T-cell receptor determinants of response to chemoradiation in locally-advanced HPV16-driven malignancies
Pablo Nenclares1,2, Adrian Larkeryd3, Floriana Manodoro4
1Radiotherapy and Imaging Division, The Institute of Cancer Research, London, United Kingdom.
Background:
The effect of chemoradiation on the anti-cancer immune response is being increasingly acknowledged; however, its clinical implications in treatment responses are yet to be fully understood. Human papillomavirus (HPV)-driven malignancies express viral oncogenic proteins which may serve as tumor-specific antigens and represent ideal candidates for monitoring the peripheral T-cell receptor (TCR) changes secondary to chemoradiotherapy (CRT).
Methods:
We performed intra-tumoral and pre- and post-treatment peripheral TCR sequencing in a cohort of patients with locally-advanced HPV16-positive cancers treated with CRT. An in silico computational pipeline was used to cluster TCR repertoire based on epitope-specificity and to predict affinity between these clusters and HPV16-derived epitopes.
Results:
Intra-tumoral repertoire diversity, intra-tumoral and post-treatment peripheral CDR3β similarity clustering were predictive of response. In responders, CRT triggered an increase peripheral TCR clonality and clonal relatedness. Post-treatment expansion of baseline peripheral dominant TCRs was associated with response. Responders showed more baseline clustered structures of TCRs maintained post-treatment and displayed significantly more maintained clustered structures. When applying clustering by TCR-specificity methods, responders displayed a higher proportion of intra-tumoral TCRs predicted to recognise HPV16 peptides.
Conclusions:
Baseline TCR characteristics and changes in the peripheral T-cell clones triggered by CRT are associated with treatment outcome. Maintenance and boosting of pre-existing clonotypes are key elements of an effective anti-cancer immune response driven by CRT, supporting a paradigm in which the immune system plays a central role in the success of CRT in current standard-of-care protocols.
Insights
Chemoradiotherapy (CRT) impacts anti-cancer immunity. Monitoring T-cell receptor (TCR) changes in HPV-driven cancers reveals that specific TCR patterns predict treatment response and highlight the immune system's role in CRT success.
Area of Science:
- Immunology
- Oncology
- Genomics
Background:
- The impact of chemoradiation (CRT) on anti-cancer immune responses is recognized but not fully understood.
- Human papillomavirus (HPV)-driven cancers offer unique antigens for monitoring T-cell receptor (TCR) changes during CRT.
Purpose of the Study:
- To investigate the relationship between TCR repertoire dynamics and treatment response in HPV16-positive cancers treated with CRT.
- To identify TCR characteristics predictive of clinical outcomes following chemoradiotherapy.
Main Methods:
- Performed intra-tumoral and peripheral TCR sequencing before and after CRT in locally-advanced HPV16-positive cancer patients.
- Utilized an in silico pipeline to cluster TCRs by epitope-specificity and predict affinity to HPV16 epitopes.
Main Results:
- Intra-tumoral diversity and peripheral TCR clustering predicted response to CRT.
- Responders exhibited increased peripheral TCR clonality and clonal relatedness post-treatment.
- Maintenance of baseline TCR clonotypes and recognition of HPV16 peptides by intra-tumoral TCRs were associated with treatment success.
Conclusions:
- Baseline TCR features and CRT-induced peripheral T-cell changes correlate with treatment outcomes.
- Maintenance and expansion of pre-existing T-cell clones are crucial for effective anti-cancer immunity during CRT.
- The immune system plays a pivotal role in the efficacy of standard CRT protocols for HPV-driven cancers.
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