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.
过继性自然杀伤(NK)细胞疗法是治疗三阴性乳腺癌的一种有前景的策略,但其疗效往往受到瘤内持久性差以及在免疫抑制性肿瘤微环境中功能耗竭的限制。
英文原题:Spatial analysis of tumor immune microenvironment of TNBC with different neoadjuvant chemotherapy outcomes using multiplex Immunofluorescence.
Spatial analysis of tumor immune microenvironment of TNBC with different neoadjuvant chemotherapy outcomes using multiplex Immunofluorescence.
我们的研究结果提示,肿瘤内 CD8⁺ 和 CD20⁺ ICs 是三阴性乳腺癌新辅助化疗反应的关键决定因素。
背景:三阴性乳腺癌(TNBC)具有侵袭性生物学行为和不良预后,但其免疫原性高于其他乳腺癌亚型,因此可能对免疫治疗更敏感。新辅助化疗(NAC)是早期高危TNBC的标准治疗,但目前仍缺乏可靠的NAC应答预测生物标志物。TIL(肿瘤浸润淋巴细胞)被认为是TNBC NAC应答的预测指标,但也存在不一致病例,例如TIL水平较高却治疗应答不佳。本研究通过分析16例接受NAC的TNBC患者治疗前活检组织切片中的TIL、程序性死亡配体1(PD-L1)表达及肿瘤-基质比例,进一步阐明TNBC的免疫环境。方法:采用CD8、FOXP3、CD4、CD20和CK多重免疫荧光,研究肿瘤免疫微环境中的免疫细胞(IC)组成及空间相互作用。按治疗应答、TIL和PD-L1状态分析细胞间距离及各类免疫细胞所占比例。结果:达到病理完全缓解(pCR)的患者与存在残留病灶(非pCR)的患者在免疫细胞组成和分布方面存在显著差异。pCR组肿瘤区和基质区的CD8阳性及CD20阳性免疫细胞均显著富集,提示这些细胞在介导有效NAC应答中发挥关键作用。相比之下,非pCR病例中免疫抑制性CD4+FOXP3+免疫细胞比例更高,尤其是在肿瘤区域。TIL水平高与显著的B细胞-T细胞相互作用相关,表现为CD20阳性和CD8阳性免疫细胞聚集于肿瘤细胞附近,凸显其在抗肿瘤免疫中的协同作用。结论:研究结果提示,肿瘤内CD8阳性和CD20阳性免疫细胞是决定TNBC对NAC应答的重要因素。高TIL背景下CD20阳性细胞富集,凸显B细胞-T细胞相互作用可能参与塑造免疫介导的化疗应答。这些发现为利用免疫生物标志物对TNBC患者分层、优化NAC结局奠定了基础。
BACKGROUND: Triple-negative breast cancer (TNBC) is characterized by aggressive biological behavior and poor prognosis. However, TNBC exhibits higher immunogenicity than other breast cancer subtypes, making it more responsive to immunotherapy. Neoadjuvant chemotherapy (NAC) is the standard treatment for early high-risk TNBC; however, reliable biomarkers for predicting NAC response remain elusive. Tumor-infiltrating lymphocytes (TIL) are recognized as predictive markers of NAC response in TNBC, yet discordant cases remain, such as tumors with high TIL levels but poor response. This study aimed to further elucidate the immune environment of TNBC by analyzing TIL, programmed death-ligand 1 (PD-L1) expression, and tumor-stroma ratio using pretreatment biopsy tissue slides from 16 patients with TNBC treated with NAC. METHOD: Multiplexed immunofluorescence for CD8, FOXP3, CD4, CD20, and CK was employed to investigate immune cell (IC) composition and spatial interactions within the tumor immune microenvironment. Cell to cell distance and comparison of subcellular proportion of IC and were analyzed by treatment response, TIL, and PD-L1 status. RESULTS: Significant differences were found in IC composition and distribution between patients achieving pathologic complete response (pCR) and those with residual disease (non-pCR). The pCR group exhibited significant enrichment of cluster of differentiation CD8 + IC and CD20 + IC in both tumor and stromal regions, suggesting their critical role in mediating an effective NAC response. In contrast, non-pCR cases showed higher proportions of immunosuppressive CD4 + FOXP3 + IC, particularly in the tumor region. High TIL levels were associated with pronounced B-T cell interactions, as evidenced by the significant clustering of CD20 + and CD8 + ICs near tumor cells, highlighting their cooperative role in antitumor immunity. CONCLUSIONS: In conclusion, our findings suggest that tumoral CD8 + and CD20 + ICs are pivotal determinants of NAC response in TNBC. The enrichment of CD20 + IC under high-TIL conditions underscores the potential role of B-T cell interactions in shaping immune-mediated chemotherapy responses. These insights provide a foundation for leveraging immune-based biomarkers to stratify patients with TNBC and optimize NAC outcomes.
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