Moos T, Oates P S, Morgan E H
Department of Medical Anatomy, The Panum Institute, University of Copenhagen, Denmark.
J Comp Neurol. 1998 Aug 31;398(3):420-30.
In order to characterize the mechanism by which Iron (Fe) is taken up by neurons, we examined the neuronal expression of transferrin receptor (TR) in rats during development and iron (Fe) deficiency by using immunohistochemistry, in vitro receptor autoradiography and in situ hybridization. In contrast to the continuous expression of TR in brain capillary endothelial cells regardless of the age of the animals studied, the expression of neuronal TR was almost absent at late embryonic and early postnatal ages but increased with increasing age to reach a plateau from postnatal (P) 21 through adulthood as verified by immunohistochemical staining. Reducing the Fe stores potentiated the expression of TR immunoreactivity in neurons of both young and adult rats in several grey matter regions. Increased TR immunoreactivity was also observed in neuronal extensions of neurons of the medial habenular nucleus, reticular neurons of the brainstem, and fibers projecting to the area postrema. TR immunoreactivity was never observed in white matter regions, except for that recorded in brain capillaries. In vitro receptor autoradiography verified the increased capacity for transferrin binding during Fe deficiency. By contrast, TR mRNA expression was not affected by Fe deficiency. These findings demonstrate that the expression of the neuronal TR protein is age dependent and susceptible to Fe deficiency.
为了阐明神经元摄取铁(Fe)的机制,我们通过免疫组织化学、体外受体放射自显影和原位杂交技术,研究了大鼠在发育过程中及铁(Fe)缺乏时转铁蛋白受体(TR)的神经元表达情况。与所研究动物的年龄无关,脑毛细血管内皮细胞中TR持续表达不同,免疫组织化学染色证实,在胚胎后期和出生后早期,神经元TR的表达几乎缺失,但随着年龄增长而增加,从出生后(P)21天到成年期达到稳定水平。减少铁储备会增强幼龄和成年大鼠多个灰质区域神经元中TR免疫反应性的表达。在内侧缰核的神经元突起、脑干的网状神经元以及投射到最后区的纤维中也观察到TR免疫反应性增加。除了脑毛细血管中的TR免疫反应性外,在白质区域从未观察到TR免疫反应性。体外受体放射自显影证实缺铁期间转铁蛋白结合能力增强。相比之下,TR mRNA表达不受缺铁影响。这些发现表明,神经元TR蛋白的表达与年龄有关,且易受缺铁影响。