工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Optimizing canine T cell activation, expansion, and transduction.
Optimizing canine T cell activation, expansion, and transduction.
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犬正成为人类癌症的重要模型,成功解决犬圆形细胞和实体肿瘤基因修饰T细胞免疫治疗中的问题,也为提高人类的疗效、安全性和可负担性提供了独特机会。遗憾的是,尚未确定用于最佳病毒转导的犬T细胞激活条件,这限制了犬T细胞免疫治疗的进展。文献中已描述了两种用于犬T细胞刺激的αCD3和两种αCD28抗体克隆,但尚无研究评估哪种αCD3/αCD28组合最有效,也没有人直接比较两种最常用的抗体呈递策略:抗体包被板和抗体偶联珠的效力。在评估单独板结合或珠结合αCD3刺激与αCD3/αCD28联合刺激的效果时,我们测试了12种可能的抗体刺激策略,此外还评估了两种在犬T细胞转导中基本未被探索的促分裂原:佛波醇肉豆蔻酸乙酸酯(PMA)联合离子霉素和伴刀豆球蛋白A(ConA)。
我们研究了这些刺激策略对犬T细胞激活、扩增和转导的影响。对于产生最佳结果的刺激策略,我们还检查了每种策略如何影响CD4/CD8 T细胞亚群比例和调节性T细胞(Treg)占比。
我们确定,总体而言,板结合抗体在犬T细胞刺激方面远优于珠结合抗体,并且板结合αCD3克隆CA17。6F9与αCD28克隆5B8或促分裂原PMA联合离子霉素组合,产生了更好的激活和扩增特征、更好的转导效果,以及更理想的T细胞亚群,这些亚群更有可能改善患有圆形细胞瘤和实体瘤犬只的患者预后。
Dogs are becoming an important model for human cancers, and successfully troubleshooting issues with genetically modified T cell immunotherapy for round cell and solid neoplasms in dogs provides a unique opportunity to improve efficacy, safety, and affordability for humans as well. Unfortunately, T cell activation in dogs for optimal viral transduction has not been determined, restricting advancements in canine T cell immunotherapy.
Two αCD3 and two αCD28 antibody clones for canine T cell stimulation have been described in the literature, but no studies have been undertaken to evaluate which αCD3/αCD28 combination is most effective, nor has anyone directly compared the efficacy of the two most popular antibody presentation strategies: antibody-coated plates and antibody-conjugated beads.
In evaluating the effects of plate- or bead-bound αCD3 stimulation alone versus αCD3/αCD28 in combination, we tested 12 possible antibody stimulation strategies in addition to evaluating two largely unexplored mitogens in canine T cell transduction, phorbol myristate acetate (PMA) with ionomycin and concanavalin A (ConA).
We investigated the impact of these stimulation strategies on canine T cell activation, expansion, and transduction. For stimulation strategies producing the best results, we also examined how each strategy affected the proportions of CD4/CD8 T cell subsets and regulatory T cell (Treg) prevalence.
We determined that, in general, plate-bound antibodies were far superior to bead-bound antibodies for canine T cell stimulation, and that plate-bound αCD3 clone CA17. 6F9 in combination with αCD28 clone 5B8 or the mitogen PMA with ionomycin produced better activation and expansion profiles, better transduction, and more desirable T cell subsets that are more likely to improve patient outcomes in dogs suffering from round cell and solid tumors.
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