ATPase stain in muscle histochemistry.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to M H Brooke.
Explore the source record for details and available documents.
A randomized, controlled trial of daily prednisone was conducted in 99 boys (aged 5 to 15 years) with Duchenne dystrophy to define the time course of improvement and the dose response to treatment. Prednisone at 0.3 mg/kg (n = 33), prednisone at 0.75 mg/kg (n = 34), and placebo (n = 32) were administered for 6 months. Patients were examined using manual muscle and myometry testing, timed functional testing, pulmonary function testing, and laboratory measurements at 10 days, 1 month, 2 months, 3 months, and 6 months of treatment. Boys treated with prednisone had stronger average muscle strength scores, than did boys treated with placebo as early as 10 days after starting therapy. At the 3-month visit, the boys in the group given 0.75 mg/kg of prednisone were significantly stronger than those in the group given 0.3 mg/kg of prednisone, indicating a dose response. At 6 months, significant side effects occurred in the group treated with 0.75 mg/kg of prednisone, including weight gain, cushingoid appearance, and excessive hari growth. Only weight gain was observed in the group taking prednisone at a dose of 0.3 mg/kg. Importantly, no side effects were evident at 10 days or 1 month of treatment, despite improvement in muscle strength and function. We conclude that prednisone produces a rapid increase in muscle strength in patients with Duchenne dystrophy and that this improvement is maximal at a prednisone dosage of 0.75 mg/kg or less.
We previously reported the results of a randomized, double-blind 6-month trial of prednisone therapy in which 102 boys aged 5 to 15 years with Duchenne muscular dystrophy received daily doses of 1.5 and 0.75 mg/kg per day and were compared with those receiving placebo. The strength and function in both prednisone-treated groups improved equally and were significantly better than in the placebo group. To compare alternate-day and daily dosing of prednisone with respect to benefits and adverse side effects, the placebo group was started on alternate-day prednisone therapy, and the treatment group regimens were changed to equivalent doses of alternate-day prednisone without breaking the double-blind nature. At the end of 6 months, the group that was changed from daily to alternate-day therapy had declined in strength back to levels observed 12 months previously, at the start of daily therapy. The group in which alternate-day therapy was started showed a significant improvement in strength at 3 months, similar in magnitude to the response of boys treated with daily therapy. However, their strength declined significantly in the subsequent 3 months compared with boys who received daily therapy. The frequency of side effects was not significantly different for alternate-day therapy compared with daily therapy. We conclude that alternate-day prednisone therapy effectively increases strength but does not sustain the improvement to the same extent as daily therapy or mitigate side effects.
1. The release of glutathione has been studied in comparison with the release of creatine kinase from isolated rat soleus muscles subjected to certain forms of experimental damage. 2. Excessive electrically stimulated contractile activity or treatment of muscles with the mitochondrial inhibitor, 2,4-dinitrophenol, induced a substantial release of both creatine kinase and glutathione and a reduction in the total glutathione content of the muscle. The time course of this release and depletion indicates that the efflux of the two molecules is not directly related and that a reduction in muscle glutathione content does not occur before cytosolic enzyme release. 3. 2,4-Dinitrophenol-stimulated release of creatine kinase was significantly reduced by the omission of external calcium from the incubation media, but glutathione release and depletion was relatively unaffected by this. Deliberate elevation of the muscle intracellular calcium content with the calcium ionophore, A23187, induced a substantial loss of creatine kinase, but had no significant effect on the release of glutathione. 4. Muscle biopsies from patients with Duchenne muscular dystrophy were found to have an elevated content of glutathione and an equivalent protein-thiol content compared with control subjects. 5. We conclude that, although release of glutathione from skeletal muscle occurs after excessive contractile activity or inhibition of mitochondrial metabolism, this is not a key step in the damaging processes leading to cytosolic enzyme release, neither is it relevant to the ongoing damage to skeletal muscle which occurs in patients with Duchenne muscular dystrophy.
We studied the release of creatine kinase (CK) activity and prostaglandin E2 (PGE2) from isolated strips of biceps muscle from patients with Duchenne muscular dystrophy and nondystrophic control patients. CK release was significantly higher from the dystrophic samples than controls during the initial period of incubation, but this difference reduced with time of incubation. Immediate immersal of muscle strips into calcium-free bathing medium reduced the initial difference between the efflux from dystrophic and nondystrophic samples, whereas treatment with the calcium ionophore maintained the difference between the groups throughout the period of incubation (150 minutes). These results support the hypothesis that the lack of dystrophin in Duchenne muscle leads to damage to the tissue via a failure of calcium homeostasis. PGE2 release from the muscle strips followed a similar pattern to CK activity, supporting the possibility that, at least partly, the calcium-mediated damage involves activation of phospholipid hydrolysis.
Two successive, 6-month, randomized, double-blind, controlled trials of prednisone showed that 0.75 mg/kg/d was the optimal dose to improve strength in boys with Duchenne muscular dystrophy (DMD). We attempted to maintain 93 boys on that dose for an additional 2 years. During the 3 years of observation, the decline in average muscle strength scores of all boys taking prednisone was 0.072 units/yr, as compared with an expected decline of 0.341 units/yr from natural history controls. The occurrence of side effects in some boys prevented maintenance of the full dose, which may have lessened the response. At the time of last visit, dosages ranged from 0.15 mg/kg to 0.75 mg/kg. In addition to maintaining their strength, several of the boys actually improved their performance in lifting kilogram weights and in some timed function tests. Treatment of DMD with prednisone significantly slows the progression of weakness and loss of function for at least 3 years.
There is evidence that growth hormone may be related to the progression of weakness in Duchenne dystrophy. We conducted a 12-month controlled trial of mazindol, a putative growth hormone secretion inhibitor, in 83 boys with Duchenne dystrophy. Muscle strength, contractures, functional ability and pulmonary function were tested at baseline, and 6 and 12 months after treatment with mazindol (3 mg/d) or placebo. The study was designed to have a power of greater than 0.90 to detect a slowing to 25% of the expected rate of progression of weakness at P less than 0.05. Mazindol did not benefit strength at any point in the study. Side effects attributable to mazindol included decreased appetite (36%), dry mouth (10%), behavioral change (22%), and gastrointestinal symptoms (18%); mazindol dosage was reduced in 43% of patients. The effect of mazindol on GH secretion was estimated indirectly by comparing the postabsorptive IGF-I levels obtained following 3, 6, 9, and 12 months in the mazindol treated to those in the placebo groups. Although mazindol-treated patients gained less weight and height than placebo-treated patients, no significant effect on IGF-I levels was observed. Mazindol doses not slow the progression of weakness in Duchenne dystrophy.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
We performed a randomized, double-blind, controlled six-month trial of prednisone in 103 boys with Duchenne's muscular dystrophy (age, 5 to 15 years). The patients were assigned to one of three regimens: prednisone, 0.75 mg per kilogram of body weight per day (n = 33); prednisone, 1.5 mg per kilogram per day (n = 34); or placebo (n = 36). The groups were initially comparable in all measures of muscle function. Both prednisone groups had significant improvement of similar degree in the summary scores of muscle strength and function. Improvement began as early as one month and peaked by three months. At six months the high-dose prednisone group, as compared with the placebo group, had improvement in the time needed to rise from a supine to a standing position (3.4 vs. 6.2 seconds), to walk 9 m (7.0 vs. 9.7 seconds), and to climb four stairs (4.0 vs. 7.1 seconds), in lifting a weight (2.1 vs. 1.2 kg), and in forced vital capacity (1.7 vs. 1.5 liters) (P less than 0.001 for all comparisons). There was an increase in urinary creatinine excretion (261 vs. 190 mg per 24 hours), which suggested an increase in total muscle mass. However, the prednisone-treated patients who had required long-leg braces (n = 5) or wheelchairs (n = 11) continued to require them. The most frequent side effects were weight gain, cushingoid appearance, and excessive hair growth. We conclude from this six-month study that prednisone improves the strength and function of patients with Duchenne's muscular dystrophy. However, further research is required to identify the mechanisms responsible for these improvements and to determine whether prolonged treatment with corticosteroids may be warranted despite their side effects.
The results of the various studies and an analysis of the methodology are presented in TABLE 1. As can be seen, there was no "perfect" study. In five of the studies enough information was presented with regard to the measurements and the behavior of control patients that a statistical analysis could be performed. Three of the studies showed a transient, statistically significant effect in at least some muscles. The two studies that demonstrated no such effect both used TRH in very small doses. It therefore seems reasonable to conclude that the effect of TRH in ALS is a definite, acute, and transient response. The cause of this response, however, has not been documented, and whether it is associated with an effect of the drug on the disease process remains to be seen.
Becker's muscular dystrophy is phenotypically heterogeneous, but the clinical expression is usually similar in patients within the same family. We report here 2 brothers affected with Becker's muscular dystrophy in whom the disease followed completely different courses. The disease started in both patients before their teens. However, the oldest sibling died at 37, following many years of severe disability, whereas the other sibling, now 26, has normal muscle strength. In addition, since the age of 13, the younger brother has had epilepsy and has been treated with phenytoin combined with other antiepileptic drugs. Analysis of the DNA from each of the 2 brothers revealed a similar deletion at the 5' end of the dystrophin gene. The different clinical courses despite the similar mutational event suggest that intrinsic muscle factors due to modified genes or environmental phenomena such as prolonged treatment with phenytoin or other antiepileptic agents may have influenced the clinical course.
Because testosterone has an anabolic effect in myotonic dystrophy, we conducted a 12-month, randomized, double-blind therapeutic trial of testosterone enanthate (3 mg/kg/wk) in 40 men with myotonic dystrophy. We evaluated strength by manual muscle tests, quantitative myometry, pulmonary function, and quantitative functional assessment. A sustained, significant elevation of testosterone levels was produced but there was no effect on any measurement of muscle strength. Muscle mass as estimated by creatinine excretion and lean body mass (40K method) increased significantly. We conclude that testosterone does not improve strength in myotonic dystrophy despite increasing muscle mass.
Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD) are two allelic forms of an X-linked muscle disorder exhibiting phenotypic heterogeneity. We studied 49 individuals clinically diagnosed as having classic DMD, female DMD, mild DMD "outliers," and BMD. The patients' DNA was analyzed and alterations detected were correlated with particular phenotypes. We found that 14 of 32 classic DMD patients have an internal deletion in the same, relatively small, region of the gene; therefore this region may undergo deletions at a higher rate than the remainder of the gene. We could detect no alterations in the DNA in the remaining 18 patients. Selected patients from both groups failed to show muscle dystrophin. Seven of 11 patients with a mild DMD or BMD phenotype showed deletions at the 5' end of the gene. The other 4 patients failed to show deletions. Three of the patients with both a mild phenotype and a deletion at the 5' end had normal or low amounts of a dystrophin of smaller molecular weight. Patients with classic DMD who had a detectable deletion had a milder clinical course than those without. Contrary to a previous report, no patient in the population of clinically precisely defined DMD boys showed a deletion at the 5' end; thus, the outlier and BMD patients may be genetically different from boys with classic DMD. This correlation may be of diagnostic and prognostic significance.
Two-hundred eighty-three boys with Duchenne dystrophy and 10 with Becker dystrophy have been followed for up to 10 years in a protocol that accurately measured their function, strength, contractures, and back curvature. Clinical heterogeneity is noted. Patients whose muscles were stronger were more likely to die from a cardiomyopathy. Weaker patients died from respiratory failure. A series of milestones is defined, which is of use in following the illness in an individual patient. This approach permits a scoring system that allows the severity of the disease to be defined in an individual boy. Evaluation of physical therapy and surgical intervention shows that night splints and scoliosis surgery are effective forms of treatment.
A double-blind controlled trial of penicillamine and vitamin E against placebo was conducted in 106 boys with Duchenne muscular dystrophy. Nine dropped out of the study after being randomized. Patients were evaluated using an established protocol that measures muscle strength, joint contractures, functional grade, and pulmonary function. The trial lasted for 18 months. The power of the study to detect a 75% slowing of the disease was 0.95 at a P less than 0.05. No therapeutic effect was observed in the patients taking penicillamine and vitamin E as compared with those taking placebo.