Llorente Vicente, Sanderson Daniel, Martín-Gorgojo Alejandro, Samaniego Rafael, Desco Manuel, Gómez-Gaviro María Victoria
Instituto de Investigación Sanitaria Gregorio Marañón (IiSGM), Doctor Esquerdo 46, 28007 Madrid, Spain.
Servicio de ITS/Dermatología, Sección de Especialidades Médicas, Ayuntamiento de Madrid, 28006 Madrid, Spain.
Biomedicines. 2022 Jul 2;10(7):1580. doi: 10.3390/biomedicines10071580.
Cutaneous melanoma is one of the most aggressive and deadliest cancers in human beings due to its invasiveness and other factors. Histopathological analysis is crucial for a proper diagnosis. Optical tissue clearing is a novel field that allows 3D image acquisition of large-scale biological tissues. Optical clearing and immunolabeling for 3D fluorescence imaging has yet to be extensively applied to melanoma. In the present manuscript, we establish, for the first time, an optical clearing and immunostaining procedure for human melanoma and human cell line-derived melanoma xenograft models using the CUBIC (clear, unobstructed brain imaging cocktails) technique. We have successfully cleared the samples and achieved 3D volumetric visualization of the tumor microenvironment, vasculature, and cell populations.
皮肤黑色素瘤因其侵袭性和其他因素,是人类最具侵袭性和致命性的癌症之一。组织病理学分析对于正确诊断至关重要。光学组织透明化是一个新兴领域,它能够实现对大规模生物组织的三维图像采集。用于三维荧光成像的光学透明化和免疫标记尚未广泛应用于黑色素瘤。在本论文中,我们首次使用CUBIC(清晰、无阻碍的脑成像混合试剂)技术,为人类黑色素瘤和人细胞系来源的黑色素瘤异种移植模型建立了光学透明化和免疫染色程序。我们已成功使样本透明化,并实现了肿瘤微环境、脉管系统和细胞群体的三维体积可视化。