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Updated: Aug 12, 2026

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Immune responses to tumour antigens: implications for antigen specific immunotherapy of cancer
1II. Medizinische Klinik, Hämatologie-Onkologie, Krankenhaus Nordwest, Steinbacher Hohl 2-26, 60488 Frankfurt am Main, Germany.
Abstract:
Tumour associated antigens recognised by cellular or humoral effectors of the immune system are potential targets for antigen specific cancer immunotherapy. Different categories of cancer antigens have been identified that induce cytotoxic T lymphocyte (CTL) responses in vitro and in vivo, namely: (1) "cancer testis" (CT) antigens, expressed in different tumours and normal testis, (2) melanocyte differentiation antigens, (3) point mutations of normal genes, (4) self antigens that are overexpressed in malignant tissues, and (5) viral antigens. Clinical studies with peptides and proteins derived from these antigens have been initiated to study the efficacy of inducing specific CTL responses in vivo. Immunological and clinical parameters for the assessment of antigen specific immune responses have been defined-delayed type hypersensitivity (DTH), CTL, autoimmmune, and tumour regression responses. Specific DTH and CTL responses and tumour regression have been observed after the intradermal administration of tumour associated peptides alone. Peptide specific immune reactions were enhanced after using granulocyte macrophage stimulating factor (GM-CSF) as a systemic adjuvant by increasing the frequency of dermal antigen presenting Langerhans cells. Complete tumour regression has been observed in the context of measurable peptide specific CTL. However, in single cases with disease progression after an initial tumour response, either a loss of single antigens targeted by CTL or of the presenting major histocompatibility complex (MHC) class I allele was detected, pointing towards immunisation induced immune escape. Cytokines to modulate antigen and MHC class I expression in vivo are being evaluated to prevent immunoselection. Recently, a new CT antigen, NY-ESO-1, has been identified on the basis of spontaneous antibody responses to tumour associated antigens. NY-ESO-1 appears to be one of the most immunogenic antigens known to date, with spontaneous immune responses observed in 50% of patients with NY-ESO-1 expressing cancers. Clinical studies have been initiated to evaluate the immunogenicity of different NY-ESO-1 constructs to induce both humoral and cellular immune responses in vivo.
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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