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:Global Transcriptional Complexity of Estrogen Receptor-Low Positive Breast Cancers in the Prospective Swedish Population-Based SCAN-B Cohort.
Global Transcriptional Complexity of Estrogen Receptor-Low Positive Breast Cancers in the Prospective Swedish Population-Based SCAN-B Cohort.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
ER-low/HER2-negative 并非一个独立的乳腺癌分子生物学实体,而是 TNBC 的组成部分,应接受相似的治疗。尽管如此,少数 ER 信号中度活跃的临界病例可能对内分泌治疗有反应。激素受体相关特征和 TIL(肿瘤浸润淋巴细胞)可根据复发风险对 ER-low/HER2-negative 肿瘤进行分层。内分泌治疗在 ER-low 乳腺癌中的真正获益需要前瞻性研究。
雌激素受体(ER)低表达肿瘤,即免疫组化染色显示1%至10%细胞核阳性的肿瘤,是否代表乳腺癌的一种独特分子生物学实体尚存不确定性,这给其临床管理和新疗法的开发带来了重大挑战。我们旨在阐明ER低表达肿瘤的生物学特性。
我们分析了纳入瑞典基于人群的 Sweden Cancerome Analysis Network-Breast (SCAN-B) 队列的原发性乳腺肿瘤,其中 2%(n = 174)被归类为 ER-low。比较了 ER-low 与 ER-negative(ER-neg;0%)和 ER-positive(ER-pos;>10%)肿瘤之间的转录模式、肿瘤炎症浸润和预后。
ER-low和ER-neg肿瘤的转录组显著重叠,主要呈现非luminal PAM50亚型以及ER信号下调。所有TNBC分子亚型均在ER-low/HER2-negative乳腺癌中出现。无监督聚类算法未能将ER-low/HER2-negative与TNBC肿瘤区分开来,且两组之间仅有2个基因显示出超过1.5倍差异的显著差异表达。然而,临界ER-low肿瘤(ER恰好为10%)大多被赋予与luminal疾病生物学相关的标签,提示可能具有内分泌治疗反应性。ER-low与ER-neg之间的淋巴细胞浸润相当,但相对于ER-pos肿瘤显著更高。在ER-low/HER2-negative疾病中,激素受体阳性以及由RNA测序数据推断的低/中PAM50复发风险评分和淋巴细胞比例≥30%分别与更好的预后相关。
There is uncertainty whether estrogen receptor (ER)-low tumors with 1% to 10% IHC staining of nuclei represent a distinct molecular biological entity of breast cancer, posing significant challenges for their clinical management and the development of novel therapies. We aimed to elucidate ER-low tumor biology. EXPERIMENTAL DESIGN: We analyzed primary breast tumors included in the Swedish population-based Sweden Cancerome Analysis Network-Breast (SCAN-B) cohort, 2% (n = 174) of which were classified as ER-low. Transcriptional patterns, tumor inflammatory infiltration, and prognosis were compared between ER-low versus ER-negative (ER-neg; 0%) and ER-positive (ER-pos; >10%) tumors.
The transcriptomes of ER-low and ER-neg tumors remarkably overlapped, displaying predominantly nonluminal PAM50 subtypes and downregulated ER signaling. All triple-negative breast cancer (TNBC) molecular subtypes were represented within ER-low/HER2-negative breast cancer. Unsupervised clustering algorithms failed to segregate ER-low/HER2-negative from TNBC tumors, and only two genes showed significant differential expression above a 1.5-fold difference between the groups. However, borderline ER-low tumors (with exactly 10% ER) were mostly assigned labels associated with luminal disease biology, suggesting possible endocrine responsiveness. Lymphocyte infiltration was comparable between ER-low and ER-neg but was significantly higher relative to ER-pos tumors. Within ER-low/HER2-negative disease, hormone receptor positivity and low/intermediate PAM50 risk of recurrence score inferred from RNA sequencing data and lymphocyte fraction ≥30% were respectively associated with a better prognosis.
ER-low/HER2-negative is not a distinct breast cancer molecular biological entity but an integral part of TNBC, deserving similar treatments. Nonetheless, a few borderline cases with moderately active ER signaling can potentially respond to endocrine therapies. Hormone receptor-related signatures and tumor-infiltrating lymphocytes may stratify ER-low/HER2-negative tumors according to the risk of recurrence. The true benefit of endocrine therapies in ER-low breast cancer requires prospective investigation.
在 PubMed 查看 → 出版商原文(DOI) 全文 PDF(PMC)· 可下载 治疗专题与资料阅读指南 资料来源与翻译说明 报告译文或资料问题 →
MEMBER ACCOUNT
登录成功会直接打开下一页。