Immune responses to tumour antigens: implications for antigen specific immunotherapy of cancer

D Jäger1, E Jäger, A Knuth

  • 1II. Medizinische Klinik, Hämatologie-Onkologie, Krankenhaus Nordwest, Steinbacher Hohl 2-26, 60488 Frankfurt am Main, Germany.

Insights

Cancer immunotherapies target tumour antigens using immune responses. Studies show that tumour-associated antigen peptides can induce anti-tumour effects, with enhanced responses using granulocyte macrophage stimulating factor (GM-CSF).

Area of Science:

  • Immunology
  • Oncology
  • Cancer Immunotherapy

Background:

  • Tumour-associated antigens are targets for cancer immunotherapy.
  • Categories include cancer testis (CT) antigens, melanocyte differentiation antigens, mutated self-antigens, overexpressed self-antigens, and viral antigens.
  • Clinical trials are investigating antigen-specific T-cell responses.

Purpose of the Study:

  • To assess the efficacy of antigen-specific cancer immunotherapy.
  • To evaluate immunological and clinical parameters for assessing immune responses.
  • To explore novel immunogenic antigens like NY-ESO-1.

Main Methods:

  • Administration of tumour-associated antigen peptides and proteins.
  • Assessment of delayed type hypersensitivity (DTH), cytotoxic T lymphocyte (CTL) responses, and tumour regression.
  • Use of granulocyte macrophage stimulating factor (GM-CSF) as an adjuvant.
  • Identification of new CT antigens based on spontaneous antibody responses.

Main Results:

  • Specific DTH and CTL responses, along with tumour regression, observed after peptide administration.
  • GM-CSF enhanced peptide-specific immune reactions by increasing antigen-presenting cells.
  • Complete tumour regression correlated with measurable peptide-specific CTL.
  • Immune escape mechanisms, including antigen loss or MHC class I allele loss, were observed in some cases.
  • The novel CT antigen NY-ESO-1 shows high immunogenicity with spontaneous immune responses in 50% of patients.

Conclusions:

  • Antigen-specific immunotherapy can induce anti-tumour immune responses and tumour regression.
  • Adjuvants like GM-CSF can enhance immunotherapy efficacy.
  • Mechanisms of immune escape need to be addressed to improve long-term outcomes.
  • NY-ESO-1 represents a promising target for novel cancer immunotherapies.

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