CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dissecting the biological heterogeneity of HER2-positive breast cancer.
Dissecting the biological heterogeneity of HER2-positive breast cancer.
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HER2阳性(HER2+)乳腺癌(BC)是一种异质性且多方面的疾病,具有重要的治疗意义。首先,所有内在分子亚型均可在HER2+肿瘤中识别,其中HER2富集型最为常见。这些亚型与HER2阴性疾病的对应亚型差异不大,除了17号染色体上HER2扩增子内/附近基因的高表达。内在分型,连同ERBB2 mRNA水平的定量,与双HER2阻断新辅助试验中较高的病理完全缓解率相关,并可能有助于选择患者进行降阶梯和升阶梯治疗策略。其次,HER2+肿瘤具有广泛的DNA改变。ERBB2突变和PI3K/Akt/mTOR通路改变是最常见的改变之一,可能预测从强效pan-HER、PI3K和mTOR抑制剂中获益。
此外,HER2+肿瘤通常被淋巴细胞浸润。这些TIL(肿瘤浸润淋巴细胞)(TILs)预测对新辅助抗HER2为基础治疗的反应,并发挥预后作用。PD-L1在约42%的HER2+ BC中可检测到,也可能有助于定义对新型抗PD1/PD-L1免疫治疗有反应的患者。考虑这种复杂性的新型多参数临床病理和基因组工具,如HER2DX,正在开发中,以定义更量身定制的治疗方法。
最后,HER2靶向抗体-药物偶联物(ADC)如trastuzumab deruxtecan可能在HER2低表达肿瘤中具有活性。
总体而言,有必要对HER2+疾病进行分子表征并开发新型靶向治疗。
HER2-positive (HER2+) breast cancer (BC) is a heterogenous and multifaceted disease, with interesting therapeutic implications. First, all intrinsic molecular subtypes can be identified in HER2+ tumors, with the HER2-enriched being the most frequent. Such subtypes do not differ much from their counterparts in HER2-negative disease, apart for the high expression of genes in/near the HER2 amplicon on chromosome 17.
Intrinsic subtyping, along with the quantification of ERBB2 mRNA levels, is associated with higher rates of pathologic complete response across neoadjuvant trials of dual HER2 blockade and might help select patients for de-escalation and escalation treatment strategies. Secondly, HER2+ tumors have a broad range of DNA alterations. ERBB2 mutations and alterations in the PI3K/Akt/mTOR pathway are among the most frequent and might predict benefit from potent pan-HER, PI3K and mTOR inhibitors.
Moreover, HER2+ tumors are usually infiltrated by lymphocytes. These tumor infiltrating-lymphocytes (TILs) predict response to neoadjuvant anti-HER2-based treatment and exert a prognostic role. PD-L1, detected in ∼42 % of HER2+ BC, might also be useful to define patients responding to novel anti-PD1/PD-L1 immunotherapies. New multiparametric clinicopathologic and genomic tools accounting for this complexity, such as HER2DX, are under development to define more tailored treatment approaches.
Finally, HER2-targeted antibody-drug conjugates (ADC) such as trastuzumab deruxtecan might be active in tumors with low expression of HER2.
Overall, there is a need to molecularly characterize and develop novel targeted therapies for HER2+ disease.
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