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Author Spotlight: A Model to Study the Systemic and Local Dynamics of CD8+ T Cells During LN Metastasis
Published on: January 26, 2024
Specific cannabinoids revive adaptive immunity by reversing immune evasion mechanisms in metastatic tumours
Sarah Dada1,2,3,4,5, Samantha L S Ellis1,2,3,4,6, Christi Wood7
1Michael Smith Laboratories, University of British Columbia, Vancouver, BC, Canada.
Abstract:
Emerging cancers are sculpted by neo-Darwinian selection for superior growth and survival but minimal immunogenicity; consequently, metastatic cancers often evolve common genetic and epigenetic signatures to elude immune surveillance. Immune subversion by metastatic tumours can be achieved through several mechanisms; one of the most frequently observed involves the loss of expression or mutation of genes composing the MHC-I antigen presentation machinery (APM) that yields tumours invisible to Cytotoxic T lymphocytes, the key component of the adaptive cellular immune response. Fascinating ethnographic and experimental findings indicate that cannabinoids inhibit the growth and progression of several categories of cancer; however, the mechanisms underlying these observations remain clouded in uncertainty. Here, we screened a library of cannabinoid compounds and found molecular selectivity amongst specific cannabinoids, where related molecules such as Δ9-tetrahydrocannabinol, cannabidiol, and cannabigerol can reverse the metastatic immune escape phenotype in vitro by inducing MHC-I cell surface expression in a wide variety of metastatic tumours that subsequently sensitizing tumours to T lymphocyte recognition. Remarkably, H3K27Ac ChIPseq analysis established that cannabigerol and gamma interferon induce overlapping epigenetic signatures and key gene pathways in metastatic tumours related to cellular senescence, as well as APM genes involved in revealing metastatic tumours to the adaptive immune response. Overall, the data suggest that specific cannabinoids may have utility in cancer immunotherapy regimens by overcoming immune escape and augmenting cancer immune surveillance in metastatic disease. Finally, the fundamental discovery of the ability of cannabinoids to alter epigenetic programs may help elucidate many of the pleiotropic medicinal effects of cannabinoids on human physiology.
Insights
Specific cannabinoids like cannabigerol can reverse cancer
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Metastatic cancers develop immune evasion through genetic and epigenetic changes, often by downregulating the MHC-I antigen presentation machinery (APM).
- This immune subversion makes tumors invisible to cytotoxic T lymphocytes, a key part of the adaptive immune response.
- Cannabinoids have shown potential in inhibiting cancer growth, but their mechanisms remain unclear.
Purpose of the Study:
- To investigate the mechanisms by which cannabinoids affect cancer immune escape.
- To identify specific cannabinoids that can restore T lymphocyte recognition in metastatic tumors.
- To explore the epigenetic effects of cannabinoids on cancer cells.
Main Methods:
- Screening of a cannabinoid library to identify compounds affecting immune escape.
- In vitro assays to assess the impact of cannabinoids on MHC-I expression in metastatic tumor cells.
- H3K27Ac ChIP-seq analysis to compare epigenetic changes induced by specific cannabinoids and gamma interferon.
Main Results:
- Specific cannabinoids, including cannabigerol, were found to reverse the metastatic immune escape phenotype in vitro.
- These cannabinoids induce cell surface expression of MHC-I in various metastatic tumors, sensitizing them to T lymphocyte recognition.
- Cannabigerol and gamma interferon induced overlapping epigenetic signatures and gene pathways related to cellular senescence and APM genes.
Conclusions:
- Specific cannabinoids may overcome immune escape and enhance cancer immune surveillance in metastatic disease, suggesting utility in immunotherapy.
- Cannabinoids can alter epigenetic programs, potentially explaining their diverse medicinal effects.
- Further research into cannabinoids could lead to novel cancer immunotherapy strategies.
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