Functional and biomimetic materials for engineering of the three-dimensional cell microenvironment
The cell microenvironment has emerged as a key determinant of cell behavior and function
in development, physiology, and pathophysiology. The extracellular matrix (ECM) within the …
in development, physiology, and pathophysiology. The extracellular matrix (ECM) within the …
Decellularization for the retention of tissue niches
Decellularization of natural tissues to produce extracellular matrix is a promising method for
three-dimensional scaffolding and for understanding microenvironment of the tissue of …
three-dimensional scaffolding and for understanding microenvironment of the tissue of …
Evolution of biomimetic ECM scaffolds from decellularized tissue matrix for tissue engineering: A comprehensive review
Y Zhang, C Zhang, Y Li, L Zhou, N Dan, J Min… - International Journal of …, 2023 - Elsevier
Tissue engineering is essentially a technique for imitating nature. Natural tissues are made
up of three parts: extracellular matrix (ECM), signaling systems, and cells. Therefore …
up of three parts: extracellular matrix (ECM), signaling systems, and cells. Therefore …
Tissue-engineered grafts from human decellularized extracellular matrices: a systematic review and future perspectives
A Porzionato, E Stocco, S Barbon, F Grandi… - International journal of …, 2018 - mdpi.com
Tissue engineering and regenerative medicine involve many different artificial and biologic
materials, frequently integrated in composite scaffolds, which can be repopulated with …
materials, frequently integrated in composite scaffolds, which can be repopulated with …
Development of a magnetic microrobot for carrying and delivering targeted cells
The precise delivery of targeted cells through magnetic field–driven microrobots/carriers is a
promising technique for targeted therapy and tissue regeneration. This paper presents a …
promising technique for targeted therapy and tissue regeneration. This paper presents a …
Repair of damaged articular cartilage: current approaches and future directions
EV Medvedeva, EA Grebenik, SN Gornostaeva… - International journal of …, 2018 - mdpi.com
Articular hyaline cartilage is extensively hydrated, but it is neither innervated nor
vascularized, and its low cell density allows only extremely limited self-renewal. Most clinical …
vascularized, and its low cell density allows only extremely limited self-renewal. Most clinical …
[HTML][HTML] Enhancement of acellular cartilage matrix scaffold by Wharton's jelly mesenchymal stem cell-derived exosomes to promote osteochondral regeneration
Articular cartilage defect repair is a problem that has long plagued clinicians. Although
mesenchymal stem cells (MSCs) have the potential to regenerate articular cartilage, they …
mesenchymal stem cells (MSCs) have the potential to regenerate articular cartilage, they …
Articular cartilage: from formation to tissue engineering
S Camarero-Espinosa, B Rothen-Rutishauser… - Biomaterials …, 2016 - pubs.rsc.org
Hyaline cartilage is the nonlinear, inhomogeneous, anisotropic, poro-viscoelastic connective
tissue that serves as friction-reducing and load-bearing cushion in synovial joints and is vital …
tissue that serves as friction-reducing and load-bearing cushion in synovial joints and is vital …
Extracellular matrix scaffolds for cartilage and bone regeneration
KEM Benders, PR Van Weeren, SF Badylak… - Trends in …, 2013 - cell.com
Regenerative medicine approaches based on decellularized extracellular matrix (ECM)
scaffolds and tissues are rapidly expanding. The rationale for using ECM as a natural …
scaffolds and tissues are rapidly expanding. The rationale for using ECM as a natural …
Hydrogel composite scaffolds achieve recruitment and chondrogenesis in cartilage tissue engineering applications
Background The regeneration and repair of articular cartilage remains a major challenge for
clinicians and scientists due to the poor intrinsic healing of this tissue. Since cartilage …
clinicians and scientists due to the poor intrinsic healing of this tissue. Since cartilage …