Research context and placement
Foundational differentiation on culture substrates; functional cell generation is not patient therapy or tissue adhesion.
Boundary case: assigned to the closest interface for navigation. Read the rationale and cross-links together; the primary theme does not delimit the study. Placement of foundational work does not establish direct bioelectronic application.
Research overview and key contributions
Hierarchical GO grooves, ridges and nanoroughness guide neural stem-cell adhesion and differentiation.
Flat/nonhierarchical controls were compared, with electrophysiological function reported without usual chemical neurogenic agents.
Open challenges
Editorial question: how separable are GO chemistry and multiple topographic length scales?
Comparison context
Match groove/roughness scales, GO presence, culture/induction conditions and action-potential criteria.
Related external research
Enhanced differentiation of human neural stem cells into neurons on graphene
Graphene-supported adhesion/differentiation provides context for asking what hierarchical GO topography adds.
Only publisher Graphical Abstract text was read; PubMed has no abstract. Detailed electrophysiology remains unverified.
Graphical abstract text checkedCorresponding-author verification
Jungmok Seo: not a corresponding authorThis record concerns Jungmok Seo’s correspondence designation. Author order or an asterisk alone is not treated as confirmation; this check is separate from verification of the research content.
- Correspondence evidence source ↗
Corresponding Authors; E-mail: [omitted]; E-mail: [omitted]
PDF p.10; author/correspondence information · publisher_PDF_publicly_hosted_by_author_institution
- Main-text review scope
- The existing commentary is based on the following review: Europe PMC abstract read; ACS retrieval failed and PubMed returned only a footer. Reading figure and correspondence information in this pass does not establish completion of a full in-depth article review.
- Pending verification
- Verify pattern controls, FAK/paxillin signalling, electrophysiological methods and supplements in school Chrome. The existing commentary is based on the following review: Europe PMC abstract read; ACS retrieval failed and PubMed returned only a footer. Reading figure and correspondence information in this pass does not establish completion of a full in-depth article review.
COVERAGE & OUTREACH
Coverage and outreach
Links are checked for their relationship to this paper. Media publication does not establish independent reporting or additional experimental validation.
[Acceptance] “Graphene Oxide Hierarchical Patterns for the Derivation of Electrophysiologically Functional Neuron-like Cells from Human Neural Stem Cells” ↗
The paper title, Jaehong Lee, Dayeong Kim, Jungmok Seo and ACS Applied Materials & Interfaces match the publication.
Body read Read the dated individual acceptance announcement. This is a lab announcement, not independent reporting.
Sources and verification scope
Europe PMC abstract read; ACS retrieval failed and PubMed returned only a footer.
- Public publication baseline ↗ · #32 · 2026-10-03
- Crossref metadata ↗: Only public bibliographic metadata registered with Crossref was checked. This does not mean that the publisher page, abstract, or full text was read; full-text verification in the school Chrome session remains pending. Manual comparison found presence/absence of the article the. This was adjudicated as a minor bibliographic variation referring to the same paper; original values were retained. No license link is present in Crossref; redistribution rights have not been established.
- Europe PMC REST — MED abstract ↗
public_abstract_via_Europe_PMC · resultList.result[id=27320202].abstractText; direct public API response read 2026-10-03; not publisher body - Public access attempt ↗
access_attempt_failed · Tool reported not accessible; checked 2026-10-03; no paper content inferred - Public access attempt ↗
access_attempt_failed · Only footer returned; checked 2026-10-03; no paper content inferred