Micro-engineering and nano-engineering approaches to investigate tumour ecosystems

The interactions among tumour cells, the tumour microenvironment (TME) and non-tumour tissues are of interest to many cancer researchers. Micro-engineering approaches and nanotechnologies are under extensive exploration for modelling these interactions and measuring them in situ and in vivo to inves...

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Veröffentlicht in:Nature reviews. Cancer 2023-09, Vol.23 (9), p.581-599
Hauptverfasser: Kim, Mijin, Panagiotakopoulou, Magdalini, Chen, Chen, Ruiz, Stephen B., Ganesh, Karuna, Tammela, Tuomas, Heller, Daniel A.
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Sprache:eng
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Zusammenfassung:The interactions among tumour cells, the tumour microenvironment (TME) and non-tumour tissues are of interest to many cancer researchers. Micro-engineering approaches and nanotechnologies are under extensive exploration for modelling these interactions and measuring them in situ and in vivo to investigate therapeutic vulnerabilities in cancer and extend a systemic view of tumour ecosystems. Here we highlight the greatest opportunities for improving the understanding of tumour ecosystems using microfluidic devices, bioprinting or organ-on-a-chip approaches. We also discuss the potential of nanosensors that can transmit information from within the TME or elsewhere in the body to address scientific and clinical questions about changes in chemical gradients, enzymatic activities, metabolic and immune profiles of the TME and circulating analytes. This Review aims to connect the cancer biology and engineering communities, presenting biomedical technologies that may expand the methodologies of the former, while inspiring the latter to develop approaches for interrogating cancer ecosystems. Tumour ecosystems encompass a multitude of variables, including enzymatic, metabolic and immune components within the tumour and across organs. This Review summarizes how micro-engineering approaches and nanosensors have been used to establish multicomponent tumour models and to assess tumour plasticity.
ISSN:1474-175X
1474-1768
DOI:10.1038/s41568-023-00593-3