AI Article Synopsis

  • Balancing biocompatibility with mechanical and electrical sensing performance after in vivo implantation is difficult, leading to potential inflammatory responses.
  • The study introduces a new bioinspired soft strain-sensor made from a stretchable ionic-conductive hydrogel that combines nanoclay for improved tensile strength and reliable sensing.
  • This hydrogel's design reduces protein adsorption, enhancing biosafety for implanted devices, and shows promise for accurately detecting myocardial infarction, presenting a potential advance in real-time heart disease monitoring.

Article Abstract

It is challenging to balance high biocompability with good mechanical-electrical sensing performance, especially when triggering inflammatory stress response after in vivo implantation. Herein, a bioinspired wrinkle-reinforced adaptive nanoclay-interlocked soft strain-sensor based on a highly stretchable and elastic ionic-conductive hydrogel is reported. This novel nanoclay-composite hydrogel exhibits excellent tensile properties and high sensing capacity with steady and reliable sensing performance due to the structural-mechanical-electrical integrity of the nanoclay crosslinked and nano-reinforced interpenetrating network. The incorporation of amphiphilic ions provides the hydrogel with significant protein resistance, reducing its non-specific adsorption to proteins upon implantation, improving its biosafety as an implanted device, and maintaining the authenticity of the sensing results. Based on the revealed sensing enhanced mechanism based on hierarchical ordered structures as a proof-of-concept application, this hydrogel sensor is demonstrated to be able to accurately localize the region where myocardial infarction occurs and may become a novel strategy for real-time monitoring of pathological changes in heart disease.

Download full-text PDF

Source
http://dx.doi.org/10.1002/adma.202209497DOI Listing

Publication Analysis

Top Keywords

highly stretchable
8
nanoclay-composite hydrogel
8
myocardial infarction
8
sensing performance
8
sensing
6
hydrogel
5
stretchable biocompatible
4
biocompatible wrinkled
4
wrinkled nanoclay-composite
4
hydrogel enhanced
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!