Traumatic triple amputation: psycho-social problems in rehabilitation.
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Biomedical subjects
Publications and source records attributed to N Mitchell.
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The simultaneous localization of proteoglycan by light and electron microscopy was demonstrated by fixing epiphyseal cartilage in a glutaraldehyde toluidine blue O solution. Sections cut for light microscopy viewing and those cut for electron microscopy required no further staining, although, in the latter case, staining with uranyl acetate and lead improved the overall contrast. By this technique, electron-dense structures were seen concentrated about the cells which were actively synthesizing matrix, and these structures appeared to bind collagen fibrils. Similar structures were not seen in conventionally fixed tissue. They could also not be identified when the specimens were previously incubated with the proteoglycan-digesting enzyme, papain, prior to toluidine blue O fixation. The toluidine blue O fixation method, unlike conventional fixation and staining, retained proteoglycan in the pericellular areas of actively synthesizing cells and made it visible by light and electron microscopy. It appears that proteoglycans is both precipitated and stained by the presence of toluidine blue O during fixation.
The recovery of adult rabbit articular cartilage after nine weekly intra-articular injections of hydrocortisone acetate was investigated using biochemical, autoradiographic, and tracer methods. After the cessation of steroid injections, the rates of synthesis of proteoglycans and collagen increased by up to 900 per cent. The increase occurred because of accelerated metabolism of existing cells and an increase (caused by mitosis) in the number of functioning chondrocytes. The proteoglycan concentration only returned to normal values after six months.
The repair of articular cartilage removed from the femora of adult rabbits at the knee was studied. When multiple perforations were made through the subchondral bone a cartilaginous material, staining heavily with safranin O, first filled the holes. This material resembled hyaline cartilage, and by twelve months there was complete resurfacing of the joint, although the material lost its hyaline appearance after eight months and at one year it resembled dense collagenous tissue.
The destruction of rabbit articular cartilage after intra-articular injections of hydrocortisone acetate was investigated using histological, biochemical, and tracer methods. Fissures and cysts increased in number as increasing amounts of hydrocortisone were given. A linear decrease of hexosamine to less than 50 per cent after twelve injections was accompanied by insigificant changes in deoxyribonucleic acid and hydroxyproline content. The synthesis of proteoglycans and proteins was reduced to one-third, while the production of collagen dropped to less than one-fifth. The changes in thymidine incorporation were not significant. Based on these data, a model indicating the sequence of events which leads to joint destruction after intra-articular injections of glucocorticoid is proposed.
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