Changes in intracellular calcium (Ca2+) concentration, also known as Ca2+ signaling, have been widely studied in articular cartilage chondrocytes to investigate pathways of mechanotransduction. Various physical stimuli can generate an influx of Ca2+ into the cell, which in turn is thought to trigger a range of metabolic and signaling processes. In contrast to most studies, the approach used in this study allows for continuous real time recording of calcium signals in chondrocytes in their native environment. Therefore, interactions of cells with the extracellular matrix (ECM) are fully accounted for. Calcium signaling was quantified for dynamic loading conditions and at different temperatures. Peak magnitudes of calcium signals were greater...
<div><p>Articular cartilage is physiologically exposed to repeated loads. The mechanical properties ...
An early response to mechanical stimulation of bone cells in vitro is an increase in intracellular c...
A new device was designed to generate a localized mechanical vibration of flexible gels where human ...
Changes in intracellular calcium (Ca2+) concentration, also known as Ca2+ signaling, have been widel...
Undifferentiated mesenchymal stem cells (MSCs) represent an important source for cell-based tissue r...
Abstract. Articular cartilage is a tissue designed to withstand compression during joint movement an...
Associate Editor Michael S. Detamore oversaw the review of this article. Abstract—Calcium is a unive...
AbstractIntercellular Ca2+ signalling in primary cultures of articular chondrocytes was investigated...
Lu, X. LucasChondrocyte, the sole cell population in articular cartilage, is responsible for the hom...
Mesenchymal stem cells (MSCs) are a promising cell source for tissue-engineered connective tissue re...
Articular cartilage is a unique load-bearing connective tissue with a low intrinsic capacity for rep...
Mechanical loading of articular cartilage stimulates the metabolism of resident chondrocytes and ind...
Mechanical signals regulate a multitude of cell functions and ultimately govern fibrous tissue growt...
A single application of cyclic compression to bioengineered cartilage improves tissue formation thro...
Extracellular calcium ion concentration levels increase in human osteoarthritic (OA) joints and cont...
<div><p>Articular cartilage is physiologically exposed to repeated loads. The mechanical properties ...
An early response to mechanical stimulation of bone cells in vitro is an increase in intracellular c...
A new device was designed to generate a localized mechanical vibration of flexible gels where human ...
Changes in intracellular calcium (Ca2+) concentration, also known as Ca2+ signaling, have been widel...
Undifferentiated mesenchymal stem cells (MSCs) represent an important source for cell-based tissue r...
Abstract. Articular cartilage is a tissue designed to withstand compression during joint movement an...
Associate Editor Michael S. Detamore oversaw the review of this article. Abstract—Calcium is a unive...
AbstractIntercellular Ca2+ signalling in primary cultures of articular chondrocytes was investigated...
Lu, X. LucasChondrocyte, the sole cell population in articular cartilage, is responsible for the hom...
Mesenchymal stem cells (MSCs) are a promising cell source for tissue-engineered connective tissue re...
Articular cartilage is a unique load-bearing connective tissue with a low intrinsic capacity for rep...
Mechanical loading of articular cartilage stimulates the metabolism of resident chondrocytes and ind...
Mechanical signals regulate a multitude of cell functions and ultimately govern fibrous tissue growt...
A single application of cyclic compression to bioengineered cartilage improves tissue formation thro...
Extracellular calcium ion concentration levels increase in human osteoarthritic (OA) joints and cont...
<div><p>Articular cartilage is physiologically exposed to repeated loads. The mechanical properties ...
An early response to mechanical stimulation of bone cells in vitro is an increase in intracellular c...
A new device was designed to generate a localized mechanical vibration of flexible gels where human ...