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Intra-testicular injection of adenoviral constructs results in Sertoli cell-specific gene expression and disruption of the seminiferous epithelium

机译:睾丸内注射腺病毒构建体导致sertoli细胞特异性基因表达和生精上皮的破坏

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摘要

Spermatogenesis is a complex process that cannot be modelled in vitro. The somatic Sertoli cells (SCs) within the seminiferous tubules perform a key role in supporting maturation of germ cells (GCs). Progress has been made in determining what aspects of SC function are critical to maintenance of fertility by developing rodent models based on the Cre/LoxP system; however, this is time-consuming and is only applicable to mice. The aim of the present study was to establish methods for direct injection of adenoviral vectors containing shRNA constructs into the testis as a way of inducing target-selective knock-down in vivo. We describe here a series of experiments using adenovirus expressing a green fluorescent protein (GFP) transgene. Injection via the efferent ductules resulted in SC-specific expression of GFP; expression levels paralleled the amount of infective viral particles injected. At the highest doses of virus seminiferous tubule architecture were grossly disturbed and immune cell invasion noted. At lower concentrations, the expression of GFP was variable/negligible, the seminiferous tubule lumen was maintained but stage-dependent GC loss and development of numerous basal vacuoles was observed. These resembled intercellular dilations of SC junctional complexes previously described in rats and may be a consequence of disturbances in SC function due to interaction of the viral particles with the coxsackie/adenovirus receptor that is a component of the junctional complexes within the blood testis barrier. In conclusion, intra-testicular injection of adenoviral vectors disturbs SC function in vivo and future work will therefore focus on the use of lentiviral delivery systems.
机译:精子发生是一个复杂的过程,无法在体外建模。曲细精管内的体细胞支持细胞(SCs)在支持生殖细胞(GCs)的成熟中起关键作用。通过开发基于Cre / LoxP系统的啮齿动物模型,在确定SC功能的哪些方面对于维持生育能力至关重要方面取得了进展;但是,这很耗时,并且仅适用于小鼠。本研究的目的是建立将包含shRNA构建体的腺病毒载体直接注射到睾丸中的方法,作为在体内诱导靶标选择性敲低的方法。我们在这里描述了一系列使用表达绿色荧光蛋白(GFP)转基因的腺病毒进行的实验。通过传出的小管注射导致GFP的SC特异性表达。表达水平与注射的感染性病毒颗粒数量平行。在最高剂量下,病毒的生曲小管结构受到严重干扰,并注意到免疫细胞入侵。在较低的浓度下,GFP的表达是可变的/可忽略的,生精小管腔得以维持,但是观察到了阶段依赖性的GC丢失和许多基底液泡的发展。这些类似于先前在大鼠中描述的SC连接复合物的细胞间扩张,并且可能是由于病毒颗粒与作为血液睾丸屏障内连接复合物的组成部分的柯萨奇/腺病毒受体相互作用而导致SC功能障碍的结果。总之,睾丸内注射腺病毒载体会干扰体内SC功能,因此未来的工作将集中在慢病毒递送系统的使用上。

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