SummaryObjectiveTo determine if increasing cartilage cross-links through in vitro glycation of cartilage explants can alter the biomechanical response of chondrocytes to compressive deformation.MethodBovine osteochondral explants were either incubated with cell culture solution supplemented with (n = 7) or without (n = 7) ribose for 42 h in order to induce glycation. Deformation-induced changes in cell volume, dimensions and local tissue strains were determined through confocal laser scanning microscopy (CLSM) and the use of a custom built micro-compression device. Osteochondral explants were also utilized to demonstrate changes in depth-wise tissue properties, biomechanical tissue properties and cross-links such as pentosidine (Pent), hydr...
The prevalence of osteoarthritis (OAs) increases with age and coincides with the accumulation of adv...
SummaryObjectiveThe cell morphology, gene expression, and matrix synthesis of articular chondrocytes...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
SummaryObjectiveTo determine if increasing cartilage cross-links through in vitro glycation of carti...
Investigations into mechanotransduction in connective tissue extracellular matrix (ECM) have demonst...
Objective. Age is an important risk factor for osteoarthritis (OA). During aging, nonenzymatic glyca...
SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte bios...
An important aspect in cartilage ageing is accumulation of advanced glycation end products (AGEs) af...
The mechanical properties of articular cartilage depend on the quality of its matrix, which consists...
SummaryObjectiveIdeally, cartilage regenerative cell therapy should produce a tissue which closely m...
SummaryObjectiveTo investigate the biosynthetic response of elderly human femoral head articular car...
Osteoarthritis (OA) is a type of degenerative arthritis that limits daily activity and quality of li...
AbstractObjective The prevalence of osteoarthritis (OAs) increases with age and coincides with the a...
The negatively charged proteoglycans (PG) provide compressive resistance to articular cartilage by m...
INTRODUCTION: Chondrocytes in articular cartilage utilize mechanical signals to regulate their metab...
The prevalence of osteoarthritis (OAs) increases with age and coincides with the accumulation of adv...
SummaryObjectiveThe cell morphology, gene expression, and matrix synthesis of articular chondrocytes...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
SummaryObjectiveTo determine if increasing cartilage cross-links through in vitro glycation of carti...
Investigations into mechanotransduction in connective tissue extracellular matrix (ECM) have demonst...
Objective. Age is an important risk factor for osteoarthritis (OA). During aging, nonenzymatic glyca...
SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte bios...
An important aspect in cartilage ageing is accumulation of advanced glycation end products (AGEs) af...
The mechanical properties of articular cartilage depend on the quality of its matrix, which consists...
SummaryObjectiveIdeally, cartilage regenerative cell therapy should produce a tissue which closely m...
SummaryObjectiveTo investigate the biosynthetic response of elderly human femoral head articular car...
Osteoarthritis (OA) is a type of degenerative arthritis that limits daily activity and quality of li...
AbstractObjective The prevalence of osteoarthritis (OAs) increases with age and coincides with the a...
The negatively charged proteoglycans (PG) provide compressive resistance to articular cartilage by m...
INTRODUCTION: Chondrocytes in articular cartilage utilize mechanical signals to regulate their metab...
The prevalence of osteoarthritis (OAs) increases with age and coincides with the accumulation of adv...
SummaryObjectiveThe cell morphology, gene expression, and matrix synthesis of articular chondrocytes...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...