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Quadrio, I.

Publications and source records attributed to Quadrio, I..

2 recordsLinked to original sources

Neurons as biosensors for discriminating neurological disorders in a brain-on-chip platform: Application to Alzheimer s Disease using patient CSF

Alzheimers disease (AD) is characterized by the accumulation of aggregated amyloid beta peptide (A{beta}) leading to progressive neuronal loss and dysfunction. Current ADs diagnosis involves biomarkers assays in cerebrospinal fluid (CSF) as A{beta} to validate the diagnosis. However, these methods are time-consuming, expensive, and can result in inaccurate diagnoses by not accounting for differential diagnose. To overcome these challenges, researchers are exploring new technologies for detecting AD biomarkers in biological fluids, though progress is hindered by an incomplete understanding of AD mechanisms and CSF composition. In this study, we used a standardized microfluidic platform to investigate the effects of synthetic A{beta} peptides and cerebrospinal fluid (CSF) from AD and healthy patients on neuronal functional activity. First, human neurons derived from induced pluripotent stem cells (iPSCs) were characterized. Then, to modulate the functional activity of neurons, tetrodotoxin (TTX), a specific sodium channel blocker, was used as a control for inhibiting neuronal activity. Subsequently, glutamatergic neurons were chronically exposed to A{beta}O and patients CSF. MEA recordings were performed before and after the treatments to assess changes in network activity. Our results demonstrated that extracting key electrophysiological metrics allows for discrimination between healthy and AD CSF samples. This system could offer the potential for differential diagnosis and development of personalized therapeutic strategies.

neuroscience↗

Human PrP E219K as a new and promising substrate for RT-QuIC amplification of human prion strains: a first step towards strain discrimination

Prion diseases are fatal neurodegenerative diseases that affect mammals through the transconformation of a host protein, the prion protein (PrP), into a toxic and pathogenic conformer termed PrPSc. Until now, the diagnosis is only confirmed with a post-mortem histology study of the central nervous system. Among the methods to detect the etiological agent, in vitro amplification techniques have emerged as very sensitive, highly specific and rapid tools, even though some prion strains remain refractory or difficult to amplify. Here we report the use of a new recombinant substrate for Real-Time Quaking Induced Conversion (RT-QuIC), a natural polymorphism of human prion protein with a lysine at position 219 instead of a glutamic acid, PrP E219K. This substrate amplifies the six sporadic human strains responsible for Creutzfeldt-Jakob Disease (CJD) and the strain responsible for its variant form in a few hours and over a large dilution range of the seeds. Moreover, based on the lag time of the amplification reactions, the PrP E219K substrate allows to discriminate between sporadic and variant CJD strains, a first step towards an ante-mortem typing of the prion strain affecting a patient.

pathology↗