Modeling of the brain-lung axis using organoids in traumatic brain injury: an updated review

Author:

Kim Jong-Tae,Song Kang,Han Sung Woo,Youn Dong Hyuk,Jung Harry,Kim Keun-Suh,Lee Hyo-Jung,Hong Ji Young,Cho Yong-Jun,Kang Sung-Min,Jeon Jin PyeongORCID

Abstract

AbstractClinical outcome after traumatic brain injury (TBI) is closely associated conditions of other organs, especially lungs as well as degree of brain injury. Even if there is no direct lung damage, severe brain injury can enhance sympathetic tones on blood vessels and vascular resistance, resulting in neurogenic pulmonary edema. Conversely, lung damage can worsen brain damage by dysregulating immunity. These findings suggest the importance of brain-lung axis interactions in TBI. However, little research has been conducted on the topic. An advanced disease model using stem cell technology may be an alternative for investigating the brain and lungs simultaneously but separately, as they can be potential candidates for improving the clinical outcomes of TBI.In this review, we describe the importance of brain-lung axis interactions in TBI by focusing on the concepts and reproducibility of brain and lung organoids in vitro. We also summarize recent research using pluripotent stem cell-derived brain organoids and their preclinical applications in various brain disease conditions and explore how they mimic the brain-lung axis. Reviewing the current status and discussing the limitations and potential perspectives in organoid research may offer a better understanding of pathophysiological interactions between the brain and lung after TBI.

Funder

The National Research Foundation of Korea (NRF) grant funded by the Korean government

Hallym University Research Fund

Hallym University Medical Center Research Fund

The Basic Science Research Program through the National Research Foundation of Korea funded by the Ministry of Science, ICT and Future Planning

Publisher

Springer Science and Business Media LLC

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