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E O'Byrne

Publications and source records attributed to E O'Byrne.

15 recordsLinked to original sources

Quantitative and qualitative assessment of articular cartilage in the goat knee with magnetization transfer imaging.

We investigated the role of collagen in the magnetization transfer (MT) effect in contrast to other macromolecules. By means of phantoms made of collagen, chondroitin sulfate (CS) and albumin, MR parameters have been optimized in order to reduce the acquisition time and improve the sensitivity, as well as to minimize the contributions from CS and albumin to the MT induced signal attenuation. The same method was used to study cartilage ex vivo (bovine articular and nasal cartilage plugs) and in vivo (goat knee femoral chondyle). In phantom samples, the MT signal attenuation depended on the collagen concentration while contributions from the other macromolecules were found to be minimal. In average, analysis of MT images revealed a approximately 25%, approximately 35% and approximately 30% signal attenuation in 10% w/v type I collagen gels, cartilage plugs, and cartilage from the weight-bearing areas of the goat knee, respectively. Biochemical data revealed that treatment of cartilage plugs with bacterial collagenase led to collagen depletion and correspondingly to a decrease of the MT response. In contrast, trypsin-induced proteoglycan loss in cartilage plugs did not alter the MT effect. A significant correlation was observed between the collagen content in these plugs and their respective MT ratios and the rate constant k for the exchange process bound versus free water. Finally, data obtained from in vivo MT measurement of the goat knee demonstrated that intra-articular injection of papain might not only cause degradation of proteoglycans but also a change in collagen integrity in a dose-dependent manner. We conclude that in vivo measurement of MT ratios gives quantitative and qualitative information on the collagen status and may be applied for the routine evaluation of normal and abnormal articular cartilage.

Animals↗

Magnetic resonance imaging reflects cartilage proteoglycan degradation in the rabbit knee.

Cartilage degeneration in osteoarthritis is initiated by a loss of proteoglycan. Intra-articular injection of papain causes a reversible loss of proteoglycan in rabbit knees. Rabbits were scanned with magnetic resonance imaging (MRI), using a 1.5T Signa superconducting magnet with 3 inch surface coil. Spin echo sequences were performed in the coronal and sagittal planes at 0, 24, 48, and 72 h after intra-articular injection of papain to obtain T1, proton density, and T2-weighted images. Cartilage proteoglycan content was measured biochemically and histochemically. Reduced articular cartilage thickness in the MR images of papain-treated knees corresponded to changes in cartilage proteoglycan content.

Animals↗

Elevation of synovial plasminogen activator activity after injection of interleukin-1 alpha into rabbit knee joint.

We investigated production of plasminogen activator (PA) and cartilage degradation induced by injection of recombinant human interleukin-1 (rhIL-1 alpha) in rabbit knees. Rabbits were injected intra-articularly (i.a.) with 100 ng rhIL-1 alpha and necropsied at 0, 3, 6, 18 and 54 h and synovial lavage and articular cartilage were collected. PA activity in the joint lavage was measured using Z-Lys-thiobenzyl ester as a substrate. Cartilage degradation was assessed by quantitating sulfated glycosaminoglycan (S-GAG) to hydroxyproline (Hyp) and appearance of keratan sulfate (KS) in synovial lavage by and ELISA. The PA activity in the lavage of IL-1 injected knees at 3, 6, and 18 h was elevated 8 to 10 fold compared to vehicle controls. At 54 h the activity declined to approximately one third of that seen at the earlier time points. KS in the joint lavage was highest at 18 h, suggesting proteoglycan degradation. The maximal loss of cartilage proteoglycan (S-GAG/Hyp) occurred by 54 h. These observations demonstrate that i.a. injection of IL-1 stimulated the production of PA activity within the rabbit joint. Since elevation of PA activity is followed by cartilage degradation, we investigated effect of anti-inflammatory agents on PA activity and cartilage degradation in this model. We found that triamcinolone, indomethacin and dexamethasone were able to suppress PA activity but not the cartilage degradation. These observations suggest that in this model of cartilage degradation suppression of PA is not sufficient to inhibit cartilage degradation.

Animals↗

Isolation, purification, and the sequence of relaxin from spiny dogfish (Squalus acanthias).

A relaxin-like molecule has been isolated from the ovaries of the spiny dogfish (Squalus acanthias) which consists, like porcine relaxin, of two chains linked by the insulin-type disulfide bonds. The total number of amino acids is 54 of which 24 are in the A chain and 30 in the B chain. The molecular masses, calculated from the amino acid compositions, are 2510 Da for the A chain and 3370 Da for the B chain, making a total of 5880 Da. The N-terminus of the B chain is protected by a 5-oxoproline (pyrrolidone carboxylic acid) residue which is also found in the same position in the relaxins of sand tiger shark, pig, and man, whereas the relaxin of the rat has its 5-oxoproline residue at the N-terminal of the A chain. By all available criteria, S. acanthias relaxin is a typical member of the relaxin family although the sequence homology to mammalian relaxins is limited to about 45% of its amino acid residues. In contrast, the dogfish relaxin shows about 80% homology with sand tiger shark relaxin (the first such interspecies similarity to be observed) and has about twice the biological activity (mouse pubic symphysis test) when compared to sand tiger relaxin.

Amino Acid Sequence↗

Regulatory influence of relaxin on human cervical and uterine connective tissue.

Cervical tissue was obtained from women undergoing legal abortion in the 7th-15th week of gestation and tissue from the lower uterine segment was excised at elective Casearean section in the 38th-40th week. The specimens were incubated with [3H]proline in the presence of relaxin or prostaglandin E2 (PGE2). Relaxin had a concentration related inhibitory effect on the radiolabelling in the 7th-9th week but failed to influence the amino acid uptake in the 10th-15th week of pregnancy. PGE2 had the inverse effect, i.e. no influence in the former group but reduced incorporation of proline in the latter group of patients. Incubation of tissue from the lower uterine segment showed a similar response as that of the early pregnant cervix. It is concluded that relaxin has a significant influence on [3H]proline incorporation by cervical and uterine tissue under in vitro experimental conditions.

Amino Acids↗

A new model of osteoarthritis in rabbits. I. Development of knee joint pathology following lateral meniscectomy and section of the fibular collateral and sesamoid ligaments.

A partial lateral meniscectomy procedure has been developed for the induction of a predictable and reproducible degenerative joint disease in knees of rabbits. The procedure adopted involves section of the fibular collateral and sesamoid ligaments and removal of 4-5 mm of the anterior lateral meniscus. In most experiments the animals are killed and tissues obtained for histologic examination at 6 weeks. Section of the ligaments alone (with or without penetration of the joint space) did not result in significant pathologic change. Significant degeneration was observed in tibial and femoral cartilage when the meniscus as well as the ligaments were cut, but the most extensive lesions were seen when a piece of the anterolateral meniscus was actually removed. These lesions included fibrillation, ulceration and erosion, "clone" and osteophyte formation, loss of chondrocytes, and loss of safraninophilic staining in the articular cartilage. The incidence and distribution of lesions with time following surgery were also investigated. Lesions were observed as early as 1-2 weeks post-surgery and increased in number and severity up to 12 weeks. A global scoring system has been devised to permit statistical comparisons of lesion incidence and severity in different groups of rabbits. This scoring system has enabled us to test drug efficacy in the rabbit lateral meniscectomy model of osteoarthritis.

Acid Phosphatase↗

A new model of osteoarthritis in rabbits. III. Evaluation of anti-osteoarthritic effects of selected drugs administered intraarticularly.

A battery of steroidal and nonsteroidal antirheumatic drugs and protease inhibitors were tested by intraarticular injection for effects on osteoarthritis of the knees of rabbits subjected to partial lateral meniscectomy and section of the sesamoid and collateral fibular ligaments. Among the standard drugs, only the glucocorticoid, triamcinolone hexacetonide, and the protease inhibitor, tranexamic acid, exhibited significant anti-osteoarthritic activity. An experimental drug, GPA 2163, also offered some protection against joint degeneration. The nonsteroidal antiinflammatory drugs had no effect on the development of osteoarthritis in the model.

Animal Diseases↗

Myometrial inhibiting activity of relaxin-containing extracts of human corpora lutea of pregnancy.

Relaxin is a peptide hormone secreted by the human corpus luteum of pregnancy . Aqueous extracts of relaxin-rich pregnancy corpora lutea decreased the amplitude of spontaneous human myometrial strip contractions in vitro. Relaxin-poor extracts of menstrual cycle corpora lutea did not affect contractions. Antibody precipitation of relaxin from pregnancy luteal extracts eliminated the effect on myometrial strips. Relaxin removal was confirmed by bioassay. This demonstrates an inhibiting action of human relaxin on human myometrial tissue in vitro. This action suggests a mechanism for maintaining uterine quiesence in early pregnancy.

Corpus Luteum↗

Relaxin.

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Amino Acid Sequence↗

Serology: Quo vadis?

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Abortion, Veterinary↗

Hydrogen-1, sodium-23, and carbon-13 MR spectroscopy of cartilage degradation in vitro.

Viable bovine nasal cartilage was examined with magnetic resonance (MR) spectroscopy. Digestion of the proteoglycan matrix by papain or trypsin was accompanied by substantial changes in carbon-13, sodium-23, and hydrogen-1 MR spectra and relaxation parameters, with C-13 MR spectra showing the most pronounced changes. These results indicate the potential of MR spectroscopy (and imaging) for noninvasive evaluation of cartilage disease and monitoring of patients with degenerative joint diseases.

Animals↗