Bioinspired Superwettable Catheters with Tunable Structural Color for Efficient Drug Release Monitoring
Abstract: Medical interventional catheters are indispensable medical devices that are continuing to reshape current practice in many specialties of clinical applications. However, there has been rapid development of catheters, it remains many challenges in antibiofilm and effective drug delivering. Inspired by natural creatures, a bioinspired superwettable catheter is developed which is constructed with inverse opal photonic crystals hydrogel. The superwettability property is achieved by creating a slippery liquid‐infused porous surface (SLIPS) where the motion state of droplets changes. The expansion and contraction of the hydrogel endow the catheter with tunable structural color and drug release properties. Thus, the catheter could not only report the variation of the drug release process via SLIPS phenomenon obviously but also quantitatively give feedback on the drug release process through visually structural color variations. The multifunctional superwettable catheter shows good antibacterial performance and can be used for drug release monitoring which has excellent prospects in biomedical applications.
- Standort
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Deutsche Nationalbibliothek Frankfurt am Main
- Umfang
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Online-Ressource
- Sprache
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Englisch
- Erschienen in
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Bioinspired Superwettable Catheters with Tunable Structural Color for Efficient Drug Release Monitoring ; day:03 ; month:02 ; year:2023 ; extent:8
Advanced materials interfaces ; (03.02.2023) (gesamt 8)
- Urheber
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Jiang, Zhijun
Chen, Yufei
Xu, Mingtian
Shao, Wenwen
Zhang, Lihao
Liu, Cihui
- DOI
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10.1002/admi.202202047
- URN
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urn:nbn:de:101:1-2023020414025048403044
- Rechteinformation
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Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
- Letzte Aktualisierung
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14.08.2025, 10:57 MESZ
Datenpartner
Deutsche Nationalbibliothek. Bei Fragen zum Objekt wenden Sie sich bitte an den Datenpartner.
Beteiligte
- Jiang, Zhijun
- Chen, Yufei
- Xu, Mingtian
- Shao, Wenwen
- Zhang, Lihao
- Liu, Cihui