Region-to-Region Unidirectional Connection In Vitro Brain Model for Studying Directional Propagation of Neuropathologies

Authors
Hwang, Kyeong SeobLiu, Hui-wenShin, HyogeunKang, Hyun WookKang, MinjinKim, JongbaegCho, Il-jooChoi, NakwonChung, SeokKim, Hong Nam
Issue Date
2026-01
Publisher
John Wiley & Sons Ltd.
Citation
Advanced Functional Materials
Abstract
In the human brain, neurons establish long-range, unidirectional connections between distinct regions, allowing directional transmission of neuronal signals and the transport of neurotoxic proteins. In this study, a region-to-region unidirectional connection in an in vitro brain model that enables the one-way transfer of signals and molecules is reconstructed. By embedding one brain organoid in hydrogel earlier than the other and promoting neurite outgrowth, it is induced preferential axonal extension toward the later-seeded organoid, where synaptic connections are formed. This structurally defined unidirectional linkage demonstrated functional unidirectionality, as verified by direction-specific propagation of electrical activity using dual neural probe monitoring. The model also reproduced directional neuroinflammatory spread following region-specific introduction of activated microglia. Furthermore, it permitted unidirectional transfer of neurotoxic proteins, including amyloid beta (Aβ), Tau, and alpha-synuclein (α-synuclein). Owing to its ability to recapitulate in vivo-like neuronal functionality, this in vitro brain model provides a valuable experimental platform for elucidating the directional propagation of neuropathological processes.
Keywords
GENERATION; CELL; ORGANOIDS; NETWORKS; GROWTH; brain organoid; directional propagation; neuroinflammation; neurodegenerative disease; unidirectional neural circuit
ISSN
1616-301X
URI
https://pubs.kist.re.kr/handle/201004/154210
DOI
10.1002/adfm.202516238
Appears in Collections:
KIST Article > 2026
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