4D-Printed Transformable Tube Array for High-Throughput 3D Cell Culture and Histology
Document Type
Article
Publication Date
10-1-2020
Abstract
3D cell cultures are rapidly emerging as a promising tool to model various human physiologies and pathologies by closely recapitulating key characteristics and functions of in vivo microenvironment. While high-throughput 3D culture is readily available using multi-well plates, assessing the internal microstructure of 3D cell cultures still remains extremely slow because of the manual, laborious, and time-consuming histological procedures. Here, a 4D-printed transformable tube array (TTA) using a shape-memory polymer that enables massively parallel histological analysis of 3D cultures is presented. The interconnected TTA can be programmed to be expanded by 3.6 times of its printed dimension to match the size of a multi-well plate, with the ability to restore its original dimension for transferring all cultures to a histology cassette in order. Being compatible with microtome sectioning, the TTA allows for parallel histology processing for the entire samples cultured in a multi-well plate. The test result with human neural progenitor cell spheroids suggests a remarkable reduction in histology processing time by an order of magnitude. High-throughput analysis of 3D cultures enabled by this TTA has great potential to further accelerate innovations in various 3D culture applications such as high-throughput/content screening, drug discovery, disease modeling, and personalized medicine.
Identifier
85089996748 (Scopus)
Publication Title
Advanced Materials
External Full Text Location
https://doi.org/10.1002/adma.202004285
e-ISSN
15214095
ISSN
09359648
PubMed ID
32864842
Issue
40
Volume
32
Grant
1R01DC016612
Fund Ref
National Science Foundation
Recommended Citation
Yang, Chen; Luo, Jeffrey; Polunas, Marianne; Bosnjak, Nikola; Chueng, Sy Tsong Dean; Chadwick, Michelle; Sabaawy, Hatem E.; Chester, Shawn A.; Lee, Ki Bum; and Lee, Howon, "4D-Printed Transformable Tube Array for High-Throughput 3D Cell Culture and Histology" (2020). Faculty Publications. 4978.
https://digitalcommons.njit.edu/fac_pubs/4978
