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:Biomarker-Directed Radiotherapy in Breast Cancer: A Narrative Review.
Biomarker-Directed Radiotherapy in Breast Cancer: A Narrative Review.
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本叙述性综述的结果表明,基于证据的共享决策对于根据个体预测的获益和风险以及其个人偏好来优化治疗至关重要。在乳腺癌 RT 中纳入生物标志物导向的方法可能有望实现个体化治疗,可能有助于对复发低风险患者省略 RT,同时识别可能从强化治疗中获益的患者。这种个体化 RT 方法可能与改善临床结局和生活质量相关,并有助于乳腺癌患者的决策。然而,仍需要对生物标志物进行稳健的临床和分析验证,以确保 RT 优化的可靠性和临床实用性。
将分子生物标志物信息整合到全身治疗中已成为乳腺癌治疗的标准实践。然而,其在指导放疗(RT)方面的实施进展较慢。尽管大多数患者在保乳手术后推荐接受术后RT,并且根据危险因素,在全乳切除术后也可能推荐RT,但新出现的证据表明,基因表达特征评分较低或具有特定临床病理特征的患者可能具有极低的局部复发率。本叙述性综述探讨了生物标志物指导的个体化RT方法的潜力,这种方法可能优化治疗策略,并与改善患者结局和体验相关。观察:强调了预后生物标志物与预测生物标志物之间的区别,强调在基于生物标志物的研究中分析和临床有效性的重要性。介绍了研究各种基因组特征和免疫组化标志物在指导乳腺RT中的预后和预测价值的研究结果。这些包括辅助放疗强化分类器和局部辅助放疗省略特征,它们已显示出预测RT获益的潜力。还讨论了基因组调整辐射剂量和TIL(肿瘤浸润淋巴细胞)的作用。阐述了正在进行的临床试验,这些试验探索在导管原位癌和浸润性乳腺癌中使用生物标志物以优化RT决策。
Integration of molecular biomarker information into systemic therapy has become standard practice in breast cancer care. However, its implementation in guiding radiotherapy (RT) is slower. Although postoperative RT is recommended for most patients after breast-conserving surgery and, depending on risk factors, following mastectomy, emerging evidence has indicated that patients with low scores on gene expression signatures or selected clinical-pathological features may have very low local recurrence rates. This narrative review explored the potential of biomarker-directed personalized RT approaches, which may optimize treatment strategies and be associated with improved patient outcomes and experiences. OBSERVATIONS: Distinctions between prognostic and predictive biomarkers were highlighted, emphasizing the importance of analytical and clinical validity in biomarker-based studies. Findings from studies investigating the prognostic and predictive value of various genomic signatures and immunohistochemical markers for guiding breast RT were presented. These included the Adjuvant Radiotherapy Intensification Classifier and the Profile for the Omission of Local Adjuvant Radiation, which have shown potential in predicting RT benefits. The genomic-adjusted radiation dose and role of tumor-infiltrating lymphocytes were also discussed. Ongoing clinical trials exploring the use of biomarkers in ductal carcinoma in situ and invasive breast cancer to refine RT decision-making were illustrated.
The results of this narrative review suggest that evidence-based shared decision-making is crucial to optimize treatment according to the individual's predicted benefits and risks along with their personal preferences. Incorporation of biomarker-directed approaches in RT for breast cancer may hold promise for personalized treatment, potentially facilitating omission of RT for patients at low risk of recurrence, while identifying those who may benefit from intensified therapy. This personalized RT approach may be associated with improved clinical outcomes and quality of life and facilitate decision-making for people with breast cancer. However, there remains a need for robust clinical and analytical validation of biomarkers to ensure reliability and clinical utility for RT optimization.
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