A functional aged human iPSC‐cortical neuron model recapitulates Alzheimer's disease, senescence, and the response to therapeutics

Author:

Gallo Leandro H.1,Akanda Nesar1,Autar Kaveena12,Patel Aakash12,Cox Ian1,Powell Haley A.1,Grillo Marcella12,Barakat Natali1,Morgan Dave3,Guo Xiufang1,Hickman James J.12

Affiliation:

1. Nanoscience Technology Center University of Central Florida Orlando Florida USA

2. Hesperos Inc. Orlando Florida USA

3. Department of Translational Neuroscience Michigan State University College of Human Medicine Grand Rapids Research Center Grand Rapids Michigan USA

Abstract

AbstractINTRODUCTIONThe degeneration of cortical layers is associated with cognitive decline in Alzheimer's disease (AD). Current therapies for AD are not disease‐modifying, and, despite substantial efforts, research and development for AD has faced formidable challenges. In addition, cellular senescence has emerged as a significant contributor to therapy resistance.METHODSHuman iPSC‐derived cortical neurons were cultured on microelectrode arrays to measure long‐term potentiation (LTP) noninvasively. Neurons were treated with pathogenic amyloid‐β (Aβ) to analyze senescence and response to therapeutic molecules.RESULTSMicrophysiological recordings revealed Aβ dampened cortical LTP activity and accelerated neuronal senescence. Aging neurons secreted inflammatory factors previously detected in brain, plasma, and cerebral spinal fluid of AD patients, in which drugs modulated senescence‐related factors.DISCUSSIONThis platform measures and records neuronal LTP activity in response to Aβ and therapeutic molecules in real‐time. Efficacy data from similar platforms have been accepted by the FDA for neurodegenerative diseases, expediting regulatory submissions.Highlights This work developed a progerontic model of amyloid‐β (Aβ)‐driven cortical degeneration. This work measured neuronal LTP and correlated function with aging biomarkers. Aβ is a driver of neuronal senescence and cortical degeneration. Molecules rescued neuronal function but did not halt Aβ‐driven senescence. Therapeutic molecules modulated secretion of inflammatory factors by aging neurons.

Funder

National Institutes of Health

National Center for Advancing Translational Sciences

National Institute on Aging

Publisher

Wiley

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