. Besides, the latest developments in organ-on-a-chip and clinical technology problems have been added. In the end, this paper addressed organ-on-a-chip's future directions.
KW - Cell culture in vitro
KW - Diseased model
KW - Drug screening
KW - Microfluidics
KW - Organ-on-a-chip
UR - https://www.scopus.com/pages/publications/85099698231
U2 - 10.1360/SST-2019-0384
DO - 10.1360/SST-2019-0384
M3 - 文献综述
AN - SCOPUS:85099698231
SN - 1674-7259
VL - 51
SP - 1
EP - 22
JO - Zhongguo Kexue Jishu Kexue/Scientia Sinica Technologica
JF - Zhongguo Kexue Jishu Kexue/Scientia Sinica Technologica
IS - 1
ER -