Research context and placement
The abstract explicitly concerns antifouling and low-friction medical surfaces. A coating process does not by itself establish an interconnect–component integration study.
Research overview and key contributions
L-skin combines a bioadhesive layer with a lubricant-swellable fluoropolymer for complex medical-device surfaces.
The abstract reports coating compatibility and low-friction/antifouling behavior in tubing, catheters, microfluidics and bioprinting.
Open challenges
Exact thermal-recovery and sterilization conditions are unread; recovery must not be interpreted as spontaneous at body temperature.
Comparison context
Match tube length, bore, curvature, coating uniformity, sterilization method and lubricant loss.
Related external research
Bioinspired self-repairing slippery surfaces with pressure-stable omniphobicity
Compare lubricated interfaces and fabrication on complex devices.
This is an abstract-level connection; durability or sterilization comparisons require full testing conditions.
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
PMC: browser verification screen; Europe PMC XML HTTP 500 · access_limited_metadata_or_abstract
- Main-text review scope
- Read matching abstracts in Yonsei’s research portal and Europe PMC. Publisher fetch failed, PMC showed a browser check and the XML API returned 500; full text was not read.
- Pending verification
- Publisher fetch failed; PMC10088055 showed a browser check and Europe PMC fullTextXML returned 500. Verify full text, sterilization and recovery conditions at school.
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.
연세대 서정목 교수팀, 면역위장 유막코팅 기술 개발 ↗
The article explicitly gives #67's title and DOI and describes the team's layered lubricant-skin coating.
Body read Read the body, date, researchers and DOI. Classified as institutional-announcement-based coverage rather than independent reporting.
BLISS 박기준 학생 JCR 상위 1.14% Bioactive Materials에 논문 게재 ↗
The author/journal announcement and image labels for Lubricant Skin with adhesive, fluoropolymer and lubricant layers identify #67.
Body read Read the public news JSON title/date and its linked image content (entry: ytlee-contest-2-2-2-2-2-2-2-2-2-2-2). Lab self-promotion; artwork is not redistributed.
Device–tissue interfaces: prior studies, ELFS biliary stents and FLUID ureteral stents ↗
The post describes prior work on antifouling coatings for diverse biomaterials and complex device shapes. DOI 10.1016/j.bioactmat.2022.07.019, documented as the destination of the in-body shortened link, matches the title and DOI of #67 in the public 101-paper catalogue.
Body read Based on a verification record documenting the post body, “Worldwide” visibility and DOI destinations of six shortened links in a logged-in session. The publication date was determined from the “4 hours” display observed at 22:37 KST on 2026-10-03; the exact publication time remains unverified. DOI destinations were checked on LinkedIn’s external-link notice screens; this does not represent a new review of publisher full text. This is researcher-authored promotion, not independent reporting or additional experimental validation.
Sources and verification scope
Read matching abstracts in Yonsei’s research portal and Europe PMC. Publisher fetch failed, PMC showed a browser check and the XML API returned 500; full text was not read.
- Public publication baseline ↗ · #67 · 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. license_urls lists registered links and does not establish permission to redistribute text or figures. It may include TDM or posting-policy links.
- Lubricant skin on diverse biomaterials with complex shapes via polydopamine-mediated surface functionalization for biomedical applications ↗
institutional_repository_abstract · Abstract; DOI 10.1016/j.bioactmat.2022.07.019 - Lubricant skin on diverse biomaterials with complex shapes via polydopamine-mediated surface functionalization for biomedical applications ↗
public_indexed_abstract · Europe PMC core API abstractText; title and DOI matched