Alteration of Neural Network and Hippocampal Slice Activation through Exosomes Derived from 5XFAD Nasal Lavage Fluid

Author:

Kim Sangseong1,Jeon Jaekyong2,Ganbat Dulguun2ORCID,Kim Taewoon3,Shin Kyusoon3,Hong Sungho4ORCID,Hong Jongwook356

Affiliation:

1. Department of Biomedical Science and Engineering, Gwangju Institute of Science and Technology, Gwangju 61005, Republic of Korea

2. Department of Pharmacy, Hanyang University, Ansan 15588, Republic of Korea

3. Department of Bionanotechnology, Graduate School, Hanyang University, Seoul 04763, Republic of Korea

4. Computational Neuroscience Unit, Okinawa Institute of Science and Technology, Okinawa 904-0495, Japan

5. Department of Medical and Digital Engineering, Graduate School, Hanyang University, Seoul 04763, Republic of Korea

6. Department of Bionanoengineering, Hanyang University, Ansan 15588, Republic of Korea

Abstract

Exosomes, key mediators of intercellular transmission of pathogenic proteins, such as amyloid-beta and tau, significantly influence the progression and exacerbation of Alzheimer’s disease (AD) pathology. Present in a variety of biological fluids, including cerebrospinal fluid, blood, saliva, and nasal lavage fluid (NLF), exosomes underscore their potential as integral mediators of AD pathology. By serving as vehicles for disease-specific molecules, exosomes could unveil valuable insights into disease identification and progression. This study emphasizes the imperative to investigate the impacts of exosomes on neural networks to enhance our comprehension of intracerebral neuronal communication and its implications for neurological disorders like AD. After harvesting exosomes derived from NLF of 5XFAD mice, we utilized a high-density multielectrode array (HD-MEA) system, the novel technology enabling concurrent recordings from thousands of neurons in primary cortical neuron cultures and organotypic hippocampal slices. The ensuing results revealed a surge in neuronal firing rates and disoriented neural connectivity, reflecting the effects provoked by pathological amyloid-beta oligomer treatment. The local field potentials in the exosome-treated hippocampal brain slices also exhibited aberrant rhythmicity, along with an elevated level of current source density. While this research is an initial exploration, it highlights the potential of exosomes in modulating neural networks under AD conditions and endorses the HD-MEA as an efficacious tool for exosome studies.

Funder

Ministry of Health and Welfare, Republic of Korea

Korea government

Ministry of Science and ICT

Okinawa Institute of Science and Technology Graduate University

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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