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:Changes in T-cell subsets and clonal repertoire during chemoimmunotherapy with pembrolizumab and paclitaxel or capecitabine for metastatic triple-negative breast cancer.
Changes in T-cell subsets and clonal repertoire during chemoimmunotherapy with pembrolizumab and paclitaxel or capecitabine for metastatic triple-negative breast cancer.
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转移性 TNBC 采用 pembrolizumab 联合卡培他滨或紫杉醇的化学免疫治疗导致相似的外周 T 细胞亚群淋巴细胞耗竭,而未改变 T 细胞克隆多样性。回归建模方法适用于免疫监测研究,例如本研究,以识别治疗期间新 T 细胞克隆出现的几率,以及肿瘤富集 T 细胞克隆的增殖速率。
化学免疫治疗是三阴性乳腺癌(TNBC)的标准治疗方法,然而,不同化疗方案对T细胞群体的影响尚不清楚,而这些影响可能与临床活性相关。通过流式细胞术和T细胞受体(TCR)免疫测序对T细胞群体进行定量,可能有助于我们更好地理解化学免疫治疗如何影响T细胞亚群,以及在治疗过程中克隆转变发生的程度。肿瘤内T细胞的TCR免疫测序可能有助于识别和监测血液中推测具有肿瘤反应性的T细胞克隆。
收集了入组一线或二线帕博利珠单抗联合紫杉醇或卡培他滨Ib期临床试验的转移性TNBC患者的血液和肿瘤活检标本。采用相同的生物样本处理方案,获取早期乳腺癌患者队列的血液样本用于比较。使用流式细胞术和TCR免疫测序表征外周血和瘤内T细胞中与治疗相关的免疫学变化。根据瘤内富集情况比较T细胞的克隆增殖率。
当与pembrolizumab联合使用时,paclitaxel和capecitabine在所测量的外周T细胞亚群中导致了相似的随时间变化的淋巴细胞耗竭。其影响比治愈性剂量密集型anthracycline和cyclophosphamide(ddAC)后观察到的更为温和(CD3+细胞平均倍数变化,capecitabine:-0.42,paclitaxel:-0.56,ddAC:-1.21)。在基于capecitabine或paclitaxel的治疗后,未观察到T细胞克隆性或丰富度的差异。回归模型识别出在基线时未检测到的新生T细胞克隆出现的差异(与ddAC相比的比值比,capecitabine:0.292,paclitaxel:0.652)。Pembrolizumab联合paclitaxel或capecitabine扩增了肿瘤内的T细胞克隆;然而,这些克隆并不总是在血液中扩增。血液中克隆的增殖率在肿瘤内富集和未富集的克隆之间相似。
Chemoimmunotherapy is a standard treatment for triple-negative breast cancer (TNBC), however, the impacts of different chemotherapies on T-cell populations, which could correlate with clinical activity, are not known. Quantifying T-cell populations with flow cytometry and T-cell receptor (TCR) immunosequencing may improve our understanding of how chemoimmunotherapy affects T-cell subsets, and to what extent clonal shifts occur during treatment. TCR immunosequencing of intratumoral T cells may facilitate the identification and monitoring of putatively tumor-reactive T-cell clones within the blood.
Blood and tumor biopsies were collected from patients with metastatic TNBC enrolled in a phase Ib clinical trial of first or second-line pembrolizumab with paclitaxel or capecitabine. Using identical biospecimen processing protocols, blood samples from a cohort of patients treated for early-stage breast cancer were obtained for comparison. Treatment-related immunological changes in peripheral blood and intratumoral T cells were characterized using flow cytometry and TCR immunosequencing. Clonal proliferation rates of T cells were compared based on intratumoral enrichment.
When combined with pembrolizumab, paclitaxel and capecitabine resulted in similar time-dependent lymphodepletions across measured peripheral T-cell subsets. Their effects were more modest than that observed following curative-intent dose-dense anthracycline and cyclophosphamide (ddAC) (average fold-change in CD3 + cells, capecitabine: -0.42, paclitaxel: -0.56, ddAC: -1.21). No differences in T-cell clonality or richness were observed following capecitabine or paclitaxel-based treatments. Regression modeling identified differences in the emergence of novel T-cell clones that were not detected at baseline (odds compared with ddAC, capecitabine: 0.292, paclitaxel: 0.652). Pembrolizumab with paclitaxel or capecitabine expanded T-cell clones within tumors; however, these clones did not always expand within the blood. Proliferation rates within the blood were similar between clones that were enriched and those that were not enriched within tumors.
Chemoimmunotherapy for metastatic TNBC with pembrolizumab and capecitabine or paclitaxel resulted in similar peripheral T-cell subset lymphodepletion without altering T-cell clonal diversity. Regression modeling methods are applicable in immune monitoring studies, such as this to identify the odds of novel T-cell clones emerging during treatment, and proliferation rates of tumor-enriched T-cell clones.
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