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Peptide-Assembled Single-Chain Atomic Crystal Enhances Pluripotent Stem Cell Differentiation to Neurons

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Title
Peptide-Assembled Single-Chain Atomic Crystal Enhances Pluripotent Stem Cell Differentiation to Neurons
Author(s)
Kim, Nam Hyeong; Chae, Sudong; Yi, Sang Ah; Sa, Deok Hyang; Oh, Seungbae; Kang, Eun Sung; Kim, Suhyeon; Choi, Kyung Hwan; Lee, Jaecheol; Choi, Jae-Young; Yong Ho Kim
Publication Date
2023-07
Journal
NANO LETTERS, v.23, no.15, pp.6859 - 6867
Publisher
AMER CHEMICAL SOC
Abstract
Nanomaterials hybridized with biological components havewidespreadapplications. among many candidates, peptides are attractive in thattheir peptide sequences can self-assemble with the surface of targetmaterials with high specificity without perturbing the intrinsic propertiesof nanomaterials. Here, a 1D hybrid nanomaterial was developed throughself-assembly of a designed peptide. A hexagonal coiled-coil motifgeometrically matched to the diameter of the inorganic nanomaterialwas fabricated, whose hydrophobic surface was wrapped along the axisof the hydrophobic core of the coiled coil. Our morphological andspectroscopic analyses revealed rod-shaped, homogeneous peptide-inorganicnanomaterial complexes. Culturing embryonic stem cells on surfacescoated with this peptide-assembled single-chain atomic crystal increasedthe growth and adhesion of the embryonic stem cells. The hybridizednanomaterial also served as an ECM for brain organoids, acceleratingthe maturation of neurons. New methods to fabricate hybrid materialsthrough peptide assembly can be applied.
URI
https://pr.ibs.re.kr/handle/8788114/13743
DOI
10.1021/acs.nanolett.3c00966
ISSN
1530-6984
Appears in Collections:
Center for Neuroscience Imaging Research (뇌과학 이미징 연구단) > 1. Journal Papers (저널논문)
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