The Department of Neurology, The Agnes Ginges Center for Human Neurogenetics, Hadassah Hebrew University Hospital, Jerusalem, Israel.
Exp Neurol. 2010 Aug;224(2):472-85. doi: 10.1016/j.expneurol.2010.05.010. Epub 2010 May 28.
As an abnormally folded and aggregated protein, tau composed of neurofibrillary tangles (NFTs) in Alzheimer's disease and other tauopathies seems to be a candidate for immunotherapy. Yet, the encephalitogenicity of full-length tau protein, recently reported by us in immunized mice, demands to carefully and selectively target pathological tau and address both efficacy (anti-NFT effect) and safety (free of encephalitis). We immunized NFT mice with NFT-related phosphorylated (phos) tau peptides, using an immunization protocol aimed to predispose a proinflammatory milieu in CNS as a set up to detect biohazard, an approach we used when the neurotoxicity of full-length tau was detected [use of complete Freund adjuvant (CFA) with pertussis toxin (PT)]. A decrease of about 40% in NFT burden in CNS was demonstrated and was accompanied with an increase in microglial burden. Anti-phos-tau antibodies were detected in serum and blood vessels in the CNS, while no encephalitogenicity (free of clinical neurological deficits, of adverse effects on brain inflammatory cells and of axonal damage) was recorded. The level of the lysosomal proteases, cathepsins D and L, was affected in the immunized mice suggesting the possible involvement of the lysosomal system in the decrease of NFTs. The robust anti-NFT effect and the lack of encephalitogenicity in NFT mice immunized with phos-tau peptides, even though CFA with PT was included in vaccine, point to their anti-NFT therapeutic potential.
作为一种异常折叠和聚集的蛋白质,tau 存在于阿尔茨海默病和其他神经tau 病中的神经纤维缠结(NFT)中,似乎是免疫疗法的候选物。然而,我们最近在免疫接种的小鼠中报道的全长 tau 蛋白的脑炎原性,需要仔细和选择性地针对病理性 tau,并解决疗效(抗 NFT 作用)和安全性(无脑炎)。我们使用与 NFT 相关的磷酸化(phos)tau 肽对 NFT 小鼠进行免疫接种,使用旨在使中枢神经系统中产生促炎环境的免疫接种方案,作为检测生物危害的一种方法,当检测到全长 tau 的神经毒性时,我们使用了这种方法[使用完全弗氏佐剂(CFA)和百日咳毒素(PT)]。在中枢神经系统中 NFT 负担减少了约 40%,同时微胶质细胞负担增加。在血清和中枢神经系统的血管中检测到抗 phos-tau 抗体,而没有记录到脑炎原性(无临床神经缺陷、对脑炎性细胞和轴突损伤无不良影响)。免疫接种的小鼠中溶酶体蛋白酶 cathepsins D 和 L 的水平受到影响,这表明溶酶体系统可能参与了 NFT 的减少。尽管在疫苗中包含了 CFA 和 PT,但用 phos-tau 肽免疫接种的 NFT 小鼠具有强大的抗 NFT 作用和无脑炎原性,这表明它们具有抗 NFT 治疗潜力。