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配对新辅助治疗前与新辅助治疗后三阴性乳腺癌中放射敏感性指数的分析

英文原题:Analysis of the Radiosensitivity Index in Paired Preneoadjuvant and Postneoadjuvant Therapy Triple-Negative Breast Cancer.

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Analysis of the Radiosensitivity Index in Paired Preneoadjuvant and Postneoadjuvant Therapy Triple-Negative Breast Cancer.

PubMed 2025/09/25(内容时间) Int J Radiat Oncol Biol Phys Q1 · IF 7.4(JCR 2025)

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研究概要

治疗前 RSI 聚类身份与 TNBC 中免疫富集程度及 NAST 反应相关。初始免疫富集的 TNBC 若对 NAST 未达到 pCR,其预测放射敏感性较配对的治疗前肿瘤降低。

研究思路结论见上方概要

放射敏感性指数(RSI)是一种经过验证的基于基因表达的生物标志物,可预测内在放射敏感性,并已被证明与接受前期手术治疗的三阴性乳腺癌(TNBC)患者的局部控制相关。目前,大多数TNBC患者接受新辅助全身治疗(NAST)。RSI是否能预测NAST的疗效,以及RSI和预测的放射敏感性在暴露于NAST后如何改变,尚不清楚。

从NeoSTOP(NCT02413320)和NeoPACT(NCT03639948)试验中197例接受治疗的TNBC患者的治疗前粗针穿刺活检标本中提取总RNA。还从58例患者配对的新辅助系统治疗(NAST)后(残留病灶)肿瘤组织中提取了总RNA。使用已发表的包含10个基因的算法计算每个肿瘤的RSI。由专业乳腺病理学家根据国际共识指南对治疗前和NAST后样本进行间质TIL(肿瘤浸润淋巴细胞)(sTILs)评分。使用RNA测序数据,通过CIBERSORTx推断样本中的白细胞分数。

对治疗前样本中RSI基因的聚类分析揭示了免疫耗竭组和免疫富集组,且该分类与sTIL浸润(P < .0001)及达到病理完全缓解(pCR)的可能性(P = .001)密切相关。RSI与M0和M1巨噬细胞、CD4+记忆静息T细胞、CD4+记忆活化T细胞、CD8+T细胞、滤泡辅助T细胞、活化NK 细胞、初始和记忆B细胞以及静息树突状细胞在CIBERSORTx白细胞解卷积分析中显示出关联(错误发现率q < 0.01)。在整个队列中,NAST诱导的RSI变化不一,但在初始RSI免疫富集且未达到pCR的肿瘤中,配对治疗前与NAST后样本之间预测放射敏感性显著降低。NAST诱导的sTILs和初始B细胞减少可能与放射敏感性降低有关。

展开英文摘要原文

The radiosensitivity index (RSI) is a validated gene expression-based biomarker that can predict intrinsic radiosensitivity and has been shown to be associated with local control in patients with triple-negative breast cancer (TNBC) treated with upfront surgery. Currently, most patients with TNBC receive neoadjuvant systemic therapy (NAST). Whether the RSI predicts response to NAST and how the RSI and predicted radiosensitivity are altered by exposure to NAST is unknown. METHODS AND MATERIALS: Total RNA was extracted from pretreatment core needle biopsy specimens from 197 patients with TNBC treated on the NeoSTOP (NCT02413320) and NeoPACT (NCT03639948) trials. Total RNA was also extracted from paired post-NAST (residual disease) tumor tissue in 58 patients. A published algorithm using 10 genes was used to compute the RSI for each tumor. Stromal tumor-infiltrating lymphocytes (sTILs) were scored on pretreatment and post-NAST samples by an expert breast pathologist according to international consensus guidelines. CIBERSORTx was used to impute leukocyte fractions in samples using RNA-sequencing data.

Cluster analysis of RSI genes in pretreatment samples revealed immune-depleted and immune-enriched groups, and this classification was strongly associated with sTIL infiltration (P < .0001) and likelihood of achieving pathologic complete response (pCR) (P = .001). RSI showed associations (false discovery rate q < 0.01) with M0 and M1 macrophages, CD4+ memory resting, CD4+ memory activated, CD8+, and follicular helper T-cells, activated natural killer cells, naïve and memory B cells, and resting dendritic cells on CIBERSORTx leukocyte deconvolution. In the entire cohort, NAST-induced change in RSI was variable, but among initially RSI-immune-enriched tumors that did not achieve pCR, there was a significant decrease in predicted radiosensitivity between paired pretreatment and post-NAST samples. NAST-induced reduction in sTILs and naïve B cells may be associated with this decrease in radiosensitivity.

Pretreatment RSI cluster identity is associated with the degree of immune enrichment and response to NAST in TNBC. Initially immune-enriched TNBCs that do not achieve a pCR to NAST exhibit a decrease in predicted radiosensitivity compared with paired pretreatment tumors.

论文信息

作者
Stecklein SR、Salgado R、White JR、Kimler BF、Yoder R、Staley JM、O'Dea AP、Nye LE
单位
Department of Radiation Oncology, University of Kansas Medical Center, Kansas City, Kansas; Department of Pathology and Laboratory Medicine, University of Kansas Medical Center, Kansas City, Kansas; Department of Cancer Biology, University of Kansas Medical Center, Kansas City, Kansas; The University of Kansas Cancer Center, Kansas City, Kansas; Department of Breast Radiation Oncology, University of Texas MD Anderson Cancer Center, Houston, Texas. Electronic address: sstecklein@kumc.edu.United States
文献类型
非美国政府资助研究
期刊
International journal of radiation oncology, biology, physics2026 Mar 1
原文标识
PubMed 41015093 · DOI 10.1016/j.ijrobp.2025.09.038