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:From Cancer to Immune Organoids: Innovative Preclinical Models to Dissect the Crosstalk between Cancer Cells and the Tumor Microenvironment.
From Cancer to Immune Organoids: Innovative Preclinical Models to Dissect the Crosstalk between Cancer Cells and the Tumor Microenvironment.
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以基因组为导向的肿瘤学改善了肿瘤分类、治疗选择和患者预后。然而,遗传异质性、肿瘤细胞可塑性以及癌细胞劫持肿瘤微环境(TME)的能力,是根除癌症的主要障碍。近年来,器官型细胞培养的生物技术进展彻底改变了生物医学研究,为探索癌症类器官在功能性精准肿瘤学中的应用开辟了新途径,尤其是在基因组学单独不足以作为决定因素时。在此,我们概述肿瘤类器官在临床前和转化研究中的潜力和局限性,特别聚焦于肺癌发病机制,强调其在预测治疗反应、评估治疗毒性以及设计新型抗癌策略方面的相关性。此外,我们描述了创新的器官型共培养系统,用于剖析与TME的串扰,并测试不同免疫治疗方法的疗效,包括过继细胞治疗。最后,我们讨论了微流控微型器官技术的潜在临床相关性,该技术能够重现肿瘤血管系统以及肿瘤起始和进展的动态,以及肿瘤类器官、癌症相关成纤维细胞(CAFs)和免疫细胞之间的免疫调节相互作用,为下一代免疫精准肿瘤学铺平道路。
Genomic-oriented oncology has improved tumor classification, treatment options, and patient outcomes.
However, genetic heterogeneity, tumor cell plasticity, and the ability of cancer cells to hijack the tumor microenvironment (TME) represent a major roadblock for cancer eradication. Recent biotechnological advances in organotypic cell cultures have revolutionized biomedical research, opening new avenues to explore the use of cancer organoids in functional precision oncology, especially when genomics alone is not a determinant.
Here, we outline the potential and the limitations of tumor organoids in preclinical and translational studies with a particular focus on lung cancer pathogenesis, highlighting their relevance in predicting therapy response, evaluating treatment toxicity, and designing novel anticancer strategies.
Furthermore, we describe innovative organotypic coculture systems to dissect the crosstalk with the TME and to test the efficacy of different immunotherapy approaches, including adoptive cell therapy.
Finally, we discuss the potential clinical relevance of microfluidic mini-organ technology, capable of reproducing tumor vasculature and the dynamics of tumor initiation and progression, as well as immunomodulatory interactions among tumor organoids, cancer-associated fibroblasts (CAFs) and immune cells, paving the way for next-generation immune precision oncology.
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