Scalabrino G, Nicolini G, Buccellato F R, Peracchi M, Tredici G, Manfridi A, Pravettoni G
Institutes of General Pathology, Human Anatomy, Medical Sciences, and Human Physiology II, Faculty of Medicine, University of Milan, Milano, Italy Gife Laboratory, Lugano, Switzerland.
FASEB J. 1999 Nov;13(14):2083-90. doi: 10.1096/fasebj.13.14.2083.
We have recently demonstrated that the myelinolytic lesions in the spinal cord (SC) of rats made deficient in vitamin B(12) (cobalamin) (Cbl) through total gastrectomy (TG) are tumor necrosis factor-alpha (TNF-alpha)-mediated. We investigate whether or not permanent Cbl deficiency, induced in the rat either through TG or by chronic feeding of a Cbl-deficient diet, might modify the levels of three physiological neurotrophic factors-epidermal growth factor (EGF), vasoactive intestinal peptide (VIP), and somatostatin (SS)-in the cerebrospinal fluid (CSF) of these rats. We also investigated the ability of the central nervous system (CNS) in these Cbl-deficient rats to synthesize EGF mRNA and of the SC to take up labeled Cbl in vivo. Cbl-deficient rats, however the vitamin deficiency is induced, show a selective decrease in EGF CSF levels and an absence of EGF mRNA in neurons and glia in various CNS areas. In contrast, radiolabeled Cbl is almost exclusively taken up by the SC white matter, but to a much higher degree in totally gastrectomized (TGX) rats. Chronic administration of Cbl to TGX rats restores to normal both the EGF CSF level and EGF mRNA expression in the various CNS areas examined. This in vivo study presents the first evidence that the neurotrophic action of Cbl in the CNS of TGX rats is mediated by stimulation of the EGF synthesis in the CNS itself. It thus appears that Cbl inversely regulates the expression of EGF and TNF-alpha genes in the CNS of TGX rats.
我们最近证实,通过全胃切除术(TG)导致维生素B12(钴胺素,Cbl)缺乏的大鼠脊髓(SC)中的脱髓鞘病变是由肿瘤坏死因子-α(TNF-α)介导的。我们研究了通过TG或长期喂食缺乏Cbl的饮食在大鼠中诱导的永久性Cbl缺乏是否可能改变这些大鼠脑脊液(CSF)中三种生理性神经营养因子——表皮生长因子(EGF)、血管活性肠肽(VIP)和生长抑素(SS)的水平。我们还研究了这些Cbl缺乏大鼠的中枢神经系统(CNS)合成EGF mRNA的能力以及SC在体内摄取标记Cbl的能力。然而,无论维生素缺乏是如何诱导的,Cbl缺乏的大鼠脑脊液中EGF水平选择性降低,并且在各个CNS区域的神经元和神经胶质细胞中不存在EGF mRNA。相比之下,放射性标记的Cbl几乎完全被脊髓白质摄取,但在全胃切除(TGX)大鼠中摄取程度要高得多。对TGX大鼠长期给予Cbl可使所检测的各个CNS区域的脑脊液EGF水平和EGF mRNA表达恢复正常。这项体内研究首次证明,TGX大鼠中枢神经系统中Cbl的神经营养作用是通过刺激中枢神经系统自身的EGF合成来介导的。因此,似乎Cbl在TGX大鼠的中枢神经系统中对EGF和TNF-α基因的表达起反向调节作用。