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Genomic landscape and molecularly informed therapy in thymic carcinoma and other advanced thymic epithelial tumors
Lino Möhrmann1, Lysann Rostock2, Maximilian Werner3
1Computational Health Informatics Program, Boston Children's Hospital, Harvard Medical School, Boston, USA; Department of Translational Medical Oncology, National Center for Tumor Diseases (NCT), NCT Dresden, a partnership between DKFZ, Faculty of Medicine and University Hospital Carl Gustav Carus, TUD Dresden University of Technology, and Helmholtz-Zentrum Dresden-Rossendorf (HZDR), Germany; Translational Medical Oncology, Faculty of Medicine, and University Hospital Carl Gustav Carus, TU Dresden University of Technology, Dresden, Germany; German Cancer Consortium (DKTK), Dresden, Germany.
Background:
Thymic epithelial tumors (TETs) are rare malignancies with limited treatment options and underexplored molecular features.
Methods:
We examined the genomic landscape and therapeutic outcomes in 81 patients with advanced TETs, including thymic carcinomas (TCs), thymomas, and thymic neuroendocrine neoplasms (TNENs), who were enrolled in the MASTER trial, a prospective observational precision oncology trial.
Findings:
Using whole-genome-sequencing and whole-exome-sequencing analysis, transcriptome analysis, and methylome analysis, we identified distinct molecular features across TET subtypes, including a higher tumor mutational burden in TC and pathogenic germline variants in 18% of cases. We performed transcriptome- and methylome-based unsupervised clustering and were able to divide TCs into immunologically hot and cold subsets, with hot TCs exhibiting higher T cell infiltration and significantly longer overall survival. In 65 out of 76 (86%) patients, we recommended molecularly informed therapies, which were applied in 29 out of 65 (45%) cases, leading to a disease control rate of 62% and an objective response rate of 23% (both n = 26). The progression-free survival ratio (PFSr) was > 1.3 in 8 out of 24 (33%) patients, 7 of them having TC. Among TCs, patients achieved a mean PFSr of 1.4, indicating potential therapeutic advantages in this subgroup. The PFSr between the PFS of immune checkpoint inhibition and preceding therapies was significantly higher in the hot cluster compared to the cold cluster (median 1.7 vs. 0.3; p = 0.01945).
Conclusions:
Our findings expand the understanding of TET biology and emphasize the role of precision oncology in informing treatment decisions and improving outcomes for patients with advanced TETs, particularly in TCs.
Insights
This study reveals distinct molecular features in thymic epithelial tumors (TETs), identifying "hot" and "cold" subtypes in thymic carcinomas (TCs) that impact survival. Precision oncology improved outcomes, especially for TC patients.
Area of Science:
- Oncology
- Genomics
- Immunology
Background:
- Thymic epithelial tumors (TETs) are rare cancers with poorly understood molecular characteristics and limited treatment options.
- Advanced TETs, including thymic carcinomas (TCs), thymomas, and thymic neuroendocrine neoplasms (TNENs), present significant clinical challenges.
Purpose of the Study:
- To investigate the genomic landscape and molecular features of advanced TETs.
- To evaluate the impact of precision oncology on therapeutic outcomes in patients with TETs.
Main Methods:
- Analysis of whole-genome sequencing, whole-exome sequencing, transcriptome, and methylome data from 81 advanced TET patients in the MASTER trial.
- Unsupervised clustering based on transcriptome and methylome data to identify distinct tumor subsets.
- Assessment of molecularly informed therapy recommendations and outcomes.
Main Results:
- Distinct molecular profiles were identified across TET subtypes, with thymic carcinomas (TCs) showing higher tumor mutational burden.
- TCs were classified into "hot" (high T cell infiltration, longer survival) and "cold" subsets.
- Molecularly informed therapies were recommended for 86% of patients, achieving a 62% disease control rate and 23% objective response rate.
- Patients with TCs, particularly in the "hot" cluster, showed improved progression-free survival with immune checkpoint inhibition.
Conclusions:
- The study enhances understanding of TET biology and highlights the importance of molecular profiling.
- Precision oncology plays a crucial role in guiding treatment decisions for advanced TETs.
- Findings suggest potential therapeutic advantages for TC patients, especially those with immunologically "hot" tumors.
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