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

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....

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Autores principales: Jeong, Mi-Hyeon, Kim, Inhee, Park, Kyunghyun, Ku, Bosung, Lee, Dong Woo, Park, Kyoung Ryeol, Jeon, Sang Youl, Kim, Jung Eun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9867480/
https://www.ncbi.nlm.nih.gov/pubmed/36674523
http://dx.doi.org/10.3390/ijms24021006
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author Jeong, Mi-Hyeon
Kim, Inhee
Park, Kyunghyun
Ku, Bosung
Lee, Dong Woo
Park, Kyoung Ryeol
Jeon, Sang Youl
Kim, Jung Eun
author_facet Jeong, Mi-Hyeon
Kim, Inhee
Park, Kyunghyun
Ku, Bosung
Lee, Dong Woo
Park, Kyoung Ryeol
Jeon, Sang Youl
Kim, Jung Eun
author_sort Jeong, Mi-Hyeon
collection PubMed
description 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.
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spelling pubmed-98674802023-01-22 An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation Jeong, Mi-Hyeon Kim, Inhee Park, Kyunghyun Ku, Bosung Lee, Dong Woo Park, Kyoung Ryeol Jeon, Sang Youl Kim, Jung Eun Int J Mol Sci Technical Note 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. MDPI 2023-01-05 /pmc/articles/PMC9867480/ /pubmed/36674523 http://dx.doi.org/10.3390/ijms24021006 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Technical Note
Jeong, Mi-Hyeon
Kim, Inhee
Park, Kyunghyun
Ku, Bosung
Lee, Dong Woo
Park, Kyoung Ryeol
Jeon, Sang Youl
Kim, Jung Eun
An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation
title An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation
title_full An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation
title_fullStr An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation
title_full_unstemmed An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation
title_short An Automated High-Throughput Screening (HTS) Spotter for 3D Tumor Spheroid Formation
title_sort automated high-throughput screening (hts) spotter for 3d tumor spheroid formation
topic Technical Note
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9867480/
https://www.ncbi.nlm.nih.gov/pubmed/36674523
http://dx.doi.org/10.3390/ijms24021006
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