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首页> 外文期刊>Journal of Comparative Physiology B >Differential mRNA and tissue expression of lymphangiogenic growth factors (VEGF-C and -D) and their receptor (VEGFR-3) during tail regeneration in a gecko
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Differential mRNA and tissue expression of lymphangiogenic growth factors (VEGF-C and -D) and their receptor (VEGFR-3) during tail regeneration in a gecko

机译:壁虎尾巴再生过程中淋巴管生成生长因子(VEGF-C和-D)及其受体(VEGFR-3)的差异mRNA和组织表达

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摘要

Lymphangiogenesis, the growth of new lymph vessels, has important roles in both normal and pathological lymphatic function. Despite recent advances, the precise molecular mechanisms behind the lymphangiogenic process remain unclear. The Australian marbled gecko, Christinus marmoratus, voluntarily drops its tail (autotomy) as a predator avoidance strategy. Following autotomy a new tail is regenerated including lymphatic drainage pathways. We examined the molecular control of lymphangiogenesis within the unique model of the regenerating gecko tail. Partial sequences were obtained of the gecko lymphangiogenic growth factors, vascular endothelial growth factor C (VEGF-C) and VEGF-D along with their receptor VEGFR-3. These were highly homologous to other vertebrates. Quantitative real-time polymerase chain reaction (PCR) demonstrated up-regulation of VEGF-C, VEGF-D and VEGFR-3 mRNA expression during the early and middle stages of tail regeneration (between 4 and 9 weeks following autotomy), in late regeneration (12 weeks) and during mid-regeneration (7 and 9 weeks), respectively. VEGF-C and VEGF-D immunostaining was observed lining some lymphatic-like and blood vessels in early–mid tail regeneration, indicating possible associations of the proteins with VEGFRs on endothelia. Keratinocytes and fibroblasts also showed positive staining of VEGF-C and VEGF-D in early–mid tail regeneration. Additionally, VEGF-C was localised in adipose tissue in all tail states examined. This work suggests that specific timings exist for the expression of the lymphangiogenic growth factors, VEGF-C and VEGF-D, and their receptor, VEGF-R3, throughout the regeneration of a functional lymphatic network. Along with localisation data, this suggests potential functions for the growth factors in lymphangiogenesis and angiogenesis throughout tail regeneration.
机译:淋巴管生成,即新淋巴管的生长,在正常和病理性淋巴功能中都起着重要作用。尽管有最新进展,但淋巴管生成过程背后的确切分子机制仍不清楚。澳大利亚的大理石壁虎Christinus marmoratus自愿放弃其尾巴(自动截肢),以此作为避免掠食者的策略。尸体解剖后,新的尾巴被再生,包括淋巴引流途径。我们检查了再生壁虎尾巴的独特模型内淋巴管生成的分子控制。获得了壁虎淋巴管生成生长因子,血管内皮生长因子C(VEGF-C)和VEGF-D及其受体VEGFR-3的部分序列。它们与其他脊椎动物高度同源。实时定量聚合酶链反应(PCR)证明了在尾部再生的早期和中期(自切后4至9周之间)和再生后期,VEGF-C,VEGF-D和VEGFR-3 mRNA表达上调(12周)和再生中期(7和9周)。在早期至中尾部的再生过程中,观察到了VEGF-C和VEGF-D免疫染色衬里一些淋巴样和血管,表明该蛋白可能与内皮上的VEGFRs相关。角质形成细胞和成纤维细胞在早期-中尾部再生中也显示VEGF-C和VEGF-D阳性染色。另外,VEGF-C在所有检查的尾巴状态下均位于脂肪组织中。这项工作表明,在整个功能性淋巴网络的再生过程中,存在着特定的时间表达淋巴管生成生长因子VEGF-C和VEGF-D及其受体VEGF-R3。连同定位数据一起,这表明生长因子在整个尾巴再生过程中在淋巴管生成和血管生成中的潜在功能。

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