Results 111 to 120 of about 37,399 (306)
The incorporation of nondigested ECM and synthetic polymers into a co‐electrospinning system enables the decoupling of bioactivity and mechanical properties within a single wrap. This technique is used to develop a multifunctional bone wrap that achieves augmented membrane durability, sustained infection control, and enhanced vascularity for use in ...
Sarah Jones +14 more
wiley +1 more source
Bioprinting Organs—Science or Fiction?—A Review From Students to Students
Bioprinting artificial organs has the potential to revolutionize the medical field. This is a comprehensive review of the bioprinting workflow delving into the latest advancements in bioinks, materials and bioprinting techniques, exploring the critical stages of tissue maturation and functionality.
Nicoletta Murenu +18 more
wiley +1 more source
Recent Advances in Regenerative Therapies in Periodontology
Background/Objectives: Periodontal regeneration remains a primary goal in contemporary periodontal therapy, aiming to restore both the structural and functional integrity of tissues lost due to periodontitis.
Andrei-Mario Bădărău-Șuster +7 more
doaj +1 more source
E7-Conjugated Bio-Inspired Microspheres as a Biological Barrier for Guided Tissue Regeneration. [PDF]
Hu Z, Rong X, Liu X.
europepmc +1 more source
In situ photochemical crosslinking of hydrogel membrane for Guided Tissue Regeneration
Pauline Marie Chichiricco +7 more
openalex +2 more sources
Computational Modeling Meets 3D Bioprinting: Emerging Synergies in Cardiovascular Disease Modeling
Emerging advances in three‐dimensional bioprinting and computational modeling are reshaping cardiovascular (CV) research by enabling more realistic, patient‐specific tissue platforms. This review surveys cutting‐edge approaches that merge biomimetic CV constructs with computational simulations to overcome the limitations of traditional models, improve ...
Tanmay Mukherjee +7 more
wiley +1 more source
Aqueous Two‐Phase Bioinks for Discrete Packing and Compartmentalization of 3D Bioprinted Cells
Aqueous two‐phase systems (ATPS) enable the formation of biomimetic interfaces crucial for tissue engineering. However, clinical translation remains limited by the challenge of precisely controlling cellular compartmentalization. Here, we developed ATPS biomaterial inks for 3D bioprinting allowing tuneable droplet formation via NaCl modulation.
Martina Marcotulli +14 more
wiley +1 more source
Comparison of the Eggshell and the Porcine Pericardium Membranes for Guided Tissue Regeneration Applications. [PDF]
Opris H +9 more
europepmc +1 more source

