Association of NOS3 and ANGPT2 Gene Polymorphisms with Survival in Patients with Hepatocellular Carcinoma Receiving Sorafenib: Results of the Multicenter Prospective INNOVATE Study
CLINICAL CANCER RESEARCH
Authors: Casadei-Gardini, Andrea; Marisi, Giorgia; Dadduzio, Vincenzo; Gramantieri, Laura; Faloppi, Luca; Ulivi, Paola; Foschi, Francesco Giuseppe; Tamburini, Emiliano; Vivaldi, Caterina; Rizzato, Mario Domenico; Ielasi, Luca; Canale, Matteo; Conti, Fabio; Rudnas, Britt; Fornaro, Lorenzo; Silvestris, Nicola; Silletta, Marianna; Cardellino, Giovanni Gerardo; Lonardi, Sara; Fornari, Francesca; Orsi, Giulia; Rovesti, Giulia; Zagonel, Vittorina; Cascinu, Stefano; Scartozzi, Mario
Abstract
Purpose: After 10 years of clinical practice and research studies, there are still no validated prognostic or predictive factors of response to sorafenib for hepatocellular carcinoma (HCC). On the basis of the results of our two retrospective studies, we designed the multicenter INNOVATE study with the aim to validate the role of nitric oxide synthase 3 (NOS3) and ANGPT2 polymorphisms in patients with HCC treated with sorafenib [NCT02786342]. Patients and Methods: This prospective multicenter study was conducted at 10 centers in Italy. All eligible patients received a continuous oral treatment with 400 mg of sorafenib twice daily. Genotyping analysis was performed for NOS3 (rs2070744) and ANGPT2 SNPs (rs55633437). The primary outcome was progression-free survival (PFS), whereas secondary outcomes included overall survival (OS) and disease-control rate. Results: A total of 165 patients were enrolled between March 2016 and June 2018. NOS3 rs2070744 CC/CT genotypes were significantly associated with a higher median PFS (5.9 months vs. 2.4 months; HR = 0.43; P = 0.0007) and OS (15.7 months vs. 8.6 months; HR = 0.38; P < 0.0001) compared with TT genotype. There was no statistically significant association between ANGPT2 rs55633437 TT/GT genotypes and PFS (2.4 months vs. 5.7 months; HR = 1.93; P = 0.0833) and OS (15.1 months vs. 13.0 months; HR = 2.68; P = 0.55) when compared with the other genotype. Following adjustment for clinical covariates, multivariate analysis confirmed NOS3 as an independent prognostic factor for PFS (HR = 0.50; P = 0.0128) and OS (HR = 0.29; P = 0.0041). Conclusions: The INNOVATE study met the primary endpoint, confirming that patients with advanced HCC with NOS3 rs2070744 CC/CT genotypes had a better prognosis with respect to TT genotype patients.
Clonal Dominance With Retroviral Vector Insertions Near the ANGPT1 and ANGPT2 Genes in a Human Xenotransplant Mouse Model
MOLECULAR THERAPY-NUCLEIC ACIDS
Authors: Haemmerle, Reinhard; Phaltane, Ruhi; Rothe, Michael; Schroeder, Simon; Schambach, Axel; Moritz, Thomas; Modlich, Ute
Abstract
Insertional leukemogenesis represents the major risk factor of hematopoietic stem cell (HSC) based gene therapy utilizing integrating viral vectors. To develop a pre-clinical model for the evaluation of vector-related genotoxicity directly in the relevant human target cells, cord blood CD34(+) HSCs were transplanted into immunodeficient NOD. SCID. IL2rg(-/-) (NSG) mice after transduction with an LTR-driven gammaretroviral vector (GV). Furthermore, we specifically investigated the effect of prolonged in vitro culture in the presence of cytokines recently described to promote HSC expansion or maintenance. Clonality of human hematopoiesis in NSG mice was assessed by high throughput insertion site analyses and validated by insertion site-specific PCR depicting a GV typical integration profile with insertion sites resembling to 25% those of clinical studies. No overrepresentation of integrations in the vicinity of cancer-related genes was observed, however, several dominant clones were identified including two clones harboring integrations in the ANGPT1 and near the ANGPT2 genes associated with deregulated ANGPT1- and ANGPT2-mRNA levels. While these data underscore the potential value of the NSG model, our studies also identified short-comings such as overall low numbers of engrafted HSCs, limited in vivo observation time, and the challenges of in-depth insertion site analyses by low contribution of gene modified hematopoiesis.