في مشروع رائد يجمع الذكاء الاصطناعي وعلوم المواد، يعمل الباحثون على نماذج رقمية تحاكي بنية العظام البشرية وتكسر قيود الفيزياء التقليدية.

- الخوارزميات تُظهر خواص ميكانيكية وبيولوجية أقرب للواقع.
- التصميم يركز على مفاصل صناعية مستدامة بمادة صديقة للبيئة.
- الهدف: تقليل الحاجة لتبديل المفاصل وتحسين علاج أمراض العظام.

#AI #Biomaterials #SustainableHealth #MedTech #OpenScience

🔗 https://www.bbc.com/arabic/articles/cwy2g4e0vpno?at_medium=RSS&at_campaign=rss

📢 We are pleased to announce that authors can now submit manuscripts directly from bioRxiv to CSBJ through the 𝗯𝗶𝗼𝗥𝘅𝗶𝘃-𝘁𝗼-𝗝𝗼𝘂𝗿𝗻𝗮𝗹 (B2J) transfer service.

🙏We sincerely thank Cold Spring Harbor Laboratory (CSHL) for integrating CSBJ into the B2J service.

#CSBJ #bioRxiv #AAAS #OpenScience #Preprints #SystemsBiology #StructuralBiology #Biotechnology #ComputationalBiology #Omics #Nanoscience #MedicalInformatics #Biomedicine #AdvancedMaterials #Biomaterials #QuantumBiology #Biophotonics

"A new study found that keratin, a structural protein taken from wool, can support bone regeneration in living animals. The material produced bone tissue that more closely matched healthy natural bone than collagen, which is currently considered the standard material for these treatments."

https://scitechdaily.com/scientists-turn-wool-into-bone-healing-material-in-medical-breakthrough/

#SustainableMedicine #RegenerativeMedicine #Biomaterials #TissueEngeneering #ecofriendlyinnovation #stemcellresearch

Scientists Turn Wool Into Bone-Healing Material in Medical Breakthrough

Wool-derived keratin membranes helped regenerate organized, stable bone tissue and may offer a promising alternative to collagen in regenerative medicine.

SciTechDaily

🫁‘Materials that implants are made of often cause inflammation or tissue damage.’

Prof. of Polymer Science Marleen Kamperman & research team at the UG & UMCG are developing softer materials for stents and valves, as well as less invasive means to insert them using magnets.🧲

Curious? Read more 👇
🔗 https://www.rug.nl/fse/news/science-in-focus/the-hard-challenge-making-implants-soft-and-smart

🧪 #SciComm #ScienceNewsroom #materialscience #lungs #biomaterials #biology #research #science #engineering #scientistsOnMastodon
@universityofgroningen @umcgresearch
#HTRIC

Biomaterials Market Report 2026–2035 🧬

Market projected to grow from $172.54B (2026) to $284.44B by 2030, driven by rising healthcare spending and demand for advanced medical implants.

Key trends: biodegradable materials, tissue engineering & 3D-printed biomaterials.

#Biomaterials #Healthcare #MedTech #MarketResearch

🫧 Is there a point where hydration stops helping, and starts harming tissue integrity?

🔗 How Hydration Weakens Collagen: A Mesoscale Energy Decomposition of Type I and Type II Fibrils. Computational and Structural Biotechnology Journal (CSBJ). DOI: https://doi.org/10.34133/csbj.0050

📚 CSBJ - A Science Partner Journal: https://spj.science.org/journal/csbj

#Collagen #Biomaterials #TissueEngineering #Cartilage #Biomechanics #BiomedicalEngineering #MolecularBiology #Biophysics #RegenerativeMedicine #Bioengineering

Postdoctoral Fellow - Spinal Cord Injury/Animal Model

Post a job in 3min, or find thousands of job offers like this one at jobRxiv!

jobRxiv

31-Mar-2026
A stiff defense: Rethinking #gumDisease
Penn Dental #Medicine’s Kyle H. Vining and Hardik Makkar take a #biomaterials approach to understanding periodontal disease, using a #hydrogel system to investigate how the physical properties of the gum tissue impact #inflammation.

https://www.eurekalert.org/news-releases/1122100

#science #health

A stiff defense: Rethinking gum disease

Dentists Kyle H. Vining and Hardik Makkar from the University of Pennsylvania are taking a new approach to treating severe gum disease by focusing on the physical properties of gum tissue. Using a Jell-O-like hydrogel, their team discovered that physically stiffening model tissues dramatically reduced inflammation, paving the way to strengthen the gums and halt the destructive cycle of periodontal disease.

EurekAlert!

“To make kombucha wearables functional, it is necessary to incorporate electrical circuits. We demonstrate that creating electrical conductors on kombucha mats is possible. After repeated bending and stretching, the circuits maintain their functionality.”

https://pmc.ncbi.nlm.nih.gov/articles/PMC10256688/

#kombucha #fermenting #biomaterials

The light-powered biohybrid cardiac interface is an advanced polymeric device that utilizes light to electrically and mechanically control living heart tissue without the use of traditional metal electrodes.
#BiomolecularEngineering #MaterialsScience #Biomaterials #Cardiology #sflorg
https://www.sflorg.com/2026/03/beng03242601.html
Researchers engineer a light-powered biohybrid cardiac interface

Optoelectronic device may offer benefits in heart drug screening and disease modeling