Randomized Phase II Adjuvant Chemotherapy ± FANG™ in Colorectal Carcinoma With Liver Metastases
Summary
Preliminary studies with a variety of vaccines suggest target accessibility (potential immunogenicity) in a variety of solid tumors to immune directed approaches. In an effort to overcome limitations of immunostimulatory cancer vaccines, Gradalis has designed a novel autologous vaccine to address inability to fully identify cancer associated antigens, antigen recognition by the immune system (i.e. antigen--\>immunogen), effector potency, and cancer-induced resistance. In an effort to overcome limitations of immunostimulatory cancer vaccines, we designed a novel dual-modulatory autologous whole cell vaccine, Vigil™, incorporating the rhGMCSF transgene and the bifunctional shRNAfurin (to block proprotein conversion to active TGFb1 and b2) to 1) address the inability to fully identify cancer associated antigens, 2) effect antigen recognition by the immune system, 3) enhance effector potency, and 4) subvert endogenous cancer-induced immune resistance. We have also completed the Phase I assessment of Vigil™ vaccine in 30 advanced solid tumor patients (1.0 x 10\^7 cells/injection/month for a maximum of 12 vaccinations) who have not experienced any significant adverse effects following 144 vaccinations, including 6 patients with colorectal carcinoma. Plasmid functionality, immune biomarker response, and preliminary evidence of anticancer activity have been observed. This is a two-part Phase II study of the Vigil™ autologous vaccine. Six patients will be enrolled into the Part 1 of the study to receive intradermal autologous Vigil™ cancer vaccine (1.0 x 10\^7 cells/injection; maximum of 12 vaccinations). Part 2 of the study will be a randomized Phase II study of sandwich or adjuvant chemotherapy and intradermal autologous Vigil™ cancer vaccine (1.0 x 10\^7 cells/injection; maximum of 12 vaccinations) versus sandwich or adjuvant chemotherapy and placebo in patients with colorectal carcinoma with either synchronous or metachronous liver metastases (CLM +/= pulmonary metastases) following resection +/= ablation with curative intent.Sandwich therapy indicates a combination of both pre-operative and postoperative chemotherapy as opposed to neo-adjuvant (all chemotherapy prior to surgery) or adjuvant (all chemotherapy following surgery) therapy. A minimum harvest aliquot to produce 4 monthly injections will be required for entry into the study. Patients in whom insufficient tissue (\<4 doses) is collected or whose vaccine fails manufacturing release criteria will not receive vaccine.
Timeline
- Start
- 2012-03
- Primary completion
- 2016-08
- Completion
- 2016-08
Publications
- Background Ghisoli M, Barve M, Schneider R, Mennel R, Lenarsky C, Wallraven G, Pappen BO, LaNoue J, Kumar P, Nemunaitis D, Roth A, Nemunaitis J, Whiting S, Senzer N, Fletcher FA, Nemunaitis J. Pilot Trial of FANG Immunotherapy in Ewing's Sarcoma. Mol Ther. 2015 Jun;23(6):1103-1109. doi: 10.1038/mt.2015.43. Epub 2015 Mar 19.
- Background Senzer N, Barve M, Kuhn J, Melnyk A, Beitsch P, Lazar M, Lifshitz S, Magee M, Oh J, Mill SW, Bedell C, Higgs C, Kumar P, Yu Y, Norvell F, Phalon C, Taquet N, Rao DD, Wang Z, Jay CM, Pappen BO, Wallraven G, Brunicardi FC, Shanahan DM, Maples PB, Nemunaitis J. Phase I trial of "bi-shRNAi(furin)/GMCSF DNA/autologous tumor cell" vaccine (FANG) in advanced cancer. Mol Ther. 2012 Mar;20(3):679-86. doi: 10.1038/mt.2011.269. Epub 2011 Dec 20.
- Background Nemunaitis J, Barve M, Orr D, Kuhn J, Magee M, Lamont J, Bedell C, Wallraven G, Pappen BO, Roth A, Horvath S, Nemunaitis D, Kumar P, Maples PB, Senzer N. Summary of bi-shRNA/GM-CSF augmented autologous tumor cell immunotherapy (FANG) in advanced cancer of the liver. Oncology. 2014;87(1):21-9. doi: 10.1159/000360993. Epub 2014 Jun 25.
- Background Ghisoli M, Barve M, Mennel R, Lenarsky C, Horvath S, Wallraven G, Pappen BO, Whiting S, Rao D, Senzer N, Nemunaitis J. Three-year Follow up of GMCSF/bi-shRNA(furin) DNA-transfected Autologous Tumor Immunotherapy (Vigil) in Metastatic Advanced Ewing's Sarcoma. Mol Ther. 2016 Aug;24(8):1478-83. doi: 10.1038/mt.2016.86. Epub 2016 Apr 25.
- Background Ghisoli M, Rutledge M, Stephens PJ, Mennel R, Barve M, Manley M, Oliai BR, Murphy KM, Manning L, Gutierrez B, Rangadass P, Walker A, Wang Z, Rao D, Adams N, Wallraven G, Senzer N, Nemunaitis J. Case Report: Immune-mediated Complete Response in a Patient With Recurrent Advanced Ewing Sarcoma (EWS) After Vigil Immunotherapy. J Pediatr Hematol Oncol. 2017 May;39(4):e183-e186. doi: 10.1097/MPH.0000000000000822.
- Background Oh J, Barve M, Matthews CM, Koon EC, Heffernan TP, Fine B, Grosen E, Bergman MK, Fleming EL, DeMars LR, West L, Spitz DL, Goodman H, Hancock KC, Wallraven G, Kumar P, Bognar E, Manning L, Pappen BO, Adams N, Senzer N, Nemunaitis J. Phase II study of Vigil(R) DNA engineered immunotherapy as maintenance in advanced stage ovarian cancer. Gynecol Oncol. 2016 Dec;143(3):504-510. doi: 10.1016/j.ygyno.2016.09.018. Epub 2016 Sep 24.
- Results Long-term followup of bi-shRNAfurin and GMCSF augmented autologous tumor cell immunotherapy treated colorectal cancer patients in phase I and IIa studies. Minal A. Barve, Anton M. Melnyk, Luisa Manning, Gladice Wallraven, Martin Birkhofer, and John J. Nemunaitis Journal of Clinical Oncology 2017 35:15_suppl, e15100-e15100
- Results Barve V, Adams N, Stanbery L, Manning L, Horvath S, Wallraven G, Bognar E, Barve M, Nemunaitis J. Case Report: Marked Survival Advantage of Two Colorectal Cancer Patients with Liver Metastases Treated with Vigil and FOLFOX-6. Vaccines (Basel). 2021 Oct 18;9(10):1201. doi: 10.3390/vaccines9101201.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | Vigil | Vaccine | 1e+07 cells | Other |