CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:HER2-positive breast cancer with invasive micropapillary carcinoma component shows immunosuppressive microenvironment and resistance to neoadjuvant therapy.
HER2-positive breast cancer with invasive micropapillary carcinoma component shows immunosuppressive microenvironment and resistance to neoadjuvant therapy.
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HER2 阳性 BC 伴 IMPC 对抗 HER2 新辅助治疗表现出内在耐药,并具有免疫抑制性 TME。
浸润性微乳头状癌(IMPC)是罕见的乳腺癌(BC)组织病理亚型,HER2阳性表达率较高。然而,现行标准抗HER2治疗对这一特殊乳腺癌亚型的疗效尚不明确。
研究回顾性分析了2015至2023年间在中山大学肿瘤防治中心接受曲妥珠单抗(H)或曲妥珠单抗联合帕妥珠单抗(HP)新辅助治疗的HER2阳性乳腺癌患者。根据治疗前肿瘤样本中是否存在IMPC成分,将患者分为IMPC组和非IMPC组。比较两组基线临床病理特征、病理学完全缓解(pCR)率和生存结局。此外,利用基因表达综合数据库(GEO)的GSE66418数据集和ImmuCellAI数据库评估基因表达谱及免疫细胞浸润,并分析两组配对治疗前肿瘤样本以验证生物信息学发现。
研究纳入244例患者,其中38例存在IMPC成分(IMPC组),206例不存在(非IMPC组)。IMPC组pCR率显著低于非IMPC组:总体为21.6%比47.1%(P=.004);在H方案亚组为15.0%比28.4%(P=.223);在HP方案亚组为27.8%比57.6%(P=.017)。IMPC患者的无病生存期(P<.001)和总生存期(P=.0482)也较差。生物信息学分析发现,编码β-catenin蛋白的CTNNB1基因在IMPC患者中上调幅度最大。免疫分析显示,IMPC肿瘤微环境(TME)中的CD4⁺和CD8⁺ T细胞浸润减少,而巨噬细胞增多。配对肿瘤样本的进一步验证确认,IMPC组TIL(肿瘤浸润淋巴细胞)、CD4⁺和CD8⁺ T细胞水平降低,M2型巨噬细胞增加,程序性死亡配体1(PD-L1)表达升高。
HER2阳性且含IMPC成分的乳腺癌对抗HER2新辅助治疗存在内在耐药,并具有免疫抑制性TME。这些发现提示需要替代治疗策略,并有待前瞻性研究验证。
Invasive micropapillary carcinoma (IMPC) is a rare histopathological subtype of breast cancer (BC) that shows a high incidence of human epidermal growth factor receptor 2 (HER2)-positive expression. However, the therapeutic efficacy of current standard anti-HER2 therapies for this distinct BC subtype remains unclear.
We retrospectively analyzed patients with HER2-positive BC who underwent neoadjuvant therapy with trastuzumab (H) or trastuzumab plus pertuzumab (HP) between 2015 and 2023 at Sun Yat-sen University Cancer Center. On the basis of the presence of an IMPC component in pretreatment tumor samples, patients were stratified into IMPC and non-IMPC groups. Baseline clinical and pathological characteristics, pathological complete response (pCR) rates, and survival outcomes were compared between two groups. Additionally, gene expression profiles and immune cells infiltration were assessed using GSE66418 dataset obtained from the Gene Expression Omnibus and ImmuCellAI databases. To validate bioinformatics findings, matched pretreatment tumor samples from both groups were analyzed.
Among the 244 patients included in the study, 38 had an IMPC component (IMPC group), whereas 206 did not (non-IMPC group). The IMPC group exhibited significantly lower pCR rates compared to the non-IMPC group: 21.6% vs. 47.1% ( P = 0.004) overall, 15.0% vs. 28.4% ( P = 0.223) in the H-based subgroup, and 27.8% vs. 57.6% ( P = 0.017) in the HP-based subgroup. IMPC patients also showed worse disease-free survival ( P < 0.001) and overall survival ( P = 0.0482) than non-IMPC patients. Bioinformatics analysis revealed that the CTNNB1 gene, which encodes the β-catenin protein, was the most highly upregulated gene in IMPC patients. Immune profiling demonstrated reduced infiltration of CD4 + and CD8 + T cells, along with increased macrophage levels in the IMPC tumor microenvironment (TME). Further validation using matched tumor samples confirmed decreased levels of tumor-infiltrating lymphocytes, CD4 + and CD8 + T cells, elevated M2 macrophages, and higher programmed death-ligand 1 (PD-L1) expression in the IMPC group.
HER2-positive BC with IMPC demonstrates intrinsic resistance to anti-HER2 neoadjuvant therapy and harbors an immunosuppressive TME. These findings highlight the need for alternative treatment strategies and warrant prospective validation.
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