Target intelligence / Profile preview

Patient-specific neoantigen peptide-major histocompatibility complex (pMHC) on tumor-associated stromal and vascular cells (Neoantigen-pMHC)

Target
Neoantigen-pMHC
Molecular classification
Protein complex, Antigen-presenting complex, Major histocompatibility complex
01

Overview

Patient-specific neoantigen peptide-major histocompatibility complex (pMHC) targets on tumor-associated stromal and vascular cells represent a specialized class of immunotherapy targets where mutated, tumor-derived peptides are presented by MHC molecules on non-malignant cells within the tumor microenvironment (TME) (Alspach et al., Nature, 2019). This presentation occurs through the transfer of antigens from tumor cells to surrounding fibroblasts or endothelial cells, a process that renders the tumor's supporting infrastructure vulnerable to T-cell attack (Braumüller et al., Nature, 2013). By engineering T-cells to express receptors (TCRs) specific to these neoantigen-pMHC complexes, clinicians can induce a potent anti-tumor response that includes the collapse of the tumor vasculature and the destruction of the physical stroma (Sprouse et al., Journal of Clinical Investigation, 2023). Targeting the vasculature specifically can lead to rapid tumor debulking by cutting off nutrient supply and facilitating deeper infiltration of immune cells. This approach is particularly valuable for treating solid tumors where the TME often acts as a barrier to traditional therapies. The high specificity of neoantigens, which arise from somatic mutations absent in healthy tissue, significantly reduces the risk of systemic toxicity compared to shared tumor antigens (Blass & Ott, Nature Reviews Clinical Oncology, 2021). However, the requirement for personalized manufacturing and the potential for immune evasion through MHC downregulation remain significant therapeutic challenges.

Other names
Neoepitope-MHC complexTumor-specific antigen-HLA complexTSA-pMHCNeoantigen-HLA complexNeoantigen-pMHC complex
02

Mechanism of action

Recognition of the specific peptide-MHC complex by engineered or endogenous T-cell receptors (TCRs), triggering cytotoxic T-lymphocyte (CTL) mediated lysis of the target cell and release of pro-inflammatory cytokines (Schumacher & Schreiber, Science, 2015).

03

Biological functions

Antigen presentationImmune responseT-cell activationIntercellular communication
04

Disease associations

CancerSolid tumors
05

Safety considerations

Off-target cross-reactivity with self-peptides (Linette et al., Blood, 2013)Cytokine release syndrome (CRS)On-target off-tumor toxicityImmune evasion via MHC downregulation
06

Interacting drugs

Personalized TCR-T cell therapies (e.g., PACT-010)

3 more in the full profile.

07

Biomarkers

HLA-A/B/C genotypeTumor mutational burden (TMB)Neoantigen loadMHC Class I/II expression on stromal cellsTCR repertoire analysis

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