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New Research: Macrophage variance: investigating how macrophage origin influences responses to soluble and physical cues with immortalized vs. primary cells in 2D and 3D culture https://t.co/qSJZQYcnWD #BiomaterialsScience
New Research: Development of a 3D in vitro human-sized model of cervical dysplasia to evaluate the delivery of ethyl cellulose-ethanol injection https://t.co/0DRUxpXvSV #BiomaterialsScience
New Research: Synergistic antibacterial activity and inhibition of TiO2 nanotube arrays and loaded antibiotics against gram-positive and gram-negative bacteria https://t.co/NKwX8IVva8 #BiomaterialsScience
New Research: The road after cancer: biomaterials and tissue engineering approaches to mediate the tumor microenvironment post-cancer treatment https://t.co/c3nhlgyMw3 #BiomaterialsScience
New Research: Fabrication of gelatin-heparin based cartilage models: enhancing spatial complexity through refinement of stiffness properties and oxygen availability https://t.co/Bxviwn8kjo #BiomaterialsScience
New Research: Extracellular vesicles as next-generation therapeutics and biomarkers in amyloidosis: a new frontier https://t.co/G1vKqsxSho #BiomaterialsScience
New Research: Investigating the role between glycosaminoglycan immobilization approach and protein affinity https://t.co/gDCItXMQR8 #BiomaterialsScience
Elevate your research by contributing to our Research Topic on the Application of Biomaterials in Electronic Devices.
Explore and submit your manuscript β¬οΈ https://t.co/iv1DD3ukNz
Congratulations to our Field Chief Editor, Prof. Dietmar Werner Hutmacher (@QUT), who has appeared on the @Clarivate Highly Cited Researchers list for a 4th time!π
https://t.co/fEqTgpPjme
#HighlyCited2023
Last chance to register! Join today's #FrontiersForum virtual event where @DrPaulBehrens will discuss whether a Great Food Transition toward plant-rich diets, coupled with transformation of global energy systems, can steer humanity to a hopeful, healthier future.
Register now.
New Research: Acute transplantation of NPC on electrospun poly-lactic acid membranes containing curcumin into the injured spinal cord reduces neuronal degeneration https://t.co/aAW2Sze2K6 #BiomaterialsScience