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The Protein Secretome Is Altered in Rectal Cancer Tissue Compared to Normal Rectal Tissue, and Alterations in the
Aisling B Heeran1, Margaret R Dunne1, Maria E Morrissey1
1Trinity St. James's Cancer Institute, Trinity Translational Medicine Institute, Department of Surgery, Trinity College Dublin and St. James's Hospital, D08 W9RT Dublin 8, Ireland.
Abstract:
Locally advanced rectal cancer is treated with neoadjuvant-chemoradiotherapy; however, only ~22% of patients achieve a complete response, and resistance mechanisms are poorly understood. The role of inflammation and immune cell biology in this setting is under-investigated. In this study, we profiled the inflammatory protein secretome of normal (non-cancer) (n = 8) and malignant rectal tissue (n = 12) pre- and post-radiation in human ex vivo explant models and examined the influence of these untreated and treated secretomes on dendritic cell biology (n = 8 for cancer and normal). These resultant profiles were correlated with patient clinical characteristics. Nineteen factors were secreted at significantly higher levels from the rectal cancer secretome when compared to the normal rectal secretome; Flt-1, P1GF, IFN-γ, IL-6, IL-10, CCL20, CCL26, CCL22, CCL3, CCL4, CCL17, GM-CSF, IL-12/IL-23p40, IL-17A, IL-1α, IL-17A/F, IL-1RA, TSLP and CXCL10 (p < 0.05). Radiation was found to have differential effects on normal rectal tissue and rectal cancer tissue with increased IL-15 and CCL22 secretion following radiation from normal rectal tissue explants (p < 0.05), while no significant alterations were observed in the irradiated rectal cancer tissue. Interestingly, however, the irradiated rectal cancer secretome induced the most potent effect on dendritic cell maturation via upregulation of CD80 and PD-L1. Patient's visceral fat area correlated with secreted factors including CCL20, suggesting that obesity status may alter the tumour microenvironment (TME). These results suggest that radiation does not have a negative effect on the ability of the rectal cancer TME to induce an immune response. Understanding these responses may unveil potential therapeutic targets to enhance radiation response and mitigate normal tissue injury. Tumour irradiation in this cohort enhances innate immune responses, which may be harnessed to improve patient treatment outcome.
Insights
Radiation therapy for rectal cancer enhances innate immune responses by altering the tumor microenvironment (TME). Understanding these inflammatory protein secretomes may reveal new therapeutic targets to improve treatment outcomes and reduce normal tissue damage.
Area of Science:
- Oncology
- Immunology
- Inflammation Biology
Background:
- Neoadjuvant-chemoradiotherapy is standard for locally advanced rectal cancer, but complete response rates are low (~22%).
- Mechanisms of treatment resistance and the role of inflammation and immune cells are not well understood.
- Investigating the tumor microenvironment's inflammatory secretome is crucial for improving therapeutic strategies.
Purpose of the Study:
- To profile the inflammatory secretome of normal and malignant rectal tissues before and after radiation.
- To assess the impact of these secretomes on dendritic cell biology.
- To correlate secretome profiles with patient clinical characteristics, including obesity.
Main Methods:
- Human ex vivo explant models of normal and rectal cancer tissues were used.
- Secretomes were analyzed pre- and post-radiation.
- Dendritic cell maturation was assessed by flow cytometry, measuring CD80 and PD-L1 expression.
Main Results:
- Nineteen inflammatory factors were significantly elevated in rectal cancer secretomes compared to normal tissue.
- Radiation increased IL-15 and CCL22 secretion from normal tissue but not from cancer tissue.
- The irradiated rectal cancer secretome strongly promoted dendritic cell maturation, upregulating CD80 and PD-L1.
- Obesity (visceral fat area) correlated with specific secreted factors like CCL20.
Conclusions:
- Radiation does not impair the rectal cancer tumor microenvironment's ability to induce an immune response.
- Tumor irradiation enhances innate immune responses, suggesting potential for therapeutic harnessing.
- Understanding these inflammatory secretomes could identify targets to improve radiation efficacy and minimize normal tissue toxicity.
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