CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Breaking the Immune Sanctuary: Targeting Metastatic Niches.
Breaking the Immune Sanctuary: Targeting Metastatic Niches.
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转移是癌症死亡的主要原因,其驱动因素是转移前微环境和免疫庇护所的全身性形成,这些庇护所保护播散性癌细胞(DCC)免受免疫监视和治疗。本综述探讨了肝脏、腹膜和CNS中发生的器官特异性结构和免疫重塑,重点阐述了肿瘤衍生因子如何招募抑制性髓系细胞并驱动纤维血管变化。空间多组学和区室特异性液体活检(如脑脊液循环肿瘤DNA)的进展正在提升我们监测这些不同庇护所的能力。为克服全身性免疫治疗的局限性——这些治疗常因微环境特异性免疫抑制而效果减弱——新的治疗范式正在涌现。在本综述中,我们重点介绍了瘤内递送1型经典树突状细胞(cDC1),该方法可有效产生强大的局部和全身性CD4+ Th1介导免疫,逆转肿瘤微环境抑制并清除休眠DCC。
此外,我们详细阐述了针对CNS庇护所的区室导向策略,包括鞘内免疫治疗、CAR-T 细胞和靶向免疫细胞因子。最后,我们回顾了靶向已形成庇护所的临床障碍,强调必须将全身性药物与区室导向的局部区域干预(如立体定向体部放疗或腹腔热灌注化疗)相结合。推进这些多模式策略需要调整临床试验设计以考虑分支克隆演化,克服诊断混杂因素如免疫治疗诱导的假性进展,并使用区室特异性终点来准确捕捉微环境导向的疗效。
Metastasis is the main cause of cancer death and is driven by the systemic formation of premetastatic niches and immune sanctuaries that protect disseminated cancer cells (DCCs) from immune surveillance and therapy. This review explores the organ-specific architectural and immunologic remodeling occurring in the liver, peritoneum, and CNS, highlighting how tumor-derived factors recruit suppressive myeloid cells and drive fibrovascular changes.
Advances in spatial multi-omics and compartment-specific liquid biopsies, such as cerebrospinal fluid circulating tumor DNA, are refining our ability to monitor these distinct sanctuaries. To overcome the limitations of systemic immunotherapies, which are often blunted by niche-specific immunosuppression, novel therapeutic paradigms are emerging.
In this review, we highlight intratumoral delivery of type 1 conventional dendritic cells (cDC1) which effectively generates robust local and systemic CD4 + Th1-mediated immunity, reversing tumor microenvironment suppression and eradicating dormant DCCs.
Furthermore, we detail compartment-directed strategies for the CNS sanctuary, including intrathecal immunotherapy, chimeric antigen receptor-T cells, and targeted immunocytokines.
Finally, we review the clinical hurdles of targeting established sanctuaries, emphasizing the necessity of integrating systemic agents with compartment-directed, locoregional interventions like stereotactic body radiation therapy or hyperthermic intraperitoneal chemotherapy.
Advancing these multimodal strategies requires adapting clinical trial designs to account for branched clonal evolution, overcoming diagnostic confounders such as immunotherapy-induced pseudoprogression, and using compartment-specific end points to accurately capture niche-directed efficacy.
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