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首页> 外文期刊>BMC research notes >Trace elements as tumor biomarkers and prognostic factors in breast cancer: a study through energy dispersive x-ray fluorescence
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Trace elements as tumor biomarkers and prognostic factors in breast cancer: a study through energy dispersive x-ray fluorescence

机译:微量元素作为乳腺癌的肿瘤生物标志物和预后因素:通过能量色散X射线荧光的研究

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Background The application and better understanding of traditional and new breast tumor biomarkers and prognostic factors are increasing due to the fact that they are able to identify individuals at high risk of breast cancer, who may benefit from preventive interventions. Also, biomarkers can make possible for physicians to design an individualized treatment for each patient. Previous studies showed that trace elements (TEs) determined by X-Ray Fluorescence (XRF) techniques are found in significantly higher concentrations in neoplastic breast tissues (malignant and benign) when compared with normal tissues. The aim of this work was to evaluate the potential of TEs, determined by the use of the Energy Dispersive X-Ray Fluorescence (EDXRF) technique, as biomarkers and prognostic factors in breast cancer. Methods By using EDXRF, we determined Ca, Fe, Cu, and Zn trace elements concentrations in 106 samples of normal and breast cancer tissues. Cut-off values for each TE were determined through Receiver Operating Characteristic (ROC) analysis from the TEs distributions. These values were used to set the positive or negative expression. This expression was subsequently correlated with clinical prognostic factors through Fisher’s exact test and chi-square test. Kaplan Meier survival curves were also evaluated to assess the effect of the expression of TEs in the overall patient survival. Results Concentrations of TEs are higher in neoplastic tissues (malignant and benign) when compared with normal tissues. Results from ROC analysis showed that TEs can be considered a tumor biomarker because, after establishing a cut-off value, it was possible to classify different tissues as normal or neoplastic, as well as different types of cancer. The expression of TEs was found statistically correlated with age and menstrual status. The survival curves estimated by the Kaplan-Meier method showed that patients with positive expression for Cu presented a poor overall survival ( p Conclusions This study suggests that TEs expression has a great potential of application as a tumor biomarker, once it was revealed to be an effective tool to distinguish different types of breast tissues and to identify the difference between malignant and benign tumors. The expressions of all TEs were found statistically correlated with well-known prognostic factors for breast cancer. The element copper also showed statistical correlation with overall survival.
机译:背景技术由于传统的和新型的乳腺肿瘤生物标志物和预后因素能够识别出罹患乳腺癌的高风险人群,因此可以从预防性干预中受益,这一事实正在得到越来越多的应用。同样,生物标记物可以使医生为每个患者设计个性化治疗。先前的研究表明,与正常组织相比,在乳腺肿瘤组织(恶性和良性)中,通过X射线荧光(XRF)技术测定的痕量元素(TEs)的浓度明显更高。这项工作的目的是评估通过使用能量色散X射线荧光(EDXRF)技术确定的TEs作为乳腺癌的生物标志物和预后因素的潜力。方法使用EDXRF,测定了正常和乳腺癌组织的106个样品中的Ca,Fe,Cu和Zn微量元素浓度。通过从TE分布中的接收器工作特性(ROC)分析确定每个TE的截止值。这些值用于设置正或负表达。随后,通过Fisher精确检验和卡方检验将该表达与临床预后因素相关联。还评估了Kaplan Meier生存曲线,以评估TEs表达在总体患者生存中的作用。结果与正常组织相比,肿瘤组织(恶性和良性)中TEs的浓度更高。 ROC分析的结果表明TEs可以被认为是肿瘤的生物标志物,因为在确定临界值之后,可以将不同的组织分类为正常组织或肿瘤组织,以及不同类型的癌症。发现TEs的表达与年龄和月经状况在统计学上相关。通过Kaplan-Meier方法估算的生存曲线显示,Cu阳性表达的患者总体生存率较差(p结论结论:这项研究表明,一旦TEs表达被证明是一种肿瘤生物标志物,它就有很大的应用潜力。区分不同类型的乳腺组织和鉴别恶性和良性肿瘤的有效工具,所有TEs的表达与乳腺癌的预后因素有统计学意义,铜元素也与总体生存率有统计学意义。

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