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Spatiotemporal patterns of expression of neurotrophins and neurotrophin receptors in mice suggest functional roles in testicular and epididymal morphogenesis

机译:小鼠中神经营养蛋白和神经营养蛋白受体表达的时空模式表明在睾丸和附睾形态发生中的功能作用

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摘要

Several reports have established that the action of neurotrophins is not restricted to the nervous system but can affect a broad range of non-neuronal cells. Nerve growth factor (NGF) is present in adult testis and has been suggested as a potential regulator of meiosis in rat seminiferous epithelium. Here we present an extensive immunohistochemical study on neurotrophins and their receptors (p75 and trk) in the developing mouse testis and epididymis, and in fetal human testis. During the early steps of testicular and epididymal organization in the mouse, strong p75 immunoreactivity is detectable in the gonadal ridge in the mesenchyme that is excluded from the evolving testicular cords, and in the mesenchymal cells of the mesonephros. Later in organogenesis, most of the p75-positive interstitial cells of the testis coexpress neurotrophin-3 (NT-3) and the truncated trk B receptor in a developmentally regulated pattern. Our Western blot data confirm the expression of these molecules. These findings suggest that neurotrophin receptors play a role in early inductive events during critical periods of testicular and epididymal development. During fetal and postnatal histogenesis, an increasing number of NT-3- and p75-positive mesenchymal cells start to express or-smooth muscle isoactin, suggesting a role for the so-called neurotrophic system in the differentiation of testicular myoid cells and epididymal smooth muscle cells. In the testis of an 18-wk gestational-age human fetus, immunohistochemical analysis has shown intense immunoreactivity of mesenchymal cells to antibodies for neurotrophin receptors p75, trk A, and trk C, and their ligands NGF and NT-3. In addition, we found that in the human fetal testis, the interstitial cells that are differentiating into peritubular myoid cells are associated with a dense network of nerve fibers. Our data suggest that neurotrophins and their receptors are involved in a multifunctional system that regulates cell differentiation and innervation in the developing testis and epididymis.
机译:几份报告已经证实,神经营养蛋白的作用不仅限于神经系统,还可以影响广泛的非神经细胞。神经生长因子(NGF)存在于成年睾丸中,并被认为是大鼠生精上皮细胞减数分裂的潜在调节剂。在这里,我们对发育中的小鼠睾丸和附睾以及胎儿人类睾丸中的神经营养蛋白及其受体(p75和trk)进行了广泛的免疫组织化学研究。在小鼠的睾丸和附睾组织的早期阶段,在不断进化的睾丸索被排除的间充质的性腺中,以及在间充质的间充质细胞中都可以检测到强烈的p75免疫反应性。在器官发生的后期,大多数睾丸的p75阳性间质细胞以发育受调节的模式共表达Neurotrophin-3(NT-3)和截短的trk B受体。我们的蛋白质印迹数据证实了这些分子的表达。这些发现表明,神经营养蛋白受体在睾丸和附睾发育的关键时期的早期诱导事件中起作用。在胎儿和出生后的组织发生过程中,越来越多的NT-3-和p75阳性间充质细胞开始表达或平滑肌异肌动蛋白,这暗示了所谓的神经营养系统在睾丸肌样细胞和附睾平滑肌分化中的作用。细胞。在18周胎龄胎儿的睾丸中,免疫组织化学分析显示,间充质细胞对神经营养蛋白受体p75,trk A和trk C及其配体NGF和NT-3的抗体具有强烈的免疫反应性。此外,我们发现在人类胎儿睾丸中,分化为肾小管周围肌样细胞的间质细胞与密集的神经纤维网络有关。我们的数据表明神经营养蛋白及其受体参与调节发育中的睾丸和附睾中细胞分化和神经支配的多功能系统。

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