Munoz-Garcia D, Pendlebury W W, Kessler J B, Perl D P
Acta Neuropathol. 1986;70(3-4):243-8. doi: 10.1007/BF00686078.
Exposure of the central nervous system (CNS) of rabbits to aluminum salts produces a progressive encephalopathy. Examination of CNS structures discloses widespread perikaryal neurofibrillary tangle (NFTs) formation. The aluminum-induced NFTs consist of collections of normal neurofilaments, and differ ultrastructurally and in their solubility characteristics from Alzheimer-type NFTs, the latter being composed of largely insoluble paired helical filaments. The present study compares NFTs found in the rabbit to those of Alzheimer's disease, using monoclonal antibodies (SMI 31, SMI 32) that recognize phosphorylated and non-phosphorylated determinants respectively in normal neurofilaments, and an antiserum raised against purified microtubules. Paraffin-embedded sections were stained by the avidin-biotin immunocytochemical method. Intense staining of aluminum-induced NFTs was found after processing with SMI 31 and SMI 32, while no staining of non-tangled perikarya of control rabbits or of Alzheimer-type NFTs was seen. Antimicrotubule anti-serum gave weak, nonfocal staining in the aluminum-treated and control rabbits, while Alzheimer-type NFTs were stained intensely. These results show that phosphorylated and non-phosphorylated neurofilaments accumulate in aluminum-induced NFTs, thus complementing the previously demonstrated specific slowing of the axonal transport of neurofilaments in aluminum intoxication. Further, they suggest that the presence of microtubular proteins may be necessary for altered neurofilaments to take on a paired helical configuration.
家兔中枢神经系统(CNS)暴露于铝盐会引发进行性脑病。对CNS结构的检查发现广泛存在核周神经原纤维缠结(NFTs)形成。铝诱导的NFTs由正常神经丝聚集而成,在超微结构和溶解性特征上与阿尔茨海默病型NFTs不同,后者主要由不溶性双螺旋丝组成。本研究使用分别识别正常神经丝中磷酸化和非磷酸化决定簇的单克隆抗体(SMI 31、SMI 32)以及针对纯化微管产生的抗血清,比较了家兔中发现的NFTs与阿尔茨海默病的NFTs。石蜡包埋切片采用抗生物素蛋白-生物素免疫细胞化学方法染色。用SMI 31和SMI 32处理后,发现铝诱导的NFTs有强烈染色,而对照家兔未缠结的核周或阿尔茨海默病型NFTs未见染色。抗微管抗血清在铝处理和对照家兔中产生微弱的、非局灶性染色,而阿尔茨海默病型NFTs染色强烈。这些结果表明,磷酸化和非磷酸化神经丝在铝诱导的NFTs中积累,从而补充了先前证明的铝中毒时神经丝轴突运输的特异性减慢。此外,它们表明微管蛋白的存在可能是改变的神经丝呈现双螺旋构型所必需的。