Bone tissue engineering and regeneration stands at the forefront of regenerative medicine, offering innovative solutions for skeletal repair and reconstruction. This multidisciplinary field integrates ...
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 ...
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 ...
An international team of biomedical engineers has demonstrated for the first time that it is possible to grow healthy new bone reliably in one part of the body and use it to repair damaged bone at a ...
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 ...
Tissue engineering – the field of biomaterials research and development that combines living cells with 3D scaffolds and biologically active molecules to grow fully functional tissues – has made ...
Stem cells are unspecialized cells with two distinct characteristics: unlimited self-renewal capacity; and the ability to differentiate into many types of tissue or organ-specific specialized cells.
RevBio(R) Receives Approval from FDA to Start a Dental Clinical Trial for its Regenerative Bone Glue
RevBio, Inc., announced that it has received approval from the U.S. Food and Drug Administration to start a pilot clinical trial to examine the safety and efficacy of TETRANITE(R) , the company's ...
Researchers show that analyzing just 7% of the hip bone can predict fracture risk with 95% accuracy, improving osteoporosis ...
The Bone and Soft Tissue Pathology Service provides comprehensive diagnostic evaluation of neoplastic (benign and malignant) and non-neoplastic diseases arising from soft tissue and bone, thus often ...
A University of Kentucky Markey Cancer Center study reveals how prostate cancer cells adapt their metabolism to thrive in ...
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