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Metabolic causes of myoglobinuria.

To evaluate the proportion of cases of myoglobinuria that can be ascribed to specific metabolic defects, we have studied eight enzymes--phosphorylase, phosphorylase kinase, phosphofructokinase (PFK), phosphoglycerate kinase (PGK), phosphoglycerate mutase (PGAM), lactate dehydrogenase (LDH), carnitine palmitoyltransferase (CPT), and myoadenylate deaminase (MAD)--in muscle biopsy specimens from 77 consecutive patients with myoglobinuria (documented in 44, suspected in 33). Enzyme defects were found in 36 patients: CPT deficiency in 17, phosphorylase deficiency in 10, phosphorylase kinase deficiency in 4, MAD deficiency in 3, PGK deficiency in 1, and a combined defect of CPT and MAD in 1. Exercise was the main precipitating factor, both in patients with and in those without detectable enzymopathies. Thirty patients had specific enzymopathies without myoglobinuria: 14 had phosphorylase deficiency, 9 had MAD deficiency, 3 had phosphorylase kinase deficiency, 3 had PFK deficiency, and 1 had PGAM deficiency. Systematic biochemical evaluation of muscle biopsy specimens revealed specific enzymopathies in about half of the patients with idiopathic myoglobinuria. The rest may have blocks of metabolic pathways not yet studied routinely, such as beta oxidation, or genetic defects of the sarcolemma, such as Becker's muscular dystrophy.

AMP Deaminase

Influenza and myoglobinuria in brothers.

Two adult brothers became ill within 48 hours of each other, and both had severe myoglobinuria. One brother died of oliguric renal failure. The other did not have renal failure and survived. Acute influenza A infection was documented serologically and from throat washings in the surviving brother, and by isolation of the influenza A virus from throat cultures and lung tissue of the brother who died. It is not certain whether a genetic myopathy made these brothers susceptible to viral-induced myoglobinuria, but a normal response of venous lactate to ischemic work excluded lack of phosphorylase or phosphofructokinase as a cause of the myoglobinuria in the surviving brother. Neither brother had a history of recurrent episodes of myoglobinuria precipitated by exercise, cold, or fasting, thus making carnitine palmityl transferase deficiency unlikely.

Acute Kidney Injury

Myoglobinuria.

Myoglobinuria is still considered to be an uncommon occurrence, however, with the advent of better diagnostic tests it is being increasingly recognized as a potentially life-threatening complication of muscle necrosis. The pathologic consequences of myoglobinuria, including respiratory failure, hyperkalemia, and acute renal failure demand recognition by all who work in areas where this syndrome may develop. This article describes the role of myoglobin in the muscle and how myoglobinuria may develop. It includes the symptoms, differential diagnosis, and treatment of myoglobinuria and possible complications.

Humans

Recurrent childhood myoglobinuria.

Recurrent heritable childhood myoglobinuria is a potentially fatal entity (mortality up to 35%) in which prompt diagnosis and treatment are critical. Sixty childhood cases have been reported between 1910 to 1988, most with undiagnosed etiologies. We have studied an additional 40 cases referred to CPMC (1980-1988), suggesting that this condition is largely underdiagnosed or unreported. We have found important differences between the childhood and adult-onset cases. Of 77 cases of adult-onset recurrent myoglobinuria, 45% have been diagnosed biochemically. In contrast, only 30% of the 60 childhood cases from the literature have been diagnosed; 11 with CPT deficiency and 7 with various glycolytic defects, and only 5 of our 40 childhood cases have been diagnosed, all with CPT deficiency. The 100 combined childhood cases can be divided into an exertional group (type I) with exertion as the leading precipitating factor (46 literature and 10 CPMC cases), a toxic group (type II) with infection and/or fever as the primary precipitant (14 literature and 23 CPMC cases), and 7 undefined cases. The type I group resembles the adult-onset group in which exercise is also the leading precipitating factor. There is a slight female predominance (male/female = 1:1.3) in the toxic group vs. a marked male predominance in the exertional and adult groups (4:1). Only 4 of 37 cases (11%) of the toxic group are diagnosed (all with CPT deficiency) vs. 19 of 56 cases (34%) of the exertional group (12 CPT, 7 glycolytic) and 45% of the adult group. The toxic group is also differentiated by a higher mortality rate and by the presence of additional clinical features, including ictal bulbar signs (8 of 18), encephalopathy (4 of 19), and seizures (2 of 7), as well as persistent cardiac abnormalities, developmental delay (4 of 17), and dysmorphic features (2 of 9). These clinical characteristics clearly differentiate the childhood from the adult cases and suggest the presence of more generalized disease processes and different biochemical etiologies. A study of the heritable causes of myoglobinuria is important because identification of the biochemical defect may elucidate the pathogenetic mechanism of the myoglobinuria and facilitate the development of rational treatment strategies aimed at circumventing or correcting the metabolic block.

Adolescent

Mitochondrial DNA deletions in inherited recurrent myoglobinuria.

We describe two brothers with inherited recurrent exertional myoglobinuria and alcohol intolerance associated with distinct morphological abnormalities of muscle mitochondria and multiple deletions of muscle mitochondrial DNA. Patient 1 (26 years old) and Patient 2 (21 years old) had recurrent episodes of myoglobinuria provoked by strenuous exercise or alcohol intake, from the age of 18 years. Although their serum lactate and pyruvate levels were normal at rest, they were significantly elevated by aerobic exercise. Histochemistry of their biopsied limb muscles showed ragged-red fibers and cytochrome c oxidase-negative fibers as well as degenerating and regenerating fibers. Electron microscopy showed pronounced accumulation of abnormal mitochondria containing paracrystalline inclusions and moderate increases of glycogen particles. The enzyme activities of the electron-transfer complexes in the isolated muscle mitochondria of Patient 2 were within normal ranges. Southern blot analysis revealed multiple deletions of mitochondrial DNA, some of which were common between the patients. Polymerase chain reaction of their muscle mitochondrial DNA detected multiple abnormal fragments indicating mitochondrial DNA deletions. We propose that a defect of the mitochondrial energy-transducing system due to multiple mitochondrial DNA deletions is a novel genetic cause of inherited recurrent myoglobinuria.

Adult

Recurrent myoglobinuria and HIV seropositivity: incidental or pathogenic association?

There have been few cases of polymyositis in patients with AIDS, and polymyositis is rarely a cause of myoglobinuria. We studied a 20-year-old homosexual man with recurrent myoglobinuria. He was asymptomatic between episodes. Each episode was accompanied by muscle pain, limb weakness, high serum levels of creatine kinase, and pigmenturia. Muscle biopsy showed active necrosis without inflammation or abnormalities of glycolytic or other energy-generating enzymes. Antibodies to HIV were present in serum. Clinical evidence of AIDS has not developed in 2 years. Recurrent myoglobinuria may be another consequence of HIV infection.

Adult

Rhabdomyolysis and myoglobinuria associated with violent exercise and alcohol abuse: report of two cases.

Two cases of acute rhabdomyolysis with myoglobinuria and high levels of serum enzyme are presented. The first patient developed acute renal insufficiency in the context of a binge and heavy alcohol drinking lasting several days. He was treated with haemodialysis for three weeks, and survived. The second patient developed rhabdomyolysis and heavy myoglobinuria after playing squash vigorously. Forced mannitol-alkaline diuresis therapy for prophylaxis against hyperkalaemia and metabolic acidosis was performed. He did not develop renal failure. The clinical features, pathology and treatment of rhabdomyolysis and myoglobinuria are summarized.

Acute Kidney Injury

Recurrent myoglobinuria and muscle carnitine palmityltransferase deficiency.

A 16-year-old boy with a two-year history of recurrent attacks of myalgia, muscle cramps without weakness, and myoglobinuria was shown to have a deficiency in muscle carnitine palmityltransferase. Serum concentrations of creatinine phosphokinase, serum glutamic oxalacetic transaminase, and aldolase were elevated. An electromyogram was consistent with a nonspecific myopathy as were microscopic and ultrastructural examinations of biopsied muscle. Venous lactic acid response to ischemic exercise was compatible with paroxysmal idiopathic myoglobinuria. Activities of muscle phosphorylase A and B, phosphofructokinase, muscle palmityl CoA synthetase, carnitine, and serum carnitine were normal as was the glycogen content. Activity of muscle carnitine palmityltransferase (2.7 microM/minute/mg protein), as measured by a spectrophotometric method and by radioactive assay, was significantly reduced when compared to normal control subjects (14.5 microM/minute/mg protein) and ischemic control subjects (13.8 microM/minute/mg protein). Muscle carnitine acetyltransferase (13.4 microM/minute/mg protein) was approximately 50% of normal control values (25.5 microM/minute/mg protein). This is the third reported case of myoglobinuria in a patient associated with a deficiency of muscle carnitine palmityltransferase activity.

Acyltransferases

Myoglobinemia and myoglobinuria in unconscious children.

Myoglobinemia and/or myoglobinuria was demonstrated in 12 of 17 unconscious children studied. Myoglobinemia was noted in patients with serum CPK levels above 200-250 units. Ten of the 12 patients in whom myoglobinemia was present had convulsions. Some degree of renal disturbance was noted in six of seven patients with myoglobinuria. Five patients, including four with renal disturbance, died. In unconscious children with myoglobinuria the possibility of a disturbance of renal function should always be considered.

Blood Urea Nitrogen

Myoglobinuria: the importance of reaching a firm diagnosis--a patient with defective fatty acid oxidation.

A 52 year old man presented with myoglobinuria-induced acute renal failure requiring dialysis. Despite renal biopsy, the cause of the myoglobinuria was not established until he re-presented a year later with a milder episode. At this stage investigations, including a muscle biopsy, demonstrated a defect in fatty acid oxidation amenable to dietary and lifestyle advice. This report emphasizes the importance of reaching a definitive diagnosis in myoglobinuria.

Acute Kidney Injury

[Acute myoglobinuria accompanied by renal failure in high febril infection (author's transl)].

A 41 year old man developed a myolysis with myoglobinuria during a period of high fever. The clinical signs were severe myalgia with general muscular weakness without manifest localized paresis. Electromyographically a diffuse generalized floride myopathy was found. Besides the extreme increase of CPK, a myoglobinuria was already macroscopically visible, which caused an acute renal failure. The treatment included corticosteroids and hemodialysis. An illness of several weaks was followed by complete recovery. As other known factors leading to myoglobinuria have been excluded, and the complement fixation reaction for Herpes simplex was more than 1:80, a viral-toxic etiology of this disease might be considered.

Acute Kidney Injury

[Myoglobinuria caused by multiple deletions of mitochondrial DNA].

We report two brothers with inherited recurrent myoglobinuria associated with distinct morphological abnormalities of muscle mitochondria and multiple deletions of muscle mitochondrial DNA. Patient 1 (26 years old) and Patient 2 (21 years old) had recurrent episodes of myoglobinuria provoked by strenuous exercise or alcohol intake. Histochemistry of their biopsied limb muscles showed ragged-red fibers and cytochrome c oxidase-negative fibers as well as degenerating and regenerating fibers. Electron microscopy showed a pronounced accumulation of abnormal mitochondria containing paracrystalline inclusions and moderate increases of glycogen particles. Southern blot analysis revealed multiple deletions of mitochondrial DNA, some of which were common to both patients. By the primer shift polymerase chain reaction method, we detected multiple abnormal fragments indicating mitochondrial DNA deletions. Nucleotide sequencing of the deleted regions disclosed directly repeated sequences of 1 to 12 bp on each side of the deletions. Since the end points of mitochondrial DNA deletions were within 20 bp of the major non-coding region, probable mutations in this region contribute to the pathogenesis of multiple mitochondrial DNA deletions found in these patients. We propose that a defect of the mitochondrial energy-transducing system due to multiple mitochondrial DNA deletions is a novel genetic cause of inherited recurrent myoglobinuria.

Base Sequence

Carnitine palmitoyltransferase deficiency: a common cause of recurrent myoglobinuria.

Six patients with carnitine palmitoyltransferase (CPT) deficiency were diagnosed. Five were males aged 12-48 years and one was a 7-year-old girl. Severe myoglobinuria with renal shut-down led to the diagnosis in four, the main cause of myoglobinuria being prolonged exertion. Other precipitating factors included febrile illnesses, fasting and sleep deprivation. Between attacks, EMG, serum creatine kinase (CK) activity and the response of serum lactate to ischemic exercise were normal in all patients. The diagnosis of CPT deficiency was based on assay of the enzyme by the isotope exchange assay in leukocyte, muscle or cultured skin fibroblast homogenates. CPT activity assayed by the forward assay under standard conditions was normal. CPT deficiency seems to be a common cause of exercise-induced myoglobinuria. Prompt diagnosis can lead to avoidance of risk factors and prevention of rhabdomyolysis and its consequences.

Adult

Low molecular weight proteinuria in association with paroxysmal myoglobinuria.

A patient with paroxysmal myoglobinuria presented with low molecular weight (LMW) proteinuria in association with an episode of exertional myoglobinuria. Since no signs of acute renal failure were present, the cause was probably competition between myoglobin and other LMW proteins for proximal tubular reabsorption. Agarose gel electrophoresis was found to be an excellent method for the investigation of myoglobinuria since this technique not only allowed the separation of myoglobin from hemoglobin but also myoglobin from metmyoglobin.

Adult

Myoglobinuria, rhabdomyolysis and marathon running.

Rhabdomyolysis, secondary to exertion is known to result in myoglobinuria and is occasionally associated with acute renal failure. In this study myoglobinaemia occurred in 25 of 44 runners completing a 99 km marathon. A marked rise in the values of myoglobin, lactate and the enzymes creatine kinase (CPK), aspartate transaminase (AST) and lactic dehydrogenase (LDH) was noted. A linear correlation was demonstrated between the level of serum myoglobin and the serum concentrations of urate, CPK, AST and LDH. Both the myoglobin itself and the increased concentration of urate may contribute to the acute renal failure. The pathophysiology of rhabdomyolysis during exertion is discussed in the context of other causes of myoglobinuria. A classification of rhabdomyolysis and myoglobinuria is suggested.

Acute Kidney Injury

Myoglobinuria and carnitine palmityl transferase deficiency in father and son.

A 18-year-old man had recurrent myoglobinuria following exercise and fasting. His parents originated from the same village, which has less than 1000 inhabitants. His 53-year-old father suffered from similar episodes, whereas his mother and elder brother were symptom free. Biochemical investigations on muscle and platelets disclosed carnitine palmityl transferase (CPT) deficiency in the patient and his father. His mother and brother showed intermediate CPT values consistent with their being heterozygotes. This appears to be the first report of CPT deficiency with recurrent myoglobinuria in two generations (so-called quasidominant transmission).

Adolescent

Influence of pH on the simple solubility test for myoglobinuria.

We have investigated the effect of urine pH on the simple solubility test for myoglobinuria and found that the sensitivity of the test is very pH dependent. As much as a 10 fold increase in sensitivity can be obtained if the test is performed at pH 7.5 instead of pH 5.5. As such, we recommend that the urine pH should first be adjusted within the range 7.5--8.0 before performing the solubility test for myoglobinuria.

Humans

A disorder of muscle lipid metabolism and myoglobinuria. Absence of carnitine palmityl transferase.

Two brothers, 29 and 33 years of age, had recurrent myoglobinuria, renal failure and azotemia, but were otherwise normal, without apparent muscle weakness or exercise intolerance. Ischemic exercise resulted in normal lactate production. Muscle glycogen content and activities of phosphorylase and phosphofructokinase were normal. Plasma triglycerides were elevated (500 mg per deciliter) on a regular diet and rose during fasting. During a 72-hour fast, serum creatine phosphokinase rose more than 10 times, and myoglobin was detected in urine. Plasma ketone production was minimal during fasting, but prompt ketonemia ( a normal response) occurred after ingestion of medium-chain triglycerides. Carnitine palmityl transferase activity was virtually absent in crude muscle extracts and mitochondrial fractions. Lack of this enzyme impairs long-chain fatty acid utilization, reflected in increased content of plasma free fatty acids and plasma triglycerides. Depletion of ATP because of this metabolic block in muscle may account for the attacks of myoglobinuria.

Acute Kidney Injury