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Biomedical subjects

M Elleder

Publications and source records attributed to M Elleder.

At least 37 records · Page 2Linked to original sources

Pulmonary storage with emphysema as a sign of Niemann-Pick type C2 disease (second complementation group). Report of a case.

A case is described of Niemann-Pick type C2 disease presenting an infantile pneumopathic phenotype known to occur in this recently established, second, minor complementation group of Niemann-Pick type C (NPC) disease. However, the pulmonary involvement was unique, being dominated, in addition to the usual storage macrophage infiltration of the alveolar and septal compartments, by irregular emphysema attributed to storage cell migration into the bronchiolar lumen. The latter modified considerably the X-ray findings and hindered the initial clinical diagnosis. Otherwise, the storage phenotype, including the range of stored lipids, storage distribution, and cell and organ pathology, was found to be identical to that in the whole Niemann-Pick type C disease group dominated by NPC1. The biochemical findings (cholesterol esterification level) corresponded to the classical biochemical phenotype. Emphysema should thus be considered as a variant of the pulmonary NPC2 storage process, governed most probably by an epigenetic mechanism responsible for storage macrophage migration into the bronchiolar compartment.

Emphysema↗

Cardiac manifestations in Fabry disease.

Fabry disease is an X-linked recessive genetic disorder of glycosphingolipid metabolism, due to deficiency of the lysosomal enzyme alpha-galactosidase A. The disease is characterized by the progressive intracellular lysosomal accumulation of neutral glycosphingolipids throughout the body, including the cardiovascular system. It has been reported that cardiac involvement could be the sole manifestation of the disease in some patients. Myocardial abnormalities are characterized mainly by left ventricular (LV) wall thickening without significant cavity dilatation, the most frequent abnormal structural pattern being concentric LV hypertrophy (LVH). In some patients the disease mimics a typical hypertrophic obstructive cardiomyopathy. According to our experience, systolic function is largely preserved in a large majority of affected individuals. In contrast, mild to moderate impairment of diastolic filling is a relatively common finding, representing probably the most important cause of dyspnoea in patients with Fabry disease. However, in a relatively large population of affected patients, severe diastolic dysfunction, typical of restrictive cardiomyopathy, was not found. Valvular structural abnormalities are frequent due to valvular infiltration. In several patients, hypertrophy of papillary muscles and/or systolic anterior motion of the mitral leaflets associated with LV outflow obstruction may aggravate the mitral valve dysfunction. We did not confirm the previously reported high prevalence of mitral valve prolapse. Valvular regurgitation seems to be relatively frequent but mostly non-significant. Electrocardiographic changes in Fabry disease are multiple and include atrioventricular (AV) conduction abnormalities (abbreviation of the P-R interval or AV blocks), signs of LVH and repolarization abnormalities. Our observations suggest that conduction defects and repolarization changes are present predominantly in subjects with LV structural abnormalities. Cardiac symptoms in patients with Fabry disease include shortness of breath on effort (related to LV diastolic dysfunction), vasospastic and/or exertional angina pectoris (due to LVH, endothelial dysfunction and/or fixed coronary artery stenosis) and syncope (related to AV blocks or LV outflow obstruction). The extent of cardiac involvement, in particular LV mass assessment, could represent an ideal surrogate endpoint for evaluating the efficacy of specific therapies.

Electrocardiography↗

Autofluorescence of melanins induced by ultraviolet radiation and near ultraviolet light. A histochemical and biochemical study.

The induction of autofluorescence of melanins by UV radiation (330-380 nm) and near UV (400-440 nm) light (jointly called UV light) was studied in tissue sections using three commercially available mounting media. Only Immu-Mount (Shandon) was found suitable for this purpose. UV irradiation of melanins in sections mounted in this medium induced strong yellow autofluorescence irrespective of the type of the polymer (eumelanin, neuromelanin, pheomelanin and ochronotic pigment). The phenomenon of autofluorescence induction was also observed with isolated natural and in vitro prepared melanins. It was inhibited by anhydrous conditions, sodium azide and catalase. In parallel experiments, rapid degradation of melanins with an intermediate fluorescent stage was achieved in UV-irradiated sections mounted in media artificially enriched with hydrogen peroxide, or directly in aqueous solutions of H2O2, Na2O2 or HIO4. Oxidations not associated with UV light led to nonfluorogenic breakdown of melanins. These observations indicate that the common mechanism may be an oxidative attack resulting from a concerted action of hydrogen peroxide and UV light leading, through strongly fluorescent intermediates, to a complete bleaching and oxidative breakdown of melanin and melanin-like polymers. Reactive oxygen species (including ozone) are considered to be important reactants in these experiments. Lipopigments differ from melanin-like pigments by their primary autofluorescence, which mostly faded during continuous prolonged irradiation. The only regular exception was melanosis coli pigment, the autofluorescence of which was considerably augmented by UV irradiation. Our results demonstrate a novel type of fluorogen in autofluorescent pigment histochemistry. The implications of the results are discussed especially in the light of the possible presence of melanin-based fluorogens in lipopigments.

Animals↗

Neonatal (perinatal) hemochromatosis.

Autopsy findings are described of six cases (from four families) of neonatal hemochromatosis, a defect featured by severe prenatal iron storage in the liver and in a number of visceral organs similarly as in the hereditary adult-type hemochromatosis. Genetically, the two disorders are different, however. All the cases showed a characteristic liver damage with heavy iron deposits in the liver cells, lobular disarray and intralobular fibrosis, tendency towards multinuclear hepatocyte formation, ultimately resulting in pigmented cirrhosis and liver failure. In five instances the cirrhosis present was atrophic, in one case it was hepatomegalic. Death occurred prenatally in one case (31st week), perinatally in three, and two cases died as young infants. The mechanism of the liver disorder, mainly that of iron accumulation, has remained unresolved. Extrahepatally, hemosiderosis affected various epithelia (in particular, thyreocytes, renal distal tubular epithelia and those of pancreatic acini) and myocardial cells which, however, did not show any damage. In two instances the placenta was conspicuously hyperplastic, in one case it showed prominent hydropic transformation of its villi. In one case there was simultaneous cytomegaly. Entities which must be considered in the differential diagnosis of neonatal hemochromatosis because of considerable hepatic and extrahepatic iron accumulation have been discussed.

Adult↗

Link between a novel human gammaD-crystallin allele and a unique cataract phenotype explained by protein crystallography.

We describe a 5-year-old boy with a unique congenital cataract caused by deposition of numerous birefringent, pleiochroic and macroscopically prismatic crystals. Crystal analysis with subsequent automatic Edman degradation and matrix-associated laser desorption ionization time-of-flight mass spectrometry have identified the crystal-forming protein as gammaD-crystallin (CRYGD) lacking the N-terminal methionine. Sequencing of the CRYGD gene has shown a heterozygous C-->A transversion in position 109 of the inferred cDNA (36R-->S transversion of the processed, N-terminal methionine-lacking CRYGD). The lens protein crystals were X-ray diffracting, and our crystal structure solution at 2.25 A suggests that mutant R36S CRYGD has an unaltered protein fold. In contrast, the observed crystal packing is possible only with the mutant protein molecules that lack the bulky Arg36 side chain. This is the first described case of human cataract caused by crystallization of a protein in the lens. It involves the third known mutation in the CRYGD gene but offers, for the first time, a causative explanation of the phenotype.

Alleles↗

Identification of mutations in the glucose-6-phosphatase gene in Czech and Slovak patients with glycogen storage disease type ia, including novel mutations K76N, V166A and 540del5.

Mutations in the glucose-6-phosphatase (G6Pase) gene are responsible for glycogen storage disease type Ia (GSD Ia). A study of the molecular basis of GSD Ia was carried out in 12 Czech and Slovak GSD Ia patients from 10 unrelated families. Mutation analysis was performed for the entire coding region of G6Pase gene using DGGE, sequencing and PCR/digestion. With the strategy used, all mutant alleles were identified in this study. Three novel mutations (K76N, V166A and 540del5), six previously described mutations (W77R, R83C, G188R, R295C, Q347X and 158delC) and one known polymorphism (1176T-->C) were detected. The most common mutation identified was R83C, accounting for 8 out of 20 (40%) mutant alleles. The K76N mutation was found in a Gypsy family: two siblings with GSD Ia were homozygous for this mutation. These findings expand our knowledge of mutations responsible for glycogen storage disease type Ia.

Alanine↗

Testis - a novel storage site in human cholesteryl ester storage disease. Autopsy report of an adult case with a long-standing subclinical course complicated by accelerated atherosclerosis and liver carcinoma.

A case of long-standing subclinical cholesteryl ester storage disease (CESD) manifesting as hyperlipoproteinaemia type IIb without any hepatomegaly is described. The patient underwent surgical vascular interventions because of accelerated atherosclerosis, which dominated his middle age. CESD was an incidental finding when a liver biopsy specimen was taken because liver malignancy was suspected; the patient's condition proved to be due to a cholangiocarcinoma, which led to his death at the of age 52. The autopsy showed moderate-intensity storage in the set of cells characterized by constitutional high-level receptor-mediated LDL endocytosis (hepatocytes, adrenal cortical cells) and also revealed storage in the Leydig cells. The severity with which histiocytes were affected varied regionally, ranging from minimal detectable storage or none at all (gut, lymph nodes, spleen) to extreme lysosomal expansion by cholesteryl ester liquid crystals (bone marrow) or by ceroid (lung, testicular stroma), or by both (liver). The density of the histiocytic population did not correlate with the degree to which parenchymal cells were affected except in the testicular stroma, where it was prominent. The patient was a mixed heterozygote for the G934A and DeltaC(673-5) mutations.

Adult↗

Subclinical course of cholesteryl ester storage disease in an adult with hypercholesterolemia, accelerated atherosclerosis, and liver cancer.

Few cases of asymptomatic cholesteryl ester storage disease (CESD) due to low enzymatic activity of human lysosomal acid lipase/cholesteryl ester hydrolase (hLAL) have been reported thus far in adults Here, we describe a 51-year-old man with a long clinical history of mixed hyperlipoproteinemia and severe premature atherosclerosis, but with no signs of hepatomegaly, liver dysfunction, or splenomegaly. The disease was discovered by chance in a biopsy performed because of suspected liver cancer (proven to be a cholangiocarcinoma). Residual hLAL activity in peripheral leukocytes was determined to be 6% of control values. DNA sequence and restriction fragment length polymorphism analysis demonstrated that the patient was a compound heterozygote for the prevalent CESD exon 8 splice site mutation (G934A) and the deletion of a C (nucleotide 673, 674, or 675) in exon 6 of the hLAL gene, resulting in premature termination of protein translation at residue 195. The patient died of liver failure as a consequence of extensive tumor infiltration at age 52. Lipid analysis revealed moderate cholesteryl ester storage in the liver and in the suprarenal cortex, and massive accumulation in the testicular histiocytes and Leydig cells, resulting in a pronounced secondary atrophy of the seminiferous tubules. Our case study demonstrates that hepatomegaly is an inconstant feature, even in CESD patients compound heterozygous for a Wolman mutation which results in complete loss of hLAL enzymic activity. It also highlights the need to be aware of this condition as it may be underdiagnosed.

Adult↗

New insights in cardiac structural changes in patients with Fabry's disease.

BACKGROUND: Fabry's disease is an X-linked recessive genetic deficiency of the enzyme alpha-galactosidase leading to the pathologic intracellular deposition of neutral glycosphingolipids. Although cardiac involvement is frequent, there is controversy regarding the character of the associated left ventricular (LV) changes and the severity of valvular involvement. METHODS: Clinical evaluation (disease severity scaling, laboratory tests, and echocardiography) was performed in 13 hemizygous men (mean age 39 +/- 10 years) and 17 heterozygous women (mean age 35 +/- 19 years). RESULTS: LV hypertrophy (LVH) was frequent in subjects older than 30 years, more often in men (61%) than in women (18%, P <.001). The degree of LVH was independently associated with age and the logarithm of alpha-galactosidase activity (r(2) = 0.70, P <.001). The predominant LV geometric patterns were concentric LVH and remodeling, both present in 11 subjects (36%). Three patients had an asymmetric septal hypertrophy mimicking hypertrophic cardiomyopathy. In most subjects with LVH, the systolic function was normal and severe diastolic dysfunction (restrictive pattern) was not noted. Minor structural abnormalities of the mitral valve were found in 17 subjects (57%). The aortic valve was affected in 14 patients (47%). Valvular abnormalities were frequently accompanied by regurgitation of minor to mild degree. The presence of LVH or valvular changes was associated with increased disease severity. CONCLUSIONS: Echocardiographically detectable cardiac involvement is frequent with Fabry's disease, particularly in older subjects, and more pronounced in affected hemizygous men than in heterozygous women. LVH is frequently observed but usually not associated with significant systolic or restrictive diastolic dysfunction. Concentric LVH and remodeling appear to be the major manifestations of LV structural alteration. The frequently noted valvular abnormalities were not associated with a significant degree of regurgitation. Valvular and especially LV structural changes may serve as a useful marker of disease severity.

Adolescent↗

Compound heterozygosity for a Wolman mutation is frequent among patients with cholesteryl ester storage disease.

Cholesteryl ester storage disease and Wolman disease are rare autosomal recessive lipoprotein-processing disorders caused by mutations in the gene encoding human lysosomal acid lipase. Thus far we have elucidated the genetic defects in 15 unrelated CESD patients. Seven were homozygotes for the prevalent hLAL exon 8 splice junction mutation which results in incomplete exon skipping, while eight probands were compound heterozygotes for E8SJM and a rare mutation on the second chromosome. In this report, we describe the molecular basis of CESD in three compound heterozygous subjects of Czech and Irish origin. RFLP and DNA sequence analysis revealed that they were heteroallelic for the common G(934)-->A substitution in exon 8 of the hLAL gene and a mutation which, if inherited on both alleles, would be expected to result in complete loss of enzyme activity and to cause Wolman disease. In patients A. M. and J. J., two nucleotide deletions in exons 7 and 10 were detected, involving a T at position 722, 723, or 724 and a G in a stretch of five guanosines at positions 1064;-1068 of the hLAL cDNA. Both mutations result in premature termination of protein translation at residues 219 and 336, respectively, and in the production of truncated, inactive enzymes. Subject D. H., in contrast, is a compound heterozygote for the Arg(44)-->Stop mutation previously described in a French CESD proband. Combined with data in the literature, our results demonstrate that compound heterozygosity for a mutation causing Wolman disease is common among cholesteryl ester storage disease patients.

Base Sequence↗

[Neuronal ceroid lipofuscinosis. Closing chapter of a long story].

Neuronal ceroid lipofuscinoses represent a group of diseases which has until quite recently resisted definite elucidation of the underlying defect(s) on the molecular level. The common feature of all the NCLs is a serious and progressive neurological disorder, accompanied, with only few exceptions, by retinal degeneration. Visceral symptoms, despite the presence of the storage process, are absent, or minimal. There are many clinical variants of the disease process, among which a set of standard, historical phenotypes exists found to be linked to specific genotypes. The disorder is inherited and transmitted as an autosomal recessive trait. At the cellular level, it is featured by lyzosomal storage of autofluorescent hydrophobic material, the substantial part of which consists of hydrophobic proteins and esterified dolichol. The dominant protein is the subunit c of mitochondria ATP synthase. In one NCL type (NCL1) the dominant proteins are saposins A and D. Ultrastructural appearance is membranous with several relatively specific patterns with some tendency to condensation or, namely in NCL3 to vacuolar distension. Amorphous appearance is associated with NCL1. The impact of the disease process on the cell biology differs substantially depending on the cell type. The brain neurons are most seriously affected and degenerate, whereas other cell types mostly survive without detectable deterioration. Pathogenesis at the molecular level is now being elucidated using the modern molecular biology techniques, which have already enabled unravelling of a set of genes controlling majority of the standard historical phenotypes. The original infantile form of NCL (NCL1) is now defined as palmitoyl protein thioesterase deficiency (gen at the 1p32 locus), the late infantile form (NCL2) as pepstatin resistant proteinase deficiency (gen at the 11p15.5 locus) and the original juvenile form (NCL3) as a defect of the specific gene (locus 16p11.2-12.3), the product of which, the NCL3 protein, still lacks functional characterization. Two gene loci have been identified in the so-called early juvenile, or variant late infantile NCL. One of them is in the 13q21 locus (NCL5 or Finnish variant late infantile form), the second is in the 15q21-23 one (NCL6). Kufs form remains the least defined form of NCL. Recently two novel NCL variants were described with specific loci. Thanks to introduction of molecular genetic based diagnosis it was possible to recognize, besides the standard phenotype, existence of further phenotypic variants. The phenotype based scheme of NCL has thus been definitely substituted by classification based on genotype and biochemistry.

Humans↗

[Lysosomal acid lipase deficiency. Overview of Czech patients].

Lysosomal lipase deficiency is a hereditary autosomal recessive enzymopathy leading to lysosomal storage of triacylglycerols (TAG) and cholesterol esters (CE). In particular cells with a permanently high receptor-mediated LDL endocytosis are affected (liver, kidneys). There are two basic phenotypes. The fatal infantile phenotype (Wolman's disease) with generalized storage of both types of apolar lipids. This form was diagnosed in this country only once. The opposite is the protracted, oligosymptomatic form encountered in all age groups. It is characterized by the storage of CE (which gave this entity the name of cholesteryl storage disease--CESD). Its main sign is affection of the liver (hepatomegaly, hepatopathy), which in some instances may lead to organ failure, directly or after cirrhotic transformation. Furthermore there is permanent hypercholesterolaemia (high LDL cholesterol) due to increased VLDL synthesis by hepatocytes, low HDL cholesterol and variably raised TAG. This constellation of blood lipids is a risk factor for the development of atherosclerosis. In the course of 25 years in the Czech Republic 13 cases of CESD were diagnosed in 11 families. Ten of these cases were characterized by clinically manifest hepatopathy with hepatomegaly, detected incidentally during medical examinations (at the age of 2-14 years). In three adult patients with permanent hypercholesterolaemia the storage process was subclinical and the diagnosis was established quite incidentally by examination of non-specific secondary and tertiary manifestations of the disease. The diagnosis was established in all cases of CESD at the tissue level (liver biopsy), at the biochemical (acid lipase deficiency) and molecular genetic level (mutation in enzyme locus). In all instances mutation of G934A was found leading to reduction and loss of the eighth exon. This mutation was present in five patients in a homozygous state. Six mutations were heterozygous. In one instance for technical reasons only one allele was analyzed. In three instances a point "missense" mutation was found: T323A (Trp74Arg), T4(75)A (Asp124Glu), A210T (Asp36Gl), in one instance a "nonsense" mutation: C233T (Arg44-stop) and twice a deletion mutation delta C673-5 and delta G1068-8 leading to impairment of the reading frame and to premature stop of the codon.

Adult↗

[Postmortem diagnosis of Fabry disease in a female heterozygote leading to the detection of undiagnosed manifest disease in the family].

The authors detected on necropsy in a 63-year-old woman with the clinical diagnosis of hypertension, atherosclerosis of the coronary and peripheral arteries, thromboembolism into the cerebral circulation and impaired cardiac conductivity lysosomal storage identified by histochemical and electronoptic analyses along with lipid chromatography as Fabry's disease. The stored lipids were neutral glycosphingolipids of the globo series globotriaosylceramide) and of the gala- series (galabiosylceramide) which accumulated as a result of deficient activity of the degrading enzyme alpha galactosidase A. Marked accumulation of these specific lipids was found in cardiomyocytes, in smooth muscles (of the media in arteries of the heart, kidneys, liver, spleen, lungs) in podocytes and mesangial cells of renal glomeruli, in epithelia of Henle's loop and in the distal tubules. In the vascular endothelium the storage was at the borderline of detectability. Accumulation did not lead to detectable organ disorders with the exception of the heart where it participated, no doubt, significantly in the cardiocyte hypertrophy. Examination of relatives revealed in the proband's son (age 41 years) a combination of renal, cardiac and skin changes typical for Fabry's disease which, however was not clinically diagnosed. The diagnosis was confirmed by proving of alpha-galactosidase A deficiency in the peripheral leucocytes and point mutation L293X in the VIth exon of the appropriate gene. In a granddaughter (age 15 years) biochemical and molecular genetic methods revealed the heterozygous state of Fabry's disease in preclinical stage.

Adolescent↗

[Various manifestations of the A8344G mtDNA heteroplasmic mutation in 4 families with the MERRF syndrome].

BACKGROUND: The most frequent manifestation of mitochondrial DNA (mtDNA) mutation 8344 A-->G is MERRF syndrome (Myoclonic Epilepsy and Myopathy with Ragged Red Fibres). Less frequent symptoms include ataxia, perceptive type of deafness, cardiomyopathy or external ophthalmoplegia and mental and motor retardation in children. We describe heterogeneity of clinical symptoms and results of biochemical and molecular investigations in four families with the heteroplasmic mutation 8344 A-->G in mtDNA. METHODS AND RESULTS: In co-operation with paediatric, neurological and genetic specialists from the Czech and Slovak Republic we found in 1993-1998 at the enzymatic or molecular level more than 90 children and adults with impaired mitochondrial energy metabolism. Heteroplasmic mutation 8344 A-->G in mtDNA was found in four families. Ataxia and progressive muscle weakness appeared in the first proband with 50% of mutated copies of mtDNA in muscle at the age of 30 years. The second proband with 95% of mutated mtDNA had his first clinical symptoms--muscle hypotonia, cardiomyopathy and mental and motor retardation--in infancy while his four relatives with 25-50% mutated mtDNA lack so far clinical symptoms. In a female from the third family with 50% mutated mtDNA in muscle the disease manifested at the age of 42 years with progressive external ophthalmoplegia (PEO) and muscle weakness. In the fourth proband with 50% of mutated mtDNA in blood the disease started in infancy with spastic quadruparesis and arrested mental and motor development. Enzymatic and histochemical investigation in muscle biopsy in two probands revealed lower cytochrom c oxidase activity. Ragged-red fibres were found only in one adult patient. CONCLUSIONS: MtDNA mutation 8344 A-->G can manifest by heterogeneous symptoms. A higher percentage of mutated mtDNA is usually associated with more serious forms of the disease, but there is not always a correlation between the degree of heteroplasmy and severity of the disease or the age of the first clinical symptoms.

Adult↗

Combined adenine phosphoribosyltransferase and N-acetylgalactosamine-6-sulfate sulfatase deficiency.

We describe a Czech patient with combined adenine phosphoribosyltransferase (APRT) deficiency (2,8-dihydroxyadenine urolithiasis) and N-acetylgalactosamine-6-sulfate sulfatase (GALNS) deficiency (mucopolysaccharidosis Type IVA, Morquio disease A). Adenine and its extremely insoluble derivative, 2,8-dihydroxyadenine, were identified in the urine, and APRT deficiency was confirmed in erythrocytes. There was excessive excretion of keratan sulfate in the urine, and GALNS deficiency was confirmed in leukocytes. GALNS and APRT are both located on chromosome 16q24.3, suggesting that the patient had a deletion involving both genes. PCR amplification of genomic DNA indicated that a novel junction was created by the fusion of sequences distal to GALNS exon 2 and proximal to APRT exon 3, and that the size of the deleted region was approximately 100 kb. The deletion breakpoints were localized within GALNS intron 2 and APRT intron 2. Several other genes, including the alpha subunit of cytochrome B (CYBA), which is deleted or mutated in the autosomal form of chronic granulomatous disease, are located in the 16q24.3 region, but PCR amplification showed that this gene was present in the proband. A patient with hemizygosity for GALNS deficiency and APRT deficiency has been reported from Japan recently. These findings indicate that: (i) APRT is located telomeric to GALNS; (ii) GALNS and APRT are transcribed in the same orientation (centromeric to telomeric); and (iii) combined APRT/GALNS deficiency may be more common than hitherto realized.

Adenine Phosphoribosyltransferase↗

MRI in an unusually protracted neuronopathic variant of acid sphingomyelinase deficiency.

MRI was performed in two siblings with the neuropathic sphingomyelinase deficiency caused by identical mixed heterozygosity in the structural acid sphingomyelinase gene. The clinical phenotype of the cases is unique in showing a rather protracted course, both having reached the fourth decade. Pronounced cerebellar and mild supratentorial atrophy was seen on MRI in both siblings, in contrast to their strikingly different clinical status. One has no overt neurological deficit, while the second had neocerebellar symptoms and signs, nystagmus and cranial nerve palsies for some years. The MRI findings, together with the cherry-red spot in the ocular fundus, ultrastructurally proved storage in cutaneous nerve Schwann cells and the histopathologically proven brain neuronal storage in a third sibling who died after a relatively rapid course dominated by fatal visceral storage, is evidence that a remarkably restricted neuropathology can be caused by this enzymopathy.

Adult↗

Attempts to induce melanosome degradation in vivo.

Contradiction between repeatedly reported electron microscopic and histochemical observation of melanosome disintegration in the presence of lysosomal enzymes in vivo and failing attempts to induce such degradation by biochemical means in vitro with the aim to explain chemical mechanism(s) of this process belongs to chronically challenging problems in biochemistry of melanin structures. Attempts have been made to bring about melanosome disintegration in vivo by inoculating melanosomes isolated from dog hair into the tissue of amelanotic Bomirski melanoma and into peritoneal cavities of DBA/2 and C57BL/6J mice, and by repeated injection of melanosomes isolated from Bomirski pigmented melanoma into Syrian hamster foot pads. Both histological and electron microscopic observations demonstrated that melanosomes were phagocytized by macrophages and sporadically by fibroblasts. In peritoneal cavities the injected foreign melanosomes remained mostly extracellularly, were surrounded by foreign body multinuclear cells and formed granulomas. There were no convincing signs of degradation of the hair melanosomes, which behaved like inert foreign bodies. Only some phagocytized Bomirski hamster melanoma melanosomes tended to lose their integrity. Our data suggest that melanosomes devoid of their limiting membranes are not necessarily prone to extensive disintegration in vivo. The earlier reported association of lysosomal enzymes with disintegrating melanosomes does not constitute an evidence for their participation in melanosome degradation. Considering the structure of melanins, redox mechanisms (analogous with the metabolism of polycyclic hydrocarbons (DePierre and Ernster, 1978)) seem to be more probably involved in pigment degradation than hydrolytic reactions.

Animals↗

[Autopsy and biopsy findings in disorders of mitochondrial beta-oxidation of fatty acids. Role of the pathologist in the diagnostic process].

Basic problems of the group of hereditary mitochondrial beta oxidation (BOX) disorders are presented with evaluation of the role of pathologists in the diagnostic process. The disorders manifest themselves clinically as usual by recurrent Reye-like episodes (acute hepatopathy and encephalopathy) typically in low age levels. Integral part of the clinical picture is often a myopathic symptomatology which at some cases may display even persisting character. The findings at the tissue level are dominated mostly by steatosis of the organ set with a high beta oxidation level (liver, heart, skeletal muscle, kidney) and toxic effects of the intermediate metabolic products of the derranged beta oxidation process. So far eighteen enzyme defects have been described affecting either transport of fatty acids across the mitochondrial membranes or their oxidative degradation at various levels, pointing to an absolute dependence of the final diagnosis on biochemical analysis. Pathologist's conclusion in cases dying without diagnosis is limited to suspicion of a BOX disorder only. However, pathologists can contribute significantly to unraveling and specification of the underlying BOX defect by collecting adequate samples of body fluids and of unfixed organs. Nevertheless, the validity of these samples, even if widely recognized, is limited. The best approach is to provide samples enabling to perform biochemical evaluation of the whole BOX process in integral mitochondrias. This requirement is fulfilled solely by establishing fibroblast tissue culture post mortem.

Child↗