Research context and placement
The abstract supports host placement through HA crosslinking, CNT retention and subcutaneous responses; extending actuator-material stability to host interaction retains ambiguity.
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
Crosslinked hyaluronic acid disperses SWCNTs and provides an ion-conducting fiber binder.
Crosslinking addresses nanotube leakage and creep while linking electrochemical actuation with biological tests.
Open challenges
Editorial question: early subcutaneous inflammatory resolution does not establish chronic actuation safety.
Comparison context
Editorial comparison: match crosslinking, fiber diameter, electrolyte, load and actuation cycles.
Related external research
Carbon nanotube actuators
DOI: 10.1126/science.284.5418.1340 ↗
The external abstract describes double-layer actuation in SWCNT sheets; #54 adds crosslinked HA fibers and biological evaluation.
Sheet/fiber geometry, load and electrolytes preclude simple performance ratios.
Abstract checkedCorresponding-author verification
Correspondence unresolvedThis 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 ↗
명시적 교신 표기 미확인
publisher HTTP 403; PMC6660641 verification screen; Europe PMC XML HTTP 500 · access_limited_metadata_or_abstract
- Main-text review scope
- The DOI-matched PubMed abstract was read via Europe PMC; publisher/PMC full text was unavailable.
- Pending verification
- PubMed web retrieval returned no abstract text; PMC6660641 returned CAPTCHA and XML HTTP 500. Verify electrodes, crosslinking and long-term retention in school Chrome.
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.
ACS Applied Materials & Interfaces 논문 표지 선정 ↗
The announcement describes CNT microfibers for implantable electronics and electrochemical actuators, matching #54.
Body read Read the public JSON entry's title, date and summary (entry: acsamicover). This is a lab announcement, distinct from publisher confirmation.
Sources and verification scope
The DOI-matched PubMed abstract was read via Europe PMC; publisher/PMC full text was unavailable.
- Public publication baseline ↗ · #54 · 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 the original spelling Acutator versus canonical Actuator. This was adjudicated as a minor bibliographic variation referring to the same paper; original values were retained. license_urls lists registered links and does not establish permission to redistribute text or figures. It may include TDM or posting-policy links.
- Source for updated publication metadata ↗
Bibliographic and publication-status check; separate from main-text review. - Biocompatible Carbon Nanotube-Based Hybrid Microfiber for Implantable Electrochemical Actuator and Flexible Electronic Applications. ↗
public_abstract_via_EuropePMC_API · Europe PMC REST search resultType=core, abstractText; PMID 31050404; DOI 10.1021/acsami.9b02927. Checked 2026-10-03.