AbstractBackgroundAdvancements in cartilage tissue engineering have the potential to ameliorate facial and joint reconstructive surgery as we know it. The translation of in vitro models of cartilage regeneration into clinical scenarios is the next phase of cartilage tissue engineering research. To engineer larger, more robust, and clinical relevant constructs, a great number of viable chondrocytic cells are needed. However, there is a paucity of literature concerning the most favorable method of chondrocyte isolation. Isolation methods are inconsistent, resulting in small yields and poor cell quality, and thus unreliable neocartilage formation. This study aimed to optimize the chondrocyte isolation protocol to give a maximum yield with opti...
In native articular cartilage, chondrocytes (Chy) are completely capsulated by a pericellular matrix...
Cartilage is a connective tissue that serves as a structural support for maintaining the shape for s...
BACKGROUND: Cartilage tissue engineering is a fast-evolving field of biomedical engineering, in whic...
Advancements in cartilage tissue engineering have the potential to ameliorate facial and joint recon...
AbstractBackgroundAdvancements in cartilage tissue engineering have the potential to ameliorate faci...
Chondrocyte transplantation has been successfully tested and proposed as a clinical procedure aiming...
Laboratory based processing and expansion to yield adequate cell numbers had been the standard in Au...
The number of patients suffering from osteoarthritis, resulting in loss of good human life qualities...
Osteoarthritis is one of the most common chronic diseases, which have involved 250 million people ar...
Lesions of aural, nasal and tracheal cartilage are frequently reconstructed by complex surgeries whi...
Background: Articular cartilage has poor regenerative capacities. Numerous cartilage repair techniqu...
SummaryObjectiveNumerous methods for isolation of human chondrocytes are reported in the literature,...
Abstract Cartilage has limited self-regenerative capacity. Tissue engineering can offer promising s...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...
AbstractSynovium-derived mesenchymal stem cells (SDMSCs) are one of the most suitable sources for ca...
In native articular cartilage, chondrocytes (Chy) are completely capsulated by a pericellular matrix...
Cartilage is a connective tissue that serves as a structural support for maintaining the shape for s...
BACKGROUND: Cartilage tissue engineering is a fast-evolving field of biomedical engineering, in whic...
Advancements in cartilage tissue engineering have the potential to ameliorate facial and joint recon...
AbstractBackgroundAdvancements in cartilage tissue engineering have the potential to ameliorate faci...
Chondrocyte transplantation has been successfully tested and proposed as a clinical procedure aiming...
Laboratory based processing and expansion to yield adequate cell numbers had been the standard in Au...
The number of patients suffering from osteoarthritis, resulting in loss of good human life qualities...
Osteoarthritis is one of the most common chronic diseases, which have involved 250 million people ar...
Lesions of aural, nasal and tracheal cartilage are frequently reconstructed by complex surgeries whi...
Background: Articular cartilage has poor regenerative capacities. Numerous cartilage repair techniqu...
SummaryObjectiveNumerous methods for isolation of human chondrocytes are reported in the literature,...
Abstract Cartilage has limited self-regenerative capacity. Tissue engineering can offer promising s...
Nasal chondrocytes (NCs) have a higher and more reproducible chondrogenic capacity than articular ch...
AbstractSynovium-derived mesenchymal stem cells (SDMSCs) are one of the most suitable sources for ca...
In native articular cartilage, chondrocytes (Chy) are completely capsulated by a pericellular matrix...
Cartilage is a connective tissue that serves as a structural support for maintaining the shape for s...
BACKGROUND: Cartilage tissue engineering is a fast-evolving field of biomedical engineering, in whic...