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优化黑色素瘤疫苗诱导免疫疗法的疗效

Optimizing the Efficacy of Vaccine-Induced Immunotherapy in Melanomas.

作者信息

Chamseddine Ibrahim, Kambara Manoj, Bhatt Priya, Pilon-Thomas Shari, Rejniak Katarzyna A

机构信息

Department of Integrated Mathematical Oncology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL, USA.

High-School Internship Program at Integrated Mathematical Oncology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL, USA.

出版信息

Bull Math Biol. 2025 May 28;87(7):86. doi: 10.1007/s11538-025-01462-w.

Abstract

Cancer therapeutic vaccines are used to strengthen a patient's own immune system by amplifying existing immune responses. Intralesional administration of the bacteria-based emm55 vaccine together with the PD1 checkpoint inhibitor produced a strong anti-tumor effect against the B16 melanoma murine model. However, it is not trivial to design an optimal order and frequency of injections for combination therapies. Here, we developed a coupled ordinary differential equations model calibrated to experimental data and used the mesh adaptive direct search method to optimize the treatment protocols of the emm55 vaccine and anti-PD1 combined therapy. This method determined that early consecutive vaccine injections combined with distributed anti-PD1 injections of decreasing separation time yielded the best tumor size reduction. The optimized protocols led to a twofold decrease in tumor area for the vaccine-alone treatment, and a fourfold decrease for the combined therapy. Our results reveal the tumor subpopulation dynamics in the optimal treatment condition, defining the path for efficacious treatment design. Similar computational frameworks can be applied to other tumors and other combination therapies to generate experimentally testable hypotheses in a fairly unrestricted and inexpensive setting.

摘要

癌症治疗性疫苗用于通过放大现有的免疫反应来增强患者自身的免疫系统。在B16黑色素瘤小鼠模型中,瘤内注射基于细菌的emm55疫苗与PD1检查点抑制剂联合使用产生了强大的抗肿瘤效果。然而,为联合疗法设计最佳的注射顺序和频率并非易事。在这里,我们开发了一个根据实验数据校准的耦合常微分方程模型,并使用网格自适应直接搜索方法来优化emm55疫苗和抗PD1联合疗法的治疗方案。该方法确定,早期连续注射疫苗并结合间隔时间逐渐缩短的分散抗PD1注射可使肿瘤尺寸减小效果最佳。优化后的方案使单独使用疫苗治疗时肿瘤面积减少两倍,联合治疗时减少四倍。我们的结果揭示了最佳治疗条件下的肿瘤亚群动态,为有效的治疗设计指明了方向。类似的计算框架可应用于其他肿瘤和其他联合疗法,以便在相当不受限制且成本低廉的情况下生成可通过实验验证的假设。

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