CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Precise subtyping reveals immune heterogeneity for hormone receptor-positive breast cancer.
Precise subtyping reveals immune heterogeneity for hormone receptor-positive breast cancer.
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相当比例的乳腺癌病例以激素受体阳性(HR+)为特征。临床上,HR+乳腺癌的异质性导致内分泌治疗效果不同。因此,定义HR+乳腺癌中的亚组对于有效治疗非常重要。在此,我们开发了一种CMBR方法,利用基于DNA甲基化的计算功能网络来识别HR+乳腺癌中的保守亚组。通过CMBR计算,HR+乳腺癌被分为五个亚组,其中HR+/阴性表皮生长因子受体-2(Her2-)被分为两个亚组,HR+/阳性表皮生长因子受体-2(Her2+)被分为三个亚组。这些亚组在免疫微环境、TIL(肿瘤浸润淋巴细胞)模式、体细胞突变模式和药物敏感性方面具有异质性。具体而言,CMBR识别出两个具有“Hot”肿瘤表型的亚组。此外,这些保守亚组在外部验证数据集上得到了广泛验证。CMBR识别了HR+乳腺癌亚组的分子特征,为个性化治疗策略和管理方案提供了有价值的见解。
A significant proportion of breast cancer cases are characterized by hormone receptor positivity (HR+). Clinically, the heterogeneity of HR+ breast cancer leads to different therapeutic effects on endocrine.
Therefore, definition of subgroups in HR+ breast cancer is important for effective treatment.
Here, we have developed a CMBR method utilizing computational functional networks based on DNA methylation to identify conserved subgroups in HR+ breast cancer. Calculated by CMBR, HR+ breast cancer was divided into five subgroups, of which HR+/negative epidermal growth factor receptor-2 (Her2-) was divided into two subgroups, and HR+/positive epidermal growth factor receptor-2 (Her2+) was divided into three subgroups.
These subgroups had heterogeneity in the immune microenvironment, tumor infiltrating lymphocyte patterns, somatic mutation patterns and drug sensitivity. Specifically, CMBR identified two subgroups with the "Hot" tumor phenotype.
In addition, these conserved subgroups were broadly validated on external validation datasets. CMBR identified the molecular signature of HR+ breast cancer subgroups, providing valuable insights into personalized treatment strategies and management options.
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