Results 291 to 300 of about 4,201,473 (405)
This study develops 3D‐printed Mg‐MC/PLGA scaffolds with varying Mg concentrations (0–20%). The 5% Mg scaffold shows optimal cytocompatibility, osteogenic activity in vitro, and significantly enhances bone regeneration in rabbits, improving bone volume and mechanical strength.
Shihang Liu +9 more
wiley +1 more source
This work presents a “tooth‐on‐chip” device that mimics dental pulp tissue. By co‐culturing key cell types, it recreates vascular networks, stem cell niches, the odontoblast/dentine interface, and trigeminal innervation. This innovative platform provides a unique model of dental pulp structure and physiology, with significant potential for accelerating
Alessandro Cordiale +6 more
wiley +1 more source
RETRACTION: Effect of Probiotics and Synbiotics on Complications of Wound Infection after Colorectal Surgery: A Meta-Analysis. [PDF]
europepmc +1 more source
Advanced Nanoparticle Therapeutics for Targeting Neutrophils in Inflammatory Diseases
This review highlights recent advances in nanoparticle‐based strategies to modulate neutrophil activity in inflammatory diseases. By targeting inflammatory neutrophils, NET formation, and neutrophil apoptosis or recruitment, these approaches aim to improve therapeutic precision.
Min Ji Byun +9 more
wiley +1 more source
RETRACTION: Effect of Salpingectomy Versus Tubal Ligation on Postoperative Wound Infection in Patients: A Meta-Analysis. [PDF]
europepmc +1 more source
Vascularized skin organoids are developed from human induced pluripotent stem cells and contain macrophages, Langerhans cells, and neutrophils. Vascularized skin organoids offer a transformative platform to model skin biology and enable mechanistic investigations of inflammatory and hematologic skin disorders.
Mitchell Mostina +9 more
wiley +1 more source
RETRACTION: A Meta-Analysis Examined the Effect of Stoma on Surgical Site Wound Infection in Colorectal Cancer. [PDF]
europepmc +1 more source
Despite significant efforts in developing novel biomaterials to regenerate tissue, only a few of them have successfully reached clinical use. It has become clear that the next generation of biomaterials must be multifunctional. Smart biomaterials can respond to environmental or external stimuli, interact in a spatial‐temporal manner, and trigger ...
Sonya Ghanavati +12 more
wiley +1 more source

