谷氨酸单钠处理成年大鼠腰背根神经节神经元不同亚群周围卫星神经胶质中谷氨酰胺合成酶的免疫反应性。

IF 2.7 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of chemical neuroanatomy Pub Date : 2023-10-13 DOI:10.1016/j.jchemneu.2023.102347
Aleksandra Krawczyk, Sylwia Mozel, Karol Rycerz, Jadwiga Jaworska-Adamu, Marcin Bartłomiej Arciszewski
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引用次数: 0

摘要

卫星神经胶质细胞(SGCs)参与谷氨酸(Glu)代谢,在背根神经节(DRGs)的感觉神经元周围形成神经胶质鞘。SGCs表现出谷氨酰胺合成酶(GS)的存在,其将摄取的Glu转化为谷氨酰胺(Gln)。在DRG中,这种氨基酸主要由小神经元使用,这些神经元能够合成在伤害感受中起关键作用的物质P(SP)。本研究的目的是确定谷氨酸一钠(MSG)对成年大鼠DRG中包括SP免疫阳性细胞在内的各种神经元亚群周围卫星神经胶质中GS免疫反应性的影响。本研究在接受皮下注射生理盐水(对照组)或4g/kg b.w.MSG(MSG组)的大鼠的腰椎DRG载玻片上进行。使用抗GS和抗SP抗体进行免疫荧光反应。对成年大鼠施用MSG增加了SGCs中GS的免疫表达。在接受MSG的大鼠中,与对照个体相比,许多具有GS免疫阳性神经胶质鞘的小神经元没有改变,而在大神经元和中神经元周围的SGCs中,GS免疫表达在统计学上显著增加。此外,在这些动物中,观察到具有GS阳性神经胶质鞘的小SP阳性神经元的数量在统计学上显著增加。SP负责疼痛的传递,因此所获得的结果可能有助于进一步研究神经胶质在伤害性通路调节中的作用。
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Immunoreactivity of glutamine synthetase in satellite glia around various subpopulations of lumbar dorsal root ganglia neurons in adult rats treated with monosodium glutamate

Satellite glial cells (SGCs), involved inter alia in glutamate (Glu) metabolism, form a glial sheath around sensory neurons of dorsal root ganglia (DRGs). SGCs show a presence of glutamine synthetase (GS) which transform uptaken Glu into glutamine (Gln). In DRGs, this aminoacid is used mainly by small neurons which are able to synthetize substance P (SP) that play a crucial role in nociception. The aim of the study was to define the influence of monosodium glutamate (MSG) on GS immunoreactivity in satellite glia around various subpopulations of neurons including SP immunopositive cells in DRGs of adult rats. The studies were carried out on lumbar DRGs slides in rats which received subcutaneous injection of saline solution (control group) or 4 g/kg b. w. of MSG (MSG group). Immunofluorescence reactions were conducted with use of anti-GS and anti-SP antibodies. Administration of MSG to adult rats increased the GS immunoexpression in SGCs. In rats receiving MSG, a number of small neurons with GS-immunopositive glial sheath was not altered when compared to control individuals, whereas there was a statistically significant increase of GS immunoexpression in SGCs around large and medium neurons. Moreover, in these animals, a statistically significant increase in the number of small SP-positive neurons with GS-positive glial sheath was observed. SP is responsible for transmission of pain, thus the obtained results may be useful for further research concerning the roles of glia in nociceptive pathway regulation.

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来源期刊
Journal of chemical neuroanatomy
Journal of chemical neuroanatomy 医学-神经科学
CiteScore
4.50
自引率
3.60%
发文量
87
审稿时长
62 days
期刊介绍: The Journal of Chemical Neuroanatomy publishes scientific reports relating the functional and biochemical aspects of the nervous system with its microanatomical organization. The scope of the journal concentrates on reports which combine microanatomical, biochemical, pharmacological and behavioural approaches. Papers should offer original data correlating the morphology of the nervous system (the brain and spinal cord in particular) with its biochemistry. The Journal of Chemical Neuroanatomy is particularly interested in publishing important studies performed with up-to-date methodology utilizing sensitive chemical microassays, hybridoma technology, immunocytochemistry, in situ hybridization and receptor radioautography, to name a few examples. The Journal of Chemical Neuroanatomy is the natural vehicle for integrated studies utilizing these approaches. The articles will be selected by the editorial board and invited reviewers on the basis of their excellence and potential contribution to this field of neurosciences. Both in vivo and in vitro integrated studies in chemical neuroanatomy are appropriate subjects of interest to the journal. These studies should relate only to vertebrate species with particular emphasis on the mammalian and primate nervous systems.
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