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:Estimation of ALU Repetitive Elements in Plasma as a Cost-Effective Liquid Biopsy Tool for Disease Prognosis in Breast Cancer.
Estimation of ALU Repetitive Elements in Plasma as a Cost-Effective Liquid Biopsy Tool for Disease Prognosis in Breast Cancer.
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我们的结果证实了 cfDNA 作为一种不断发展的液体活检工具用于分子分析的实用性。
液体活检已被广泛认为是用于肿瘤疾病检测和监测的有效诊断方法。尽管循环肿瘤细胞(CTC)检测主要用于评估基因组异常,但由于检测流程复杂,其在资源有限地区的应用受到阻碍。我们评估了无细胞DNA(cfDNA)作为液体活检工具的价值,并研究其在乳腺癌患者中的用途。
从167例乳腺癌患者的血浆中提取总cfDNA,患者中位随访时间超过5年,涵盖疾病不同阶段。采用定量PCR估算两种ALU重复序列片段(ALU 115和ALU 247)的拷贝数,并以ALU 247/115比值计算DNA完整性(DI)。对部分样本采用新一代测序(NGS)检测cfDNA中的TP53和PIK3CA突变。研究分析两种ALU片段水平与不同临床病理因素及各疾病阶段无病生存期之间的关联。研究以临床变量和ALU 247水平构建列线图模型以预测无病生存期,并通过决策曲线分析评价表现最佳的模型。
与术前血浆水平相比,术后血浆中的DI和ALU 247水平显著降低(p<0.0001)。转移患者的DI和ALU 247水平均显著较高(p<0.05)。术后血浆ALU 247水平较高的患者无病生存期显著较差(p=0.005)。在ER阴性乳腺癌亚型中,循环ALU 247水平较高还与原发肿瘤内TIL(肿瘤浸润淋巴细胞)较少相关(p=0.01)。Cox比例风险分析在单变量和多变量分析中均确认ALU 247是无病生存期的独立变量[HR 1.3(95% CI 1.047–1.613,p=0.017)]。在模型中加入ALU 247及其他变量后,列线图预测能力显著提高(C指数0.823)。
我们的结果证实cfDNA作为新兴液体活检分子分析工具具有应用价值。通过ALU 247评估较长cfDNA片段,可提供与乳腺癌疾病演进病理过程相关的重要信息,并值得拓展至其他癌种。
Liquid biopsy is widely recognized as an efficient diagnostic method in oncology for disease detection and monitoring. Though the examination of circulating tumor cells (CTC) is mostly implemented for the assessment of genomic aberrations, the need of complex methodologies for their detection has impeded its acceptance in low-resource settings. We evaluated cell-free DNA (cfDNA) as a liquid biopsy tool and investigated its utility in breast cancer patients.
Total cell-free DNA was extracted from the plasma of breast cancer patients (n = 167) with a median follow-up of more than 5 years, at various stages of the disease. Quantitative PCR was performed to estimate the copy numbers of two fractions of ALU repetitive elements (ALU 115 and ALU 247), and DNA integrity (DI) was calculated as the ratio of ALU 247/115. Mutations in TP53 and PIK3CA in the cfDNA were estimated by next-gen sequencing (NGS) in a subset of samples. Associations of the levels of both the ALU fragments with various clinico-pathological factors and disease-free survival at various stages were examined. Nomogram models were constructed with clinical variables and ALU 247 levels to predict disease-free survival and the best performing model was evaluated by decision curve analysis.
DI and ALU 247 levels were significantly lower ( p < 0.0001) in the post-operative plasma when compared to their pre-surgery levels. DI and ALU 247 were found to be significantly higher in patients with metastasis ( p < 0.05). Patients with higher levels of ALU 247 in their post-operative plasma had significant poor disease-free survival ( p = 0.005). Higher levels of ALU 247 in the circulation also correlated with low tumor-infiltrating lymphocytes (TIL) within their primary tumors in the ER-negative breast cancer subtype ( p = 0.01). Cox proportional hazard analysis confirmed ALU 247 as an independent variable of disease-free survival both in univariate and multivariate analysis [HR 1.3 (95% CI 1.047 to 1.613, p = 0.017)]. The nomogram model showed that the addition of ALU 247 with other variables significantly improved (C-index 0.823) the predictive ability of the model.
Our results confirm the utility of cfDNA as an evolving liquid biopsy tool for molecular analysis. Evaluation of larger fragments of cfDNA estimated through ALU 247 can provide vital information concurrent with the pathological process of disease evolution in breast cancer and warrants expansion to other cancer types.
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