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Updated: Mar 18, 2026

Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
Published on: March 7, 2025
Emerging therapies provide new opportunities to reshape the multifaceted interactions between the immune system and
M Pizzi1,2, M Boi1, F Bertoni3,4
1Department of Pathology and Laboratory Medicine, Weill Cornell Medical College, New York, NY, USA.
Abstract:
The acquisition of a complete neoplastic phenotype requires cancer cells to develop escape mechanisms from the host immune system. This phenomenon, commonly referred to as 'immune evasion,' represents a hallmark of cancers and results from a Darwinian selection of the fittest tumor clones. First reported in solid tumors, cancer immunoescape characterizes several hematological malignancies. The biological bases of cancer immunoescape have recently been disclosed and include: (i) impaired human leukocyte antigen-mediated cancer cell recognition (B2M, CD58, CTIIA, CD80/CD86, CD28 and CTLA-4 mutations); (ii) deranged apoptotic mechanisms (reduced pro-apoptotic signals and/or increased expression of anti-apoptotic molecules); and (iii) changes in the tumor microenvironment involving regulatory T cells and tumor-associated macrophages. These immune-escape mechanisms characterize both Hodgkin and non-Hodgkin (B and T cell) lymphomas and represent a promising target for new anti-tumor therapies. In the present review, the principles of cancer immunoescape and their role in human lymphomagenesis are illustrated. Current therapies targeting these pathways and possible applications for lymphoma treatment are also addressed.
Insights
Cancer cells develop immune evasion to survive, a process seen in lymphomas. Understanding these escape mechanisms is key to developing new lymphoma treatments.
Area of Science:
- Oncology
- Immunology
Background:
- Cancer cells develop immune evasion, a hallmark of cancer, through Darwinian selection of fittest clones.
- Immune evasion is observed in hematological malignancies, including lymphomas, not just solid tumors.
Purpose of the Study:
- To review the principles of cancer immunoescape in human lymphomagenesis.
- To discuss current therapies targeting immune escape pathways for lymphoma treatment.
Main Methods:
- Review of biological bases of cancer immunoescape.
- Analysis of mutations affecting human leukocyte antigen-mediated recognition.
- Examination of alterations in apoptotic mechanisms.
- Investigation of tumor microenvironment changes.
Main Results:
- Cancer immunoescape involves impaired cancer cell recognition (e.g., B2M, CD58 mutations).
- Deranged apoptotic mechanisms and altered tumor microenvironment (Tregs, TAMs) contribute to immune evasion.
- These mechanisms are present in both Hodgkin and non-Hodgkin lymphomas.
Conclusions:
- Cancer immunoescape mechanisms are crucial in lymphomagenesis.
- Targeting these pathways offers promising therapeutic strategies for lymphoma treatment.
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