Bone tissue engineering and regeneration stands at the forefront of regenerative medicine, offering innovative solutions for skeletal repair and reconstruction. This multidisciplinary field integrates ...
In recent years, there have been tremendous advances in tissue engineering, the field of biomaterials research and development that combines living cells with 3D microstructures and biologically ...
Bone implants often fail to fully integrate with surrounding tissue, limiting their effectiveness in regeneration. A natural but often overlooked cellular process could hold the key to better outcomes ...
Piezoelectricity in native bones has been well recognized as the key factor in bone regeneration. However, the current additive-manufactured scaffolds mainly focus on the reconstruction of bionic ...
A bone regeneration device using bioactive materials pioneered by Querrey Simpson Institute for Regenerative Engineering at Northwestern University (QSI RENU) director Guillermo Ameer was recently ...
These fields aim to facilitate healing and restore lost function in damaged or diseased tissues and organs by integrating scaffolds, cells, and biological signaling molecules. This combination aims to ...
Chemical Engineering Assoc. Prof. Gulden Camci-Unal was recently awarded a three-year collaborative research grant worth nearly $242,000 by the National Science Foundation to develop bioartificial ...
Natural sources, such as microorganisms (e.g., bacteria, fungi, yeast, and algae) and plant extracts, have acted as eco-friendly precursors for producing nanoparticles with several potential ...
April 3, 2006 — Investigators successfully grew and implanted tissue-engineered autologous bladders into 7 patients needing cystoplasty, according to a report in the April 4 issue of The Lancet.
Typically, bone marrow research relies heavily on animal models and oversimplified cell cultures in the laboratory. Now, researchers from the Department of Biomedicine at the University of Basel and ...
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