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Biomedical subjects

D C Fischer

Publications and source records attributed to D C Fischer.

At least 37 records · Page 2Linked to original sources

Interleukin-1beta and interleukin-8 concentrations in the lower uterine segment during parturition at term.

OBJECTIVE: To assess the roles of interleukin-1beta, interleukin-8, and fibroblasts in the lower uterine segment during parturition. METHODS: Lower uterine segment biopsy specimens were obtained from 36 women undergoing cesarean delivery at various stages of cervical dilation (less than 2 cm, n = 8; 2 to less than 4 cm, n = 9; 4-6 cm, n = 10; more than 6 cm, n = 9). The concentrations of interleukin-1beta and interleukin-8 in protein extracts prepared from the tissue samples were measured by enzyme immunoassays. The effect of incubation with interleukin-1beta (30 U/mL) on interleukin-8 secretion by lower uterine segment fibroblasts in vitro also was determined. RESULTS: The median interleukin-1beta concentration in the specimens increased from 1.3 pg/mg of total protein at less than 2 cm of dilation to 22.2 pg/mg of total protein at 4-6 cm of dilation (P < .05). No further increase was detectable after 6 cm of dilation. The interleukin-8 concentration increased from 17.2 pg/mg of total protein at less than 2 cm of dilation to 2080.7 pg/mg of total protein at 4-6 cm of dilation (P < .05), thus paralleling the increase in interleukin-1beta concentration. Interleukin-1beta induced a significant increase in interleukin-8 secretion by fibroblasts in vitro, from 0.8 ng/10(6) cells to 35.6 ng/10(6) cells. CONCLUSION: The increase in interleukin-8 concentration in the lower uterine segment during parturition may be induced by interleukin-1beta and fibroblasts may be one of the sources of this interleukin-8.

Adult↗

Specific properties of the extracellular chondroitin sulphate proteoglycans in the mandibular condylar growth centre in pigs.

The developing condylar cartilage of the temporomandibular joint responds to changes in load by adaptive growth. Because local regulatory events taking place during growth processes are not well understood, investigation of extracellular matrix composition could provide new information about which matrix molecules are involved in the regulation of growth processes in this avascular tissue. The large chondroitin sulphate-rich proteoglycans in the mandibular condyle were compared to the proteoglycans in the weight-bearing femoral condyle of juvenile domestic pigs with respect to their buoyant density, chemical composition and immunological identity after isolation by dissociative extraction and CsCl density-gradient centrifugation. The distribution of these proteoglycans was studied in cryosections of mandibular condyle by immunohistochemistry using polyclonal antibodies produced against pig large proteoglycans. In the mandibular condyle, predominantly in the articular zone, the relative amount of proteoglycans with a low glycosaminoglycan content was greater than in femoral cartilage. The large proteoglycan immunologically related to aggrecan gave a protein core of 450 kDa after enzymatic deglycosylation and clearly possessed less keratan sulphate than in femoral aggrecan. Furthermore, the mandibular tissue contained another large proteoglycan with a protein core of 550 kDa after enzymatic deglycosylation, which was immunologically related to the fibroblast-like versican. Immunohistochemistry showed aggrecan increasing in amount inferiorly. In contrast, "versican' was exclusively found in the fibrous and differentiation layers. Aggrecan is mainly responsible for shock absorption and versican and its homologues may be involved in the control of cell proliferation and differentiation. Thus the matrix components of the mandibular condyle seem to be adapted to its special functional needs including parallel articulation and growth.

Aggrecans↗

Development of an enzyme immunoassay specific for a core protein epitope of a novel small basement membrane associated heparan sulphate proteoglycan from human kidney.

Heparan sulphate proteoglycans are major components of the glomerular basement membrane and play a key role in their molecular organization and function. Moreover, their presence is essential for the maintenance of the selective permeability of the glomerular basement membrane. Recently, we have isolated and characterized a novel, small basement membrane associated heparan sulphate proteoglycan from human aorta and kidney. Using specific monoclonal antibodies we have shown that the novel heparan sulphate proteoglycan is predominantly located in the glomerular basement membrane, to a lesser extent in the basement membrane of tubuli, and also in the mesangium. Turnover or, in the course of kidney diseases, degradation of heparan sulphate proteoglycan from glomerular basement membranes may lead to urinary excretion of heparan sulphate proteoglycan. Therefore, changes in the structure and function of glomerular basement membranes may be directly detected by measuring the excretion of a component of this basement menbrane, e. g. heparan sulphate proteoglycan into urine. Here we describe the establishment of an enzyme immunoassay for the sensitive detection of the novel, small heparan sulphate proteoglycan in urine. In this assay the specific monoclonal antibody 1F10/B8, which recognizes a core protein epitope, was used to detect the polyanionic heparan sulphate proteoglycan bound to the surface of a cationic charge modified microtitre plate. This assay allows the sensitive and specific detection of the small heparan sulphate proteoglycan, which is released from the glomerular basement membrane into urine during normal turnover and also in the course of kidney diseases.

Animals↗

Evidence for the presence of a large keratan sulphate proteoglycan in the human uterine cervix.

Profound changes occur in the uterine cervix during pregnancy. In particular, the extracellular matrix of the connective tissue is remodelled extensively. To elucidate the mechanisms involved in this process, we have analysed the proteoglycan pattern in the human cervix from pregnant and non-pregnant women. Proteoglycans of the cervix tissue specimen were extracted with 4 M guanidine hydrochloride and precipitated with 80% ethanol. Purification of proteoglycans was performed by several chromatographic steps. Characterization of proteoglycans was done by SDS/PAGE before and after digestion with glycosaminoglycan-specific enzymes. Proteoglycans were detected by combined Alcian Blue/silver staining or, after blotting of biotin-labelled proteoglycans on to poly(vinylidene difluoride) membrane, with peroxidase-conjugated avidin or by the use of keratan sulphate- or decorin-specific monoclonal antibodies. In contrast with previous reports, where only chondroitin/dermatan sulphate proteoglycans have been found in the uterine cervix, we have shown in the present study the existence of a large keratan sulphate proteoglycan with an M(r) > 220,000 in cervix samples from non-pregnant and pregnant women. This proteoglycan showed a strong reaction with the keratan sulphate-specific monoclonal antibody 5D4 and could be degraded by keratanases. The size of the core protein of this keratan sulphate proteoglycan was estimated to be about M(r) 220,000.

Cervix Uteri↗

A novel keratan sulphate domain preferentially expressed on the large aggregating proteoglycan from human articular cartilage is recognized by the monoclonal antibody 3D12/H7.

Monoclonal antibodies (mAbs) were prepared against aggrecan which has been isolated from human articular cartilage and purified by several chromatographic steps. One of these mAbs, the aggrecan-specific mAb 3D12/H7, was selected for further characterization. The data presented indicate that this mAb recognizes a novel domain of keratan sulphate chains from aggrecan: (1) immunochemical staining of aggrecan is abolished by treatment with keratanase/keratanase II, but not with keratanase or chondroitin sulphate lyase AC/ABC; (2) after chemical deglycosylation of aggrecan no staining of the core-protein was observed; (3) different immunochemical reactivity was observed against keratan sulphates from articular cartilage, intervertebral disc and cornea for the mAbs 3D12/H7 and 5D4. For further characterization of the epitope, reduced and 3H-labelled keratan sulphate chains were prepared. In an IEF-gel-shift assay it was shown that the 3H-labelled oligosaccharides obtained after keratanase digestion of reduced and 3H-labelled keratan sulphate chains were recognized by the mAb 3D12/H7. Thus it can be concluded that the mAb 3D12/H7 recognizes an epitope in the linkage region present in, at least some, keratan sulphate chains of the large aggregating proteoglycan from human articular cartilage. Moreover, this domain seems to be expressed preferentially on those keratan sulphate chains which occur in the chondroitin sulphate-rich region of aggrecan, since the antibody does not recognize the keratan sulphate-rich region obtained after combined chondroitinase AC/ABC and trypsin digestion of aggrecan.

Aggrecans↗

Limited heterogeneity of rearranged T cell receptor V alpha and V beta transcripts in synovial fluid T cells in early stages of rheumatoid arthritis.

OBJECTIVE: The identification of activated T cells in synovial fluid and synovium, and the association of rheumatoid arthritis (RA) with specific HLA-DR restriction elements, strongly suggest that these T cells play a critical role in the etiology and pathogenesis of RA. Analysis of the T cell receptor (TCR) repertoire in the early stages of RA might be an approach to identify those T cells involved in the initiation and/or perpetuation of the disease. METHODS: TCR V alpha and V beta transcripts of synovial T cells, sampled at the early stages of RA, were amplified by reverse transcriptase-polymerase chain reaction. HLA-DR subtyping was determined by serologic analysis and dot-blot hybridization of polymerase chain reaction amplification products using digoxigenin-labeled, sequence-specific oligonucleotide probes. RESULTS: Our findings showed a limited heterogeneity of V alpha and V beta TCRs in synovial fluid T cells, and a preferential usage of TCR V alpha 17 in early RA. In contrast, in the later stages of RA, a more polyclonal TCR V alpha and V beta gene usage was observed. CONCLUSION: Our results support the view that induction of RA is driven by an oligoclonal immune response to an unknown antigen. These findings also suggest a pathogenetic role for V alpha 17 T cells in the early stages of RA.

Adult↗

The soft tissue cover of the mandibular condyle: age-related changes in high buoyant density proteoglycans, free tissue water and remodelling activity.

Age-related changes in the relative proportion of high buoyant density proteoglycans of the soft tissue cover of the mandibular condyle of domestic pigs and the chemical composition of these proteoglycans were investigated by biochemical methods. The relative proportion of high buoyant density proteoglycans has been shown to decrease with age, with their chemical composition varying as follows: With age, the relative proportions of protein increased, galactosamine decreased, glucosamine was similar in newborns and juveniles, but clearly increased in adults, galactosamine plus glucosamine decreased. As measured by 1H-NMR-relaxation spectroscopic methods, the concentration of free tissue water of the soft tissue cover of the mandibular condyle decreased with age. Its mobility, however, was greater in newborns than in juveniles, but similar in juveniles and adults. The concentration of free tissue water, but not its mobility, correlated weakly with relative proportions of polyanionic side chains (e.g. chondroitin sulphate plus keratan sulphate chains) of the high buoyant density proteoglycans. By affecting the concentration of free tissue water and in turn of matrix solutes and cellular environments, the high buoyant density proteoglycans of the soft tissue cover of the mandibular condyle seem to be involved in regulation of age-related changes in the adaptive remodelling activity of the mandibular condyle.

Aging↗

Transforming growth factor beta 1, a major stimulator of hyaluronan synthesis in human synovial lining cells.

OBJECTIVE: To investigate the role of cytokines and growth factors in the regulation of hyaluronan synthesis in human synovial lining cells. METHODS: Synovial lining cells were obtained from human knee joints, isolated by the explant method, and characterized by immunocytochemistry using monoclonal antibodies against monocyte/macrophage markers as well as antibodies against hyaluronan synthase. After stimulation by cytokines and growth factors, hyaluronan was measured by radiometric assay. The molecular weight distribution of the hyaluronan synthesized was determined by high-performance gel-permeation liquid chromatography. To test the effect of oxygen-derived free radicals, the concentration and molecular weight distribution of hyaluronan were determined in the presence and absence of catalase and superoxide dismutase. RESULTS: Hyaluronan synthesis was stimulated in synovial lining cells by transforming growth factor beta 1 (TGF beta 1), interleukin-1 beta (IL-1 beta), and to a lesser extent by tumor necrosis factor alpha (TNF alpha). Analysis of the molecular weight distribution of hyaluronan after stimulation of synovial lining cells with TGF beta 1, IL-1 beta, and TNF alpha indicated that hyaluronan is synthesized in a high molecular weight form and might be degraded in the course of inflammatory processes by oxygen-derived free radicals. CONCLUSION: Our findings suggest that TGF beta 1 is a major stimulator of hyaluronan synthesis in human synovial lining cells and might be involved in the pathogenic mechanisms of joint swelling in inflammatory and degenerative joint diseases.

Adult↗

Transforming growth factor beta 1 regulates tissue inhibitor of metalloproteinases-1 expression in differentiated human articular chondrocytes.

OBJECTIVE: To investigate the role of interleukin-6 (IL-6) and transforming growth factor beta 1 (TGF beta 1) in the regulation of tissue inhibitor of metalloproteinases-1 (TIMP-1) synthesis in human articular chondrocytes. METHODS: Articular cartilage was obtained from human knee joints 24 hours after death. Chondrocytes were isolated by collagenase digestion and embedded in low-gelling-temperature agarose. After stimulation by cytokines, total RNA was isolated and analyzed by Northern blotting. TIMP-1 protein levels were determined using a competitive enzyme-linked immunosorbent assay. RESULTS: Human chondrocytes in agarose culture expressed messenger RNA (mRNA) for the IL-6 receptor (gp80) and its signal-transducing subunit gp130. In contrast to the findings in a previous study, IL-6 did not stimulate TIMP-1 expression in these cells, whereas TGF beta 1 was an important inducer of TIMP-1 mRNA and protein synthesis. CONCLUSION: Our findings suggest that TGF beta 1 has a protective effect on the extracellular matrix of human articular chondrocytes.

Adolescent↗

Development of enzyme immunoassays specific for keratan sulphate- and core-protein-epitopes of the large aggregating proteoglycan from human articular cartilage.

In the course of chronic inflammatory and degenerative joint diseases proteoglycans are degraded by the action of proteases and oxygen radicals. Therefore, proteoglycan fragments, released from cartilage into the peripheral blood, might be useful markers of cartilage degradation. Sensitive enzyme immunoassays are useful for the detection of these proteoglycan fragments in serum. We therefore developed specific monoclonal antibodies against the large aggregating proteoglycan (aggrecan), which has been isolated and purified from human articular cartilage. Two monoclonal antibodies which recognize a novel cartilage-specific epitope on the keratan sulphate chain of aggrecan (mAb 4B3/D10) and an epitope of the core-protein of aggrecan (4G4/A10) were selected for the development of competitive enzyme-immunoassays. These assays allow the sensitive and specific detection of cartilage-derived proteoglycan fragments, not only in synovial fluid but also in serum. They can now be used for the study of inflammatory and degenerative joint diseases.

Adolescent↗

Isolation and characterization of proteoglycans from different tissues.

Two chromatographic procedures for the isolation and purification of proteoglycans (PG) and their related glycosaminoglycan (GAG) peptides are described. PG from human aorta were isolated from tissue extract by sequential ion-exchange, size-exclusion and hydroxyapatite chromatography. Final purification of samples was achieved by chromatography on Mono Q. Homogeneity of samples was demonstrated by Western blot analysis of biotin-labelled compounds prior to and after enzymatic digestion and dual-wavelength detection in size-exclusion chromatography. The purity of samples obtained by the procedure described was sufficient for protein sequence analysis. GAG preparations of bovine trachea cartilage were purified by the sequential use of strong anion-exchange supports. Molecular weight distribution and sensitivity to treatment with glycan-specific enzymes was shown by size-exclusion chromatography.

Animals↗