首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Long-term Intravital Immunofluorescence Imaging of Tissue Matrix Components with Epifluorescence and Two-photon Microscopy
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Long-term Intravital Immunofluorescence Imaging of Tissue Matrix Components with Epifluorescence and Two-photon Microscopy

机译:组织荧光的长期体内免疫荧光成像与落射荧光和双光子显微镜。

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摘要

Besides being a physical scaffold to maintain tissue morphology, the extracellular matrix (ECM) is actively involved in regulating cell and tissue function during development and organ homeostasis. It does so by acting via biochemical, biomechanical, and biophysical signaling pathways, such as through the release of bioactive ECM protein fragments, regulating tissue tension, and providing pathways for cell migration. The extracellular matrix of the tumor microenvironment undergoes substantial remodeling, characterized by the degradation, deposition and organization of fibrillar and non-fibrillar matrix proteins. Stromal stiffening of the tumor microenvironment can promote tumor growth and invasion, and cause remodeling of blood and lymphatic vessels. Live imaging of matrix proteins, however, to this point is limited to fibrillar collagens that can be detected by second harmonic generation using multi-photon microscopy, leaving the majority of matrix components largely invisible. Here we describe procedures for tumor inoculation in the thin dorsal ear skin, immunolabeling of extracellular matrix proteins and intravital imaging of the exposed tissue in live mice using epifluorescence and two-photon microscopy. Our intravital imaging method allows for the direct detection of both fibrillar and non-fibrillar matrix proteins in the context of a growing dermal tumor. We show examples of vessel remodeling caused by local matrix contraction. We also found that fibrillar matrix of the tumor detected with the second harmonic generation is spatially distinct from newly deposited matrix components such as tenascin C. We also showed long-term (12 hours) imaging of T-cell interaction with tumor cells and tumor cells migration along the collagen IV of basement membrane. Taken together, this method uniquely allows for the simultaneous detection of tumor cells, their physical microenvironment and the endogenous tissue immune response over time, which may provide important insights into the mechanisms underlying tumor progression and ultimate success or resistance to therapy.
机译:除了是维持组织形态的物理支架外,细胞外基质(ECM)在发育和器官稳态过程中还积极参与调节细胞和组织功能。它通过生化,生物力学和生物物理信号传导途径起作用,例如释放生物活性ECM蛋白片段,调节组织张力并提供细胞迁移途径。肿瘤微环境的细胞外基质经历了重塑,其特征在于纤维状和非纤维状基质蛋白的降解,沉积和组织。肿瘤微环境的基质增生可促进肿瘤的生长和浸润,并引起血液和淋巴管的重塑。然而,到目前为止,基质蛋白的实时成像仅限于原纤维胶原蛋白,可以使用多光子显微镜通过二次谐波检测来检测,而大部分基质组分在很大程度上是不可见的。在这里,我们描述了使用表皮荧光和双光子显微镜在活体小鼠中的薄背面耳朵皮肤中进行肿瘤接种,细胞外基质蛋白的免疫标记以及裸露组织的活体内成像的程序。我们的活体成像方法可在生长中的皮肤肿瘤中直接检测原纤维和非原纤维基质蛋白。我们显示了由局部基质收缩引起的血管重塑的例子。我们还发现,通过二次谐波检测发现的肿瘤纤维状基质在空间上与新沉积的基质成分(如腱生蛋白C)在空间上不同。我们还显示了T细胞与肿瘤细胞和肿瘤细胞相互作用的长期(12小时)成像沿基底膜的胶原蛋白IV迁移。综上所述,这种方法独特地允许随着时间的推移同时检测肿瘤细胞,其物理微环境和内源性组织免疫反应,这可能为深入了解肿瘤进展和最终成功或对治疗的耐药性机制提供重要见解。

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