A Frameshift Peptide Neoantigen-Based Vaccine for Mismatch Repair-Deficient Cancers: A Phase I/IIa Clinical Trial
Matthias Kloor1,2,3, Miriam Reuschenbach4,2,3, Claudia Pauligk5
1Department of Applied Tumor Biology, Institute of Pathology, University Hospital Heidelberg, Heidelberg, Germany. matthias.kloor@med.uni-heidelberg.de.
Purpose:
DNA mismatch repair (MMR) deficiency is a hallmark of Lynch syndrome, the most common inherited cancer syndrome. MMR-deficient cancer cells accumulate numerous insertion/deletion mutations at microsatellites. Mutations of coding microsatellites (cMS) lead to the generation of immunogenic frameshift peptide (FSP) neoantigens. As the evolution of MMR-deficient cancers is triggered by mutations inactivating defined cMS-containing tumor suppressor genes, distinct FSP neoantigens are shared by most MMR-deficient cancers. To evaluate safety and immunogenicity of an FSP-based vaccine, we performed a clinical phase I/IIa trial (Micoryx).
Patients And Methods:
The trial comprised three cycles of four subcutaneous vaccinations (FSP neoantigens derived from mutant AIM2, HT001, TAF1B genes) mixed with Montanide ISA-51 VG over 6 months. Inclusion criteria were history of MMR-deficient colorectal cancer (UICC stage III or IV) and completion of chemotherapy. Phase I evaluated safety and toxicity as primary endpoint (six patients), phase IIa addressed cellular and humoral immune responses (16 patients).
Results:
Vaccine-induced humoral and cellular immune responses were observed in all patients vaccinated per protocol. Three patients developed grade 2 local injection site reactions. No vaccination-induced severe adverse events occurred. One heavily pretreated patient with bulky metastases showed stable disease and stable CEA levels over 7 months.
Conclusions:
FSP neoantigen vaccination is systemically well tolerated and consistently induces humoral and cellular immune responses, thus representing a promising novel approach for treatment and even prevention of MMR-deficient cancer.
Insights
Frameshift peptide (FSP) neoantigen vaccination is safe and effective in generating immune responses in patients with DNA mismatch repair-deficient cancers. This novel approach shows promise for treating and potentially preventing these aggressive tumors.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- DNA mismatch repair (MMR) deficiency characterizes Lynch syndrome, the most common inherited cancer syndrome.
- MMR-deficient cancers accumulate mutations in microsatellites, generating immunogenic frameshift peptide (FSP) neoantigens.
- These shared FSP neoantigens offer a potential target for cancer vaccines.
Purpose of the Study:
- To evaluate the safety and immunogenicity of an FSP neoantigen-based vaccine (Micoryx trial).
- To assess the vaccine's potential for treating MMR-deficient cancers.
Main Methods:
- A phase I/IIa clinical trial involving 22 patients with MMR-deficient colorectal cancer.
- Patients received four subcutaneous vaccinations of FSP neoantigens over 6 months, mixed with Montanide ISA-51 VG.
- Phase I focused on safety and toxicity; phase IIa assessed cellular and humoral immune responses.
Main Results:
- All vaccinated patients demonstrated vaccine-induced humoral and cellular immune responses.
- The vaccine was systemically well tolerated, with only grade 2 local injection site reactions observed in three patients.
- No severe adverse events were attributed to the vaccination; one patient achieved stable disease for 7 months.
Conclusions:
- FSP neoantigen vaccination is a safe and well-tolerated approach for MMR-deficient cancers.
- The vaccination consistently induces both humoral and cellular immune responses.
- This strategy represents a promising new avenue for the treatment and potential prevention of MMR-deficient cancers.
More Related Videos
09:56A Nonviral Approach to Generate Transient Chimeric Antigen Receptor T Cells Using mRNA for Cancer Immunotherapy
Published on: February 21, 2025
11:02Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
Related Concept Videos
Mismatch Repair
Mismatch Repair
The Mutator Protein Family Plays a Key Role in DNA Mismatch Repair
The human genome has more than 3 billion base pairs of DNA per cell. Prior to cell division, that vast amount of genetic...
Cancer Vaccines
Cancer vaccines come in two categories: preventive (prophylactic) and treatment (active). Preventive vaccines, such as the Human Papillomavirus (HPV) vaccine, protect against viruses that cause certain...
Tumor Immunotherapy
