Vertical nanocolumn-assisted pluripotent stem cell colony formation with minimal cell-penetration

Cited 9 time in scopus
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dc.contributor.authorH Kim-
dc.contributor.authorD H Kang-
dc.contributor.authorK H Koo-
dc.contributor.authorS Lee-
dc.contributor.authorS M Kim-
dc.contributor.authorJanghwan Kim-
dc.contributor.authorM H Yoon-
dc.contributor.authorS Y Kim-
dc.contributor.authorE G Yang-
dc.date.accessioned2017-04-19T10:29:17Z-
dc.date.available2017-04-19T10:29:17Z-
dc.date.issued2016-
dc.identifier.issn2040-3364-
dc.identifier.uri10.1039/c6nr06203bko
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/13511-
dc.description.abstractThe biological applications of vertical nanostructures mostly rely on their intracellular accessibility through the cellular membrane by promoting cell-to-nanostructure interactions. Herein, we report a seemingly counter-intuitive approach for the spontaneous formation of mouse induced pluripotent stem cell (iPSC)-derived three-dimensional spherical colonies with unlimited self-renewal and differentiation potential. The comprehensive analyses of iPSCs cultured on vertical silicon nanocolumn arrays (vSNAs) with various nanocolumn geometries show reduced cell-to-substrate adhesion and enhanced cell-to-cell interactions under optimized vSNA conditions, successfully accommodating the spontaneous production of iPSC-derived spherical colonies. Remarkably, these colonies which were only minimally penetrated by and thereby easily harvested from wafer-sized vSNAs display a substantial increase in pluripotency marker expression and successfully differentiate into three germ layers. Our vSNAs capable of large-scale fabrication, efficient for spherical colony formation, and reusable for multiple iPSC culture could serve as a broad-impact culture platform for stem cell research.-
dc.publisherRoyal Soc Chem-
dc.titleVertical nanocolumn-assisted pluripotent stem cell colony formation with minimal cell-penetration-
dc.title.alternativeVertical nanocolumn-assisted pluripotent stem cell colony formation with minimal cell-penetration-
dc.typeArticle-
dc.citation.titleNanoscale-
dc.citation.number42-
dc.citation.endPage18097-
dc.citation.startPage18087-
dc.citation.volume8-
dc.contributor.affiliatedAuthorJanghwan Kim-
dc.contributor.alternativeName김현주-
dc.contributor.alternativeName강동희-
dc.contributor.alternativeName구경희-
dc.contributor.alternativeName이세영-
dc.contributor.alternativeName김성민-
dc.contributor.alternativeName김장환-
dc.contributor.alternativeName윤명한-
dc.contributor.alternativeName김소연-
dc.contributor.alternativeName양은경-
dc.identifier.bibliographicCitationNanoscale, vol. 8, no. 42, pp. 18087-18097-
dc.identifier.doi10.1039/c6nr06203b-
dc.description.journalClassY-
Appears in Collections:
Division of Research on National Challenges > Stem Cell Convergenece Research Center > 1. Journal Articles
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