CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Multiplex Spatial Proteomic Analysis of HER2-Positive Breast Tumors Reveals Unique Molecular and Immunologic Features Associated With Treatment Response.
Multiplex Spatial Proteomic Analysis of HER2-Positive Breast Tumors Reveals Unique Molecular and Immunologic Features Associated With Treatment Response.
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ER 阴性、HER2 阳性乳腺癌具有独特的分子和免疫学特征,可能预测新辅助 HP 治疗后的 pCR。对这些潜在生物标志物的验证以及复合生物标志物分析可能指导未来临床试验的设计。
预测性生物标志物对于更好地为早期人表皮生长因子2(HER2)阳性乳腺癌患者量身定制治疗是一个优先事项。我们假设HER2和基于免疫的生物标志物能够预测术前曲妥珠单抗/帕妥珠单抗(HP)治疗后的病理完全缓解(pCR)。
在TBCRC026临床试验中,II/III期、雌激素受体(ER)阴性、HER2阳性乳腺癌患者接受了新辅助HP治疗。单独接受HP后的pCR率为22%(18/83)。在基线时进行了肿瘤活检。次要相关目标是确定基于HER2的生物标志物和免疫过程与pCR之间的关系。使用NanoString code sets BC360和IO360比较了接受pCR与未接受pCR的基线肿瘤中的差异基因表达。使用NanoString GeoMx数字空间谱分析评估了上皮内和基质区段中的免疫蛋白丰度。分别通过苏木精和伊红染色和免疫组织化学评估了基质TIL(肿瘤浸润淋巴细胞)和Ki67。
上皮内 HER2 蛋白丰度与 pCR 显著相关(P = .001)。HER2 低丰度肿瘤主要为基底样型,且几乎所有(19/20)均未能达到 pCR。达到 pCR 的 HER2 高丰度肿瘤(14/51)表现出高度免疫细胞活性,而未达到 pCR 的 HER2 高丰度肿瘤(37/51)则富集 M 期过程和表皮生长因子受体信号传导。基线 Ki67 在无应答者中显著更高(P = .04)。
Predictive biomarkers to better tailor therapy for patients with early-stage human epidermal growth factor 2 (HER2)-positive breast cancer are a priority. We hypothesized that HER2 and immune-based biomarkers would be predictive of pathologic complete response (pCR) to preoperative trastuzumab/pertuzumab (HP).
Patients with stage II/III, estrogen receptor (ER)-negative, HER2-positive breast cancer received neoadjuvant HP in the TBCRC026 clinical trial. The pCR after receiving HP alone was 22% (18/83). Tumor biopsies were performed at baseline. Secondary correlative objectives were to determine the relationship between HER2-based biomarkers and immune processes with pCR. NanoString code sets BC360 and IO360 were used to compare differential gene expression in baseline tumors that underwent pCR versus no pCR. NanoString GeoMx digital spatial profiling was used to assess immune protein abundance in intraepithelial and stromal segments. Stromal tumor-infiltrating lymphocytes and Ki67 were evaluated by hematoxylin and eosin and immunohistochemistry, respectively.
Intraepithelial HER2 protein abundance was significantly associated with pCR ( P = .001). Low HER2 abundance tumors were primarily basal-like, and essentially all (19/20) failed to achieve pCR. High HER2 abundance tumors that achieved pCR (14/51) exhibited a high degree of immune cell activity, whereas high HER2 abundance tumors that failed to achieve pCR tumors (37/51) were enriched for M-phase processes and epidermal growth factor receptor signaling. Baseline Ki67 was significantly higher in nonresponders ( P = .04).
ER-negative, HER2-positive breast cancer has unique molecular and immunologic features that may predict pCR after neoadjuvant HP. Validation of these potential biomarkers and composite biomarker analyses may guide design of future clinical trials.
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