A High-Throughput Platform for Culture and 3D Imaging of Organoids

被引:0
|
作者
Grenci, Gianluca [1 ,2 ]
Dilasser, Florian [1 ]
Raffi, Saburnisha Binte Mohamad [1 ]
Marchand, Marion [1 ]
Suryana, Mona [1 ]
Sahni, Geetika [1 ]
Viasnoff, Virgile [1 ,3 ,4 ]
Beghin, Anne [1 ,5 ]
机构
[1] Natl Univ Singapore, Mechanobiol Inst MBI, Singapore, Singapore
[2] Natl Univ Singapore, Dept Biomed Engn, Singapore, Singapore
[3] Natl Univ Singapore, Dept Biol Sci, Singapore, Singapore
[4] CNRS, IRL 3639, Paris, France
[5] Natl Univ Singapore, Yong Loo Lin Sch Med, Immunol Translat Res Program, Dept Microbiol & Immunol, Singapore, Singapore
来源
基金
新加坡国家研究基金会;
关键词
D O I
10.3791/64405
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The characterization of a large number of three-dimensional (3D) organotypic cultures (organoids) at different resolution scales is currently limited by standard imaging approaches. This protocol describes a way to prepare microfabricated organoid culture chips, which enable multiscale, 3D live imaging on a user-friendly instrument requiring minimal manipulations and capable of up to 300 organoids/h imaging throughput. These culture chips are compatible with both air and immersion objectives (air, water, oil, and silicone) and a wide range of common microscopes (e.g., spinning disk, point scanner confocal, wide field, and brightfield). Moreover, they can be used with light-sheet modalities such as the single-objective, single-plane illumination microscopy (SPIM) technology (soSPIM). The protocol described here gives detailed steps for the preparation of the microfabricated culture chips and the culture and staining of organoids. Only a short length of time is required to become familiar with, and consumables and equipment can be easily found in normal biolabs. Here, the 3D imaging capabilities will be demonstrated only with commercial standard microscopes (e.g., spinning disk for 3D reconstruction and wide field microscopy for routine monitoring).
引用
收藏
页数:22
相关论文
共 50 条
  • [31] 3D printed alginate bead generator for high-throughput cell culture
    Lee, Donghee
    Greer, Sydney E.
    Kuss, Mitchell A.
    An, Yang
    Dudley, Andrew T.
    BIOMEDICAL MICRODEVICES, 2021, 23 (02)
  • [32] Synthesis and High-Throughput Processing of Polymeric Hydrogels for 3D Cell Culture
    Lowe, Stuart B.
    Tan, Vincent T. G.
    Soeriyadi, Alexander H.
    Davis, Thomas P.
    Gooding, J. Justin
    BIOCONJUGATE CHEMISTRY, 2014, 25 (09) : 1581 - 1601
  • [33] High-throughput 3D tissue culture for prostate cancer drug screening
    Katarzyna, Futrega
    Chambers, Karen
    Lott, William
    Clements, Judith
    Russell, Pamela
    Doran, Michael
    BJU INTERNATIONAL, 2013, 112 : 35 - 35
  • [34] 3D printed alginate bead generator for high-throughput cell culture
    Donghee Lee
    Sydney E. Greer
    Mitchell A. Kuss
    Yang An
    Andrew T. Dudley
    Biomedical Microdevices, 2021, 23
  • [35] High-throughput 3D rotations and normalizations
    Lang, T
    Antelo, E
    CONFERENCE RECORD OF THE THIRTY-FIFTH ASILOMAR CONFERENCE ON SIGNALS, SYSTEMS AND COMPUTERS, VOLS 1 AND 2, 2001, : 846 - 851
  • [36] Development of a novel high-throughput culture system for hypoxic 3D hydrogel cell culture
    Egger, Dominik
    Baier, Luisa
    Moldaschl, Julia
    Taschner, Manfred
    Lorber, Volker
    Kasper, Cornelia
    SCIENTIFIC REPORTS, 2024, 14 (01):
  • [37] High-throughput compound evaluation on 3D networks of neurons and glia in a microfluidic platform
    Nienke R. Wevers
    Remko van Vught
    Karlijn J. Wilschut
    Arnaud Nicolas
    Chiwan Chiang
    Henriette L. Lanz
    Sebastiaan J. Trietsch
    Jos Joore
    Paul Vulto
    Scientific Reports, 6
  • [38] Platform for High-Throughput Testing of the Effect of Soluble Compounds on 3D Cell Cultures
    Deiss, Frederique
    Mazzeo, Aaron
    Hong, Estrella
    Ingber, Donald E.
    Derda, Ratmir
    Whitesides, George M.
    ANALYTICAL CHEMISTRY, 2013, 85 (17) : 8085 - 8094
  • [39] Silhouette-based 3D Model for Zebrafish High-throughput Imaging
    Guo, Yuanhao
    Veneman, Wouter J.
    Spaink, Herman P.
    Verbeek, Fons J.
    5TH INTERNATIONAL CONFERENCE ON IMAGE PROCESSING, THEORY, TOOLS AND APPLICATIONS 2015, 2015, : 403 - 408
  • [40] High-throughput compound evaluation on 3D networks of neurons and glia in a microfluidic platform
    Wevers, Nienke R.
    van Vught, Remko
    Wilschut, Karlijn J.
    Nicolas, Arnaud
    Chiang, Chiwan
    Lanz, Henriette L.
    Trietsch, Sebastiaan J.
    Joore, Jos
    Vulto, Paul
    SCIENTIFIC REPORTS, 2016, 6