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In situbiosensing technologies for an organ-on-a-chip.

Jinyoung Kim1, Junghoon Kim1, Yoonhee Jin2

  • 1Department of Biotechnology, Yonsei University, Seoul 03722, Republic of Korea.

Biofabrication
|August 17, 2023
PubMed
Summary

Organoids and organs-on-chips offer ethical, cost-effective in vitro simulations of human organs. Biosensing technology integrated into these organ-on-chip models enables real-time monitoring for pharmaceutical drug development.

Keywords:
biosensing techniquemulti-organ modelorgan-on-a-chipreal-time monitoring

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Area of Science:

  • Biotechnology and Biomedical Engineering
  • Organ-on-a-chip technology
  • In vitro organ modeling

Background:

  • In vitro organ simulation addresses limitations of in vivo experiments, including accuracy, ethics, and cost.
  • Organoids and organs-on-chips are advanced models replicating in vitro organ physiology and real-time biological functions.
  • These systems are crucial for assessing organ responses to external stimuli.

Purpose of the Study:

  • To review biosensing technologies for in situ, real-time measurement of organ responses within organ-on-chip systems.
  • To highlight the application of organ-on-chip technology in pharmaceutical drug development for predicting organ responses.
  • To discuss the potential of multi-organ-on-a-chip systems in closely mimicking the in vivo environment.

Main Methods:

  • Review of existing literature on organoid and organ-on-chip technologies.
  • Focus on biosensing techniques enabling real-time data acquisition from organ-on-chip models.
  • Discussion of multi-organ-on-a-chip systems and their integration with sensing technologies.

Main Results:

  • Biosensing technology facilitates in situ, real-time monitoring of organ responses in organ-on-chip systems.
  • Organ-on-chip platforms, especially multi-organ models, provide a more accurate representation of in vivo conditions.
  • These systems are highly effective for predicting drug responses in pharmaceutical development.

Conclusions:

  • Advancements in organ-on-chip technology, coupled with automated multi-sensing, will lead to sophisticated human-on-a-chip systems.
  • Further development of chip technology and assessment techniques is essential for realizing the full potential of these models.
  • Organ-on-chip biosensing offers a powerful tool for in vitro drug testing and understanding organ physiology.