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:Homologous Recombination Deficiency Across Subtypes of Primary Breast Cancer.
Homologous Recombination Deficiency Across Subtypes of Primary Breast Cancer.
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非 TNBC 中 HRD 的患病率提示,靶向 HRD 的治疗应在更广泛的乳腺癌患者人群中评估。
同源重组缺陷(HRD)在三阴性乳腺癌(TNBC)中非常常见,并与对PARP抑制剂(PARPi)的应答相关。本研究考察非TNBC中的HRD发生率,以评估PARPi用于更广泛乳腺癌患者群体的潜力。
对II期PETREMAC试验(ClinicalTrials.gov编号NCT02624973)中201例原发性乳腺癌患者治疗前活检样本进行360基因靶向测序及BRCA1甲基化分析,确定HRD状态。严格定义HRD(HRD-S)为BRCA1、BRCA2、BRIP1、BARD1或PALB2突变和/或BRCA1启动子甲基化;次要分析采用较宽定义(HRD-W),额外考察20个基因突变。此外,还进行了肿瘤BRCA特征(多重连接依赖探针扩增)、PAM50分型、RAD51核焦点(用于检测功能性HRD)、TIL及PD-L1分析。
非TNBC病例中HRD-S占5%(169例中9例),而TNBC肿瘤中为47%(32例中15例)。HRD-W在非TNBC中为23%(169例中39例),在TNBC中为59%(32例中19例)。在检测RAD51焦点的58份非TNBC及30份TNBC活检样本中,HRD-S分类患者的RAD51低评分比例分别为100%(4/4)和93%(14/15)。相反,HRD-W分类病例中,非TNBC为24%(17例中4例),TNBC为79%(19例中15例),RAD51评分较低。9例HRD-S非TNBC肿瘤中,只有1例具有基底样PAM50特征。HRD-S与肿瘤BRCA特征、TIL密度高或PD-L1表达高均高度一致(各项P<0.001)。
非TNBC中存在HRD,提示应在更广泛乳腺癌患者群体中评估靶向HRD的治疗。应采用严格HRD标准,以提高功能性HRD诊断的准确性。
Homologous recombination deficiency (HRD) is highly prevalent in triple-negative breast cancer (TNBC) and associated with response to PARP inhibition (PARPi). Here, we studied the prevalence of HRD in non-TNBC to assess the potential for PARPi in a wider group of patients with breast cancer.
HRD status was established using targeted gene panel sequencing (360 genes) and BRCA1 methylation analysis of pretreatment biopsies from 201 patients with primary breast cancer in the phase II PETREMAC trial (ClinicalTrials.gov identifier: NCT02624973). HRD was defined as mutations in BRCA1 , BRCA2 , BRIP1 , BARD1 , or PALB2 and/or promoter methylation of BRCA1 (strict definition; HRD-S). In secondary analyses, a wider definition (HRD-W) was used, examining mutations in 20 additional genes. Furthermore, tumor BRCA ness (multiplex ligation-dependent probe amplification), PAM50 subtyping, RAD51 nuclear foci to test functional HRD, tumor-infiltrating lymphocyte (TIL), and PD-L1 analyses were performed.
HRD-S was present in 5% of non-TNBC cases (n = 9 of 169), contrasting 47% of the TNBC tumors (n = 15 of 32). HRD-W was observed in 23% of non-TNBC (n = 39 of 169) and 59% of TNBC cases (n = 19 of 32). Of 58 non-TNBC and 30 TNBC biopsies examined for RAD51 foci, 4 of 4 (100%) non-TNBC and 13 of 14 (93%) TNBC cases classified as HRD-S had RAD51 low scores. In contrast, 4 of 17 (24%) non-TNBC and 15 of 19 (79%) TNBC biopsies classified as HRD-W exhibited RAD51 low scores. Of nine non-TNBC tumors with HRD-S status, only one had a basal-like PAM50 signature. There was a high concordance between HRD-S and either BRCA ness, high TIL density, or high PD-L1 expression (each P < .001).
The prevalence of HRD in non-TNBC suggests that therapy targeting HRD should be evaluated in a wider breast cancer patient population. Strict HRD criteria should be implemented to increase diagnostic precision with respect to functional HRD.
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