Immunomodulatory activity of IR700-labelled affibody targeting HER2.
Justyna MączyńskaChiara Da PieveThomas A BurleyFlorian RaesAnant ShahJolanta SaczkoKevin J HarringtonGabriela Kramer-MarekPublished in: Cell death & disease (2020)
There is an urgent need to develop therapeutic approaches that can increase the response rate to immuno-oncology agents. Photoimmunotherapy has recently been shown to generate anti-tumour immunological responses by releasing tumour-associated antigens from ablated tumour cell residues, thereby enhancing antigenicity and adjuvanticity. Here, we investigate the feasibility of a novel HER2-targeted affibody-based conjugate (ZHER2:2395-IR700) selectively to induce cancer cell death in vitro and in vivo. The studies in vitro confirmed the specificity of ZHER2:2395-IR700 binding to HER2-positive cells and its ability to produce reactive oxygen species upon light irradiation. A conjugate concentration- and light irradiation-dependent decrease in cell viability was also demonstrated. Furthermore, light-activated ZHER2:2395-IR700 triggered all hallmarks of immunogenic cell death, as defined by the translocation of calreticulin to the cell surface, and the secretion of ATP, HSP70/90 and HMGB1 from dying cancer cells into the medium. Irradiating a co-culture of immature dendritic cells (DCs) and cancer cells exposed to light-activated ZHER2:2395-IR700 enhanced DC maturation, as indicated by augmented expression of CD86 and HLA-DR. In SKOV-3 xenografts, the ZHER2:2395-IR700-based phototherapy delayed tumour growth and increased median overall survival. Collectively, our results strongly suggest that ZHER2:2395-IR700 is a promising new therapeutic conjugate that has great potential to be applicable for photoimmunotherapy-based regimens.
Keyphrases
- cell death
- dendritic cells
- cancer therapy
- cell cycle arrest
- reactive oxygen species
- palliative care
- cell surface
- poor prognosis
- induced apoptosis
- single cell
- immune response
- drug delivery
- regulatory t cells
- risk assessment
- mesenchymal stem cells
- long non coding rna
- young adults
- endoplasmic reticulum stress
- bone marrow
- human health
- pi k akt
- lymph node metastasis
- nk cells
- virtual reality