Leveraging mechanobiology and biophysical cues in lung organoids for studying lung development and disease

IF 2.5 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Frontiers in chemical engineering Pub Date : 2023-10-24 DOI:10.3389/fceng.2023.1255783
Ziming Shao, Paolo De Coppi, Federica Michielin
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Abstract

Lung organoids have emerged as powerful tools for studying lung distal diseases by recapitulating the cellular diversity and microenvironment of the lung tissue. This review article highlights the advancements in leveraging mechanobiology and biophysical cues in lung organoid engineering to improve their physiological relevance and disease modelling capabilities. We discuss the role of mechanobiology in lung development and homeostasis, as well as the integration of biophysical cues in the design and culture of lung organoids. Furthermore, we explore how these advancements have contributed to the understanding of lung distal diseases pathogenesis. We also discuss the challenges and future directions in harnessing mechanobiology and biophysical cues in lung organoid research. This review showcases the potential of lung organoids as a platform to investigate the underappreciated impacts of biophysical and biomechanical properties in enhancing lung organoids complexity and functionality, and ultimately provide new insight into embryonic lung development and pulmonary distal diseases pathogenesis.
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利用肺类器官的机械生物学和生物物理线索研究肺部发育和疾病
肺类器官通过再现肺组织的细胞多样性和微环境,已成为研究肺远端疾病的有力工具。这篇综述文章强调了在肺类器官工程中利用机械生物学和生物物理线索来提高其生理相关性和疾病建模能力的进展。我们讨论了机械生物学在肺发育和体内平衡中的作用,以及在肺类器官的设计和培养中整合生物物理线索。此外,我们探讨了这些进展如何有助于了解肺远端疾病的发病机制。我们还讨论了在肺类器官研究中利用机械生物学和生物物理线索的挑战和未来方向。本综述展示了肺类器官作为研究生物物理和生物力学特性在增强肺类器官复杂性和功能方面未被充分认识的影响的平台的潜力,并最终为胚胎肺发育和肺远端疾病发病机制提供新的见解。
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CiteScore
3.50
自引率
0.00%
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0
审稿时长
13 weeks
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