Recent Advances in Microfluidics and Bioelectronics for Three-Dimensional Organoid Interfaces

Fuente: arXiv
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Main Authors: Ferguson, Caroline, Li, Yan, Zhang, Yi, Wang, Xueju
Format: Preprint
Published: 2025
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author Ferguson, Caroline
Li, Yan
Zhang, Yi
Wang, Xueju
author_facet Ferguson, Caroline
Li, Yan
Zhang, Yi
Wang, Xueju
contents Organoids offer a promising alternative in biomedical research and clinical medicine, with better feature recapitulation than 2D cultures. They also have more consistent responses with clinical results when compared to animal models. However, major challenges exist in the longevity of culture, the reproducibility of organoid properties, and the development of non-disruptive monitoring methods. Recent advances in materials and microfabrication methods, such as 3D printing and compressive buckling, have enabled three-dimensional (3D) interfaces of microfluidics and bioelectronics to manipulate and monitor these biological models in exciting ways. These advanced systems have great potential for applications in drug delivery, personalized medicine, and disease modelling. We conclude with important future considerations to generate longevity using further technological development in organoid and spheroid models.
format Preprint
id arxiv_https___arxiv_org_abs_2510_12584
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Recent Advances in Microfluidics and Bioelectronics for Three-Dimensional Organoid Interfaces
Ferguson, Caroline
Li, Yan
Zhang, Yi
Wang, Xueju
Tissues and Organs
Organoids offer a promising alternative in biomedical research and clinical medicine, with better feature recapitulation than 2D cultures. They also have more consistent responses with clinical results when compared to animal models. However, major challenges exist in the longevity of culture, the reproducibility of organoid properties, and the development of non-disruptive monitoring methods. Recent advances in materials and microfabrication methods, such as 3D printing and compressive buckling, have enabled three-dimensional (3D) interfaces of microfluidics and bioelectronics to manipulate and monitor these biological models in exciting ways. These advanced systems have great potential for applications in drug delivery, personalized medicine, and disease modelling. We conclude with important future considerations to generate longevity using further technological development in organoid and spheroid models.
title Recent Advances in Microfluidics and Bioelectronics for Three-Dimensional Organoid Interfaces
topic Tissues and Organs
url https://arxiv.org/abs/2510.12584