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血清蛋白质组生物标志物对噪声性听力损失的预测价值。

Predictive value of serum proteomic biomarkers for noise-induced hearing loss.

机构信息

Department of Otolaryngology Head and Neck Surgery, Tangdu Hospital, Fourth Military Medical University, Xi'an, China.

出版信息

Environ Sci Pollut Res Int. 2023 Sep;30(43):96827-96839. doi: 10.1007/s11356-023-29294-y. Epub 2023 Aug 15.

Abstract

Early detection of noise-induced hearing loss (NIHL) in patients with long-term noise exposure is vital for improving public health and reducing social burden. However, at present, the diagnosis of NIHL mainly depends on audiometric testing, and the primary test is pure-tone audiometry. Moreover, testing requires professional operators and complex equipment; thus, NIHL is often diagnosed at a later disease stage. Using a liquid chromatography-tandem mass spectrometry (LC-MS/MS)-based proteomic approach, we identified 9 differentially expressed proteins (DEPs), namely, 6 upregulated serum proteins and 3 downregulated serum proteins, in samples from 50 ground crew personnel working at an air force station. Then, according to the results, we predicted that caldesmon (CALD1), myocilin (MYOC), zyxin (ZYX), creatine kinase M-type (CKM), insulin-like growth factor-binding protein 2 (IGFBP2), complement factor H-related protein 4 (CFHR4), prenylcysteine oxidase 1 (PCYOX1), heat shock cognate 71 kDa protein (HSPA8), and immunoglobulin lambda variable 3-21 (IGLV3-21) were associated with NIHL. We selected these DEPs as variables to perform logistic regression. Finally, a logistic regression model was constructed based on IGFBP2, ZYX, CKM, and CFHR4. The area under the curve was 0.894 (95% CI = 0.812 to 0.977). These findings suggested that IGFBP2, ZYX, CKM, and CFHR4 in serum are differentially expressed in NIHL patients and have the potential to be biomarkers for predicting the risk for NIHL. Further experiments in mice showed that ZYX and IGFBP2 in the cochlear were increased after noise exposure. ZYX and IGFBP2 may be involved in the occurrence and development of NIHL.

摘要

早期发现长期接触噪声的患者的噪声性听力损失(NIHL)对于改善公众健康和减轻社会负担至关重要。然而,目前,NIHL 的诊断主要依赖于听力测试,主要测试是纯音听力测试。此外,测试需要专业操作人员和复杂的设备;因此,NIHL 通常在疾病的晚期才被诊断出来。我们使用基于液相色谱-串联质谱(LC-MS/MS)的蛋白质组学方法,在来自空军站的 50 名地勤人员的样本中鉴定出 9 种差异表达蛋白(DEPs),即 6 种上调的血清蛋白和 3 种下调的血清蛋白。然后,根据结果,我们预测钙调蛋白(CALD1)、肌球蛋白(MYOC)、zyxin(ZYX)、肌酸激酶 M 型(CKM)、胰岛素样生长因子结合蛋白 2(IGFBP2)、补体因子 H 相关蛋白 4(CFHR4)、前胱氨酸氧化酶 1(PCYOX1)、热休克同源 71kDa 蛋白(HSPA8)和免疫球蛋白 lambda 可变 3-21(IGLV3-21)与 NIHL 有关。我们选择这些 DEPs 作为变量进行逻辑回归。最后,基于 IGFBP2、ZYX、CKM 和 CFHR4 构建了逻辑回归模型。曲线下面积为 0.894(95%CI=0.812 至 0.977)。这些发现表明,NIHL 患者血清中的 IGFBP2、ZYX、CKM 和 CFHR4 表达存在差异,具有预测 NIHL 风险的潜力。在小鼠中的进一步实验表明,噪声暴露后耳蜗中的 ZYX 和 IGFBP2 增加。ZYX 和 IGFBP2 可能参与了 NIHL 的发生和发展。

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