CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Preoperative Radiation Therapy-Induced Molecular and Immune Modulation in Early-Stage Breast Cancer: Results From the YOUNGSTER trial.
Preoperative Radiation Therapy-Induced Molecular and Immune Modulation in Early-Stage Breast Cancer: Results From the YOUNGSTER trial.
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术前 RT 在 BC 中诱导早期和晚期生物学变化,最初在数天内产生增殖减少和 DNA 损伤效应,随后在数周内出现适应性免疫激活。RT 可能作为免疫治疗的有效启动手段,尤其是在较高风险亚型中,支持 BC 管理中联合治疗策略的潜力。
术前放疗(RT)对早期乳腺癌(BC)的影响尚待充分探索,但可能显著改善预后并提供新的治疗策略。YOUNGSTER 研究旨在表征术前 RT 在 BC 各亚型中诱导的分子变化:luminal A、luminal B、人表皮生长因子受体 2(HER2)富集型和基底样型。
这项探索性研究纳入了20例早期BC患者,这些患者适合接受保乳手术且既往未接受过治疗。在基线、RT后3至5天以及手术样本之间评估生物学变化。术前给予RT boost(5 × 2.67 Gy/次),随后进行空心针穿刺活检。之后患者接受RT后4周(2-8周)的手术或新辅助治疗。使用192基因panel分析基因表达,同时进行Ki67和CD68的免疫组化、TIL(肿瘤浸润淋巴细胞)定量以及用于DNA损伤评估的γH2AX染色。
基线时,PAM50 亚型分布为 luminal A(35%)、luminal B(25%)、HER2-enriched(20%)和 basal-like(20%)。放疗后早期样本显示增殖基因、PAM50 增殖特征和 Ki67 免疫组化染色显著下调,DNA 损伤增加,巨噬细胞标志物上调。在原发手术样本中(放疗后 2-8 周)(n = 13),适应性免疫标志物显示显著上调,同时 14 基因免疫球蛋白特征增加。
The impact of preoperative radiation therapy (RT) on early-stage breast cancer (BC) is underexplored but may significantly improve outcomes and offer new therapeutic strategies. The YOUNGSTER study aimed to characterize the molecular changes induced by preoperative RT across BC subtypes: luminal A, luminal B, human epidermal growth factor receptor 2 (HER2)-enriched, and basal-like. METHODS AND MATERIALS: This exploratory study enrolled 20 patients with early-stage BC who were eligible for breast-conserving surgery and had not received prior treatment. Biological changes were assessed between baseline, 3 to 5 days post-RT, and surgical samples. A preoperative RT boost (5 × 2.67 Gy/fraction) was administered, followed by a core needle biopsy. Patients then proceeded to either surgery 4 weeks (2-8 weeks) after RT or neoadjuvant therapy. Gene expression was analyzed using a 192-gene panel, alongside immunohistochemistry for Ki67 and CD68, tumor-infiltrating lymphocytes quantification, and γH2AX staining for DNA damage assessment.
At baseline, PAM50 subtype distribution was luminal A (35%), luminal B (25%), HER2-enriched (20%), and basal-like (20%). Early post-RT samples showed significant downregulation of proliferation genes, PAM50 proliferation signature, and Ki67 immunohistochemistry staining, increased DNA damage, and macrophage marker upregulation. In primary surgery samples (2-8 weeks post-RT) (n = 13), adaptive immune markers showed significant upregulation, along with a 14-gene immunoglobulin signature increase.
Preoperative RT induces early and late biological changes in BC, with initial effects on proliferation reduction and DNA damage within days, followed by adaptive immune activation within weeks. RT may serve as an effective primer for immunotherapy, especially in higher-risk subtypes, supporting the potential for combinatorial approaches in BC management.
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