Cytoskeletal immunohistochemistry of Alzheimer's dementia and related diseases. A study with monoclonal antibodies.

J Ulrich, A Probst, D Langui, B H Anderton, J P Brion
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引用次数: 16

Abstract

Mabs directed against phosphorylated epitopes on the heavy and medium neurofilament protein were used to immunostain histological sections from brains of patients without neurological disease and patients suffering from SDAT, Pick's disease, Parkinson's disease, progressive supranuclear palsy and encephalomalacias of the white matter inducing chromatolysis in the overlying cortex. In normal brains only axons but never perikarya were stained. In the pathological brains, however, swollen neurons with chromatolysis and swollen cells in Pick's disease, NFT in SDAT, Pick bodies in Pick's disease, the centers of Lewy bodies in Parkinson's disease and some tangles in progressive supranuclear palsy were stained. These changes are perikaryal alterations. The results are discussed in relation to the formation of NFT in SDAT, i.e. the PHF as seen by electron microscopy. It is concluded that in spite of the reliable staining of NFT with some of our mabs, with sera directed against PHF, MAPs and other cytoskeletal proteins there is no absolutely specific immunoreaction for PHF. The most similar pattern to that observed in NFTs of SDAT is seen in the Pick bodies of Pick's disease, although these do not consist of PHF when looked at with the electron microscope, and although they behave differently from NFT in some 'conventional' histological stains. From this nonspecificity of the immunoreaction and from the presence of multiple cytoskeletal epitopes in NFT it is concluded that NFT (i.e. PHF) are probably not derived from one particular cytoskeletal element but are reassembled from proteolytic breakdown fragments of several of these elements. In this regard the similarities and dissimilarities with the alterations of Pick's disease might be specially relevant and deserve further studies, especially as the clinical features of SDAT and Pick's disease can be very similar.

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阿尔茨海默氏痴呆及相关疾病的细胞骨架免疫组织化学。单克隆抗体的研究。
针对重质和中质神经丝蛋白磷酸化表位的单克隆抗体用于免疫染色无神经系统疾病患者和SDAT、匹克病、帕金森病、进行性核上性麻痹和脑白质导致上皮层染色质溶解的脑畸形患者的脑组织组织切片。正常脑只染色轴突,核周未染色。病理脑组织中,匹克病、SDAT、匹克病、匹克病、帕金森病、路易小体中心及进行性核上性麻痹的部分缠结均可见染色。这些变化是核周改变。结果讨论了在SDAT中NFT的形成,即在电子显微镜下看到的PHF。结论是,尽管我们的一些单克隆抗体对NFT进行了可靠的染色,但针对PHF、MAPs和其他细胞骨架蛋白的血清对PHF没有绝对特异性的免疫反应。在匹克病的匹克体中观察到的与SDAT的NFT最相似的模式,尽管用电子显微镜观察时这些不包括PHF,尽管它们在一些“常规”组织学染色中表现与NFT不同。从免疫反应的非特异性和NFT中多个细胞骨架表位的存在可以得出结论,NFT(即PHF)可能不是来自一个特定的细胞骨架元件,而是由这些元件的蛋白水解分解片段重新组装而成的。在这方面,与匹克病改变的异同可能是特别相关的,值得进一步研究,特别是SDAT和匹克病的临床特征可能非常相似。
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