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A comparative study of three subgroups of meniscal transplants was undertaken in the goat model: Group 1 (autograft) involved removal and immediate reimplantation of the meniscus; Group 2, fresh meniscal allografts; and Group 3, cryopreserved (30 days) meniscal allografts. Six months after surgery, tissues were evaluated for gross degenerative changes, proteoglycan concentration (as assessed by uronic acid), water content, vascularity, histology, and cell viability. The contralateral knee served as control for all comparisons. There was no statistical difference in the amount of arthritis present and all transplants demonstrated an essentially normal peripheral vascularity compared to controls. Sections revealed reduced numbers of cells in the central portions of the transplanted menisci and these viable cells demonstrated different behavior in multiplication in tissue culture compared to contralateral controls. Grossly and microscopically, the implanted menisci differed little from the controls. The measurement of proteoglycan concentration and water content of the transplanted meniscal cartilage suggest alterations that may affect the long-term mechanical properties. The autograft specimens showed the water content was very slightly increased (3% to 6%), while the proteoglycan concentration was increased (42% in terms of uronic acid). In contrast, the water content of the fresh allograft group and the cryopreserved group was increased 12% to 24%. Proteoglycan concentration in these groups was decreased up to 56% in portions of some menisci compared to controls. Fresh and cryopreserved meniscal allografts showed peripheral healing, revascularization, cellularity, and incorporation, and grossly appeared good at 6 months in the goat model. The biochemical changes in the extracellular matrix at 6 months raises questions on the long-term function of these transplanted menisci.  相似文献   
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Heart failure is a syndrome of breathlessness, fatigue and oedema. The effects of ageing on myocardial function and the prevalence of often multiple cardiac pathologies makes heart failure a disease of the elderly, usually characterized by primary or secondary myocardial systolic dysfunction. Appropriate treatment, which requires precise diagnosis, involves correction of precipitating or aggravating factors and the rational use of drug therapy. Diuretics and ACE inhibitors offer a combination of both symptom control and improvement in prognosis. Other agents such as digoxin, xamoterol and nitrates may be particularly useful in the treatment of patients with associated problems such as atrial fibrillation and angina. Because both ageing and heart failure may alter pharmacokinetics and pharmacodynamics, safe and effective treatment of heart failure in the elderly requires understanding of the clinical pharmacology of the drugs used.  相似文献   
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The purpose of the present study was to evaluate the responsiveness of normal human airways to beta-adrenoceptor stimulation using a forced oscillation technique. Seven normal volunteers (aged 25 +/- 2 year) were studied on three occasions, separated by weekly intervals, using a single-blind randomized design. On day 1, subjects were given cumulative doses of inhaled salbutamol (100, 200, 500, 1000 micrograms); and identical placebo was given on the other two visits. Respiratory oscillation impedance (Ros) was measured at baseline and 15 min after each dose increment. The coefficients of variation (CV) for short-term intra-individual variability on each placebo day were 7.5 and 9.5, and 9.6% for long-term variability (measured over all three visits). The 95% confidence values (2SD) for the change in Ros required to exclude natural variability were 0.39, 0.50 and 0.53 cmH2O l-1 s, respectively. There was a small fall in Ros in response to salbutamol although the mean maximum change (0.46 cmH2O l-1 s) was not significant (by ANOVA). Thus, the change in Ros (sensitivity) was no greater than the 95% confidence value for natural variability (reproducibility). Regression analysis also showed no evidence of a dose-response relationship for Ros.  相似文献   
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The ultrastructure and biochemistry of meniscal cartilage   总被引:3,自引:0,他引:3  
The meniscus is characterized at the light microscopic and ultrastructural levels by thick collagen fibers that are predominantly circumferential in orientation. The extracellular matrix of the meniscus is composed mainly of collagen, with smaller quantities of proteoglycans, matrix glycoproteins, and elastin. The collagen is predominantly Type I, with smaller quantities of Types II, III, and V. The proteoglycans are mainly large, aggregating proteoglycans with chondroitin sulfate as their dominant glycosaminoglycan. A small proportion of small dermatan sulfate proteoglycans is probably present. The matrix glycoproteins include the link proteins, the 116-k protein, and a group of adhesive or potentially adhesive proteins that includes Type VI collagen (here classified as a glycoprotein with a collagenous domain), fibronectin, and thrombospondin. The fibrochondrocytes of the meniscus appear to have considerable potential to respond to growth and other modulating factors in the repair or regeneration of the tissue.  相似文献   
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