Observations on Injuries of the Spine and of the Thigh-Bone; in Two Lectures Delivered in the School of Great Windmill Street. The First in Vindication of the Author's Opinions against the Remarks of Sir Astley Cooper, Bart. The Second on the Late Mr John Bell's Title to Certain Doctrines Now Advanced by the Same Gentleman

关于脊柱和股骨损伤的观察;在大风车街学校发表的两场讲座。第一场讲座旨在为作者的观点辩护,反驳阿斯特利·库珀爵士的言论。第二场讲座旨在论及已故约翰·贝尔先生对某些理论的所有权,这些理论现在由同一位先生提出。

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Abstract

The propagation of pathological proteins throughout the brain is the primary physiological hallmark of the progression of Alzheimer's Disease (AD). A growing body of evidence indicates that hyperphosphorylated Tau proteins are spread transcellularly between neurons in a prionlike fashion, inducing misfolding and aggregation into neurofibrillary tangles which accumulate along specific connectivity pathways. Earlier transgenic rodent AD models did not capture this disease-relevant spread, and therefore, seeded Tau-propagation models have been developed. Here, mutant human Tau (as isolated protein or packaged into an adeno-associated virus (AAV) viral vector) is stereotaxically injected into select brain regions and its histopathological propagation to downstream neurons quantified. These models offer a faster and more direct mechanism to evaluate genetic components and therapeutic approaches which attenuate Tau spreading in vivo. Recently, these Tau-seeding models have revealed several new targets for AD drug discovery, including nSMase2, SIRT1, p300/CBP, LRP1, and TYROBP, as well as the potential therapeutics based on melatonin and chondroitinase ABC. Importantly, these Tau-propagation rodent models more closely phenocopy the progression of AD in humans and are therefore likely to improve preclinical studies and derisk future moves into clinical trials.

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