Beyond excited to share our latest work in @ScienceMagazine on manipulating tough bioadhesion with sound and bubbles! Really enjoyed working on this super cool project with physicists, chemists, engineers, and clinicians! https://t.co/IyJ1EYuMq7
We propose a versatile yet simple strategy to integrate highly entangled hydrogels and diverse biomedical plastics! Really appreciate the support, guidance and help from Dave, @BenRFreedman, @Junsoo_twit, and @ObusehFavour!
A fantastic way to kick off the new year with a new publication in Advanced Healthcare Materials, an intriguing project I worked on during my time in the #mooneylab@hseas@wyssinstitute! https://t.co/D7lON1P01s
Happy to share our new work on "penetration enhancers modulated tough hydrogel bioadhesion and locoregional drug delivery" published in @BioMaterSci! Congratulations to our excellent students and collaborators @BCCancer@ubcpathology@RIMUHC1! https://t.co/aEKYsvlTXs
A fantastic opportunity to join an interdisciplinary team working on the most cutting-edge research, mentored by the most inspiring and supportive mentor, and living in the beautiful Montréal! 🤩🤩🤩
We are looking for graduate students and postdoctoral associates. Our lab offers exciting funded projects, focusing on engineered bacteria-based bioadhesives, ultrasound-based biofabrication, wearable bioadhesive sensors, and hemostatic technologies (https://t.co/cmDmUnzl8f)
A great pleasure to write a "preview" article for @Matter_CP, on "seeing through deep tissue mechanics with wearable ultrasound", highlighting the pioneering research (BAUS-E) from @ProfZhaoMIT's team! Thanks @CranfordMATTER for the opportunity! https://t.co/1X5lIXrYGB
Check out our new paper exploring the cutting mechanics of @softmatter! Fun collaboration with Mattia at @ubcmech (and my first time as a co-corresponding author)! Congratulations to the newly minted Dr.@agbharath! 🥳https://t.co/gkYu5U7afj
Very happy to share our latest work on "printable tough adheisves" published in Advanced Functional Materials! Really appreciate the support from @jianyuvli, our dream team @TinkerHuo@ANottegar@Chris70548109, and our collaborators! Congratulations everyone!!
Our new paper appears in Advanced Functional Materials @AdvSciNews. By combining 3D printing with polyelectrolyte coacervates, we developed printable bioadhesives that use tissue interfaces to trigger stiffening, strengthening, and toughening in situ https://t.co/JsYy1hytN0
@SimoneSchuerle Congratulations @SimoneSchuerle!! Really enjoyed your impressive talk at the GRC! Looking forward to more groundbreaking work from you!!
In @Nature today, we reported that adhesive implant-tissue interfaces can prevent the formation of observable fibrous capsules on various organs, including the abdominal wall, colon, stomach, lung and heart, in diverse animal models, including rats, mice, humanized mice and pigs.
https://t.co/il2b9IUjFi