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Ocular ultrastructural study in a fetus with type II glycogenosis.

The general pathological and ocular studies in an aborted fetus with type II glycogenosis revealed the widespread lysosomal storage of glycogen. Obvious lesions are observed in the viscera, in the skeletal and ocular muscles, and in all ocular tissues except the pigment epithelium of the retina. Brain and heart are relatively spared. Conjunctival and skin biopsies have a diagnostic importance, since specific alterations are evident early in the course of the disease.

Conjunctiva↗

New aspect of hepatic nuclear glycogenosis in diabetes.

Three cases of nuclear glycogenosis in the liver of diabetic patients have been studied by electron microscopy. In addition to the glycogen deposits described by others, an unusual intranuclear glycogen-filled body was found in all three cases. This body occurred alone or in close contact with the major glycogen deposit.

Diabetes Complications↗

Ultrastructural observations on the retina in type II glycogenosis (Pompe's disease).

The retina of a 9-month-old boy afflicted with biochemically proven type II glycogenosis contained abundant lysosomal glycogen. This was present in almost every cell type and occasionally associated with lipofuscin in choroidal macrophages. Lysosomal glycogen was absent from melanocytes and pigment epithelial cells. No degeneration of any cell layer was noted. The ubiquitous accretion of lysosomal glycogen resembles the widespread distribution of lipopigments in canine neural ceroid lipofuscinosis, another lysosomal disorder.

Glycogen↗

Pulmonary interstitial glycogenosis: a new variant of neonatal interstitial lung disease.

We present the clinical, radiologic, and pathologic findings in lung biopsies from seven infants with atypical neonatal lung disease. All seven infants presented with tachypnea, hypoxemia, and diffuse interstitial infiltrates with overinflated lungs on chest radiographs in the first month of life. Lung biopsies from all cases showed similar pathology, with expansion of the interstitium by spindle-shaped cells containing periodic acid-Schiff positive diastase labile material consistent with glycogen. Immunohistochemical staining showed these cells to be vimentin positive but negative for leucocyte common antigen, lysozyme, and other macrophage markers. Electron microscopy revealed primitive interstitial mesenchymal cells with few cytoplasmic organelles and abundant monoparticulate glycogen. Minimal or no glycogen was seen in the alveolar lining cells. Five cases were treated with pulse corticosteroids; hydroxychloroquine was added in one case. Six of seven infants have shown a favorable clinical outcome. One infant died from complications of extreme prematurity and bronchopulmonary dysplasia. Three cases that have been followed for at least 6 years have shown clinical resolution and radiographic improvement. We propose the term "pulmonary interstitial glycogenosis" of the neonate for this new entity to be differentiated from other forms of interstitial lung disease. Because abundant glycogen is not normally found in pulmonary interstitial cells, we postulate an abnormality in lung cytodifferentiation involving interstitial mesenchymal cells.

Adrenal Cortex Hormones↗

Short communication. Glycogenosis Ib: neutrophil microbicidal defects due to impaired hexose monophosphate shunt.

We studied neutrophil microbicidal function and oxidative metabolic activity in a patient with glycogenosis Ib. The intracellular killing defect and the respiratory burst abnormality in gycogenosis Ib neutrophils were confirmed. The impaired oxygen-dependent microbicidal activity was shown to result from impaired hexose monophosphate shunt activity (impaired endogenous NADPH synthesis) and could be corrected by homogenization of the cells, followed by the addition of exogenous NADPH. Our data are thus consistent with a possible role for glucose-6-phosphate transport in neutrophil microbicidal function. We recommend a continuous prophylaxis with co-trimoxazole in patients with glycogen storage disease Ib.

Adolescent↗

Severe phenotype of phosphorylase kinase-deficient liver glycogenosis with mutations in the PHKG2 gene.

Phosphorylase kinase-deficient liver glycogenosis manifests in infancy with hepatomegaly, growth retardation, and elevated plasma aminotransferases and lipids. It can be caused by mutations in three different genes of phosphorylase kinase subunits: PHKA2, PHKB, and PHKG2. It is usually a benign condition, often with complete resolution of symptoms during puberty. A minority of patients displays a more severe phenotype with symptomatic fasting hypoglycemia and abnormal liver histology that may progress to cirrhosis. Three patients with liver cirrhosis in childhood analyzed previously all had PHKG2 mutations. This suggested that this genotype may generally cause a more severe clinical manifestation, but to date PHKG2 mutations have been identified in only seven patients. Here, we report mutation analysis in three new patients with liver phosphorylase kinase deficiency and recurrent hypoglycemia, liver fibrosis, and lack of glucagon response but no overt cirrhosis. In all three patients, PHKG2 mutations were found (H89fs[insC], E157K, D215N, W300X). Three of these mutations are novel, bringing the total number of distinct human PHKG2 mutations to 11, found in 10 patients. We conclude that liver phosphorylase kinase deficiency with a severe phenotype, with or without cirrhosis, is indeed often caused by PHKG2 mutations. These patients require active measures to maintain normoglycemia (raw cornstarch, nocturnal tube feeding), which may also alleviate growth retardation and the development of abnormal liver histology.

Female↗

A family with different clinical forms of acid maltase deficiency (glycogenosis type II): biochemical and genetic studies.

In the same family, the generalized or infantile form of acid maltase deficiency (glycogenosis type II, Pompe disease) and the muscular or adult-onset form affected different individuals. Autosomal-recessive inheritance for the two clinical forms was demonstrated in this family by assay of acid alpha-glucosidase in muscle, lymphocytes, cultured fibroblasts, and urine of asymptomatic relatives. Current biochemical techniques do not discriminate between persons heterozygous for the generalized form and those heterozygous for the muscular form. To explain the coexistence of both forms in the same family, the infant with the generalized form or her grandfather with the muscular form must have been a genetic compound of different mutant alleles for acid alpha-glucosidase.

Adult↗

Intractable fever and cortical neuronal glycogen storage in glycogenosis type 2.

Glycogenosis type 2 is an autosomal recessive glycogen storage disorder caused by deficiency of lysosomal acid alpha-glucosidase. Different phenotypes are recognized. The authors describe two children affected by the late infantile form; both presented terminal hyperthermia not caused by infections. Autopsy performed in one case showed diffuse glycogen storage in the CNS neurons. In light of current interest in enzyme replacement therapy, this finding casts some doubt on how effective enzyme replacement therapy will be unless it can be targeted directly into the CNS.

Cerebral Cortex↗

A new mutant of Japanese quail (Coturnix coturnix japonica) characterized by generalized glycogenosis.

A flock of Japanese quail with generalized glycogenosis has been established. Affected quail showed difficulty in raising their wings. Excessive accumulation of glycogen was seen in the liver, heart, skeletal muscle and brain, apparently due to decreased acid maltase activity. The condition appeared between 2 and 12 weeks of age and tissue deposition of glycogen increased with age. The growth of affected quail was normal and there were no deaths from the condition. Although genetic analysis has not yet been completed, an autosomal recessive inheritance is suspected.

Age Factors↗

Insular amyloid in a case of type III glycogenosis with a special reference to the origin of amyloid fibrils.

Amyloid depositions of pancreatic islets were investigated with electron microscopy in a case of type III glycogenosis. Beta cells adjoining small amyloid depositions were shown to have cytoplasmic invaginations where closely packed amyloid fibrils were disclosed regularly orientated amyloid bundles. In the cytoplasm of the beta cells, some membrane-bounded vesicles contained amyloid fibrils and a few beta granules directly transformed into the fibrils within the vesicles. These findings indicate that, at least in this case, the beta cells play a crucial role in the formation of insular amyloid.

Adult↗

Activity of alpha-1, 4-glucosidase in furazolidone-induced glycogenosis.

Furazolidone (FZ) at 700 and 800 p.p.m. was added to feed mixtures fed turkey poults two and three weeks posthatching, respectively, to induce acute experimental cardiomyopathy. Poults in the control pen received the same ration but without FZ. From EKG data obtained at 2, 4, and 5 weeks of age, control unaffected and experimental affected poults were selected for sacrifice. Poults were sacrificed by cervical dislocation and appropriate samples of hepatic tissue were removed for assays of activity of alpha-1, 4-glucosidase. Results indicate that enzyme activity in affected FZ-treated poults is similar to that in unaffected control poults. Lack of significant differences in activity of this lysosomal enzyme suggests that FZ-induced glycogenosis may be related to the adult form of idiopathic generalized glucogenosis, the etiology of which remains unidentified.

Animals↗

Histopathological findings in the biopsied muscle of a juvenile type III glycogenosis.

We report a case of juvenile type III glycogenosis that was confirmed by histopathological and biochemical studies. The histopathological findings consisted of vacuoles, periodic acid-Schiff positive materials, type 2B fiber deficiency, mildly positive acid phosphatase reaction and intensely positive non-specific esterase reaction. It is suggested that the enzyme reactions may be related to membrane-bound sacs containing glycogen.

Acid Phosphatase↗

Rectal biopsy in type 4 glycogenosis. An ultrastructural cytochemical study.

Rectal biopsy material from a patient with type 4 glycogenosis was studied by ultrastructural cytochemical methods. The diagnosis of the disease was made on the basis of the patient's clinical history, the autopsy findings, and the histopathological features. Numerous large macrophages were observed in the rectal mucosa. They contained large vacuoles filled with filamentous material and small granules. This amylopectin was stained by the Thiery method (periodic acid-thiocarbohydrazide-silver proteinate) after 18 hours of exposure to thiocarbohydrazide; only 30 minutes was sufficient to demonstrate seemingly normal beta-glycogen particles in epithelial cells.

Autopsy↗

[Glycogenosis in cochlea of aging mice].

CBA/Caj mice and C57BL/6Nsd mice (animal models widely used for study of presbycusis) were used to study glycogen metabolic changes in the aging cochlea by a quantitative analysis of histochemistry. Glycogen contents in both hair cells and stria vascularis were significantly increased in CBA aged mice (18 and 36 months) as compared with those in CBA young animals (6 weeks), indicating a glycogenosis in the cochlea within naturally aging CBA mice. The glycogen contents in the stria vascularis in C57BL mice (6 weeks) was higher than in CBA (6 weeks) mice, whereas no significant difference could be discerned in the hair cell glycogen level. The results suggest that the glycogen metabolic changes in the CBA mice, a model of the natural aging cochlea, were different from in the C57 mice, a model of the cochlear genetic defect.

Aging↗

[Continuous treatment with colony stimulating factors (G-CSF) for neutropenia associated with type Ib glycogenosis].

In the last few years, granulocyte colony stimulating factors (G-CSF), or hematopoietic growth factors, have created new possibilities for treating severe neutropenias, with high clinical efficacy and minimal adverse effects. Moreover, due to genetic recombinant techniques, the therapeutic use of these glycoproteins is increasing. We report the case of a 4-year-old girl who was diagnosed with glycogenosis IB at the age of 7 months. From the age of 2 years, she presented severe established neutropenia secondary to the main disease. Subcutaneus G-CSF therapy was started. The patient has shown no serious infections, has maintained normal growth and development, and has not required hospitalization. Adverse effects have been minimal. The therapeutic efficacy demonstrated by this case justifies the continuous use of G-CSF, although the lack of long-term perspectives should not be forgotten.

Child, Preschool↗

[Clinical, biochemical, morphological and electrophysiological studies of glycogenosis Type II in childhood with double deficiency of enzymes (author's transl)].

The clinical, biochemical, morphological and electrophysiological findings in a 13-month-old child, who died of glycogenosis type II, is presented. In addition to the deficiency of alpha-1,4-glucosidase, which is typical for the disease, a deficiency in hyaluronidase could be detected for the first time in the skeletal and heart muscles and in the liver. On the other hand, the beta-glucoronidase and beta-acetylglucosaminidase activity was highly increased. Deposits of a substance, most probably an acid mucopolysaccharide, which could be differentiated from glycogen by chromography and electronmicroscopy, could be detected in the muscle. A pathogenetical connection with the hyaluronidase defect is imminent.

Glucosidases↗