A Novel Oncolytic Adenovirus Expressing Escherichia coli Cytosine Deaminase Exhibits Potent Antitumor Effect on Human Solid Tumors

2010 ◽  
Vol 25 (4) ◽  
pp. 487-495 ◽  
Author(s):  
Jufeng Zhang ◽  
Fang Wei ◽  
Huiping Wang ◽  
Huiming Li ◽  
Wei Qiu ◽  
...  
2014 ◽  
Vol 6 (8) ◽  
Author(s):  
Winston Timp ◽  
Hector Corrada Bravo ◽  
Oliver G McDonald ◽  
Michael Goggins ◽  
Chris Umbricht ◽  
...  

Gene Therapy ◽  
2007 ◽  
Vol 14 (14) ◽  
pp. 1111-1119 ◽  
Author(s):  
S A Kaliberov ◽  
J M Market ◽  
G Y Gillespie ◽  
V Krendelchtchikova ◽  
D Della Manna ◽  
...  

1972 ◽  
Vol 118 (4) ◽  
pp. 323-325 ◽  
Author(s):  
S. I. Ahmad ◽  
R. H. Pritchard

2013 ◽  
Vol 31 (15) ◽  
pp. 1874-1884 ◽  
Author(s):  
Rodrigo Dienstmann ◽  
Jordi Rodon ◽  
Jordi Barretina ◽  
Josep Tabernero

Recent discoveries of genomic alterations that underlie and promote the malignant phenotype, together with an expanded repertoire of targeted agents, have provided many opportunities to conduct hypothesis-driven clinical trials. The ability to profile each unique cancer for actionable aberrations by using high-throughput technologies in a cost-effective way provides unprecedented opportunities for using matched therapies in a selected patient population. The major challenges are to integrate and make biologic sense of the substantial genomic data derived from multiple platforms. We define two different approaches for the analysis, interpretation, and clinical applicability of genomic data: (1) the genomically stratified model originates from the “one test-one drug” paradigm and is currently being expanded with an upfront multicategorical approach following recent advances in multiplexed genotyping platforms; and (2) the comprehensive assessment model is based on whole-genome, -exome, and -transcriptome data and allows identification of novel drivers and subsequent therapies in the experimental setting. Tumor heterogeneity and evolution of the diverse populations of cancer cells during cancer progression, influenced by the effects of systemic treatments, will need to be addressed in the new scenario of early drug development. Logistical issues related to prescreening strategies and trial allocation, in addition to concerns in the economic and ethical domains, must be taken into consideration. Here we present a historical view of how increased understanding of cancer genomics has been translated to the clinic and discuss the prospects and challenges for further implementation of a personalized treatment strategy for human solid tumors.


2021 ◽  
Vol 9 (Suppl 3) ◽  
pp. A396-A396
Author(s):  
Lukasz Kuryk ◽  
Anne-Sophie Moller ◽  
Sandeep Kumar ◽  
Alexander Shoushtari ◽  
Luis Paz Ares ◽  
...  

BackgroundSolid tumors exhibit highly variable compositions of immune infiltrates. Therapeutic compounds driving uniform remodeling of tumor microenvironment (TME) across tumor types may improve the efficacy of cancer immunotherapy. ONCOS-102, a granulocyte-macrophage colony stimulating factor (GM-CSF)-expressing oncolytic adenovirus (Ad5/3-D24-GMCSF), was tested for its safety, therapeutic efficacy and capacity to remodel TME in recently completed phase I/II clinical studies in anti-PD-1 refractory melanoma (NCT03003676) and malignant pleural mesothelioma (MPM) (NCT02879669).MethodsBiopsies were obtained from tumor lesions of patients treated with intra-tumoral injections of ONCOS-102 in combination with chemotherapy or pembrolizumab for MPM and melanoma, respectively. Tumor immune infiltrates were analyzed by immunohistology using several antibody panels. On-treatment biopsies were compared to paired baseline samples as wells as to samples from control patients treated with chemotherapy alone in the case of MPM. Gene expression data obtained by next generation RNA sequencing were used to complement the immunohistology analysis and all results were correlated to clinical outcomes.ResultsComparative TME analysis of anti-PD-1 refractory melanoma and MPM tumors revealed noticeably lower baseline T-cell infiltration in mesothelioma. Thus, fractions of CD8+ T-cells were significantly below 10% in 80% of MPM biopsies while approaching or exceeding this level in 60% of melanoma baseline samples. Comparison of tumor biopsies obtained at baseline or on-treatment, demonstrated increased infiltration by both CD4+ and CD8+ T-cells in large proportions of melanoma (CD4+: 13/20 (65%); CD8+: 16/19 (84%) and MPM (CD4+: 10/15 (67%); CD8+: 9/15 (60%) tumor lesions in response to ONCOS-102. Frequencies of cytotoxic T-cells with high granzyme-B expression also increased in response to the treatment in both tumor types, in particular when assessed as percentage of total CD8+ T-cells. Other observed changes induced by ONCOS-102 in samples taken from CR, PR and SD patients with MPM or melanoma included increased CD8/Treg ratio and modulation of PD-L1 expression. Biological and clinical importance of these findings was further supported by correlation between modulation of several subsets of genes related to the process of T-cell activation, such as cytotoxic granule components and co-stimulatory molecules, and clinical response to ONCOS-102 in melanoma and both tumor response and overall survival in MPM patients.ConclusionsONCOS-102 drives pro-inflammatory modulation of immune TME across tumor types of different origins, anatomical locations and immunological baseline characteristics. Our data support potential of ONCOS-102 to serve as a potent immune sensitizing agent in combination therapies with various classes of immunomodulatory compounds and chemotherapy.


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