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.
我们的方法将酶/前药治疗和免疫治疗整合到一个单一的细菌递送系统中,通过提供合理设计的空间控制化学免疫治疗框架,克服了传统疗法的关键局限性。
英文原题:Tumour burden and antigen-specific T cell magnitude represent major parameters for clinical response to cancer vaccine and TCR-engineered T cell therapy.
Tumour burden and antigen-specific T cell magnitude represent major parameters for clinical response to cancer vaccine and TCR-engineered T cell therapy.
我们提出,治疗性疫苗应考虑用于低或中等肿瘤负荷的情况,而Tg-T细胞策略可能更适合晚期转移性疾病的治疗。
癌症疫苗和T细胞受体(TCR)工程化T细胞(Tg-T细胞)代表了两种不同的治疗策略,可以靶向相同的肿瘤表位。第一种方法需要在患者体内诱导特异性免疫反应,而第二种方法依赖于过继转移T细胞的疗效。由于这些策略所涉及的抗原特异性T细胞与肿瘤细胞的比例可能影响临床结果,我们根据肿瘤负荷评估了这两种治疗方法在实体瘤中的疗效。
我们进行了一项仅限于治疗性疫苗和Tg-T细胞试验的meta分析,并提供了带有注释的个体临床数据。我们采用了先前发表的肿瘤免疫动力学数学模型,以评估特异性T细胞数量相对于肿瘤负荷的临床影响。
对Tg-T细胞研究的重点分析显示,临床反应大多在输注最高剂量T细胞时观察到,提示可能需要超过效应T细胞的阈值才能获得临床疗效。对从不同肿瘤负荷开始的癌症疫苗和Tg-T细胞疗法进行的计算机模拟显示,治疗性疫苗可控制低度或中度肿瘤负荷,而增加输注的Tg-T细胞数量则能够控制高肿瘤负荷。
BACKGROUND: Cancer vaccines and T-cell receptor (TCR) engineered T cells (Tg-T cell) represent two different therapeutic strategies that can target the same tumour epitopes. The first approach requires the induction of a specific immune response in patients, while the second relies on the efficacy of adoptively transferred T cells. Because the ratio of antigen-specific T cells to tumour cells engaged by these strategies may influence the clinical outcome, we evaluated the efficacy of these two therapeutic approaches in solid tumours according to the tumour burden. METHODS: We performed a meta-analysis restricted to the therapeutic vaccine and Tg-T cell trials, presenting annotated individual clinical data. We adapted a previously published mathematical model for tumour immune dynamics to estimate the clinical impact of the number of specific T cells in regard to the tumour burden. RESULTS: A focused analysis of Tg-T cell studies revealed that clinical responses were mostly observed with the highest doses of infused T cells, suggesting that exceeding a threshold of effector T cells may be required for clinical efficacy. In silico modelling of cancer vaccine and Tg-T cell therapies starting at different tumour burdens showed that therapeutic vaccines control low or moderate tumour burdens, whereas increasing the amount of infused Tg-T cells succeeds in controlling high tumour masses. CONCLUSION: We propose that therapeutic vaccines should be considered in the context of low or moderate tumour burden, whereas Tg-T cell strategies may be more adapted for the treatment of advanced metastatic diseases.
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