Skip to main content

The prion-like propagation hypothesis in Alzheimer's and Parkinson's disease

imagePurpose of review This study, taking the example of Alzheimer's and Parkinson's diseases, presents the experimental and human data that support the hypothesis that Aβ, tau, and α-synuclein may seed and propagate the pathology and consider the potential clinical consequences. Recent findings Aβ aggregates transmit Aβ pathology to experimental animals. Interhuman transmission of Aβ pathology has also been observed in iatrogenic Creutzfeldt–Jakob disease, or after dural graft. Tau aggregates also transmit the pathology to mice when injected in the brain and propagates along neuronal pathways. Evidence of interhuman transmission is weak. Finally α-synuclein aggregates, when injected in specific areas of the brain may recapitulate Lewy pathology of Parkinson's disease but there is currently no hint of human to human transmission. Summary Since the first evidence that at least Aβ pathology of Alzheimer's disease could be transmitted to the animal, data have accumulated indicating that misfolded proteins characteristic of neurodegenerative diseases may seed and propagate pathology in a prion-like manner. The term propagon has been proposed to describe those proteins that act as prions at different levels. Taking the example of Alzheimer's and Parkinson's diseases, the experimental and human data supporting the hypothesis that Aβ, tau, and α-synuclein are indeed propagons are presented with their clinical consequences.

from Current Opinion in Neurology - Current Issue https://ift.tt/2H7L2Fo

Comments

Popular posts from this blog

Reading Minds to Understand Human Tool Use

Combining brain imaging data with machine learning, researchers make new discoveries about how the brain controls the hand. The findings could lead to the development of more advanced neuroprosthetics. from Neuroscience News https://ift.tt/3tv7BbC

Rethinking the Link Between Cannabinoids and Learning

Disrupted cannabinoid signaling impairs learning by altering behavioral states. from Neuroscience News https://ift.tt/2Hrmr0g