The tumor microbiome as a predictor of outcomes in patients with metastatic melanoma treated with immune checkpoint inhibitors
Wheeler, C. E.; Coleman,, S. S.; Hoyd, R.; Denko, L.; Chan, C. H. F.; Churchman, M. L.; Denko, N.; Dodd, R. D.; Eljilany, I.; Hardikar, S.; Husain, M.; Ikeguchi, A. P.; Jin, N.; Ma, Q.; McCarter, M. D.; Osman, A. E. G.; Robinson, L. A.; Singer, E. A.; Tinoco, G.; Ulrich, C. M.; Zakharia, Y.; Spakowicz, D.; Tarhini, A. A.; Tan, A. C.
Show abstract
Emerging evidence supports the important role of the tumor microbiome in oncogenesis, cancer immune phenotype, cancer progression, and treatment outcomes in many malignancies. In this study, we investigated the metastatic melanoma tumor microbiome and potential roles in association with clinical outcomes, such as survival, in patients with metastatic disease treated with immune checkpoint inhibitors (ICIs). Baseline tumor samples were collected from 71 patients with metastatic melanoma before treatment with ICIs. Bulk RNA-seq was conducted on the formalin-fixed paraffin-embedded (FFPE) tumor samples. Durable clinical benefit (primary clinical endpoint) following ICIs was defined as overall survival [≥]24 months and no change to the primary drug regimen (responders). We processed RNA-seq reads to carefully identify exogenous sequences using the {exotic}tool. The 71 patients with metastatic melanoma ranged in age from 24 to 83 years, 59% were male, and 55% survived >24 months following the initiation of ICI treatment. Exogenous taxa were identified in the tumor RNA-seq, including bacteria, fungi, and viruses. We found differences in gene expression and microbe abundances in immunotherapy responsive versus non-responsive tumors. Responders showed significant enrichment of several microbes including Fusobacterium nucleatum, and non-responders showed enrichment of fungi, as well as several bacteria. These microbes correlated with immune-related gene expression signatures. Finally, we found that models for predicting prolonged survival with immunotherapy using both microbe abundances and gene expression outperformed models using either dataset alone. Our findings warrant further investigation and potentially support therapeutic strategies to modify the tumor microbiome in order to improve treatment outcomes with ICIs. SignificanceWe analyzed the tumor microbiome and interactions with genes and pathways in metastatic melanoma treated with immunotherapy, and identified several microbes associated with immunotherapy response and immune-related gene expression signatures. Machine learning models that combined microbe abundances and gene expression outperformed models using either dataset alone in predicting immunotherapy responses.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The spatial structure of the tumor immune microenvironment can explain and predict patient response in high-grade serous carcinoma 94%
- Small gene networks can delineate immune cell states and characterize immunotherapy response in melanoma 94%
- Immune modulation of innate and adaptive responses restores immune surveillance and establishes anti-tumor immunological memory 93%
Similar papers in this journal
- Quantitative multiplex immunohistochemistry reveals inter- and intra-patient lymphovascular and immune heterogeneity in primary cutaneous melanoma 94%
- Biological insights from plasma proteomics of non-small cell lung cancer patients treated with immunotherapy 94%
- Integrated immunogenomic analyses of high-grade serous ovarian cancer reveal vulnerability to combination immunotherapy 94%
Similar papers in this journal
- Effector T Cells under Hypoxia have an Altered Transcriptome Similar to Tumor-Stressed T Cells Found in Non-Responsive Melanoma Patients 94%
- Identification of tumor-intrinsic drivers of immune exclusion in acral melanoma 94%
- A Spatial Comparison of Molecular Features Associated with Resistance to Pembrolizumab in BCG Unresponsive Bladder Cancer 94%
Similar papers in this journal
- The tumor microbiome reacts to hypoxia and can influence response to radiation treatment in colorectal cancer 95%
- Repurposing azacitidine and carboplatin to prime for anti-PDL1 re-challenge of immunotherapy-resistant melanoma 94%
- Predicting tumor immune microenvironment and checkpoint therapy response of head & neck cancer patients from blood immune single-cell transcriptomics 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.