An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation

被引:5
|
作者
Jeong, Mi-Hyeon [1 ]
Kim, Inhee [1 ]
Park, Kyunghyun [1 ]
Ku, Bosung [1 ]
Lee, Dong Woo [1 ,2 ]
Park, Kyoung Ryeol [1 ]
Jeon, Sang Youl [1 ]
Kim, Jung Eun [1 ]
机构
[1] Med & Bio Decis MBD Co Ltd, Cent R&D Ctr, Suwon 16229, Gyeonggi Do, South Korea
[2] Gachon Univ, Dept Biomed Engn, Seongnam Si 13120, Gyeonggi Do, South Korea
关键词
bioprinting-based dispenser; 3D spheroids; organoids; miniaturization; high-throughput screening (HTS); STEM-CELLS;
D O I
10.3390/ijms24021006
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Three-dimensional (3D) culture platforms have been adopted in a high-throughput screening (HTS) system to mimic in vivo physiological microenvironments. The automated dispenser has been established commercially to enable spotting or distributing non-viscous or viscous biomaterials onto microplates. However, there are still challenges to the precise and accurate dispensation of cells embedded in hydrogels such as Alginate- and Matrigel-extracellular matrices. We developed and improved an automated contact-free dispensing machine, the ASFA SPOTTER (V5 and V6), which is compatible with 96- and 384-pillar/well plates and 330- and 532-micropillar/well chips for the support of 3D spheroid/organoid models using bioprinting techniques. This enables the distribution of non-viscous and viscous biosamples, including chemical drugs and cancer cells, for large-scale drug screening at high speed and small volumes (20 to 4000 nanoliters) with no damage to cells. The ASFA SPOTTER (V5 and V6) utilizes a contact-free method that minimizes cross-contamination for the dispensation of encapsulated tissue cells with highly viscous scaffolds (over 70%). In particular, the SPOTTER V6 does not require a washing process and offers the advantage of almost no dead volume (defined as additional required sample volume, including a pre-shot and flushing shot for dispensing). It can be successfully applied for the achievement of an organoid culture in automation, with rapid and easy operation, as well as miniaturization for high-throughput screening. In this study, we report the advantages of the ASFA SPOTTER, which distributes standard-sized cell spots with hydrogels onto a 384-pillar/well plate with a fast dispensing speed, small-scale volume, accuracy, and precision.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Utility of 3D HepaRG spheroid model for testing genotoxicity using high-throughput CometChip platform
    Manjanatha, Mugimane
    Seo, Jieun
    Mei, Nan
    Guo, Xiaoqing
    ENVIRONMENTAL AND MOLECULAR MUTAGENESIS, 2023, 64 : 74 - 74
  • [42] High-throughput 3D Cellular Imaging
    Knott, G.
    Wall, D.
    Lich, B.
    MICROSCOPY AND MICROANALYSIS, 2009, 15 : 934 - 935
  • [43] High-throughput method to analyze the cytotoxicity of CAR-T Cells in a 3D tumor spheroid model using image cytometry
    Zurowski, David
    Patel, Samir
    Hui, Daniel
    Ka, Mignane
    Hernandez, Charles
    Love, Andrea C.
    Lin, Bo
    Moore, Andrea
    Chan, Leo Li-Ying
    SLAS DISCOVERY, 2023, 28 (03) : 65 - 72
  • [44] 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
  • [45] Automated high-throughput, high-content 3D imaging of intact pancreatic islets
    McCarty, Sean M.
    Clasby, Martin C.
    Sexton, Jonathan Z.
    SLAS DISCOVERY, 2023, 28 (07) : 316 - 324
  • [46] Development of automated 3D high-throughput drug screening platform for patient-derived breast cancer organoids
    Kim, Jungeun
    Kim, Hoe Suk
    Kim, Ga Yeon
    Park, Kyung Hyeun
    Ryu, Seung Yeon
    Lee, Sangeun
    Lee, Dong Woo
    Ku, Bosung
    Lee, Han-Byoel
    Han, Wonshik
    CANCER RESEARCH, 2022, 82 (04)
  • [47] High-Throughput Screening (HTS) for the Identification of Novel Antiviral Scaffolds
    Jadhav, Manoj P.
    CLINICAL PHARMACOLOGY IN DRUG DEVELOPMENT, 2014, 3 (02): : 79 - 83
  • [48] High-throughput 3D Spheroid Formation and Effective Cardiomyocyte Differentiation from Human iPS Cells Using the Microfabric Vessels EZSPHERE™
    Miwa, Tatsuaki
    Idiris, Alimjan
    Kumagai, Hiromichi
    BIO-PROTOCOL, 2021, 11 (21):
  • [49] PMSE 137-2-D alligned spheroid for high-throughput screening and regenerative medicine
    Otsuka, Hidenori
    Satomi, Tomomi
    Ueno, Koji
    Yamamoto, Masashi
    Nakasone, Yuichi
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2008, 236
  • [50] A Bioinert Hydrogel Framework for Precision 3D Cell Cultures: Advancing Automated High-Content and High-Throughput Drug Screening
    Jeon, Hyunsu
    Zanon, Tiago Thomaz Migliati
    Carpenter, James
    Ilias, Aliciana
    Colon, Yamil
    Wang, Yichun
    SMALL SCIENCE, 2025,