Results 61 to 70 of about 122,515 (310)
Design and Synthesis of Peptide‐Polyester Conjugates for Cell‐Mediated Scaffold Degradation
This work describes polycaprolactone (PCL)‐based biomaterials engineered to degrade in response to cell‐secreted proteases. A fast‐degrading peptide (Fast) sequence is integrated into a PCL conjugate backbone to produce a biomaterial that is selectively degraded by multiple cell types compared to its scrambled control (ScrFast).
Korina Vida G. Sinad +7 more
wiley +1 more source
As the most important barrier for the human body, the skin often suffers from acute and chronic injuries, especially refractory wounds, which seriously affect the quality of life of patients.
Peng Li, Xiutian Guo
doaj +1 more source
Human periosteum‐derived cell spheroids bioprinted at high density within a hyaluronic acid matrix promote fusion and hypertrophic cartilage formation in vitro. Early encapsulation enhances spheroid interaction and matrix maturation, generating scalable cartilage templates intended for endochondral bone regeneration.
Ane Albillos Sanchez +6 more
wiley +1 more source
Amniotic fluid stem cells from second and third trimester, comparison and potency for regenerative medicine [PDF]
Amniotic Fluid Stem Cells (AFSCs) can be isolated from the amniotic fluid after amniocentesis that pregnant women undergo during the second trimester of pregnancy, this population has already been characterised and share common features between embryonic
Schiavo, Andrea Alex
core
Characterization of early mouse mesenchymal stem/progenitor cells for generating cartilage and study their role in endochondral ossification [PDF]
Mesenchymal stem/ stromal cells (MSCs) isolated from mice have allowed to address some of the major issues that could not be investigated by using human MSCs.
Jaiswal, Sumit
core +1 more source
This systematic review quantitatively compares conventional mechanical stimulation strategies in cartilage tissue engineering across 85 heterogeneous in vitro studies. Applying standardized effect measures, meta‐analysis reveals that combined compression and shear loading optimally promotes cartilage matrix development.
Jiaqi K. Shen +7 more
wiley +1 more source
In vitro characterization of immune-related properties of human fetal bone cells for potential tissue engineering applications [PDF]
We describe herein some immunological properties of human fetal bone cells recently tested for bone tissue-engineering applications. Adult mesenchymal stem cells (MSCs) and osteoblasts were included in the study for comparison.
Martin, I +32 more
core +1 more source
Microgel‐based 3D printed constructs represent a compelling and versatile innovation for engineering architecturally complex, dynamically remodelable, and biocompatible structures with high structural fidelity and bioactivity. By integrating material design, biofabrication, and biological function, these systems enable the development of adaptive ...
Elena Ghighină +2 more
wiley +1 more source
Aim: We sought to determine the safety profile of a therapeutic candidate composed of the released molecules from a combination of human adipose-derived mesenchymal stem cells and fibroblasts. Although stem cells, their progenitor cells and the molecules
Greg Maguire, Peter Friedman
doaj +1 more source
Origin and regenerative potential of vertebrate mechanoreceptor-associated stem cells
Widera D, Hauser S, Kaltschmidt C, Kaltschmidt B. Origin and regenerative potential of vertebrate mechanoreceptor-associated stem cells. Anatomy Research International.
Hauser, Stefan +4 more
core +1 more source

