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应用光声成像技术对结膜黑色素瘤进行非侵入性动态评估。

Non-invasive dynamic assessment of conjunctival melanomas by photoacoustic imaging.

机构信息

Keenan Research Centre for Biomedical Science, St. Michael's Hospital, Toronto, Ontario, Canada; Department of Laboratory Medicine and Pathobiology, St. Michael's Hospital, University of Toronto, Toronto, Ontario, Canada.

Keenan Research Centre for Biomedical Science, St. Michael's Hospital, Toronto, Ontario, Canada; Department of Laboratory Medicine and Pathobiology, St. Michael's Hospital, University of Toronto, Toronto, Ontario, Canada; Department of Ophthalmology and Vision Sciences, St. Michael's Hospital, University of Toronto, Toronto, Ontario, Canada; Glaucoma Unit, St. Michael's Hospital, Toronto, Ontario, Canada; Dalla Lana School of Public Health, University of Toronto, Toronto, Ontario, Canada.

出版信息

Exp Eye Res. 2019 Feb;179:157-167. doi: 10.1016/j.exer.2018.11.014. Epub 2018 Nov 14.

Abstract

This study describes non-invasive photoacoustic imaging to detect and monitor the growth of conjunctival melanomas in vivo. Conjunctival melanomas were induced by injection of melanotic B16F10 cells into the subconjunctival space in syngeneic albino C57BL/6 mice. Non-invasive in vivo photoacoustic tomography was performed before, and after tumor induction up to 2 weeks. Spectral unmixing was performed to determine the location and to assess the distribution of melanin. The melanin photoacoustic signal intensity was quantified from the tumor-bearing and control eyes at all timepoints. For postmortem validation, total tumor and melanotic tumor volumes were measured using H&E stained tumor sections and were compared to in vivo photoacoustic imaging measurements. Photoacoustic imaging non-invasively detected eyes bearing conjunctival tumors of varying sizes. The melanin signal was detected as early as immediately following injection of melanotic tumor cells. Changes in tumor size over time were assessed with changes in the volume and intensity of the melanin signal. Four growing tumors and one regressing tumor were observed. Three tumors without significant change in signal intensity over time were observed, showing variable growth. Photoacoustic melanin signal on the last day of in vivo imaging correlated with postmortem total tumor volume (R = 0.81) and melanotic tumor volume (R = 0.80). The results of our study show that actively growing conjunctival melanomas can be quantified in a non-invasive manner using in vivo photoacoustic tomography. The photoacoustic melanin signal intensity correlated with total and melanotic tumor volume. This novel in vivo imaging platform may help to assess new treatment modalities to manage ocular tumors.

摘要

本研究描述了一种非侵入性光声成像技术,用于检测和监测体内结膜黑色素瘤的生长。通过将黑色素瘤 B16F10 细胞注射到同种异体白化 C57BL/6 小鼠的结膜下间隙中,诱导结膜黑色素瘤。在肿瘤诱导前和诱导后 2 周内进行非侵入性体内光声断层扫描。进行光谱解混以确定黑色素的位置和分布。从所有时间点的荷瘤眼和对照眼定量测量黑色素的光声信号强度。为了进行死后验证,使用 H&E 染色的肿瘤切片测量总肿瘤和黑色素瘤体积,并将其与体内光声成像测量进行比较。光声成像非侵入性地检测到具有不同大小的结膜肿瘤的眼睛。早在注射黑色素瘤细胞后,就可以检测到黑色素信号。通过黑色素信号强度的变化来评估随时间推移的肿瘤大小变化。观察到四个生长中的肿瘤和一个消退中的肿瘤。观察到三个肿瘤随时间推移信号强度没有明显变化,表现出不同程度的生长。在体内成像的最后一天测量的光声黑色素信号与死后总肿瘤体积(R=0.81)和黑色素瘤体积(R=0.80)相关。我们的研究结果表明,使用体内光声断层扫描可以以非侵入性的方式定量检测活跃生长的结膜黑色素瘤。光声黑色素信号强度与总肿瘤和黑色素瘤体积相关。这种新的体内成像平台可能有助于评估新的治疗方法来管理眼部肿瘤。

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