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Label-free, Multi-contrast Optical Coherence Tomography For Study of Skin Melanoma Mice in vivo

机译:用于体内研究皮肤黑素瘤小鼠的无标签,多对比度光学相干断层扫描

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The lymphatic system plays an important role in inflammation and cancer such as melanoma. Due to the limitations of current developed imaging techniques, visualization of lymphatic vessels within the tissue in vivo has been challenging. Optical imaging of lymphatic vessel is gaining increased interests because it does not involve any radiation and can achieve very high resolution. Here, we developed a multi-contrast, label-free optical coherence tomography (OCT) imaging technology with an axial resolution of ~ 5 μm and lateral resolution of ~ 7 μm, which is capable of providing microstructural information and microcirculatory system including blood and lymphatic vessels simultaneously. Using this technique, we observed the melanoma mice in vivo. Mice were treated topically on the ear with (Z)-4-Hydroxytamoxifen(4-OHT) to elicit BRAF~(V600E) and to silence Pten expression. Also, to observing the structural information, angiogenesis and lymphangiogenesis in the ear of the induced melanoma mouse can be done. The advantage of using OCT over other imaging modalities is its ability to assess label-free blood flow along with lymphatic vessels simultaneously for imaging the microcirculatory system within tissue beds without any exogenous agents. Because the metastasis of melanoma is highly related to the lymphatic vessels, our findings can be a powerful tool to help the diagnosis of the metastasis melanoma. In the future, this may become a helpful tool for better understanding pathologic mechanisms and treatment technique development in some diseases.
机译:淋巴系统在炎症和黑色素瘤等癌症中起着重要作用。由于当前开发的成像技术的局限性,体内组织内淋巴管的可视化一直具有挑战性。淋巴管的光学成像越来越受到关注,因为它不涉及任何辐射并且可以实现非常高的分辨率。在这里,我们开发了一种多对比度,无标记的光学相干断层扫描(OCT)成像技术,其轴向分辨率为〜5μm,横向分辨率为〜7μm,能够提供包括血液和淋巴结的微结构信息和微循环系统船只同时。使用这种技术,我们在体内观察了黑色素瘤小鼠。用(Z)-4-羟基他莫昔芬(4-OHT)在小鼠的耳朵上局部处理小鼠,以诱导BRAF〜(V600E)并使Pten表达沉默。另外,为了观察结构信息,可以完成诱导的黑素瘤小鼠的耳朵中的血管生成和淋巴管生成。与其他成像方式相比,使用OCT的优势在于它能够同时评估无标记的血流和淋巴管,从而对没有任何外源性物质的组织床内的微循环系统成像。由于黑色素瘤的转移与淋巴管高度相关,因此我们的发现可以作为帮助诊断转移性黑色素瘤的有力工具。将来,这可能会成为有助于更好地了解某些疾病的病理机制和治疗技术发展的有用工具。

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