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首页> 外文期刊>Current Protein and Peptide Science >Identification of Disease States and Response to Therapy in Humans by Utilizing the Biomarker EGFR for Targeted Molecular Imaging
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Identification of Disease States and Response to Therapy in Humans by Utilizing the Biomarker EGFR for Targeted Molecular Imaging

机译:通过使用生物标志物EGFR靶向分子成像来鉴定人类的疾病状态和对治疗的反应

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The epidermal growth factor receptor (EGFR) plays important roles in cell proliferation, suppression of apoptosis, increased motility, and recruitment of neovasculature. Overexpressed or mutated EGFR has been an important biomarker for cancer diagnosis and molecular target for many anticancer drugs because it frequently occurs in many common human cancers. Localizing and estimating the expression of EGFR can potentially identify patients who have tumors that overexpress EGFR and would, therefore, most likely benefit from a targeted treatment to avoid overtreatment and undertreatment. Traditional biopsy methods are invasive, and analysis of the specimens is not sufficient for real-time detection of the lesions or for monitoring the therapeutic efficacy of anticancer drugs. Molecular imaging, a technology of in vivo characterization and measurement of biological processes at the cellular and molecular level, can fulfill these goals. In this review, we summarize current molecular imaging techniques including optical imaging, magnetic resonance imaging, single photon emission computed tomography, and positron emission tomography for in vivo EGFR visualization and discuss their advantages and disadvantages. Special emphasis is placed on noninvasive imaging mutant EGFR with emerging new agents and new imaging technologies to distinguish the maximum benefit to cancer patients for molecular targeted therapy.
机译:表皮生长因子受体(EGFR)在细胞增殖,细胞凋亡抑制,运动能力增强和新血管新生中起重要作用。过表达或突变的EGFR已成为癌症诊断的重要生物标志物和许多抗癌药物的分子靶标,因为它经常发生在许多常见的人类癌症中。定位和估计EGFR的表达可以潜在地识别患有肿瘤的患者,这些肿瘤过度表达EGFR,因此最有可能受益于靶向治疗以避免过度治疗和治疗不足。传统的活检方法是侵入性的,并且标本的分析不足以实时检测病变或监测抗癌药的治疗效果。分子成像是一种在细胞和分子水平上进行体内表征和生物过程测量的技术,可以实现这些目标。在这篇综述中,我们总结了用于体内EGFR可视化的当前分子成像技术,包括光学成像,磁共振成像,单光子发射计算机断层扫描和正电子发射断层扫描,并讨论了它们的优缺点。特别强调采用新兴药物和新成像技术的非侵入性成像突变体EGFR,以区分针对分子靶向治疗对癌症患者的最大益处。

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