Biomedical subjects
J Alroy
Publications and source records attributed to J Alroy.
[Changes of coronary vessels in equine fetuses and few-days-old foals].
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Infantile G(M1) gangliosidosis: complete morphology and histochemistry of two autopsy cases, with particular reference to delayed central nervous system myelination.
Inborn metabolic errors causing lysosomal storage, such as beta-galactosidase deficiency (G(M1) gangliosidosis [G(M1)]), have well-recognized effects on cellular function and morphology. In some classically "neuronal" storage diseases, including G(M1), neuroradiologic observations of infants have suggested a delay in myelination on the basis of persistently "immature" signal intensities monitored over time. We sought to evaluate in a semiquantitative fashion the pattern and degree of myelination in two infantile G(M1) patients, one boy and one girl, autopsied at 15 months of age. We assigned myelination degrees for defined sites on an ordinal scale of 0 to 4, and compared them to published population-based values for autopsied infants. In both patients, earlier-myelinating structures were comparable in development to that expected for postconceptional age, whereas later-myelinating structures were delayed. These data correlate well with the neuroradiologic diagnosis of myelination delay in these infants and suggest that the metabolic defect has a primary influence on myelin development, in addition to effects related to neuronal storage. Furthermore, our analysis by light and electron microscopy and lectin histochemistry of both CNS and systemic tissues, several of which had not been described, add to the understanding of the stored material in different cell types.
Biochemical, ultrastructural and histochemical studies of cat placentae deficient in activity of lysosomal alpha-mannosidase.
Lysosomal alpha-mannosidase activity, oligosaccharide profiles, light and electron microscopy and lectin histochemistry studies were performed on full-term placentae obtained from five litters of cats. They resulted from breeding related cats who are obligate heterozygotes for lysosomal alpha-mannosidase deficiency. alpha-Mannosidase activity in placentae from affected kittens was less than 10 per cent of control, while in placentae from presumptive heterozygotes the activity was less than 50 per cent of control. High-pressure liquid chromatographic analysis of oligosaccharides revealed massive accumulation of undegraded oligosaccharides in placentae of affected kittens. A small elevation was found in placentae from presumptive heterozygous kittens, and none was detected in placentae of normal kittens. Light and electron microscopic examinations revealed vacuolization of fetal endothelial and mesenchymal cells only in placentae of affected kittens. Succinylated wheat germ agglutinin and concanavalin A stained the fetal fibroblasts only in placentae of affected kittens.
Infantile sialic acid storage disease associated with renal disease.
A child with infantile sialic acid storage disease is reported. Ultrasonography demonstrated fetal ascites. At birth, the infant appeared hydropic and presented with numerous dysmorphic features, including sparse white hair, coarse facies, hypertelorism, epicanthal folds, anteverted nostrils, and a long philtrum. In addition, he had visceromegaly, bilateral inguinal hernias, and a slight gibbus deformity. Lymphocytes were vacuolated and bone marrow contained large numbers of foam cells. There were generalized vacuolations of both reticuloendothelial and parenchymal cells in the examined tissues. Neuropathologic studies revealed wide-spread neuronal storage, myelin loss, axonal spheroids, and gliosis. Neurons, endothelial cells, and Kupffer cells stained with wheat germ agglutinin indicated an accumulation of sialic acid. Free sialic acid was significantly increased in urine and serum, as well as in liver, heart, and brain tissues. The alpha-neuraminidase activity was normal. It is assumed that the basic defect of infantile sialic acid storage disease lies in impaired transport of sialic acid across the lysosomal membrane.
Ultrastructural findings in skin from patients with Niemann-Pick disease, type C.
Niemann-Pick disease, type C is a lysosomal storage disease characterized by hepatosplenomegaly, the presence of foam cells in the reticuloendothelial system, and gradual motor and cognitive decline leading to death. Over 90% of patients demonstrated a defect of cholesterol esterification in cultured fibroblasts. This finding allows a reliable biochemical diagnosis; however, the test is complex and time-consuming and only available in a few centers. Ultrastructural examination of skin biopsy in 5 patients with Niemann-Pick disease, type C demonstrated lysosomes containing loosely arrayed dark lamellated structures within a clear matrix. Affected cells included macrophages, axons, pericytes, Schwann cells, smooth muscle cells, and fibroblasts with relative sparing of vascular endothelium and melanocytes. These findings demonstrate the usefulness of this simple and readily available morphologic test for the diagnosis of Niemann-Pick disease, type C.
Dysmyelinogenesis in animal model of GM1 gangliosidosis.
Magnetic resonance imaging (MRI), pathologic examinations, and biochemical analyses were performed on 2 different canine mutants with GM1 gangliosidosis (i.e., English Springer Spaniel and Portuguese Water Dog) and on age- and sex-matched controls. Serial MRI studies were also performed on a child with infantile-onset GM1 gangliosidosis. The affected dogs had abnormalities on MRI, including a relative increase in gray matter and an abnormal signal intensity of cerebral and cerebellar white matter observed on T2-weighted MRI. White matter changes on MRI were similar to white matter abnormalities observed in a 15-month-old boy with GM1 gangliosidosis. The weight ratio of white to gray matter from the frontal lobe was markedly reduced. Microscopic examination revealed characteristic ballooned neurons which stained lightly with Luxol-fast blue. The central cerebral and cerebellar folia white matter exhibited pallor and gliosis, while the corpus callosum and fornix stained normally with Luxol-fast blue. Axons appeared intact on Bodian staining. Ultrastructural studies revealed fewer myelinated axons in affected puppies. Total gangliosides in gray matter were elevated. Thin-layer chromatography demonstrated GM1 ganglioside as the predominant ganglioside. The amount of cerebrosides and sulfatides was reduced in the gray and white matter when compared to controls but the ratio in gray and white matter remained unchanged. Immunostaining of neutral glycolipids disclosed increased amounts of stage-specific embryonic antigen-1 glycolipid in gray matter. These findings suggest that canine models for GM1 gangliosidosis are associated with abnormal myelin development which may be similar to the human disease.
Epithelial-stromal interface in normal and neoplastic human bladder epithelium.
The ultrastructure of the epithelial-stromal interface of the human urinary bladder was studied in biopsy specimens that included 7 normal controls, 1 inverted papilloma, 18 noninvasive papillary carcinomas, and 19 invasive transitional cell carcinomas. In the invasive foci of the transitional cell carcinomas, the underlying basal lamina was attenuated or absent and the number of hemidesmosomes was decreased. These neoplastic cells displayed notably increased numbers of lysosomes, some of which appeared to be in the process of exocytosis. Increased numbers of cytoplasmic filaments adjacent to the plasma membranes at the invading pole of these cells were also observed. Tight junctions and junctional complexes were noticed adjacent to the tumor-stromal interface. None of the aforementioned features was observed in normal transitional epithelium, in inverted papilloma, in noninvasive papillary carcinomas, or in the noninvasive portions of invasive transitional cell carcinomas. Alterations of the epithelial-stromal interface deserve additional studies for they may constitute important parameters in the evaluation of actual or potential invasiveness in the various types of carcinoma of the bladder.
Association of therapeutic radiation with golgi complex hypertrophy in human urinary bladder carcinomas: quantitative electron microscopy studies.
The volume (Vv) and surface area (surface density; Sv) of the Golgi complex were measured by electron microscopy stereologic techniques in 17 patients with urinary bladder transitional cell carcinomas. Seven patients were irradiated prior to surgical removal, 4 had recurrent carcinomas that arose from previously irradiated bladder urothelium, and the remaining 6 patients had bladder carcinoma but no prior history of therapeutic irradiation. There were significant differences in the Vv and Sv of Golgi complexes per unit of cytoplasmic volume in carcinomas from irradiated and nonirradiated patients (p < 0.01). In carcinomas obtained from irradiated urinary bladders, the Vv was 3.45 +/- 0.24% (mean +/- SE). In contrast, the Vv was 0.98 +/- 0.15% for tumors in the nonirradiated group. Sv values were 1.51 +/- 0.09 microm2/microm3 in carcinomas from irradiated bladders, and in the nonirradiated group, the mean Sv was 0.76 +/- 0.07 microm2/microm3. These results support the hypothesis that therapeutic irradiation to the urinary bladder induces hyperplasia of Golgi complexes.
Motor neuron abiotrophy in a saluki.
A nine-week-old saluki puppy was presented to Tufts University School of Veterinary Medicine for progressive, generalized weakness and bilateral forelimb deformities. Examination suggested a diffuse neuromuscular lesion. Cerebrospinal fluid (CSF) analysis showed normal nucleated cell count and protein level; however, many macrophages had vacuolated cytoplasm. Electromyography (EMG) recordings suggested denervation in paraspinal and appendicular muscles. Tibial motor nerve conduction velocity was normal, but direct evoked muscle potential had reduced amplitude. Histopathology revealed diffuse, symmetrical, degenerative motor neuronopathy of the ventral horn of the spinal cord with associated lesions in nerves and muscles. Histopathology was consistent with an abiotrophy that was likely inherited.