A Variable Scheduling Maintenance Culture Platform for Mammalian Cells

Author:

Ochiai Koji1,Motozawa Naohiro23,Terada Motoki2,Horinouchi Takaaki14ORCID,Masuda Tomohiro2,Kudo Taku5,Kamei Motohisa5,Tsujikawa Akitaka3,Matsukuma Kenji5,Natsume Tohru56,Kanda Genki N.125ORCID,Takahashi Masayo27,Takahashi Koichi1ORCID

Affiliation:

1. Laboratory for Biologically Inspired Computing, RIKEN Center for Biosystems Dynamics Research, Suita, Osaka, Japan

2. Laboratory for Retinal Regeneration, RIKEN Center for Biosystems Dynamics Research, Chuo-ku, Kobe, Hyogo, Japan

3. Department of Ophthalmology and Visual Sciences, Kyoto University Graduate School of Medicine, Sakyo-ku, Kyoto, Japan

4. Laboratory for Multiscale Biosystem Dynamics, RIKEN Center for Biosystems Dynamics Research, Suita, Osaka, Japan

5. Robotic Biology Institute Inc., Koto-ku, Tokyo, Japan

6. Department of Life Science and Biotechnology, Cellular and Molecular Biotechnology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Koto-ku, Tokyo, Japan

7. VisionCare Inc., Chuo-ku, Kobe, Hyogo, Japan

Abstract

Cell culturing is a basic experimental technique in cell biology and medical science. However, culturing high-quality cells with a high degree of reproducibility relies heavily on expert skills and tacit knowledge, and it is not straightforward to scale the production process due to the education bottleneck. Although many automated culture systems have been developed and a few have succeeded in mass production environments, very few robots are permissive of frequent protocol changes, which are often required in basic research environments. LabDroid is a general-purpose humanoid robot with two arms that performs experiments using the same tools as humans. Combining our newly developed AI software with LabDroid, we developed a variable scheduling system that continuously produces subcultures of cell lines without human intervention. The system periodically observes the cells on plates with a microscope, predicts the cell growth curve by processing cell images, and decides the best times for passage. We have succeeded in developing a system that maintains the cultures of two HEK293A cell plates with no human intervention for 192 h.

Funder

japan science and technology corporation

riken

New Energy and Industrial Technology Development Organization

Publisher

Elsevier BV

Subject

Medical Laboratory Technology,Computer Science Applications

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