Applications of organoid technology to brain tumors

Author:

Wen Jie123ORCID,Liu Fangkun123,Cheng Quan123ORCID,Weygant Nathaniel45,Liang Xisong123,Fan Fan123,Li Chuntao123,Zhang Liyang123ORCID,Liu Zhixiong123ORCID

Affiliation:

1. Department of Neurosurgery Xiangya Hospital, Central South University Changsha Hunan China

2. Hypothalamic‐pituitary Research Center Xiangya Hospital, Central South University Changsha Hunan China

3. National Clinical Research Center for Geriatric Disorders Xiangya Hospital, Central South University Changsha Hunan China

4. Academy of Integrative Medicine Fujian University of Traditional Chinese Medicine Fuzhou Fujian China

5. Fujian Key Laboratory of Integrative Medicine in Geriatrics Fujian University of Traditional Chinese Medicine Fuzhou Fujian China

Abstract

AbstractLacking appropriate model impedes basic and preclinical researches of brain tumors. Organoids technology applying on brain tumors enables great recapitulation of the original tumors. Here, we compared brain tumor organoids (BTOs) with common models including cell lines, tumor spheroids, and patient‐derived xenografts. Different BTOs can be customized to research objectives and particular brain tumor features. We systematically introduce the establishments and strengths of four different BTOs. BTOs derived from patient somatic cells are suitable for mimicking brain tumors caused by germline mutations and abnormal neurodevelopment, such as the tuberous sclerosis complex. BTOs derived from human pluripotent stem cells with genetic manipulations endow for identifying and understanding the roles of oncogenes and processes of oncogenesis. Brain tumoroids are the most clinically applicable BTOs, which could be generated within clinically relevant timescale and applied for drug screening, immunotherapy testing, biobanking, and investigating brain tumor mechanisms, such as cancer stem cells and therapy resistance. Brain organoids co‐cultured with brain tumors (BO‐BTs) own the greatest recapitulation of brain tumors. Tumor invasion and interactions between tumor cells and brain components could be greatly explored in this model. BO‐BTs also offer a humanized platform for testing the therapeutic efficacy and side effects on neurons in preclinical trials. We also introduce the BTOs establishment fused with other advanced techniques, such as 3D bioprinting. So far, over 11 brain tumor types of BTOs have been established, especially for glioblastoma. We conclude BTOs could be a reliable model to understand brain tumors and develop targeted therapies.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hunan Province

Publisher

Wiley

Subject

Pharmacology (medical),Physiology (medical),Psychiatry and Mental health,Pharmacology

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