On-chip recapitulation of the tumor microenvironment: A decade of progress

S M Giannitelli1, V Peluzzi2, S Raniolo1

  • 1Department of Science and Technology for Sustainable Development and One Health, Università Campus Bio-Medico di Roma, via Álvaro del Portillo, 21, 00128, Rome, Italy.

Biomaterials
|February 1, 2024
PubMed

Insights

Developing advanced tumor-microenvironment-on-chip (TMOC) models overcomes limitations in cancer therapy research. These microphysiological systems offer a more accurate in vitro platform for studying tumor biology and drug responses.

Area of Science:

  • Oncology
  • Biotechnology
  • Biomedical Engineering

Background:

  • Current in vitro cancer models fail to replicate the complex in vivo tumor microenvironment (TME).
  • Three-dimensional (3D) culture models offer improved predictive value over traditional 2D cultures.
  • Microphysiological systems (organs-on-chip) are emerging as powerful tools for studying cancer biology.

Purpose of the Study:

  • To review a decade of progress in tumor-microenvironment-on-chip (TMOC) approaches for modeling the TME.
  • To highlight the role of TMOCs in understanding cancer progression, metastasis, and drug response.
  • To showcase advancements in TMOC design and integration.

Main Methods:

  • Exploitation of cell-laden microfluidic chambers and microfluidic confined tumor spheroids.
  • Recapitulation of key TME components: tumor cells, stroma, immune cells, and vasculature.
  • Integration of TMOCs into multi-organ systems to study systemic effects and metastasis.

Main Results:

  • TMOCs enable controllable, scalable, and reliable investigation of cell-cell and cell-extracellular matrix interactions.
  • Vascularization in TMOCs is crucial for orchestrating cellular interactions and modulating drug pharmacokinetics.
  • Advanced TMOCs provide new insights into the impact of microenvironmental factors on tumor progression and metastasis.

Conclusions:

  • TMOCs represent a significant advancement in in vitro cancer modeling, enhancing the predictive power of preclinical studies.
  • These systems facilitate the discovery of novel therapeutic targets and the development of more effective anticancer therapies.
  • The integration of TMOCs into multi-organ systems opens avenues for studying complex phenomena like metastasis and systemic drug effects.