2003Humana Press eBooksRequires access

Human Chondrocyte Cultures as Models of Cartilage-Specific Gene Regulation

Mary B. Goldring

Open publisher page 53 citations

Abstract

Chondrocytes comprise the single cellular component of adult hyaline cartilage and are considered to be terminally differentiated cells that maintain the cartilage matrix when turnover is low. The major components of the extracellular matrix synthesized by these specialized cells include highly crosslinked fibrils of the final synthesized and secreted triple helical type II collagen molecule that interact with other cartilage-specific collagens IX and XI, the large aggregating proteoglycan aggrecan, small proteoglycans, such as biglycan and decorin, and other specific and nonspecific matrix proteins that are expressed at defined stages during development and growth 1, 2. This matrix confers tensile strength and flexibility to articular surfaces and serves specialized functions in only a few other tissues Cultured chondrocytes have served as useful models for studying chondrocyte differentiation and the effects of cytokines and growth factors that control the maintenance or suppression of differentiated cartilage phenotype 3.

About this research paper

What this paper is about

Chondrocytes comprise the single cellular component of adult hyaline cartilage and are considered to be terminally differentiated cells that maintain the cartilage matrix when turnover is low. The major components of the extracellular matrix synthesized by these specialized cells include highly crosslinked fibrils of the final synthesized and secreted triple helical type II collagen molecule that interact with other cartilage-specific collagens IX and XI, the large aggregating proteoglycan aggrecan, small proteoglycans, such as biglycan and decorin, and other specific and nonspecific matrix proteins that are expressed at defined stages during development and growth 1, 2. This matrix confers tensile strength and flexibility to articular surfaces and serves specialized functions in only a few other tissues Cultured chondrocytes have served as useful models for studying chondrocyte differentiation and the effects of cytokines and growth factors that control the maintenance or suppression of differentiated cartilage phenotype 3.

Why it matters

OpenAlex reports 53 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Chondrocytes comprise the single cellular component of adult hyaline cartilage and are considered to be terminally differentiated cells that maintain the cartilage matrix when turnover is low. The major components of the extracellular matrix synthesized by these specialized cells include highly crosslinked fibrils of the final synthesized and secreted triple helical type II collagen molecule that interact with other cartilage-specific collagens IX and XI, the large aggregating proteoglycan aggrecan, small proteoglycans, such as biglycan and decorin, and other specific and nonspecific matrix proteins that are expressed at defined stages during development and growth 1, 2. This matrix confers tensile strength and flexibility to articular surfaces and serves specialized functions in only a few other tissues Cultured chondrocytes have served as useful models for studying chondrocyte differentiation and the effects of cytokines and growth factors that control the maintenance or suppression of differentiated cartilage phenotype 3.

Key concepts: Decorin, Biglycan, Aggrecan, Chondrocyte, Extracellular matrix, Cell biology, Cartilage, Hyaline cartilage

Related papers

Back to paper searchBrowse research topicsOriginal source
Human Chondrocyte Cultures as Models of Cartilage-Specific Gene Regulation — Research Paper | ScholarLens