Stimuli-responsive biomedical polymeric films for tissue regeneration DOI Open Access
Zili Xu, Junjie Deng, Dan Gao

et al.

Microstructures, Journal Year: 2025, Volume and Issue: 5(3)

Published: April 23, 2025

Tissue damage poses a significant burden on patients’ daily lives and has long driven the search for effective clinical treatments. Recent decades have witnessed development of smart biomedical materials satisfying specific requirements such as irregular shapes dynamic microenvironments at defective sites. Stimuli-responsive polymeric films are well-positioned to play considerable role in exploitation next-generation biomaterials both soft hard tissue regeneration. These can be fabricated through diverse approaches engineered with versatile structures properties. Furthermore, responsive stimuli temperature, water, light, these exhibit well-designed functions shape adaption, controlled drug release, cell adhesion vivo , effectively improving In this work, we review recent advancements stimuli-responsive films, beginning introduction their fabrication methods. Subsequently, mechanisms discussed scrutinized terms structure property variations. An overview applications regeneration, including skin, cardiovascular, nerve, bone is provided. Finally, further discuss benefits limitations practical applications, proposing our expectations perspectives future films.

Language: Английский

Konjac glucomannan/zein active film loaded with tea polyphenol–ferric nanoparticles for strawberry preservation DOI
Zhenhua Wu, Lin Wang, Hu Zhi

et al.

International Journal of Biological Macromolecules, Journal Year: 2025, Volume and Issue: 299, P. 139905 - 139905

Published: Jan. 19, 2025

Language: Английский

Citations

3

Konjac glucomannan/xanthan gum film embedding soy protein isolate–tannic acid–iron complexes for blueberry preservation DOI
Zhenhua Wu, Lin Wang,

Chen Ma

et al.

Food Hydrocolloids, Journal Year: 2025, Volume and Issue: 163, P. 111040 - 111040

Published: Jan. 1, 2025

Language: Английский

Citations

2

Recent Advances in Asymmetric Wettability Dressings for Wound Exudate Management DOI Creative Commons
Fang Wang,

Wenqing He,

Bing Dai

et al.

Research, Journal Year: 2025, Volume and Issue: 8

Published: Jan. 1, 2025

The management of wound exudate is vital importance for healing. Exudate accumulation around prolongs inflammation and hinders Although traditional dressings can absorb exudate, they are unable to drain in time, often resulting a poor feature with In recent years, the appearance asymmetric wettability has shown great potential management. Here, we summarize latest progress 3 kinds management, including Janus structure, sandwich gradient structure. most common structural dressing among highlighted from 2 aspects: single-layer modified structure double-layer challenges faced by discussed, developing trends smart this field prospected.

Language: Английский

Citations

0

Enhancing Waterproof Food Packaging with Janus Structure: Lotus Leaf Biomimicry and Polyphenol Particle Technology for Vegetable Preservation DOI
Zhenhua Wu, Lin Wang,

Xianrui Chen

et al.

ACS Applied Materials & Interfaces, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 23, 2025

With the increasing demand for improved food preservation, conventional waterproof packaging has proven inadequate because of its limited functionality. Although incorporating features such as antibacterial and antioxidant properties into enhances protection, it can compromise hydrophobicity involved material, thereby risk contamination from external sources. To address this challenge, a robust reliable barrier capable simultaneously integrating multiple protective functions is required. This research synthesizes polyphenol particles via metal ion coordination hydrogen bondings to enhance antimicrobial properties. In addition, inspired by asymmetric wettability Janus-structured lotus leaves, study develops biomimetic multifunctional Janus electrospun fibers electrostatic spinning. These exhibit exceptional properties, including superhydrophobic, antifouling, ultraviolet-blocking, pH sensitivity, antioxidation, antimicrobial, freshness retention Experiments mesoscopic capillary flow simulations elucidate waterproofing ability underlying mechanisms fibers, demonstrating their function hydrophobic shields preventing water penetration. Overall, provides reference high-performance vegetable preservation.

Language: Английский

Citations

0

Advances in Controllable Water Transport of Textile Porous Materials: Mechanism, Structure Design, Fabrication and Application DOI
Ge Zhang, Jinglin Liu, Yaping Miao

et al.

Advanced Fiber Materials, Journal Year: 2025, Volume and Issue: unknown

Published: April 2, 2025

Language: Английский

Citations

0

Stimuli-responsive biomedical polymeric films for tissue regeneration DOI Open Access
Zili Xu, Junjie Deng, Dan Gao

et al.

Microstructures, Journal Year: 2025, Volume and Issue: 5(3)

Published: April 23, 2025

Tissue damage poses a significant burden on patients’ daily lives and has long driven the search for effective clinical treatments. Recent decades have witnessed development of smart biomedical materials satisfying specific requirements such as irregular shapes dynamic microenvironments at defective sites. Stimuli-responsive polymeric films are well-positioned to play considerable role in exploitation next-generation biomaterials both soft hard tissue regeneration. These can be fabricated through diverse approaches engineered with versatile structures properties. Furthermore, responsive stimuli temperature, water, light, these exhibit well-designed functions shape adaption, controlled drug release, cell adhesion vivo , effectively improving In this work, we review recent advancements stimuli-responsive films, beginning introduction their fabrication methods. Subsequently, mechanisms discussed scrutinized terms structure property variations. An overview applications regeneration, including skin, cardiovascular, nerve, bone is provided. Finally, further discuss benefits limitations practical applications, proposing our expectations perspectives future films.

Language: Английский

Citations

0