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A novel malignant mesothelioma organoids-T cell co-culture platform for personalized immunochemotherapy testing
Yang Liu1, Yang Yang2, Songlin An3
1Senior Department of Hepato-Pancreato-Biliary Surgery, the First Medical Center of PLA General Hospital, Beijing, 100853, China.
Abstract:
Malignant mesothelioma (MM) is a rare, aggressive cancer with poor outcomes due to its heterogeneity and therapy resistance. Patient-derived organoids (PDOs) have emerged as a promising tool for precision medicine, as they faithfully recapitulate key tumor characteristics. This study aimed to establish MM PDOs and develop a PDO-T cell co-culture system to evaluate their utility in guiding personalized MM treatment. MM PDOs were generated from malignant ascites, pleural effusions, fine-needle biopsies, and surgical tissues. Organoids were characterized using H&E staining, immunohistochemistry (IHC), and next-generation sequencing (NGS). PBMC-derived T cells were co-cultured with PDOs to assess immunotherapy and chemotherapy responses. Drug sensitivity testing was performed to evaluate treatment efficacy. 11 MM PDOs were successfully established, which recapitulated the histological features and genomic profiles of their parental tumors. Drug sensitivity testing revealed heterogeneous responses of PDOs, with sensitivity to anlotinib but resistance to cisplatin plus pemetrexed plus bevacizumab. Notably, PDOs established from the same patient at different time points displayed dynamic changes in genetic profiles and drug sensitivities, mirroring in vivo tumor progression. In the PDO-T cell co-culture system, anti-PD-1 immunotherapy, especially combined with chemotherapy, significantly reduced organoids viability of patient PM002. MM PDOs and the PDO-T cell co-culture system constitute robust models for investigating tumor progression, drug responses, and immunotherapy efficacy. These tools highlight their potential in advancing personalized medicine for MM.
Insights
Patient-derived organoids (PDOs) model malignant mesothelioma (MM) heterogeneity and drug resistance. A PDO-T cell co-culture system shows potential for guiding personalized MM treatment and immunotherapy strategies.
Area of Science:
- Oncology
- Translational Medicine
- Cancer Biology
Background:
- Malignant mesothelioma (MM) is an aggressive cancer with limited treatment options.
- Tumor heterogeneity and therapy resistance contribute to poor patient outcomes.
- Patient-derived organoids (PDOs) offer a promising platform for modeling cancer and testing therapies.
Purpose of the Study:
- To establish and characterize MM PDOs from various patient samples.
- To develop a PDO-T cell co-culture system for evaluating treatment responses.
- To assess the utility of PDOs in guiding personalized MM treatment strategies.
Main Methods:
- MM PDOs were generated from ascites, effusions, biopsies, and surgical tissues.
- Organoids were characterized by H&E staining, IHC, and NGS.
- Drug sensitivity testing and PDO-T cell co-cultures were performed to assess treatment efficacy.
Main Results:
- 11 MM PDOs were successfully established, mirroring parental tumor histology and genomics.
- PDOs showed heterogeneous drug responses, sensitive to anlotinib but resistant to standard chemotherapy.
- PDO-T cell co-cultures demonstrated efficacy of anti-PD-1 immunotherapy combined with chemotherapy.
Conclusions:
- MM PDOs accurately model tumor characteristics and treatment responses.
- The PDO-T cell co-culture system is a robust model for evaluating immunotherapy and chemotherapy.
- These models hold significant potential for advancing personalized medicine in MM treatment.

