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Dive into the research topics where Darrell R. Borger is active.

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Featured researches published by Darrell R. Borger.


Embo Molecular Medicine | 2010

Rapid targeted mutational analysis of human tumours: a clinical platform to guide personalized cancer medicine.

Dora Dias-Santagata; Sara Akhavanfard; Serena S. David; Kathy Vernovsky; Georgiana Kuhlmann; Susan L. Boisvert; Hannah Stubbs; Ultan McDermott; Jeffrey Settleman; Eunice L. Kwak; Jeffrey W. Clark; Steven J. Isakoff; Lecia V. Sequist; Jeffrey A. Engelman; Thomas J. Lynch; Daniel A. Haber; David N. Louis; Leif W. Ellisen; Darrell R. Borger; A. John Iafrate

Targeted cancer therapy requires the rapid and accurate identification of genetic abnormalities predictive of therapeutic response. We sought to develop a high‐throughput genotyping platform that would allow prospective patient selection to the best available therapies, and that could readily and inexpensively be adopted by most clinical laboratories. We developed a highly sensitive multiplexed clinical assay that performs very well with nucleic acid derived from formalin fixation and paraffin embedding (FFPE) tissue, and tests for 120 previously described mutations in 13 cancer genes. Genetic profiling of 250 primary tumours was consistent with the documented oncogene mutational spectrum and identified rare events in some cancer types. The assay is currently being used for clinical testing of tumour samples and contributing to cancer patient management. This work therefore establishes a platform for real‐time targeted genotyping that can be widely adopted. We expect that efforts like this one will play an increasingly important role in cancer management.


Oncologist | 2012

Frequent Mutation of Isocitrate Dehydrogenase (IDH)1 and IDH2 in Cholangiocarcinoma Identified Through Broad-Based Tumor Genotyping

Darrell R. Borger; Kenneth K. Tanabe; Kenneth C. Fan; Hector U. Lopez; Valeria Fantin; Kimberly Straley; David P. Schenkein; Marek Ancukiewicz; Hannah M. Liebman; Eunice L. Kwak; Jeffrey W. Clark; David P. Ryan; Vikram Deshpande; Dora Dias-Santagata; Leif W. Ellisen; Andrew X. Zhu; A. John Iafrate

Cancers of origin in the gallbladder and bile ducts are rarely curable with current modalities of cancer treatment. Our clinical application of broad-based mutational profiling for patients diagnosed with a gastrointestinal malignancy has led to the novel discovery of mutations in the gene encoding isocitrate dehydrogenase 1 (IDH1) in tumors from a subset of patients with cholangiocarcinoma. A total of 287 tumors from gastrointestinal cancer patients (biliary tract, colorectal, gastroesophageal, liver, pancreatic, and small intestine carcinoma) were tested during routine clinical evaluation for 130 site-specific mutations within 15 cancer genes. Mutations were identified within a number of genes, including KRAS (35%), TP53 (22%), PIK3CA (10%), BRAF (7%), APC (6%), NRAS (3%), AKT1 (1%), CTNNB1 (1%), and PTEN (1%). Although mutations in the metabolic enzyme IDH1 were rare in the other common gastrointestinal malignancies in this series (2%), they were found in three tumors (25%) of an initial series of 12 biliary tract carcinomas. To better define IDH1 and IDH2 mutational status, an additional 75 gallbladder and bile duct cancers were examined. Combining these cohorts of biliary cancers, mutations in IDH1 and IDH2 were found only in cholangiocarcinomas of intrahepatic origin (nine of 40, 23%) and in none of the 22 extrahepatic cholangiocarcinomas and none of the 25 gallbladder carcinomas. In an analysis of frozen tissue specimens, IDH1 mutation was associated with highly elevated tissue levels of the enzymatic product 2-hydroxyglutarate. Thus, IDH1 mutation is a molecular feature of cholangiocarcinomas of intrahepatic origin. These findings define a specific metabolic abnormality in this largely incurable type of gastrointestinal cancer and present a potentially new target for therapy.


Journal of Clinical Oncology | 2010

Activity of IPI-504, a Novel Heat-Shock Protein 90 Inhibitor, in Patients With Molecularly Defined Non–Small-Cell Lung Cancer

Lecia V. Sequist; Scott N. Gettinger; Neil Senzer; Renato Martins; Pasi A. Jänne; Rogerio Lilenbaum; Jhanelle E. Gray; A. John Iafrate; Ryohei Katayama; Nafeeza Hafeez; Jennifer Sweeney; John Walker; Christian Fritz; Robert W. Ross; David Grayzel; Jeffrey A. Engelman; Darrell R. Borger; Guillermo Paez; Ronald B. Natale

PURPOSE IPI-504 is a novel, water-soluble, potent inhibitor of heat-shock protein 90 (Hsp90). Its potential anticancer activity has been validated in preclinical in vitro and in vivo models. We studied the activity of IPI-504 after epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor (TKI) therapy in patients with advanced, molecularly defined non-small-cell lung cancer (NSCLC). PATIENTS AND METHODS Patients with advanced NSCLC, prior treatment with EGFR TKIs, and tumor tissue available for molecular genotyping were enrolled in this prospective, nonrandomized, multicenter, phase II study of IPI-504 monotherapy. The primary outcome was objective response rate (ORR). Secondary aims included safety, progression-free survival (PFS), and analysis of activity by molecular subtypes. RESULTS Seventy-six patients were enrolled between December 2007 and May 2009 from 10 United States cancer centers. An ORR of 7% (five of 76) was observed in the overall study population, 10% (four of 40) in patients who were EGFR wild-type, and 4% (one of 28) in those with EGFR mutations. Although both EGFR groups were below the target ORR of 20%, among the three patients with an ALK gene rearrangement, two had partial responses and the third had prolonged stable disease (7.2 months, 24% reduction in tumor size). The most common adverse events included grades 1 and 2 fatigue, nausea, and diarrhea. Grade 3 or higher liver function abnormalities were observed in nine patients (11.8%). CONCLUSION IPI-504 has clinical activity in patients with NSCLC, particularly among patients with ALK rearrangements.


Annals of Oncology | 2011

Implementing multiplexed genotyping of non-small-cell lung cancers into routine clinical practice

Lecia V. Sequist; Rebecca S. Heist; Alice T. Shaw; Panos Fidias; Rachel Rosovsky; Jennifer S. Temel; Inga T. Lennes; Subba R. Digumarthy; Belinda A. Waltman; E. Bast; Swathi Tammireddy; L. Morrissey; Alona Muzikansky; S. B. Goldberg; Justin F. Gainor; Colleen L. Channick; John C. Wain; Henning A. Gaissert; Dean M. Donahue; Ashok Muniappan; Cameron D. Wright; Henning Willers; Douglas J. Mathisen; Noah C. Choi; José Baselga; Thomas J. Lynch; Leif W. Ellisen; Mari Mino-Kenudson; Darrell R. Borger; Anthony John Iafrate

BACKGROUND Personalizing non-small-cell lung cancer (NSCLC) therapy toward oncogene addicted pathway inhibition is effective. Hence, the ability to determine a more comprehensive genotype for each case is becoming essential to optimal cancer care. METHODS We developed a multiplexed PCR-based assay (SNaPshot) to simultaneously identify >50 mutations in several key NSCLC genes. SNaPshot and FISH for ALK translocations were integrated into routine practice as Clinical Laboratory Improvement Amendments-certified tests. Here, we present analyses of the first 589 patients referred for genotyping. RESULTS Pathologic prescreening identified 552 (95%) tumors with sufficient tissue for SNaPshot; 51% had ≥1 mutation identified, most commonly in KRAS (24%), EGFR (13%), PIK3CA (4%) and translocations involving ALK (5%). Unanticipated mutations were observed at lower frequencies in IDH and β-catenin. We observed several associations between genotypes and clinical characteristics, including increased PIK3CA mutations in squamous cell cancers. Genotyping distinguished multiple primary cancers from metastatic disease and steered 78 (22%) of the 353 patients with advanced disease toward a genotype-directed targeted therapy. CONCLUSIONS Broad genotyping can be efficiently incorporated into an NSCLC clinic and has great utility in influencing treatment decisions and directing patients toward relevant clinical trials. As more targeted therapies are developed, such multiplexed molecular testing will become a standard part of practice.


PLOS ONE | 2011

BRAF V600E Mutations are Common in Pleomorphic Xanthoastrocytoma: Diagnostic and Therapeutic Implications

Dora Dias-Santagata; Quynh Lam; Kathy Vernovsky; Natalie Vena; Jochen K. Lennerz; Darrell R. Borger; Tracy T. Batchelor; Keith L. Ligon; A. John Iafrate; Azra H. Ligon; David N. Louis; Sandro Santagata

Pleomorphic xanthoastrocytoma (PXA) is low-grade glial neoplasm principally affecting children and young adults. Approximately 40% of PXA are reported to recur within 10 years of primary resection. Upon recurrence, patients receive radiation therapy and conventional chemotherapeutics designed for high-grade gliomas. Genetic changes that can be targeted by selective therapeutics have not been extensively evaluated in PXA and ancillary diagnostic tests to help discriminate PXA from other pleomorphic and often more aggressive astrocytic malignancies are limited. In this study, we apply the SNaPshot multiplexed targeted sequencing platform in the analysis of brain tumors to interrogate 60 genetic loci that are frequently mutated in 15 cancer genes. In our analysis we detect BRAF V600E mutations in 12 of 20 (60%) WHO grade II PXA, in 1 of 6 (17%) PXA with anaplasia and in 1 glioblastoma arising in a PXA. Phospho-ERK was detected in all tumors independent of the BRAF mutation status. BRAF duplication was not detected in any of the PXA cases. BRAF V600E mutations were identified in only 2 of 71 (2.8%) glioblastoma (GBM) analyzed, including 1 of 9 (11.1%) giant cell GBM (gcGBM). The finding that BRAF V600E mutations are common in the majority of PXA has important therapeutic implications and may help in differentiating less aggressive PXAs from lethal gcGBMs and GBMs.


The Journal of Molecular Diagnostics | 2011

A Platform for Rapid Detection of Multiple Oncogenic Mutations With Relevance to Targeted Therapy in Non-Small-Cell Lung Cancer

Zengliu Su; Dora Dias-Santagata; MarKeesa Duke; Katherine E. Hutchinson; Ya Lun Lin; Darrell R. Borger; Christine H. Chung; Pierre P. Massion; Cindy L. Vnencak-Jones; A. John Iafrate; William Pao

The identification of somatically acquired tumor mutations is increasingly important in the clinical management of cancer because the sensitivity of targeted drugs is related to the genetic makeup of individual tumors. Thus, mutational profiles of tumors can help prioritize anticancer therapy. We report herein the development and validation of two multiplexed assays designed to detect in DNA from FFPE tissue more than 40 recurrent mutations in nine genes relevant to existing and emerging targeted therapies in lung cancer. The platform involves two methods: a screen (SNaPshot) based on multiplex PCR, primer extension, and capillary electrophoresis that was designed to assess for 38 somatic mutations in eight genes (AKT1, BRAF, EGFR, KRAS, MEK1, NRAS, PIK3CA, and PTEN) and a PCR-based sizing assay that assesses for EGFR exon 19 deletions, EGFR exon 20 insertions, and HER2 exon 20 insertions. Both the SNaPshot and sizing assays can be performed rapidly, with minimal amounts of genetic material. Compared with direct sequencing, in which mutant DNA needs to compose 25% or more of the total DNA to easily detect a mutation, the SNaPshot and sizing assays can detect mutations in samples in which mutant DNA composes 1.56% to 12.5% and 1.56% to 6.25% of the total DNA, respectively. These robust, reliable, and relatively inexpensive assays should help accelerate adoption of a genotype-driven approach in the treatment of lung cancer.


Cancer | 2011

Phase 1/2 Study of Everolimus in Advanced Hepatocellular Carcinoma

Andrew X. Zhu; Thomas Adam Abrams; Rebecca A. Miksad; Lawrence S. Blaszkowsky; Jeffrey A. Meyerhardt; Hui Zheng; Alona Muzikansky; Jeffrey W. Clark; Eunice L. Kwak; Deborah Schrag; Kathryn R. Jors; Charles S. Fuchs; A. John Iafrate; Darrell R. Borger; David P. Ryan

The phosphoinositide 3‐kinase/Akt/mammalian target of rapamycin pathway plays a critical role in the pathogenesis of hepatocellular carcinoma (HCC). We performed a single‐arm, phase 1/2 study of everolimus in patients with advanced HCC.


Nature Communications | 2015

RB loss in resistant EGFR mutant lung adenocarcinomas that transform to small-cell lung cancer

Matthew J. Niederst; Lecia V. Sequist; John T. Poirier; Craig H. Mermel; Elizabeth L. Lockerman; Angel R. Garcia; Ryohei Katayama; Carlotta Costa; Kenneth N. Ross; Teresa Moran; Emily Howe; L. Fulton; Hillary Mulvey; Lindsay A. Bernardo; Farhiya Mohamoud; Norikatsu Miyoshi; Paul A. VanderLaan; Daniel B. Costa; Pasi A. Jänne; Darrell R. Borger; Sridhar Ramaswamy; Toshi Shioda; Anthony John Iafrate; Gad Getz; Charles M. Rudin; Mari Mino-Kenudson; Jeffrey A. Engelman

Tyrosine kinase inhibitors are effective treatments for non-small-cell lung cancers (NSCLCs) with epidermal growth factor receptor (EGFR) mutations. However, relapse typically occurs after an average of 1 year of continuous treatment. A fundamental histological transformation from NSCLC to small-cell lung cancer (SCLC) is observed in a subset of the resistant cancers, but the molecular changes associated with this transformation remain unknown. Analysis of tumour samples and cell lines derived from resistant EGFR mutant patients revealed that Retinoblastoma (RB) is lost in 100% of these SCLC transformed cases, but rarely in those that remain NSCLC. Further, increased neuroendocrine marker and decreased EGFR expression as well as greater sensitivity to BCL2 family inhibition are observed in resistant SCLC transformed cancers compared with resistant NSCLCs. Together, these findings suggest that this subset of resistant cancers ultimately adopt many of the molecular and phenotypic characteristics of classical SCLC.


PLOS ONE | 2011

EZH2 Codon 641 Mutations are Common in BCL2- Rearranged Germinal Center B Cell Lymphomas

Russell J.H. Ryan; Mai Nitta; Darrell R. Borger; Lawrence R. Zukerberg; Judith A. Ferry; Nancy Lee Harris; A. John Iafrate; Bradley E. Bernstein; Aliyah R. Sohani; Long P. Le

Mutations at codon 641 of EZH2 are recurrent in germinal center B cell lymphomas, and the most common variants lead to altered EZH2 enzymatic activity and enhanced tri-methylation of histone H3 at lysine 27, a repressive chromatin modification. As an initial step toward screening patients for cancer genotype-directed therapy, we developed a screening assay for EZH2 codon 641 mutations amenable for testing formalin-fixed clinical specimens, based on the sensitive SNaPshot single nucleotide extension technology. We detected EZH2 mutations in 12/55 (22%) follicular lymphomas (FL), 5/35 (14%) diffuse large B cell lymphomas with a germinal center immunophenotype (GCB-DLBCL), and 2/11 (18%) high grade B cell lymphomas with concurrent rearrangements of BCL2 and MYC. No EZH2 mutations were detected in cases of Burkitt lymphoma (0/23). EZH2 mutations were frequently associated with the presence of BCL2 rearrangement (BCL2-R) in both the FL (28% of BCL-R cases versus 0% of BCL2-WT cases, p<0.05) and GCB-DLBCL groups (33% of BCL2-R cases versus 4% of BCL2-WT cases, p<0.04), and across all lymphoma types excluding BL (27% of BCL2-R cases versus 3% of BCL2-WT cases, p<0.003). We confirmed gain-of-function activity for all previously reported EZH2 codon 641 mutation variants. Our findings suggest that EZH2 mutations constitute an additional genetic “hit” in many BCL2-rearranged germinal center B cell lymphomas. Our work may be helpful in the selection of lymphoma patients for future trials of pharmacologic agents targeting EZH2 and EZH2-regulated pathways.


Blood | 2012

Prospective serial evaluation of 2-hydroxyglutarate, during treatment of newly diagnosed acute myeloid leukemia, to assess disease activity and therapeutic response

Amir T. Fathi; Hossein Sadrzadeh; Darrell R. Borger; Karen K. Ballen; Philip C. Amrein; Eyal C. Attar; Julia Foster; Meghan Burke; Hector U. Lopez; Matulis Cr; Edmonds Km; Anthony John Iafrate; Kimberly Straley; Katherine Yen; Samuel V. Agresta; David P. Schenkein; Hill C; Emadi A; Donna Neuberg; Richard Stone; Yi-Bin Chen

Mutations of genes encoding isocitrate dehydrogenase (IDH1 and IDH2) have been recently described in acute myeloid leukemia (AML). Serum and myeloblast samples from patients with IDH-mutant AML contain high levels of the metabolite 2-hydroxyglutarate (2-HG), a product of the altered IDH protein. In this prospective study, we sought to determine whether 2-HG can potentially serve as a noninvasive biomarker of disease burden through serial measurements in patients receiving conventional therapy for newly diagnosed AML. Our data demonstrate that serum, urine, marrow aspirate, and myeloblast 2-HG levels are significantly higher in IDH-mutant patients, with a correlation between baseline serum and urine 2-HG levels. Serum and urine 2-HG, along with IDH1/2-mutant allele burden in marrow, decreased with response to treatment. 2-HG decrease was more rapid with induction chemotherapy compared with DNA-methyltransferase inhibitor therapy. Our data suggest that serum or urine 2-HG may serve as noninvasive biomarkers of disease activity for IDH-mutant AML.

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