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Poljakov, K.

Publications and source records attributed to Poljakov, K..

3 recordsLinked to original sources

B cells specific for polyomavirus-derived oncoprotein are predictive of Merkel cell carcinoma progression

Merkel cell carcinomas typically arise from clonal integration of the Merkel cell polyomavirus. Immunogenic viral oncoproteins then lead to tumorigenesis. Oncoprotein-specific T cells are essential for anti-MCC immunity, but it is unclear whether B cells promote tumor control. Here, we analyzed the frequency and phenotype of viral oncoprotein-specific and total B cells in 47 blood samples and 19 unmatched tumors from MCC patients-- of which 8 out 19 progressed. The phenotype of blood B cells did not correlate with MCC patient outcomes. In contrast, all 11 patients with robust oncoprotein-specific antibody-secreting and/or germinal center B cells in tumors experienced long-term MCC control. In vitro, B cells engineered to be specific for viral oncoproteins increased the sensitivity of oncoprotein-specific CD4+ T cells by over 50-fold. Together, our findings suggest that cancer-specific B cells promote anti-tumor immunity via increased T cell responses and that cancer-specific B cell augmentation could be therapeutically relevant. Statement of SignificanceThe link between cancer-specific B cells in anti-tumor immunity and clinical outcomes remains poorly defined. Here, we show that tumor-associated B cells specific for a viral oncoprotein expressed in MCC patient tumors predict disease control with remarkable accuracy, establishing their potential as active participants in tumor immunity.

immunology↗

In vivo production of an anti-HIV antibody from primate hematopoietic cells by non-viral knock-in

Non-viral gene editing offers a practical alternative to viral delivery for durable biologics production. Clinical trials have shown that adeno-associated virus encoding broadly neutralizing antibodies can protect against HIV, but result in limited, short-lived responses. The development of non-viral gene editing approaches in hematopoietic stem and progenitor cells holds promise for long-term antibody production. In this study, we evaluated CRISPR/Cas9 and CRISPR/Cas12a for gene knock-in at the immunoglobulin heavy chain locus in non-human primate hematopoietic stem and progenitor cells. Delivering the nuclease as a protein alongside a custom DNA template, we optimized editing with Cas12a and demonstrated higher knock-in efficiency and fewer non-specific edits than Cas9. Transplantation of edited non-human primate hematopoietic stem and progenitor cells into MISTRG mice led to engraftment, B cell differentiation, and transgene expression of a reporter transgene or anti-HIV antibody after HIV immunization with detectable anti-HIV antibody titers in peripheral blood circulation. These findings demonstrate the feasibility of using non-viral gene editing in HSPC as a potential strategy for sustained biologics production in the treatment of chronic diseases such as HIV. Future work will assess the efficacy of this model in a non-human primate model of HIV infection.

immunology↗

Validation of antigen tetramers for the detection of antigen-specific B cells

The study of antigen-specific lymphocytes has been a key advancement in immunology the past few decades. The development of multimerized probes containing antigens, peptide:MHC complexes, or other ligands was one innovation allowing the direct study antigen-specific lymphocytes by flow cytometry. While these types of studies are now common and performed by thousands of laboratories, quality control and assessment of probe quality is often minimal. In fact, many of these types of probes are made in-house and protocols vary between labs. While peptide:MHC multimers can often be obtained from commercial sources or core facilities, few such services exist for antigen multimers. To ensure high quality and consistency with ligand probes, we have developed an easy and robust multiplexed approach using commercially available beads able to bind antibodies specific for the ligand of interest. Using this assay, we have sensitively assessed the performance of peptide:MHC and antigen tetramers and find considerable batch-to-batch variability in performance and stability over time. This assay can also reveal common production errors such as miscalculation of antigen concentration. Unexpectedly, probes including the fluorochrome allophycocyanin exhibited more rapid performance decline compared to probes including the fluorochrome R-phycoerythrin when both were stored at 4{degrees}C. This performance decline was reduced for most, but not all, batches when antigen tetramers were instead stored at -20{degrees}C in 50% glycerol. This work could set the stage for the development of standardized assays for all commonly used ligand probes to limit lab-to-lab technical variation, and experimental failure due to probe underperformance.

immunology↗