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Drydale, E.

Publications and source records attributed to Drydale, E..

2 recordsLinked to original sources

Hallmarks of adaptive immunity in a metastatic clear cell renal cell carcinoma (ccRCC) long-term elite survivor

Clear cell renal cell carcinoma (ccRCC) presents with metastatic disease in nearly one-third of patients, with a 5-year survival of only [~]10%. Although anti-angiogenic therapies and immune checkpoint inhibitors (ICIs) have improved outcomes, therapeutic resistance and immune-related adverse events limit durable responses. Exceptional long-term survivors provide a unique opportunity to uncover mechanisms of sustained anti-tumour immunity and guide therapeutic strategies. Here, we present a spatial and temporal dissection of adaptive immunity in an extraordinary 16-year ccRCC survivor, integrating single-cell sequencing, multiplex immunofluorescence, B and T cell receptor (BCR/TCR) repertoire analysis, and antibody profiling. We reveal persistent and spatially coordinated B and T cell clones over 16 years, indicating long-term immune memory and surveillance throughout tumour evolution. B cell analysis identified pronounced clonal expansions involving intrinsically autoreactive IGHV4-34 B cells undergoing ongoing germinal centre (GC) maturation in tumour-draining lymph nodes (dLNs) and spleen. These clones progressively lost autoreactivity while acquiring tumour-specificity through somatic hypermutation (SHM), consistent with clonal redemption. Redeemed B cells displayed enhanced antigen-presenting functions and localised to tertiary lymphoid structures (TLS), where they interacted with CD8 T cells, as inferred from doublet analysis. In parallel, persistent CD8+ effector T cell clones highlighted the contribution of long-lived lymphocytes to tumour control. Comparison of the primary tumour and pancreatic metastatic with paired tumour-free dLNs showed that TLS mirrored GC functionality, particularly for PD-1+ CD8+ T cells, while TLS maturation was stroma-dependent and impaired at the metastatic site. Finally, tumour-derived BCRs revealed antibody binding to tumour specific "public" antigens without cross-reactivity to normal tissue. Together, these findings establish clonal persistence, TLS engagement, and coordinated B-T cell immune surveillance as hallmarks of durable tumour control, providing a framework for next-generation antibody therapeutics and patient stratification in metastatic ccRCC. What is already known on this topic.Tertiary lymphoid structures within the tumour microenvironment (TME) and clonal expansions of CD8+ T cells are associated with better survival and improved response to immunotherapies in ccRCC. However, identifying markers of prolonged survival is challenging due to the rarity of long-term survivors (LTS), and the predominance of studies focused on T cell immunity, leaving B cell contribution almost unexplored. What this study adds.This study provides an integrated analysis of B and T cell responses in an exceptional 16-year LTS with metastatic ccRCC, revealing key immunologic features of sustained anti-tumour immunity. Beyond T cell dynamics, it highlights the multifaceted role of B cells as antigen presenting cells, antibody producers, and modulators of CD8+ T cell effector functions through direct interactions within TLS. Importantly, it reveals potential tumour-specific antigens driving humoral responses. How this study might affect research, practice or policy.By uncovering mechanisms of sustained tumour control, this work establishes a framework for identifying adaptive immune biomarkers of long-term survival and refining patient stratification in metastatic ccRCC. Multimodal assessment of B cell specificity and spatial interactions between re-educated B cells and CD8+ T cells within TLS introduces a new paradigm for understanding coordinated B and T cell responses. These insights have direct implications for antibody-based drug discovery and development of immunotherapies that harness the B-T cell axis.

cancer biology↗

Horizontal transfer of nuclear DNA in transmissible cancer

Although somatic cell genomes are usually entirely clonally inherited, nuclear DNA exchange between cells of an organism can occur sporadically by cell fusion, phagocytosis or other mechanisms1-3. This phenomenon has long been noted in the context of cancer, where it could be envisaged that DNA horizontal transfer plays a functional role in disease evolution4-13. However, an understanding of the frequency and significance of this process in naturally occurring tumours is lacking. The host-tumour genetic discordance of transmissible cancers, malignant clones which pass between animals as allogeneic grafts, provides an opportunity to investigate this. We screened for host-to-tumour horizontal transfer of nuclear DNA in 174 tumours from three transmissible cancers affecting dogs and Tasmanian devils, and detected a single instance in the canine transmissible venereal tumour (CTVT). This involved introduction of a 15-megabase dicentric genetic element, composed of 11 rearranged fragments of six chromosomes, to a CTVT sublineage occurring in Asia around 2,000 years ago. The element forms the short arm of a small submetacentric chromosome, and derives from a dog with ancestry associated with the ancient Middle East. The introduced DNA fragment is transcriptionally active and has adopted the expression profile of CTVT. Its 143 genes do not, however, confer any obvious advantage to its spatially restricted CTVT sublineage. Our findings indicate that nuclear DNA horizontal transfer, although likely a rare event in tumour evolution, provides a viable mechanism for the acquisition of genetic material in naturally occurring cancer genomes.

cancer biology↗