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Published on: April 15, 2016
Intratumoral OH2, an oncolytic herpes simplex virus 2, in patients with advanced solid tumors: a multicenter, phase
Bo Zhang1, Jing Huang2,3, Jialin Tang1
1Department of Medical Oncology, National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Background:
OH2 is a genetically engineered oncolytic herpes simplex virus type 2 designed to selectively amplify in tumor cells and express granulocyte-macrophage colony-stimulating factor to enhance antitumor immune responses. We investigated the safety, tolerability and antitumor activity of OH2 as single agent or in combination with HX008, an anti-programmed cell death protein 1 antibody, in patients with advanced solid tumors.
Methods:
In this multicenter, phase I/II trial, we enrolled patients with standard treatment-refractory advanced solid tumors who have injectable lesions. In phase I, patients received intratumoral injection of OH2 at escalating doses (106, 107 and 108CCID50/mL) as single agent or with fixed-dose HX008. The recommended doses were then expanded in phase II. Primary endpoints were safety and tolerability defined by the maximum-tolerated dose and dose-limiting toxicities (DLTs) in phase I, and antitumor activity assessed per Response Evaluation Criteria in Solid Tumors (RECIST version 1.1) and immune-RECIST in phase II.
Results:
Between April 17, 2019 and September 22, 2020, 54 patients with metastatic cancers were enrolled. Forty patients were treated with single agent OH2, and 14 with OH2 plus HX008. No DLTs were reported with single agent OH2 in phase I. Four patients, having metastatic mismatch repair-proficient rectal cancer or metastatic esophageal cancer, achieved immune-partial response, with two from the single agent cohort and two from the combination cohort. The duration of response were 11.25+ and 14.03+ months for the two responders treated with single agent OH2, and 1.38+ and 2.56+ months for the two responders in the combination cohort. The most common treatment-related adverse event (TRAE) with single agent OH2 was fever (n=18, 45.0%). All TRAEs were of grade 1-2, except one case of grade 3 fever in the 108CCID50/mL group. No treatment-related serious AEs occurred. Single agent OH2 induced alterations in the tumor microenvironment, with clear increases in CD3+ and CD8+ cell density and programmed death-ligand 1 expression in the patients' post-treatment biopsies relative to baseline.
Conclusions:
Intratumoral injection of OH2 was well-tolerated, and demonstrated durable antitumor activity in patients with metastatic esophageal and rectal cancer. Further clinical development of OH2 as single agent or with immune checkpoint inhibitors in selected tumor types is warranted.
Insights
OH2, an oncolytic herpes simplex virus, showed promising safety and antitumor effects in advanced cancers. Further trials are recommended for OH2, alone or with immune checkpoint inhibitors.
Area of Science:
- Oncolytic virotherapy
- Immunotherapy
- Cancer research
Background:
- OH2 is a genetically engineered herpes simplex virus type 2 designed for tumor cell amplification and GM-CSF expression.
- It aims to enhance anti-tumor immune responses.
- This study investigated OH2's safety and efficacy in advanced solid tumors.
Purpose of the Study:
- To evaluate the safety and tolerability of intratumoral OH2.
- To assess the antitumor activity of OH2 as a single agent and in combination with HX008 (anti-PD-1 antibody).
- To explore OH2's impact on the tumor microenvironment.
Main Methods:
- A multicenter, phase I/II clinical trial was conducted.
- Patients with refractory advanced solid tumors received intratumoral OH2 at escalating doses, alone or with HX008.
- Safety, tolerability, and antitumor response (RECIST, immune-RECIST) were primary endpoints.
Main Results:
- 54 patients were enrolled; 40 received single-agent OH2, 14 received OH2 plus HX008.
- No dose-limiting toxicities were observed with single-agent OH2.
- Four patients achieved immune-partial response; single-agent OH2 increased CD3+, CD8+ T-cell density and PD-L1 expression in tumors.
Conclusions:
- Intratumoral OH2 demonstrated good tolerability and durable antitumor activity in patients with metastatic esophageal and rectal cancer.
- Further clinical development of OH2, as monotherapy or combined with immune checkpoint inhibitors, is warranted for selected tumor types.
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