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February 19, 2026Burns & Trauma6 citationsOpen Access

Organoid research: new concepts and new technologies

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JZJin ZhangYWYuezhou WuTSTianzhuo Shen

Key Points

  • To explore the advancements in organoid research and the integration of new technologies for clinical applications.
  • Reviewed organoid technologies and their applications in various fields.
  • Analyzed integration with microfluidics, gene editing, and artificial intelligence.
  • Summarized recent progress in organoid-related innovations and applications.
  • Improved physiological relevance and prediction efficiency of organoids compared to traditional models.
  • Significant advancements in culture systems and multiomic analyses.
  • Identified challenges in standardization and clinical translation.

Abstract

Abstract As three-dimensional biomimetic systems developed from stem cells or somatic cells, organoids have gradually evolved into important links between basic research and clinical application. Compared with traditional two-dimensional culture and animal models, organoids can better reflect the structure and function of tissues and organs in terms of physiological relevance and prediction efficiency. This review explores the integration of organoid technology with microfluidic technology, gene editing, and artificial intelligence, focusing on the prospects of these technologies for application in precision medicine, disease modelling, drug screening, and toxicology. In addition, the latest progress in organoid research, including organ-on-a-chip, organoid biobank construction, and related applications of regenerative medicine, is summarized. The development of key technologies is reviewed in detail. These technologies include improvements in culture systems, innovations in microfluidic and matrix materials, gene editing and modification, and imaging and multiomic analyses. These achievements improve the application value of organoids in disease modelling, drug screening and toxicology. Despite challenges such as standardization, batch-to-batch consistency, and clinical translation, the integration of interdisciplinary technologies has provided a new impetus for the development of organoids. In the future, the combination of organoids with artificial intelligence, personalized medicine and regenerative medicine is expected to drive research progress on disease mechanisms and precision treatment.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6996a7a5ecb39a600b3ed8dehttps://doi.org/10.1093/burnst/tkag015
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