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Testing an unusual in vivo vessel network model: a method to study angiogenesis in the colonial tunicate Botryllus schlosseri

机译:在Vivo 血管网络模型中测试一个不寻常的:一种研究殖民幕血管生成的血管生成的方法 Botryllus schlosseri

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Tunicates are the closest relatives to vertebrates and include the only chordate species able to reproduce both sexually and asexually. The colonial tunicate Botryllus schlosseri is embedded in a transparent extracellular matrix (the tunic) containing the colonial circulatory system (CCS). The latter is a network of vessels external to zooids, limited by a simple, flat epithelium that originated from the epidermis. The CCS propagates and regenerates by remodelling and extending the vessel network through the mechanism of sprouting, which typically characterises vertebrate angiogenesis. In exploiting the characteristics of B. schlosseri as a laboratory model, we present a new experimental and analysis method based on the ability to obtain genetically identical subclones representing paired samples for the appropriate quantitative outcome statistical analysis. The method, tested using human VEGF and EGF to induce angiogenesis, shows that the CCS provides a useful in vivo vessel network model for testing the effects of specific injected solutes on vessel dynamics. These results show the potentiality of B. schlosseri CCS as an effective complementary model for in vivo studies on angiogenesis and anticancer therapy. We discuss this potentiality, taking into consideration the origin, nature, and roles of the cellular and molecular agents involved in CCS growth.
机译:外观是脊椎动物最接近的亲属,包括唯一能够性和无性繁殖的唯一脊索化物种。殖民地剧本Botryllus Schlosseri嵌入含有殖民循环系统(CCS)的透明细胞外基质(外圈)。后者是毒素外部的血管网络,受到源自表皮的简单平坦上皮的限制。 CCS通过改造并通过发芽机制延伸和延伸血管网络,其通常表征脊椎动物血管生成的机制来传播和再生。在利用B. Schlosseri作为实验室模型的特征时,我们提出了一种基于获得代表配对样本的基因依赖性统计分析的基础特征和分析方法。使用人VEGF和EGF测试以诱导血管生成的方法表明,CCS在体内血管网络模型中提供了用于测试特定注入溶质对血管动力学的影响的可用。这些结果表明B. Schlosseri CCS作为体内血管生成和抗癌疗法研究的有效互补模型。考虑到涉及CCS生长的细胞和分子剂的起源,性质和作用,我们讨论了这种潜力。

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