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Semi-Solid Tumor model in Xenopus laevis/gilli cloned tadpoles for Intravital study of neovascularization immune cells and melanophore infiltration

机译:非洲爪蟾/吉利克隆t的半固态肿瘤模型用于体内研究新血管形成免疫细胞和黑色素细胞浸润

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摘要

Tumors have the ability to grow as a self-sustaining entity within the body. This autonomy is in part accomplished by the tumor cells ability to induce the formation of new blood vessels (angiogenesis) and by controlling cell trafficking inside the tumor mass. These abilities greatly reduce the efficacy of many cancer therapies and pose challenges for the development of more effective cancer treatments. Hence, there is a need for animal models suitable for direct microscopy observation of blood vessel formation and cell trafficking, especially during early stages of tumor establishment. Here, we have developed a reliable and cost effective tumor model system in tadpoles of the amphibian Xenopus laevis. Tadpoles are ideally suited for direct microscopy observation because of their small size and transparency. Using the thymic lymphoid tumor line 15/0 derived from, and transplantable into, the X. laevis/gilli isogenic clone LG-15, we have adapted a system that consists in transplanting 15/0 tumor cells embedded into rat collagen under the dorsal skin of LG-15 tadpole recipients. This system recapitulates many facets of mammalian tumorigenesis and permits real time visualization of the active formation of the tumor microenvironment induced by 15/0 tumor cells including neovascularization, collagen rearrangements as well as infiltration of immune cells and melanophores.
机译:肿瘤具有在体内自我维持的能力。这种自主性部分地通过肿瘤细胞诱导新血管形成(血管生成)的能力以及通过控制肿瘤块内部的细胞运输来实现。这些能力大大降低了许多癌症疗法的功效,并为开发更有效的癌症疗法提出了挑战。因此,需要适合于直接显微镜观察血管形成和细胞运输的动物模型,尤其是在肿瘤建立的早期阶段。在这里,我们已经在两栖非洲爪蟾的t中开发了一种可靠且具有成本效益的肿瘤模型系统。 small由于尺寸小且透明度高,非常适合直接显微镜观察。使用源自X. laevis / gilli等基因克隆LG-15的胸腺淋巴样肿瘤系15/0,并将其移植到其中,我们采用了一种将15/0肿瘤细胞移植到背侧皮肤下植入大鼠胶原蛋白的系统LG-15 recipient的接收者。该系统概述了哺乳动物肿瘤发生的许多方面,并允许实时可视化15/0肿瘤细胞诱导的肿瘤微环境的活跃形成,包括新血管形成,胶原蛋白重排以及免疫细胞和黑素细胞的浸润。

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