基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Distinct spatial immune microlandscapes are independently associated with outcomes in triple-negative breast cancer.
Distinct spatial immune microlandscapes are independently associated with outcomes in triple-negative breast cancer.
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空间免疫生物标志物定量在三阴性乳腺癌(TNBC)的预后判断和治疗预测中的效用正在被积极研究。在此,我们利用高多重定量数字空间分析技术,对未经系统治疗(仅女性)的TNBC的上皮内及邻近间质肿瘤免疫蛋白微环境进行定位和定量,以评估基于免疫生物标志物预测结局中的空间背景。CD45富集和CD68富集的间质微环境的免疫蛋白谱存在显著差异。虽然它们通常与邻近的上皮内微环境相似,但并非完全一致。在两个TNBC队列中,上皮内CD40或HLA-DR富集与更好的结局相关,且独立于间质免疫蛋白谱或间质TIL及其他已确立的预后变量。相比之下,上皮内或间质微环境中IDO1的富集与生存改善相关,无论其空间位置如何。抗原呈递和T细胞活化状态通过特征蛋白评分推断。上皮内区室中的此类评分与PD-L1和IDO1的交互方式提示其具有预后和/或治疗潜力。对未经治疗TNBC内在空间免疫生物学的这一表征,凸显了空间微环境在生物标志物定量中的重要性,以解析内在的预后和预测性免疫特征,并最终为临床可操作的免疫生物标志物指导治疗策略。
The utility of spatial immunobiomarker quantitation in prognostication and therapeutic prediction is actively being investigated in triple-negative breast cancer (TNBC).
Here, with high-plex quantitative digital spatial profiling, we map and quantitate intraepithelial and adjacent stromal tumor immune protein microenvironments in systemic treatment-naïve (female only) TNBC to assess the spatial context in immunobiomarker-based prediction of outcome. Immune protein profiles of CD45-rich and CD68-rich stromal microenvironments differ significantly. While they typically mirror adjacent, intraepithelial microenvironments, this is not uniformly true. In two TNBC cohorts, intraepithelial CD40 or HLA-DR enrichment associates with better outcomes, independently of stromal immune protein profiles or stromal TILs and other established prognostic variables.
In contrast, intraepithelial or stromal microenvironment enrichment with IDO1 associates with improved survival irrespective of its spatial location. Antigen-presenting and T-cell activation states are inferred from eigenprotein scores. Such scores within the intraepithelial compartment interact with PD-L1 and IDO1 in ways that suggest prognostic and/or therapeutic potential.
This characterization of the intrinsic spatial immunobiology of treatment-naïve TNBC highlights the importance of spatial microenvironments for biomarker quantitation to resolve intrinsic prognostic and predictive immune features and ultimately inform therapeutic strategies for clinically actionable immune biomarkers.
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