AbstractAlkaline phosphatase is required for the mineralization of bone and cartilage. This enzyme is localized in the matrix vesicle, which plays a role key in calcifying cartilage. In this paper we standardize a method to construction a resealed ghost cell–alkaline phosphatase system to mimic matrix vesicles and examine the kinetic behavior of the incorporated enzyme. Polidocanol-solubilized alkaline phosphatase, free of detergent, was incorporated into resealed ghost cells. This process was time-dependent and practically 50% of the enzyme was incorporated into the vesicles in 40 h of incubation, at 25 °C. Alkaline phosphatase–ghost cell systems were relatively homogeneous with diameters of about 300 nm and were more stable when stored at...
Since its characterization two decades ago, the phosphatase PHOSPHO1 has been the subject of an incr...
The vertebrate skeleton is a hugely complex organ which performs varied and diverse functions enco...
Cells from rat bone marrow exhibit the proliferation-differentiation sequence of osteoblasts, form m...
AbstractAlkaline phosphatase is required for the mineralization of bone and cartilage. This enzyme i...
Alkaline phosphatase is required for the mineralization of bone and cartilage. This enzyme is locali...
Alkaline phosphatase is required for the mineralization of bone and cartilage. This enzyme is locali...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
During the process of endochondral bone formation, chondrocytes and osteoblasts mineralize their ext...
Since its characterization two decades ago, the phosphatase PHOSPHO1 has been the subject of an incr...
Matrix vesicle-mediated mineralization is orchestrated by ultrastructural and biochemical events tha...
Since its characterization two decades ago, the phosphatase PHOSPHO1 has been the subject of an incr...
The vertebrate skeleton is a hugely complex organ which performs varied and diverse functions enco...
Cells from rat bone marrow exhibit the proliferation-differentiation sequence of osteoblasts, form m...
AbstractAlkaline phosphatase is required for the mineralization of bone and cartilage. This enzyme i...
Alkaline phosphatase is required for the mineralization of bone and cartilage. This enzyme is locali...
Alkaline phosphatase is required for the mineralization of bone and cartilage. This enzyme is locali...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
Matrix vesicles (MVs) contain the whole machinery necessary to initiate apatite formation in their l...
During the process of endochondral bone formation, chondrocytes and osteoblasts mineralize their ext...
Since its characterization two decades ago, the phosphatase PHOSPHO1 has been the subject of an incr...
Matrix vesicle-mediated mineralization is orchestrated by ultrastructural and biochemical events tha...
Since its characterization two decades ago, the phosphatase PHOSPHO1 has been the subject of an incr...
The vertebrate skeleton is a hugely complex organ which performs varied and diverse functions enco...
Cells from rat bone marrow exhibit the proliferation-differentiation sequence of osteoblasts, form m...