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March 15, 2026Advanced Materials0 citations

Biofilm‐Antagonist Ginger‐Based 3D‐Printable Photoresins for Complex Implant Designs Exhibiting Advanced Multifunctional Biomedical Applications (Adv. Mater. 15/2026)

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SJSimran JindalMBMajd BisharatBKBassma Khamaisi

Key Points

  • The aim was to develop a ginger-based 3D-printable resin for complex implant designs with biofilm-antagonistic properties.
  • Developed a resin that mimics the strength of human bones for 3D printing
  • Conducted in-vitro and ex-vivo assessments of antioxidant and anti-biofilm effects
  • Evaluated in-vivo biocompatibility of the implants
  • Demonstrated antioxidant efficacy in vitro
  • Showed effective biofilm prevention ex vivo
  • Exhibited good biocompatibility in vivo
  • Indicated potential to reduce implant failure rates

Abstract

Ginger-Based 3D-Printed Complex Implants In their Research Article (DOI: 10.1002/adma.202503351), Shady Farah and co-workers proposed the first-ever ginger-based 3D-printable resin for tailored biofilm-antagonistic high-resolution complex implant designs. The prints' customizable backbone chemistry imitates the strength of different human bones. While acquiring in-vitro antioxidant and ex-vivo anti-biofilm efficacies, together with in-vivo biocompatibility, their propensity to avoid implant failure makes them promising tools for bone-tissue engineering applications.

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Cite This Study

Jindal et al. (2026) studied this question.

synapsesocial.com/papers/69b606c483145bc643d1d086https://doi.org/10.1002/adma.72615
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