Auvinen S, Panula P
Department of Anatomy, University of Helsinki, Finland.
J Comp Neurol. 1988 Oct 8;276(2):289-303. doi: 10.1002/cne.902760211.
This study was undertaken to reveal the cellular stores of histamine in developing rat brain and to determine the stage of development during which the histamine-immunoreactive neurons can first be detected. Rats from embryonal day 12 to postnatal day 14 were studied. The brains were fixed in 4% 1-ethyl-3(3-dimethylaminopropyl)carbodiimide and standard immunofluorescence technique was used. The first histamine-immunoreactive neurons were seen on embryonic day 13 in the border of mesencephalon and metencephalon. On embryonic day 15 immunoreactive neurons were detected in ventral mesencephalon and rhombencephalon. In caudal, tuberal, and postmammillary caudal magnocellular nuclei histamine-immunoreactive neurons were first detected on embryonic day 20 while those in the hindbrain had disappeared. Histamine-immunoreactive nerve fibers were first detected on embryonic day 15 in rhombencephalon and mesencephalon and in some areas of diencephalon including the mammillary bodies and frontal cortex. On embryonic day 18 the number of immunoreactive nerve fibers in the hindbrain had decreased considerably, but the olfactory bulb, septal and hypothalamic area, and the cerebral cortex showed immunoreaction in fibers. The density of histamine-immunoreactive fiber networks increased until postnatal day 14 when an adultlike pattern of neurons and fibers had developed. Histamine-immunoreactive neurons are present in embryonal CNS and they develop extensive projections to various brain areas.
本研究旨在揭示发育中大鼠脑内组胺的细胞储存部位,并确定首次检测到组胺免疫反应性神经元的发育阶段。研究了从胚胎第12天到出生后第14天的大鼠。将大脑固定在4% 1-乙基-3(3-二甲基氨基丙基)碳二亚胺中,并采用标准免疫荧光技术。在胚胎第13天,在中脑和后脑交界处首次发现组胺免疫反应性神经元。在胚胎第15天,在腹侧中脑和后脑检测到免疫反应性神经元。在尾侧、结节和乳头体尾侧大细胞核中,组胺免疫反应性神经元在胚胎第20天首次被检测到,而后脑中的那些神经元已经消失。组胺免疫反应性神经纤维在胚胎第15天首次在菱脑、中脑以及间脑的一些区域被检测到,包括乳头体和额叶皮质。在胚胎第18天,后脑免疫反应性神经纤维的数量显著减少,但嗅球、隔区和下丘脑区域以及大脑皮质的纤维显示出免疫反应。组胺免疫反应性纤维网络的密度一直增加到出生后第14天,此时神经元和纤维形成了类似成年的模式。组胺免疫反应性神经元存在于胚胎中枢神经系统中,并且它们向各个脑区发出广泛的投射。