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Biomedical subjects

K E Kuettner

Publications and source records attributed to K E Kuettner.

At least 19 recordsLinked to original sources

Biochemistry of articular cartilage in health and disease.

Articular cartilage covers the ends of long bones in synovial joints, providing smooth articulation and cushioning of the underlying bone during joint movement. The tissue can be viewed as a viscoelastic, composite material composed of collagen type II (and smaller amounts of other collagens) entrapping compressed (underhydrated) proteoglycan aggregates which generate a high osmotic/swelling pressure. This abundant extracellular matrix (ECM) is synthesized and turned over by relatively few cells, the chondrocytes. These cells produce a compartmentalized ECM, the components of which are heterogeneous and vary with anatomical location. They also undergo changes with age and altered functional requirements. Articular cartilage contains no separating basement membranes, nerves, lymphatics, or blood vessels. Access to nutrients and elimination of waste products occur via diffusion through the extracellular matrix. The turnover of collagen is much slower than that of proteoglycans. Products of the metabolic turnover of the matrix macromolecules are released continuously into the synovial cavity and ultimately reach the blood circulation where they can be measured as "markers" of metabolic changes.

Animals

Synthesis and turnover of proteoglycans by human and bovine adult articular chondrocytes cultured in alginate beads.

Human and bovine adult articular chondrocytes cultured in alginate beads or agarose gel retain their spherical shape and typical chondrocytic appearance for at least 5 weeks. Aggrecan is always the major population of proteoglycans (PGs) synthesized; its size varies depending upon the age of the cartilage from which the cells are derived but it is not influenced by the culture system used. Studies of human chondrocytes cultured in alginate showed that the majority of the newly-synthesized aggrecan molecules are rapidly incorporated into aggregates which can be extracted from the gel in their native form. About one-third of the aggregates formed during a 4-hour period of incubation in the presence of [35S]-sulfate are packed at high concentration in the cell-associated matrix; the remainder is present in areas of the gel further removed from the cells. Aggrecan appears to be turned over more slowly by human than by bovine cells in both culture systems; in both species, the rate of turnover is slower in alginate than in agarose. Decorin is also synthesized in small amounts but it is rapidly lost from the agarose or alginate gel.

Adolescent

Influence of interleukin-1 on the morphology and proteoglycan metabolism of cultured bovine articular chondrocytes.

Bovine articular chondrocytes cultured in agarose gel in the presence of serum elaborated a highly organized extracellular matrix rich in proteoglycans and collagens. The cultures were evaluated quantitatively by radiosulfate labeling of proteoglycans, and by densitometry following staining with alcian blue. In addition, immunohistochemical methods were used to demonstrate the presence of several components of cartilage proteoglycan molecules. Treatment with Interleukin-1 (Il-1) or retinol resulted in diminished synthesis and enhanced catabolism of matrix proteoglycans, but the chondrocytes were more sensitive to human recombinant Il-1 alpha than to Il-1 beta. Treatment with Il-1 alpha or retinol resulted in a profound disorganization of the residual matrix around the majority of the chondrocytes, while Il-1 beta caused much less severe changes. Some variation in cellular response to Il-1 alpha may result from the heterogeneity previously reported among articular chondrocytes.

Animals

Isolation and characterization of an abundant elastase inhibitor from NaCl extracts of bovine nasal septa and articular cartilage.

Extracts of cartilage have been reported to inhibit many serine proteinases and metalloenzymes. Such inhibition may be important in protecting cartilage against degradation by chondrocytic proteinases such as collagenase, stromelysin and by leukocytic proteases, such as elastase. We report here isolation and partial characterization of a 17-kD elastase inhibitor from 0.5 M NaCl extracts of both nasal septum cartilage and articular cartilage, which inhibits elastase and represents 0.08% of the weight of nasal cartilage and 0.002% of the weight of articular cartilage. The protein was highly specific for elastase and did not inhibit cartilage metalloproteinases, suggesting that it may be mainly directed toward protecting cartilage against leukocytic proteases. The inhibitor had a blocked amino-terminus, was high in serine and glycine and lacked carbohydrate. The ease with which the inhibitor was extracted from cartilage suggests that it may function in vivo as a highly abundant elastase inhibitor which is secreted into synovial fluid from cartilage. The inhibitor was shown to be synthesized by bovine articular cartilage in explant culture and nearly all of the metabolically labeled material was secreted into the culture media. The inhibitor cross-reacted with polyclonal antibodies to bovine neck ligament alpha-elastin and antibodies to the inhibitor reacted with bovine neck ligament elastin. The properties of this inhibitor are different than those of any other reported cartilage derived inhibitor.

Amino Acids

Novel method of purification of human leukocytic elastase using adsorption on a high-performance liquid chromatography gel permeation column.

Neutrophil elastases are serine proteinases released during acute and chronic inflammatory states. We have developed a novel isolation method for neutrophil elastase, involving conventional gel chromatography followed by adsorption of protein at low ionic strength on a high-performance liquid chromatography gel permeation column. The bound elastase is then eluted by application of higher ionic strength. This adsorption step at low ionic strength, a step to be avoided in most purification methods, was used to advantage here to allow isolation of homogeneous material. This purification procedure should be useful for quick, simple bulk preparation of the enzyme.

Chromatography, Gel

Circulating keratan sulfate: a marker of cartilage proteoglycan catabolism in osteoarthritis.

The serum level of a highly sulfated epitope present on long keratan sulfate chains provides a direct measure of the rate of catabolism of cartilage proteoglycans. Levels of the keratan sulfate epitope are elevated in patients with generalized osteoarthritis (OA), indicating these individuals have elevated rates of cartilage proteoglycan catabolism. In the Pond-Nuki model of canine OA, the serum level of the keratan sulfate epitope rises rapidly after the transection of the anterior cruciate ligament, long before OA lesions can be detected, and remains high for at least 13 weeks.

Animals

Articular cartilage matrix and structure: a minireview.

The ability of articular cartilage to undergo reversible deformation is dependent upon the organization of specific macromolecules within the extracellular matrix. This abundant matrix is elaborated by a small number of chondrocytes which maintain homeostasis via a synchronized balance between anabolism and catabolism. Type II collagen together with smaller amounts of other collagens form the fibrous network of the tissue in which are "entrapped" the aggregating proteoglycans in an underhydrated form. Small amounts of nonaggregating dermatan sulfate containing proteoglycans and matrix proteins are also present in the matrix but their function is less well understood.

Cartilage, Articular

Morphology of osteoclasts in resorbing fetal rat bone explants: effects of PTH and AIF in vitro.

Osteoclastic bone resorption was studied using 45Ca-labeled fetal rat bones cultured in the presence of parathyroid hormone (PTH) and an anti-invasion factor (AIF) derived from bovine hyaline cartilage which is enriched in a collagenase inhibitor. The specific morphological expressions of osteoclasts cultured in PTH and AIF were observed in both light and electron microscopy and analyzed cytometrically. Stimulation of bone resorption with PTH revealed significant increases in the numbers and activity of osteoclasts, whereas bones cultured in the presence of AIF showed significant decreases in numbers of osteoclasts and altered cell features including the loss of osteoclast contact with bone surfaces. These structural modifications were evaluated with 45Ca release data derived from matched-pair explants of fetal rat bones, revealing the existence of a relationship between resorptive states of the cultured bones and morphological expressions of osteoclastic activity.

Animals

Intercellular junctions in FANFT-induced carcinomas of rat urinary bladder in tissue culture: in situ thin-section, freeze-fracture, and scanning electron microscopy studies.

This paper describes a set of simple methods for comparative light and electron microscopy studies on tissue cultured tumour cells derived from both noninvasive and invasive carcinogen-induced rat urinary bladder carcinomas. Cells are grown on Thermanox plastic coverslips and fixed in situ. Each plastic coverslip is then divided with scissors into four parts: the first is processed for light microscopy, the second for thin-section electron microscopy, the third for freeze-fracture electron microscopy, and the fourth for scanning electron microscopy. In some experiments, portions of the culture which have first been examined by light microscopy are subsequently prepared for electron microscopy. In this way, the culture conditions are kept constant and comparison of structural features (i.e. intercellular junctions) by several preparative techniques is possible. Noninvasive and invasive rat bladder tumour cells, characterized by numerous pleomorphic microvilli, have normal zonulae occludentes at the apices of lateral surfaces of tumour cells in all cultures. In some areas of invasive tumour cells, occludens junctions are focally attenuated, consisting of only one or two strands, and occasionally the strands are discontinuous. Gap junctions, type PF-1, as well as numerous demosomes are present in all cell lines. Thus, intercellular junctions in noninvasive and invasive rate bladder epithelial cell lines bear a striking resemblance to those previously described in the comparable solid primary tumours. These culture systems may be useful for studying factors which influence the formation of intercellular junctions during malignant transformation.

Animals

Growth regulators in connective tissues. II. Evidence for the presence of several growth inhibitors in aortic extracts.

Studies on the effects of bovine aorta extracts on endothelial and smooth muscle cells cultured from the same tissue indicate they contain at least four separate molecular species capable of inhibiting cell growth. Two, heparin and a recently characterized dermatan sulfate-chondroitin sulfate proteoglycan, are large polyanions and inhibit the growth of both smooth muscle and endothelial cells, but require large amounts to induce this effect. The other two are low molecular weight molecules which inhibit only the growth of endothelial cells, one of which is a protease inhibitor which has been purified to homogeneity. The fourth and most potent is an as yet unidentified fraction distinguishable from the protease inhibitor. Heparin, as reported by others, and the proteoglycan also enhance collagenase activity. It would therefore appear that aorta contains several molecular species which have the potential to affect both invasive and proliferative processes.

Animals

Growth regulators in connective tissue. Systemic administration of an aortic extract inhibits tumor growth in mice.

A low-molecular-weight fraction prepared from extracts of bovine aorta inhibits the growth of a transplantable mammary tumor and a fibrosarcoma in mice when injected systemically. It also inhibits the growth of the fibrosarcoma in cell culture. The effect on the fibrosarcoma is much more marked than on the mammary tumor. Since the extract is more effective against the fibrosarcoma and is known to inhibit the growth of endothelial cells, it appears that the enhanced effect on this tumor is due to its activity on the endothelial cells of the host and the tumor cells themselves. The material injected is enriched in an antiproteinase we have previously isolated, which has anticollagneolytic activity and is presumed to be the effector molecule.

Animals

Tumor cell collagenase and its inhibition by a cartilage-derived protease inhibitor.

Human osteosarcoma and mammary carcinoma cells were cultured separately in a medium supplemented with fetal calf serum, until they were confluent. The medium was then replaced by serum-free medium supplemented with heparin. Both cell cultures secreted collagenase, and this activity was inhibited by a cartilage-derived protein of low molecular weight. Since cartilage is rarely invaded by neoplasms, the presence of this inhibitor may play an important role in the regulation of tumor invasion.

Breast Neoplasms

The resistance of certain tissues to invasion. II. Evidence for extractable factors in cartilage which inhibit invasion by vascularized mesenchyme.

If hyaline cartilage is explanted to the chick chorioallantoic membrane, it resists invasion by vascularized mesenchyme of the host. This resistance is diminished if the tissue is extracted with relatively low concentrations (1.0 M) of guanidine HCl. The extracts contain antiproteolytic activity. This molarity of guanidine HCl extracts only small amounts of the major structural components of cartilage extracellular matrix. It, therefore, seems reasonable to suggest that hyaline cartilage is both avascular and resistant to invasion because it contains extractable inhibitors of invasion, perhaps in the form of proteinase inhibitors.

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