CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Biomarker dynamics affecting neoadjuvant therapy response and outcome of HER2-positive breast cancer subtype.
Biomarker dynamics affecting neoadjuvant therapy response and outcome of HER2-positive breast cancer subtype.
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HER2⁺乳腺癌(BC)是侵袭性亚型,在遗传和生物学上具有异质性。本研究评估154例接受曲妥珠单抗方案新辅助化疗(NACT)的HER2⁺乳腺癌患者中,HER2蛋白/基因表达水平结合临床病理特征的预测和预后作用。肿瘤病理学完全缓解(pCR)率为40.9%。与应答较差者相比,肿瘤pCR率较高者死亡率较低。达到ypT0的患者中,93.7%为HER2 IHC 3⁺乳腺癌,6.3%为HER2 IHC 2⁺/SISH⁺;达到ypN0的患者中,86.7%为HER2 IHC 3⁺,其余为HER2 IHC 2⁺/SISH⁺。TIL比例较高和肿瘤位于右侧与较高pCR率相关,且可减少远处转移、改善生存,但发病率未见差异。机器学习分析显示,HER2 IHC评分和肿瘤侧别是NACT后肿瘤pCR的强预测因子。HER2 IHC 3⁺和G3是HER2⁺乳腺癌患者的不良预后因素,治疗时可纳入考量。TIL浓度增加、淋巴结比例降低和残余肿瘤细胞性降低均与较好结局相关。免疫微环境和淋巴结受累较少对临床结局至关重要。结合所有预测因子,或可为NACT疗效预测以及临床决策中的HER2⁺乳腺癌分层提供新方案。
HER2+ breast cancer (BC) is an aggressive subtype genetically and biologically heterogeneous.
We evaluate the predictive and prognostic role of HER2 protein/gene expression levels combined with clinico-pathologic features in 154 HER2+ BCs patients who received trastuzumab-based neoadjuvant chemotherapy (NACT). The tumoral pathological complete response (pCR) rate was 40. 9%. High tumoral pCR show a scarce mortality rate vs subjects with a lower response. 93. 7% of ypT0 were HER2 IHC3+ BC, 6. 3% were HER2 IHC 2+/SISH+ and 86. 7% of ypN0 were HER2 IHC3+, the remaining were HER2 IHC2+/SISH+. Better pCR rate correlate with a high percentage of infiltrating immune cells and right-sided tumors, that reduce distant metastasis and improve survival, but no incidence difference.
HER2 IHC score and laterality emerge as strong predictors of tumoral pCR after NACT from machine learning analysis. HER2 IHC3+ and G3 are poor prognostic factors for HER2+ BC patients, and could be considered in the application of neoadjuvant therapy. Increasing TILs concentrations, lower lymph node ratio and lower residual tumor cellularity are associated with a better outcome.
The immune microenvironment and scarce lymph node involvement have crucial role in clinical outcomes. The combination of all predictors might offer new options for NACT effectiveness prediction and stratification of HER2+ BC during clinical decision-making.
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