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Unraveling tumor-immune heterogeneity in advanced ovarian cancer uncovers immunogenic effect of chemotherapy
Jiménez-Sánchez, Alejandro; Cybulska, Paulina; Mager, Katherine LaVigne; Koplev, Simon; Cast, Oliver; Couturier, Dominique-Laurent; Memon, Danish; Selenica, Pier; Nikolovski, Ines; Mazaheri, Yousef; Bykov, Yonina; Geyer, Felipe C; Macintyre, Geoff; Gavarró, Lena Morrill; Drews, Ruben M; Gill, Michael B; Papanastasiou, Anastasios D; Sosa, Ramon E; Soslow, Robert A; Walther, Tyler; Shen, Ronglai; Chi, Dennis S; Park, Kay J; Hollmann, Travis; Reis-Filho, Jorge S; Markowetz, Florian; Beltrao, Pedro; Vargas, Hebert Alberto; Zamarin, Dmitriy; Brenton, James D; Snyder, Alexandra; Weigelt, Britta; Sala, Evis; Miller, Martin L
In metastatic cancer, the degree of heterogeneity of the tumor microenvironment (TME) and its molecular underpinnings remain largely unstudied. To characterize the tumor-immune interface at baseline and during neoadjuvant chemotherapy (NACT) in high-grade serous ovarian cancer (HGSOC), we performed immunogenomic analysis of treatment-naive and paired samples from before and after treatment with chemotherapy. In treatment-naive HGSOC, we found that immune-cell-excluded and inflammatory microenvironments coexist within the same individuals and within the same tumor sites, indicating ubiquitous variability in immune cell infiltration. Analysis of TME cell composition, DNA copy number, mutations and gene expression showed that immune cell exclusion was associated with amplification of Myc target genes and increased expression of canonical Wnt signaling in treatment-naive HGSOC. Following NACT, increased natural killer (NK) cell infiltration and oligoclonal expansion of T cells were detected. We demonstrate that the tumor-immune microenvironment of advanced HGSOC is intrinsically heterogeneous and that chemotherapy induces local immune activation, suggesting that chemotherapy can potentiate the immunogenicity of immune-excluded HGSOC tumors.
PMCID:8353209
PMID: 32483290
ISSN: 1546-1718
CID: 5452712
Integrated Multi-Tumor Radio-Genomic Marker of Outcomes in Patients with High Serous Ovarian Carcinoma
Veeraraghavan, Harini; Vargas, Herbert Alberto; Sánchez, Alejandro-Jiménez; Micco, Maura; Mema, Eralda; Lakhman, Yulia; Crispin-Ortuzar, Mireia; Huang, Erich P; Levine, Douglas A; Grisham, Rachel N; Abu-Rustum, Nadeem; Deasy, Joseph O; Snyder, Alexandra; Miller, Martin L; Brenton, James D; Sala, Evis
Purpose: Develop an integrated intra-site and inter-site radiomics-clinical-genomic marker of high grade serous ovarian cancer (HGSOC) outcomes and explore the biological basis of radiomics with respect to molecular signaling pathways and the tumor microenvironment (TME). Method: Seventy-five stage III-IV HGSOC patients from internal (N = 40) and external factors via the Cancer Imaging Archive (TCGA) (N = 35) with pre-operative contrast enhanced CT, attempted primary cytoreduction, at least two disease sites, and molecular analysis performed within TCGA were retrospectively analyzed. An intra-site and inter-site radiomics (cluDiss) measure was combined with clinical-genomic variables (iRCG) and compared against conventional (volume and number of sites) and average radiomics (N = 75) for prognosticating progression-free survival (PFS) and platinum resistance. Correlation with molecular signaling and TME derived using a single sample gene set enrichment that was measured. Results: The iRCG model had the best platinum resistance classification accuracy (AUROC of 0.78 [95% CI 0.77 to 0.80]). CluDiss was associated with PFS (HR 1.03 [95% CI: 1.01 to 1.05], p = 0.002), negatively correlated with Wnt signaling, and positively to immune TME. Conclusions: CluDiss and the iRCG prognosticated HGSOC outcomes better than conventional and average radiomic measures and could better stratify patient outcomes if validated on larger multi-center trials.
PMID: 33212885
ISSN: 2072-6694
CID: 4672972
Radiogenomics Analysis of Intratumor Heterogeneity in a Patient With High-Grade Serous Ovarian Cancer [Case Report]
Weigelt, Britta; Vargas, Hebert Alberto; Selenica, Pier; Geyer, Felipe C; Mazaheri, Yousef; Blecua, Pedro; Conlon, Niamh; Hoang, Lien N; Jungbluth, Achim A; Snyder, Alexandra; Ng, Charlotte K Y; Papanastasiou, Anastasios D; Sosa, Ramon E; Soslow, Robert A; Chi, Dennis S; Gardner, Ginger J; Shen, Ronglai; Reis-Filho, Jorge S; Sala, Evis
PMCID:7446483
PMID: 32914032
ISSN: 2473-4284
CID: 5787642
TOX is a critical regulator of tumour-specific T cell differentiation
Scott, Andrew C; Dündar, Friederike; Zumbo, Paul; Chandran, Smita S; Klebanoff, Christopher A; Shakiba, Mojdeh; Trivedi, Prerak; Menocal, Laura; Appleby, Heather; Camara, Steven; Zamarin, Dmitriy; Walther, Tyler; Snyder, Alexandra; Femia, Matthew R; Comen, Elizabeth A; Wen, Hannah Y; Hellmann, Matthew D; Anandasabapathy, Niroshana; Liu, Yong; Altorki, Nasser K; Lauer, Peter; Levy, Olivier; Glickman, Michael S; Kaye, Jonathan; Betel, Doron; Philip, Mary; Schietinger, Andrea
Tumour-specific CD8 T cell dysfunction is a differentiation state that is distinct from the functional effector or memory T cell states1-6. Here we identify the nuclear factor TOX as a crucial regulator of the differentiation of tumour-specific T (TST) cells. We show that TOX is highly expressed in dysfunctional TST cells from tumours and in exhausted T cells during chronic viral infection. Expression of TOX is driven by chronic T cell receptor stimulation and NFAT activation. Ectopic expression of TOX in effector T cells in vitro induced a transcriptional program associated with T cell exhaustion. Conversely, deletion of Tox in TST cells in tumours abrogated the exhaustion program: Tox-deleted TST cells did not upregulate genes for inhibitory receptors (such as Pdcd1, Entpd1, Havcr2, Cd244 and Tigit), the chromatin of which remained largely inaccessible, and retained high expression of transcription factors such as TCF-1. Despite their normal, 'non-exhausted' immunophenotype, Tox-deleted TST cells remained dysfunctional, which suggests that the regulation of expression of inhibitory receptors is uncoupled from the loss of effector function. Notably, although Tox-deleted CD8 T cells differentiated normally to effector and memory states in response to acute infection, Tox-deleted TST cells failed to persist in tumours. We hypothesize that the TOX-induced exhaustion program serves to prevent the overstimulation of T cells and activation-induced cell death in settings of chronic antigen stimulation such as cancer.
PMCID:7698992
PMID: 31207604
ISSN: 1476-4687
CID: 5653232
Computed Tomography-Derived Radiomic Metrics Can Identify Responders to Immunotherapy in Ovarian Cancer
Himoto, Yuki; Veeraraghavan, Harini; Zheng, Junting; Zamarin, Dmitriy; Snyder, Alexandra; Capanu, Marinela; Nougaret, Stephanie; Vargas, Hebert A; Shitano, Fuki; Callahan, Margaret; Wang, Wei; Sala, Evis; Lakhman, Yulia
PURPOSE/OBJECTIVE:To determine if radiomic measures of tumor heterogeneity derived from baseline contrast-enhanced computed tomography (CE-CT) are associated with durable clinical benefit and time to off-treatment in patients with recurrent ovarian cancer (OC) enrolled in prospective immunotherapeutic trials. MATERIALS AND METHODS/METHODS:This retrospective study included 75 patients with recurrent OC who were enrolled in prospective immunotherapeutic trials (n = 74) or treated off-label (n = 1) and had baseline CE-CT scans. Disease burden (total tumor volume, number of disease sites), radiomic measures of intertumor heterogeneity (cluster-site entropy, cluster-site dissimilarity), and intratumor heterogeneity of the largest lesion (Haralick texture features) were computed. Associations of clinical, conventional imaging, and radiomic measures with durable clinical benefit and time to off-treatment were examined. RESULTS:= .004; hazard ratio, 1.19; C-index, 0.6). CONCLUSION/CONCLUSIONS:Fewer disease sites and lower intra- and intertumor heterogeneity modeled from the baseline CE-CT may indicate better response of OC to immunotherapy.
PMCID:7446503
PMID: 32914033
ISSN: 2473-4284
CID: 5452762
Correction to: Toward a comprehensive view of cancer immune responsiveness: a synopsis from the SITC workshop
Bedognetti, Davide; Ceccarelli, Michele; Galluzzi, Lorenzo; Lu, Rongze; Palucka, Karolina; Samayoa, Josue; Spranger, Stefani; Warren, Sarah; Wong, Kwok-Kin; Ziv, Elad; Chowell, Diego; Coussens, Lisa M; De Carvalho, Daniel D; DeNardo, David G; Galon, Jérôme; Kaufman, Howard L; Kirchhoff, Tomas; Lotze, Michael T; Luke, Jason J; Minn, Andy J; Politi, Katerina; Shultz, Leonard D; Simon, Richard; Thórsson, Vésteinn; Weidhaas, Joanne B; Ascierto, Maria Libera; Ascierto, Paolo Antonio; Barnes, James M; Barsan, Valentin; Bommareddy, Praveen K; Bot, Adrian; Church, Sarah E; Ciliberto, Gennaro; De Maria, Andrea; Draganov, Dobrin; Ho, Winson S; McGee, Heather M; Monette, Anne; Murphy, Joseph F; Nisticò, Paola; Park, Wungki; Patel, Maulik; Quigley, Michael; Radvanyi, Laszlo; Raftopoulos, Harry; Rudqvist, Nils-Petter; Snyder, Alexandra; Sweis, Randy F; Valpione, Sara; Zappasodi, Roberta; Butterfield, Lisa H; Disis, Mary L; Fox, Bernard A; Cesano, Alessandra; Marincola, Francesco M
Following publication of the original article [1], the author reported that an author name, Roberta Zappasodi, was missed in the authorship list.
PMID: 31272507
ISSN: 2051-1426
CID: 3968252
Toward a comprehensive view of cancer immune responsiveness: a synopsis from the SITC workshop
Bedognetti, Davide; Ceccarelli, Michele; Galluzzi, Lorenzo; Lu, Rongze; Palucka, Karolina; Samayoa, Josue; Spranger, Stefani; Warren, Sarah; Wong, Kwok-Kin; Ziv, Elad; Chowell, Diego; Coussens, Lisa M; De Carvalho, Daniel D; DeNardo, David G; Galon, Jérôme; Kaufman, Howard L; Kirchhoff, Tomas; Lotze, Michael T; Luke, Jason J; Minn, Andy J; Politi, Katerina; Shultz, Leonard D; Simon, Richard; Thórsson, Vésteinn; Weidhaas, Joanne B; Ascierto, Maria Libera; Ascierto, Paolo Antonio; Barnes, James M; Barsan, Valentin; Bommareddy, Praveen K; Bot, Adrian; Church, Sarah E; Ciliberto, Gennaro; De Maria, Andrea; Draganov, Dobrin; Ho, Winson S; McGee, Heather M; Monette, Anne; Murphy, Joseph F; Nisticò, Paola; Park, Wungki; Patel, Maulik; Quigley, Michael; Radvanyi, Laszlo; Raftopoulos, Harry; Rudqvist, Nils-Petter; Snyder, Alexandra; Sweis, Randy F; Valpione, Sara; Butterfield, Lisa H; Disis, Mary L; Fox, Bernard A; Cesano, Alessandra; Marincola, Francesco M
Tumor immunology has changed the landscape of cancer treatment. Yet, not all patients benefit as cancer immune responsiveness (CIR) remains a limitation in a considerable proportion of cases. The multifactorial determinants of CIR include the genetic makeup of the patient, the genomic instability central to cancer development, the evolutionary emergence of cancer phenotypes under the influence of immune editing, and external modifiers such as demographics, environment, treatment potency, co-morbidities and cancer-independent alterations including immune homeostasis and polymorphisms in the major and minor histocompatibility molecules, cytokines, and chemokines. Based on the premise that cancer is fundamentally a disorder of the genes arising within a cell biologic process, whose deviations from normality determine the rules of engagement with the host's response, the Society for Immunotherapy of Cancer (SITC) convened a task force of experts from various disciplines including, immunology, oncology, biophysics, structural biology, molecular and cellular biology, genetics, and bioinformatics to address the complexity of CIR from a holistic view. The task force was launched by a workshop held in San Francisco on May 14-15, 2018 aimed at two preeminent goals: 1) to identify the fundamental questions related to CIR and 2) to create an interactive community of experts that could guide scientific and research priorities by forming a logical progression supported by multiple perspectives to uncover mechanisms of CIR. This workshop was a first step toward a second meeting where the focus would be to address the actionability of some of the questions identified by working groups. In this event, five working groups aimed at defining a path to test hypotheses according to their relevance to human cancer and identifying experimental models closest to human biology, which include: 1) Germline-Genetic, 2) Somatic-Genetic and 3) Genomic-Transcriptional contributions to CIR, 4) Determinant(s) of Immunogenic Cell Death that modulate CIR, and 5) Experimental Models that best represent CIR and its conversion to an immune responsive state. This manuscript summarizes the contributions from each group and should be considered as a first milestone in the path toward a more contemporary understanding of CIR. We appreciate that this effort is far from comprehensive and that other relevant aspects related to CIR such as the microbiome, the individual's recombined T cell and B cell receptors, and the metabolic status of cancer and immune cells were not fully included. These and other important factors will be included in future activities of the taskforce. The taskforce will focus on prioritization and specific actionable approach to answer the identified questions and implementing the collaborations in the follow-up workshop, which will be held in Houston on September 4-5, 2019.
PMID: 31113486
ISSN: 2051-1426
CID: 3920522
Genomic correlates of response to immune checkpoint therapies in clear cell renal cell carcinoma
Miao, Diana; Margolis, Claire A; Gao, Wenhua; Voss, Martin H; Li, Wei; Martini, Dylan J; Norton, Craig; Bossé, Dominick; Wankowicz, Stephanie M; Cullen, Dana; Horak, Christine; Wind-Rotolo, Megan; Tracy, Adam; Giannakis, Marios; Hodi, Frank Stephen; Drake, Charles G; Ball, Mark W; Allaf, Mohamad E; Snyder, Alexandra; Hellmann, Matthew D; Ho, Thai; Motzer, Robert J; Signoretti, Sabina; Kaelin, William G; Choueiri, Toni K; Van Allen, Eliezer M
Immune checkpoint inhibitors targeting the programmed cell death 1 receptor (PD-1) improve survival in a subset of patients with clear cell renal cell carcinoma (ccRCC). To identify genomic alterations in ccRCC that correlate with response to anti-PD-1 monotherapy, we performed whole-exome sequencing of metastatic ccRCC from 35 patients. We found that clinical benefit was associated with loss-of-function mutations in the PBRM1 gene (P = 0.012), which encodes a subunit of the PBAF switch-sucrose nonfermentable (SWI/SNF) chromatin remodeling complex. We confirmed this finding in an independent validation cohort of 63 ccRCC patients treated with PD-1 or PD-L1 (PD-1 ligand) blockade therapy alone or in combination with anti-CTLA-4 (cytotoxic T lymphocyte-associated protein 4) therapies (P = 0.0071). Gene-expression analysis of PBAF-deficient ccRCC cell lines and PBRM1-deficient tumors revealed altered transcriptional output in JAK-STAT (Janus kinase-signal transducers and activators of transcription), hypoxia, and immune signaling pathways. PBRM1 loss in ccRCC may alter global tumor-cell expression profiles to influence responsiveness to immune checkpoint therapy.
PMID: 29301960
ISSN: 1095-9203
CID: 4517592
Clinical Utility of Prospective Molecular Characterization in Advanced Endometrial Cancer
Soumerai, Tara E; Donoghue, Mark T A; Bandlamudi, Chaitanya; Srinivasan, Preethi; Chang, Matthew T; Zamarin, Dmitriy; Cadoo, Karen A; Grisham, Rachel N; O'Cearbhaill, Roisin E; Tew, William P; Konner, Jason A; Hensley, Martee L; Makker, Vicky; Sabbatini, Paul; Spriggs, David R; Troso-Sandoval, Tiffany A; Charen, Alexandra Snyder; Friedman, Claire; Gorsky, Mila; Schweber, Sarah J; Middha, Sumit; Murali, Rajmohan; Chiang, Sarah; Park, Kay J; Soslow, Robert A; Ladanyi, Marc; Li, Bob T; Mueller, Jennifer; Weigelt, Britta; Zehir, Ahmet; Berger, Michael F; Abu-Rustum, Nadeem R; Aghajanian, Carol; DeLair, Deborah F; Solit, David B; Taylor, Barry S; Hyman, David M
PURPOSE/OBJECTIVE:Advanced-stage endometrial cancers have limited treatment options and poor prognosis, highlighting the need to understand genetic drivers of therapeutic vulnerabilities and/or prognostic predictors. We examined whether prospective molecular characterization of recurrent and metastatic disease can reveal grade and histology-specific differences, facilitating enrollment onto clinical trials. EXPERIMENTAL DESIGN/METHODS:We integrated prospective clinical sequencing and IHC data with detailed clinical and treatment histories for 197 tumors, profiled by MSK-IMPACT from 189 patients treated at Memorial Sloan Kettering Cancer Center. RESULTS:= 0.006). Of the 68% of patients harboring potentially actionable mutations, 27% were enrolled to matched clinical trials, of which 47% of these achieved clinical benefit. CONCLUSIONS:Prospective clinical sequencing of advanced endometrial cancer can help refine prognosis and aid treatment decision making by simultaneously detecting microsatellite status, germline predisposition syndromes, and potentially actionable mutations. A small overall proportion of all patients tested received investigational, genomically matched therapy as part of clinical trials.
PMCID:6279519
PMID: 30068706
ISSN: 1078-0432
CID: 3639892
Genomic Features of Response to Combination Immunotherapy in Patients with Advanced Non-Small-Cell Lung Cancer
Hellmann, Matthew D; Nathanson, Tavi; Rizvi, Hira; Creelan, Benjamin C; Sanchez-Vega, Francisco; Ahuja, Arun; Ni, Ai; Novik, Jacki B; Mangarin, Levi M B; Abu-Akeel, Mohsen; Liu, Cailian; Sauter, Jennifer L; Rekhtman, Natasha; Chang, Eliza; Callahan, Margaret K; Chaft, Jamie E; Voss, Martin H; Tenet, Megan; Li, Xue-Mei; Covello, Kelly; Renninger, Andrea; Vitazka, Patrik; Geese, William J; Borghaei, Hossein; Rudin, Charles M; Antonia, Scott J; Swanton, Charles; Hammerbacher, Jeff; Merghoub, Taha; McGranahan, Nicholas; Snyder, Alexandra; Wolchok, Jedd D
Combination immune checkpoint blockade has demonstrated promising benefit in lung cancer, but predictors of response to combination therapy are unknown. Using whole-exome sequencing to examine non-small-cell lung cancer (NSCLC) treated with PD-1 plus CTLA-4 blockade, we found that high tumor mutation burden (TMB) predicted improved objective response, durable benefit, and progression-free survival. TMB was independent of PD-L1 expression and the strongest feature associated with efficacy in multivariable analysis. The low response rate in TMB low NSCLCs demonstrates that combination immunotherapy does not overcome the negative predictive impact of low TMB. This study demonstrates the association between TMB and benefit to combination immunotherapy in NSCLC. TMB should be incorporated in future trials examining PD-(L)1 with CTLA-4 blockade in NSCLC.
PMCID:5953836
PMID: 29657128
ISSN: 1878-3686
CID: 3059072