Dept of Internal Medicine, University of Michigan, Ann Arbor, MI, 48109, United States.
Dept of Biomedical Engineering, University of Michigan, Ann Arbor, MI, 48109, United States.
Sci Rep. 2017 Oct 31;7(1):14404. doi: 10.1038/s41598-017-13735-z.
ErbB2 expression in early breast cancer can predict tumor aggressiveness and clinical outcomes in large patient populations. Accurate assessment with physical biopsy and conventional pathology can be limited by tumor heterogeneity. We aim to demonstrate real-time optical sectioning using a near-infrared labeled ErbB2 peptide that generates tumor-specific contrast in human xenograft breast tumors in vivo. We used IRDye800CW as the fluorophore, validated performance characteristics for specific peptide binding to cells in vitro, and investigated peak peptide uptake in tumors using photoacoustic tomography. We performed real-time optical imaging using a handheld dual-axes confocal fluorescence endomicroscope that collects light off-axis to reduce tissue scattering for greater imaging depths. Optical sections in either the vertical or horizontal plane were collected with sub-cellular resolution. Also, we found significantly greater peptide binding to pre-clinical xenograft breast cancer in vivo and to human specimens of invasive ductal carcinoma that express ErbB2 ex vivo. We used a scrambled peptide for control. Peptide biodistribution showed high tumor uptake by comparison with other organs to support safety. This novel integrated imaging strategy is promising for visualizing ErbB2 expression in breast tumors and serve as an adjunct during surgery to improve diagnostic accuracy, identify tumor margins, and stage early cancers.
在早期乳腺癌中,ErbB2 的表达可以预测肿瘤的侵袭性和临床结局,在大量患者人群中也是如此。通过物理活检和常规病理进行准确评估可能会受到肿瘤异质性的限制。我们旨在展示使用近红外标记的 ErbB2 肽进行实时光学切片,该肽在体内人异种移植乳腺癌肿瘤中产生肿瘤特异性对比。我们使用 IRDye800CW 作为荧光团,验证了特定肽在体外与细胞结合的性能特征,并使用光声断层扫描研究了肿瘤中肽的摄取峰值。我们使用手持式双轴共聚焦荧光内窥显微镜进行实时光学成像,该显微镜收集离轴光以减少组织散射,从而实现更大的成像深度。在垂直或水平平面上收集具有亚细胞分辨率的光学切片。此外,我们发现,与体内的临床前异种移植乳腺癌和表达 ErbB2 的人浸润性导管癌标本相比,肽在体内具有更高的结合性。我们使用了一个乱序肽作为对照。与其他器官相比,肽的生物分布显示出对肿瘤的高摄取,以支持其安全性。这种新型的集成成像策略有望用于可视化乳腺癌肿瘤中的 ErbB2 表达,并在手术中作为辅助手段,以提高诊断准确性、识别肿瘤边界和分期早期癌症。