一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Combined pembrolizumab and bevacizumab therapy effectively inhibits non-small-cell lung cancer growth and prevents postoperative recurrence and metastasis in humanized mouse model.
Combined pembrolizumab and bevacizumab therapy effectively inhibits non-small-cell lung cancer growth and prevents postoperative recurrence and metastasis in humanized mouse model.
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靶向程序性细胞死亡蛋白1/程序性细胞死亡配体-1(PD-1/PD-L1)通路的抗体已显著改变了晚期非小细胞肺癌(NSCLC)的治疗格局。
然而,需要联合方案来将这一获益扩展到部分患者之外。此外,这些联合治疗能否应用于早期NSCLC的新辅助治疗同样值得关注。在本研究中,我们假设免疫治疗与抗血管生成治疗联合可能在局部肿瘤控制和新辅助治疗中具有协同效应。为此,我们在人源化小鼠模型中评估了贝伐珠单抗与帕博利珠单抗联合的效果。
此外,我们创新性地构建了一种能够模拟NSCLC术后复发和转移的新辅助小鼠模型,以开展新辅助研究。我们检测了肿瘤生长、肿瘤血管变化以及TIL(肿瘤浸润淋巴细胞)的频率和表型。
此外,使用体内成像系统(IVIS)观察新辅助治疗的效果。结果显示,联合治疗可通过将低免疫反应性肿瘤转化为炎症性(“热”)肿瘤来抑制肿瘤生长,表现为CD8 + 颗粒酶B + 细胞毒性T细胞浸润增加。后续研究揭示,这一过程由血管正常化和内皮细胞激活所介导。IVIS结果显示,新辅助治疗能够有效预防术后复发和转移。
综上所述,这些临床前研究表明,贝伐珠单抗与帕博利珠单抗的联合在晚期肿瘤治疗和新辅助治疗中均具有协同效应,因此为将这一基础研究转化为临床应用提供了理论依据。
Antibodies targeting the programmed cell death protein 1/programmed cell death ligand-1 (PD-1/PD-L1) pathway have dramatically changed the treatment landscape of advanced non-small cell lung cancer (NSCLC).
However, combination approaches are required to extend this benefit beyond a subset of patients.
In addition, it is of equal interest whether these combination therapy can be applied to neoadjuvant therapy of early-stage NSCLC. In this study, we hypothesized that combining immunotherapy with anti-angiogenic therapy may have a synergistic effect in local tumor control and neoadjuvant therapy. To this end, the effect of combination of bevacizumab and pembrolizumab in humanized mouse models was evaluated.
Furthermore, we innovatively constructed a neoadjuvant mouse model that can simulate postoperative recurrence and metastasis of NSCLC to perform neoadjuvant study. Tumor growth and changes in the tumor vasculature, along with the frequency and phenotype of tumor-infiltrating lymphocytes, were examined.
Additionally, in vivo imaging system (IVIS) was used to observe the effect of neoadjuvant therapy. Results showed that combination therapy could inhibited tumor growth by transforming tumor with low immunoreactivity into inflamed ('hot') tumor, as demonstrated by increased CD8 + granzyme B + cytotoxic T cell infiltration. Subsequent studies revealed that this process is mediated by vascular normalization and endothelial cell activation.
IVIS results showed that neoadjuvant therapy can effectively prevent postoperative recurrence and metastasis. Taken together, these preclinical studies demonstrated that the combination of bevacizumab and pembrolizumab had a synergistic effect in both advanced tumor therapy and neoadjuvant setting and therefore provide a theoretical basis for translating this basic research into clinical applications.
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