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.
过继性自然杀伤(NK)细胞疗法是治疗三阴性乳腺癌的一种有前景的策略,但其疗效往往受到瘤内持久性差以及在免疫抑制性肿瘤微环境中功能耗竭的限制。
英文原题:A Randomized, Phase II Clinical Trial of FLT-PET and FDG-PET for Early Response Assessment of Neoadjuvant Systemic Therapy in Triple-Negative Breast Cancer.
A Randomized, Phase II Clinical Trial of FLT-PET and FDG-PET for Early Response Assessment of Neoadjuvant Systemic Therapy in Triple-Negative Breast Cancer.
一个NACT周期后的FDG-PET与组织学反应相关,且与RCB的相关性强于MRI。这些发现支持PET作为治疗反应的早期生物标志物,并值得在更大的免疫治疗时代的试验中验证。
三阴性乳腺癌(TNBC)新辅助化疗(NACT)反应的早期识别有助于及时调整治疗。这项II期分析及临床验证研究(TNPET01)评估了[18F]-氟脱氧葡萄糖(FDG)或[18F]-氟胸苷(FLT)正电子发射断层扫描(PET)/CT能否预测一个NACT周期后的反应。
在A部分(分析有效性阶段),II-III期TNBC患者被随机分配接受FDG或FLT显像。基线重复扫描评估了重测重复性,随后在第3周进行第1周期后扫描。动态显像先于静态采集,在90、120和180分钟(FDG)或90分钟(FLT)进行,评估SUVmax、SUVmean、SUVpeak和SULpeak。B部分的示踪剂选择基于预设的重复性和应答标准。B部分(临床有效性阶段)检查了一个周期后SUV变化(SUV)与第3周期后MRI、治疗结束时MRI以及手术时残留癌症负荷(RCB)之间的关联。探索性分析评估了PET应答、Ki-67和TIL(肿瘤浸润淋巴细胞)之间的关系。
共纳入22例患者。两种示踪剂均达到可重复性阈值;由于图像质量更优且可及性更好,FDG被选用于B部分。14例患者在两部分中均接受了FDG-PET。一个周期后SUVmax/mean的下降与治疗中期MRI反应及最终RCB评分显著相关(P < 0.005)。第1周期后早期TILs升高与更大的代谢下降和更低的RCB相关,而Ki-67变化无预测价值。
PURPOSE: Early identification of response to neoadjuvant chemotherapy (NACT) in triple-negative breast cancer (TNBC) can facilitate timely treatment adjustments. This phase II analytic and clinical validity study (TNPET01) evaluated whether [18F]-fluorodeoxyglucose (FDG) or [18F]-fluorothymidine (FLT) positron emission tomography (PET)/CT can predict response after one NACT cycle. PATIENTS AND METHODS: In part A (analytic validity phase), patients with stage II-III TNBC were randomized to FDG or FLT imaging. Baseline repeat scans assessed test-retest repeatability, followed by a post-cycle 1 scan in week 3. Dynamic imaging preceded static acquisitions at 90-, 120-, and 180-minute (FDG) or 90-minute (FLT), evaluating SUVmax, SUVmean, SUVpeak, and SULpeak. Tracer selection for part B was based on prespecified repeatability and response criteria. Part B (clinical validity phase) examined associations between changes in SUV ( SUV) after one cycle and post-cycle 3 MRI, end-of-treatment MRI, and residual cancer burden (RCB) at surgery. Exploratory analyses assessed relationships between PET response, Ki-67, and tumor-infiltrating lymphocytes (TIL). RESULTS: Twenty-two patients were enrolled. Both tracers met repeatability thresholds; FDG was selected for part B owing to superior image quality and availability. Fourteen patients underwent FDG-PET across both parts. Reductions in SUVmax/mean after one cycle significantly correlated with mid-treatment MRI response and final RCB score (P < 0.005). Early post-cycle 1 increases in TILs correlated with greater metabolic reduction and lower RCB, whereas Ki-67 changes were not predictive. CONCLUSIONS: FDG-PET after one NACT cycle was associated with histologic response and stronger correlations with RCB than MRI. These findings support PET as an early biomarker for treatment response and warrant validation in larger, immunotherapy-era trials.
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