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Ultrastructural study of aggregates in the spinal cord of transgenic mice with a G93A mutant SOD1 gene.

The ultrastructural features of SOD1-positive aggregates were determined to clarify whether these aggregates are associated with the pathogenesis of SOD1 mutant mice. We examined the spinal cord of transgenic mice expressing a G93A mutant human SOD1 gene with fewer copies (gene copy 10). At the early presymptomatic stage (age 24 weeks), SOD1- and ubiquitin-positive granular, linear, or round deposits were found occasionally in the neuropil of the anterior horns. Ultrastructurally, small filamentous aggregates were observed occasionally in the neuronal processes including the axons in the anterior horns. At the late presymptomatic stage (28 weeks), SOD1- and ubiquitin-positive deposits and Lewy body-like inclusions (LIs) were frequently demonstrated in the neuronal processes including cord-like swollen axons and in some remaining anterior horn neurons. Ultrastructurally, larger filamentous aggregates were frequent, predominating in the neuronal processes of the anterior horns including the proximal axons, but were rare in the somata and dendrites. The aggregates usually consisted of interwoven intermediate filaments (about 10-15 nm in diameter) and frequently contained electron-dense cores in the center resembling LIs. Occasionally the aggregates consisted mainly of granular, amorphous, or vesicular substance, showing fewer filamentous structures. At the symptomatic stages (32 and 35 weeks), LIs were frequently demonstrated within the neuronal processes in the anterior horns, particularly in the cord-like swollen axons. Many more prominent SOD1- and ubiquitin-positive deposits were observed over the whole white matter columns and in the gray matter of the anterior and posterior horns than at the previous stage. Ultrastructurally, aggregates frequently contained electron-dense cores, and were frequently observed in cord-like swollen axons consisting of accumulated neurofilaments. A high level of human SOD1-and ubiquitin-immunogold labeling was present in small to large aggregates even at the presymptomatic stages, and the aggregates increased in size and frequency with time. Compactly packed filaments and electron-dense cores of aggregates showed SOD1-and ubiquitin-immunogold labeling more prominently than in loosely packed filaments. These findings suggest that the accumulation of SOD1-positive aggregates in the neuronal processes, predominantly in the axons, constitutes an important determinant of neurotoxicity and the pathogenesis of this animal model, probably causing impairment of axonal transport by the sequestration of mutant SOD1 protein within aggregates, or in part by physically blocking the axonal transport.

Age Factors↗

Ultrastructural pathology and cytochemical investigations of L-2-chloropropionic acid-induced neurointoxication of the rat cerebellum.

The objectives of the studies described were to assess the ultrastructural neuropathology, blood-brain barrier (BBB) integrity and calcium status of the cerebellum of rats following a single dose of 750 mg.kg-1 L-2-chloropropionic acid (L-2-CPA). The first indications of intoxication appeared at 36 h when condensation of many granule cells associated with Purkinje cell degeneration and marked astroglial swelling were observed. Some electron-lucent granule cells were also noted lying amongst these condensed forms. Condensed granule cells had swollen, electron-lucent mitochondria, dilated Golgi apparatus and nuclear crenation. Occasionally, areas of the granule cell necrosis were also present at this time. Granule cell condensation probably represents a preliminary and irreversible stage in an excitotoxic process that leads to necrosis. At 48 and 72 h, most granule cells were necrotic, and occasionally, extravasation of both erythrocytes and leucocytes into the expanded extravascular space was observed. Evaluation of the BBB by ultrastructural cytochemical visualisation of horseradish peroxidase injected i.v. 2 min before killing by perfusion fixation showed substantial leakage. At 36 h post-dose, ultrastructural calcium localisation using oxalate/pyroantimonate precipitation demonstrated a substantial increase in calcium pyroantimonate precipitate in mitochondria and other membranous cytoplasmic organelles (especially the Golgi apparatus) in condensed granule cells, but with little in their nuclei. However, their immediate neighbours (of ostensibly normal ultrastructural appearances) contained greater amounts of intranuclear precipitate. Swollen astroglial cells (especially the Bergmann glia) contained considerable quantities of precipitate. A possible excitotoxic mechanism via L-2-CPA-induced NMDA receptor agonism leading to overwhelming calcium influx and disruption of cellular calcium homeostasis is proposed.

Animals↗

Ultrastructural changes in mice actively producing antibodies to desmoglein 3 parallel those in patients with pemphigus vulgaris.

Pemphigus vulgaris (PV) is an autoimmune blistering disease caused by autoantibodies against the desmosomal cadherins, desmogleins 1 and 3 (Dsg1, Dsg3) of which Dsg3 plays a major pathogenic role. We have previously generated a novel active disease mouse model for PV, which was produced by the transfer of splenocytes from Dsg3(-/-) mice, immunized with recombinant mouse Dsg3, into Rag2(-/-)-immunodeficient mice that express Dsg3. In this study, we undertook a further analysis of these PV model mice using electron microscopy (EM). We compared the ultrastructure of the epithelia of PV model mice with that of Dsg3(-/-) mice to highlight the mechanisms of blister formation in PV. These PV model mice showed the ultrastructural phenotype of PV, which is characterized by suprabasal acantholysis, rows of tombstone basal keratinocytes and half-desmosomes. Additionally, patchy hair loss was observed in PV model mice as in Dsg3(-/-) mice, and the ultrastructure of the telogen hair follicles was indistinguishable between PV model mice and Dsg3(-/-) mice. These results demonstrate that anti-Dsg3 autoantibodies interfere with the cell-cell adhesion of keratinocytes in PV model mice. In conclusion, our model mice closely represent the disease phenotype of PV at the ultrastructural level and can therefore be utilized not only as a clinical disease model but also to study the molecular mechanisms involved in blister formation in PV.

Acantholysis↗

Myocardial ultrastructure in cardiac hypertrophy induced by thyroid hormone--an acute study in rats.

The early responses of the myocardium ultrastructure under thyroid dysfunction conditions, hemodynamic parameters, cardiac hypertrophy and ultrastructural evaluations were performed in hypothyroid and hyperthyroid rats submitted to different doses [T4-25 and T4-100; 0.025 mg and 0.1 mg kg(-1) body weight (BW).per day, respectively)]. All groups were treated for 7 days. The animals were sacrificed, the hearts were excised and weighed and the left ventricle tissue samples were processed for transmission election microscopy. Systolic blood pressure (SBP) was not altered by administration of T4. An increased heart rate and ratio of heart weight to body weight (HW/BW) were found in the hyperthyroid rats. However, the SBP and HW/BW decreased significantly in hypothyroid rats. No significant ultrastructural alterations were detected when the hypothyroid and T4-25 groups were compared with the control group. Alterations of cardiomyocytes nuclei of these groups were also not detected. Notably, disorganization of intercellular junctions was observed in many cardiomyocytes of T4-100 group. The present results indicate that in the early stages of hyperthyroidism, the cardiac hypertrophy development was mainly due to direct effects of thyroid hormone. Despite cardiac hypertrophy development, there is no ultrastructural evidence of myocardial degeneration.

Animals↗

The unique ultrastructure of secretory membranes in gastric parietal cells depends upon the presence of H+, K+ -ATPase.

Ion transporters play a central role in gastric acid secretion. To determine whether some of these transporters are necessary for the normal ultrastructure of secretory membranes in gastric parietal cells, mice lacking transporters for H+, K+, Cl-, and Na+ were examined for alterations in volume density (Vd) of basolateral, apical, tubulovesicular and canalicular membranes, microvillar dimensions, membrane flexibility, and ultrastructure. In mice lacking Na+/H+ exchanger 1 (NHE1) or the Na+-K+-2Cl- cotransporter (NKCC1), the ultrastructure and Vd of secretory membranes and the secretory canalicular to tubulovesicular membrane ratio (SC/TV), a morphological correlate of secretory activity, were similar to those of wild-type mice. In mice lacking Na+/H+ exchanger 2 (NHE2) or gastric H+, K+ -ATPase alpha- or beta-subunits, the SC/TV ratio and Vd of secretory membranes were decreased, though canaliculi were often dilated. In H+, K+ -ATPase-deficient parietal cells, canalicular folds were decreased, normally abundant tubulovesicles were replaced with a few rigid round vesicles, and microvilli were sparse, stiff and short, in contrast to the long and flexible microvilli in wild-type cells. In addition, microvilli of the H+, K+ -ATPase-deficient parietal cells had centrally bundled F-actin filaments, unlike the microvilli of wild-type cells, in which actin filaments were peripherally positioned concentric to the plasmalemma. Data showed that the absence of H+, K+ -ATPase produced fundamental changes in parietal cell membrane ultrastructure, suggesting that the pump provides an essential link between the membranes and F-actin, critical to the gross architecture and suppleness of the secretory membranes.

Animals↗

Crura ultrastructural alterations in patients with hiatal hernia: a pilot study.

BACKGROUND: Laparoscopic fundoplication for gastroesophageal reflux disease (GERD) and hiatal hernia has been validated worldwide in the past decade. However, hiatal hernia recurrence still represents the most frequent long-term complication after primary repair. Different techniques for hiatal closure have been recommended, but the problem remains unsolved. The authors theorized that ultrastructural alterations may be implicated in hiatal hernia. Thus, this study was undertaken to investigate the presence of these alterations in patients with or without hiatal hernia. METHODS: Samples from Laimer-Bertelli connective membrane and muscular crura at the esophageal hiatus were collected from 19 patients with GERD and hiatal hernia (HH group), and from 7 patients without hiatal hernia enrolled as the control group (NHH group). Specimens were processed and analyzed by transmission electron microscopy. RESULTS: Muscle and connective samples from the NHH group did not present any ultrastructural alteration that could be detected by transmission electron microscopy. Similarly, connective samples from the HH group showed no ultrastructural alterations. In contrast, all muscle samples from the HH group exhibited sarcolemmal alterations, subsarcolemmal vacuolar degeneration, extended disruption of sarcotubular complexes, increased intermyofibrillar spaces, and sarcomere splitting. CONCLUSION: The evidence of ultrastructural alterations in all the patients in the HH group raises the suspicion that the long-term outcomes of antireflux surgery depend not only on the surgical technique, but also on the underlying muscular diaphragmatic illness.

Adult↗

Hyperbaric oxygen-induced changes in bacterial translocation and acinar ultrastructure in rat acute necrotizing pancreatitis.

BACKGROUND: We aimed to investigate the effects of hyperbaric oxygen therapy on bacterial translocation and acinar cell ultrastructure in a rat model of acute necrotizing pancreatitis. METHODS: Forty-eight male Sprague-Dawley rats were randomly divided into three groups. Acute pancreatitis was induced in groups II and III. Groups I and II did not receive any treatment, and group III was treated with hyperbaric oxygen. All surviving animals were killed 48 h after the induction of pancreatitis. Bacterial translocation and histological and ultrastructural changes were determined. RESULTS: The incidence of bacterial translocation in group III was significantly lower in comparison with group II (P<0.001). Histopathological and ultrastructural injury scores were also significantly lower in group III (P<0.001 and P<0.04, respectively). CONCLUSIONS: Hyperbaric oxygen therapy displayed beneficial effects on pancreatic superinfection and or histopathological and ultrastructural changes in experimental necrotizing pancreatitis.

Animals↗

Tryptophan administration increase contractility and change the ultrastructure of mice duodenum.

Serotonin (5-HT) is a metabolite of tryptophan (TRP). 5-HT has been shown to induce contractions in rat duodenum and ileum. We planned to investigate the in vivo effects of TRP administration on duodenal contractility and ultrastructure together. Two equal groups of adult male Swiss-albino mice were used in the experiments. Controls (CONT) and TRP treated (100 mg/kg/24 hr in 0.2 ml. saline solution ip, 7 days). Body weights were recorded at the beginning and at the end of experiments. Duodenum tissues contractility responses to different concentration of KCl and acethycholine (ACh) were recorded on polygraph. The ultrastructural changes in duodenum observed by transmission electron microscopic (TEM) method and 5-HT levels determined by immunohistochemical method. Body weights decreased and duodenal contractile response of ACh increased significantly by TRP treatment. The duodenal ultrastructural changes in TRP group illustrated partially loss of apical surface and fusion in microvilli. Immunohistochemical detection showed that 5-HT increased by TRP treatment. There is a relation between duodenal contractility increased by TRP treatment and changes in the duodenal tissue 5-HT level and ultrastructure.

Acetylcholine↗

Histologic, ultrastructural, and enzymatic measurements of infarct size following coronary artery stenosis and occlusion.

Coronary artery narrowing (CAN), which reduced resting coronary blood flow (BF) by 50%, was induced in 10 conscious dogs and was maintained for 4 hours. Five additional dogs (group 1) with complete coronary artery occlusion were compared to the dogs with CAN. Serum isoenzymes of creatine phosphokinase (CK) and lactate dehydrogenase (LD) were monitored hourly in all groups. After 36 hours, samples were obtained for regional myocardial BF, quantitative histology, and quantitative ultrastructural (EM) morphology. Six dogs with CAN had small infarcts (MI) of less than 1 gm and persistent myocardial cell injury (group 2). The other four dogs with CAN has only persistent myocardial cell injury by ultrastructural criteria (group 3). Peak serum CK activities in groups 2 and 3 were similar, as well MI sizes calculated from serum CK and myocardial depletion. MB CK was of diagnostic value in group 1 but not in groups 2 and 3. The ratio of LD 1/LD 2 had diagnostic value in all three groups. MI size by enzyme estimates was consistently higher than planimetered MI size at autopsy in both groups 1 and 2. All three groups had significant amounts of ultrastructural damage outside of histologically demonstrated. MI. These findings suggest that (1) gross and histologic MI size determination of 36 hours after ischemia underestimate extent of damage, and (2) ultrastructural cell changes cause significant release of CK and LD in coronary disease (CAD).

Animals↗

Decrease in transmitter output and synaptic ultrastructure at lobster neuromuscular terminals with decentralization.

The effects of decentralization on the physiology and ultrastructure of neuromuscular terminals were examined by transecting the single excitor axon to the distal accessory flexor muscle in the walking legs of lobsters (Homarus americanus). Decentralization caused a reduction in the amplitude of the excitatory junctional potential without altering the resting potential or input resistance of the muscle fiber thereby suggesting a reduction in transmitter release. Confirmation was obtained by recording of synaptic currents at focal sites which showed failure of transmission and a reduced amplitude on decentralized fibers compared to their intact counterparts on the contralateral leg. The mean quantal content of synaptic transmission decreased approximately 2-7-fold at these decentralized sites compared to their intact counterparts. The ultrastructure of these identified sites was examined with serial section electron microscopy. There are few if any qualitative changes in synaptic ultrastructure between decentralized and control terminals. However, quantitatively there were changes in synaptic ultrastructure which were progressive in nature depending on the severity of the reaction to decentralization. Thus terminals showing a moderate decline in quantal content were characterized by a reduction in the number of presynaptic dense bars and synapses. Terminals showing a severe drop in transmitter release showed in addition to the above changes, a reduction in the size of synapses and terminals. These results show a progression in the loss of the structural parameters controlling transmitter release. Finally synaptic vesicles and mitochondria did not reveal any consistent or marked change with decentralization.

Animals↗

Efferent synaptic organization of the olivary pretectal nucleus in the albino rat. An ultrastructural tracing study.

In this study an ultrastructural analysis was made of the efferent projections of the olivary pretectal nucleus in the rat. The anterograde tracer Phaseolus vulgaris leucoagglutinin was injected iontophoretically into the olivary pretectal nucleus. Ascending and descending pathways were studied. In the descending pathway special attention was paid to the fine structural features of the olivary pretectal nucleus efferents projecting to the Edinger-Westphal nucleus, the interstitial nucleus of Cajal, the nucleus of Darkschewitsch and the periaqueductal gray. The projection to the superior colliculus and the pontine nucleus was also studied at the ultrastructural level. All the labeled terminals in the descending pathway showed ultrastructurally similar features: clear, round vesicles and electron dense mitochondria. The terminals made asymmetric synaptic membrane specializations (Gray type I), the postsynaptic profiles were dendritic. In the interstitial nucleus of Cajal and the superior colliculus the terminals are organized in glomerulus-like structures. The terminals in the descending pathway were enwrapped by astrocytic processes, also in the glomerulus-like structures. In the ascending pathway the projection to the ventral part of the lateral geniculate nucleus was studied. Almost all terminals in the ascending pathway showed similar ultrastructural features as in the descending pathway: electron dense mitochondria, clear, round vesicles and asymmetric synaptic membrane specializations (Gray type I). The terminals are organized in glomerulus-like structures. To identify the projecting neurons in the interstitial nucleus of Cajal and the Edinger-Westphal nucleus, retrograde tracing experiments were performed. Therefore the beta subunit of cholera toxin conjugated with horseradish peroxidase was injected into the facial nucleus.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of hexachlorobenzene and acetone on algal growth: physiology and ultrastructure.

The effect of hexachlorobenzene (HCB) and acetone on growth and ultrastructure of the freshwater alga Chlorella pyrenoidosa was studied. The algal cells were grown for 76 h under continuous light in 10 ppm HCB with 0.33% acetone or in 0.33% acetone alone; the control cells were grown in nutrient solution only. As was deduced from determinations of dry matter, carbohydrates, chlorophyll content and total nitrogen, 0.33% acetone in nutrient solution slightly decreased the growth of the cells without having any influence on their ultrastructure while 3.33% acetone affected the ultrastructure of the cells severely. An incubation of Chlorella with 10 ppm HCB in nutrient sultion containing 0.33% acetone led to a drastic decrease of all growth parameters studied, total nitrogen and chlorophyll content being affected most strongly. These latter observations were in accord with the changes in ultrastructure showing damage to the cell membranes, disintegrated cytoplasm and sometimes even break down of cell organells leaving only starch grains, the pyrenoid and some endomembranes. In addition to these cells with severe lesions, quite normal cells were found.

Acetone↗

Ultrastructural alterations induced by 1-methyl-4-phenylpyridinium (MPP+) in canine substantia nigra and rat mesencephalon in vitro.

Explants of canine substantia nigra (SN) and rat mesencephalon (MES), grown in organotypic culture, were incubated with 1-methyl-4-phenylpyridinium (MPP+) and examined for ultrastructural changes. Prolonged exposure (3 days) to doses ranging from 0.1 nM to 10 microM MPP+ resulted in total destruction of all constituents (neuronal and glial) of canine SN cultures. No association was noted between MPP+-induced toxicity and age of canine SN cultures. The first ultrastructural change observed in canine SN cultures incubated with 0.1 nM MPP+ was at 3 h. Grossly swollen mitochondria were noted in large nerve cells. Swollen mitochondria were present in all cells of canine SN cultures by 8 h of incubation with MPP+. Only those rat MES cultures with relatively high preincubation levels of homovanillac acid, determined as an index of viable dopaminergic neurons, incubated with MPP+ (10 microM) for up to 8 days exhibited ultrastructural changes, namely, a swelling of mitochondria within the cytoplasm of large nerve cells. These findings suggest that continual exposure to MPP+ in vitro results in a generalized, nonspecific toxicity in those species known to be susceptible to the parent compound 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine in vivo. However, the initial ultrastructural change, i.e., a swelling of mitochondria, may be the same in all species regardless of sensitivity suggesting that the ultimate mechanism underlying MPP+-toxicity relates to mitochondrial function.

1-Methyl-4-phenylpyridinium↗

Ultrastructural changes in testes of the snapping turtle, Chelydra serpentina in relation to plasma testosterone, delta 5-3 beta-hydroxysteroid dehydrogenase, and cholesterol.

Ultrastructural changes in the testes of the common snapping turtle, Chelydra serpentina, were observed throughout the year. Plasma testosterone levels were measured and compared with the occurrence of delta 5-3 beta-hydroxysteroid dehydrogenase (3 beta-HSD), cholesterol, and steroidogenic ultrastructural features (smooth endoplasmic reticulum (SER), mitochondria with tubular cristae) in Sertoli and Leydig cells. The testosterone level is highest in May and October (mating) and relatively low during the rest of the year. Fluctuations in 3 beta-HSD and cholesterol are consistent with the interpretation that the Leydig cells are potentially active throughout the year. They undergo very little ultrastructural change, (tubular SER to vesiculate and loss of golgi during spermatogenesis and in the winter). Sertoli cells are active only during spermatogenesis from May through October and become inactive until the next cycle; 3 beta-HSD, cholesterol and ultrastructural features change more drastically in the Sertoli cells than in the Leydig cells. These results are discussed with reference to the hypothesis that testosterone of Leydig origin is concerned mainly with mating behavior and that of Sertoli origin with spermatogenesis and maturation of sperm.

3-Hydroxysteroid Dehydrogenases↗

Ultrastructural, immunochemical and electrophoretic study of smooth muscle cells in internal mammary arteries of patients undergoing coronary bypass surgery.

The internal mammary artery (IMA) is used widely in bypass grafting for coronary artery disease because of its resistance to atherosclerotic obstruction. Since there are no data on the ultrastructure of IMA or the phenotype of its smooth muscle cells (SMC), we studied the distal parts of left IMA obtained at the time of surgery from 14 coronary bypass patients, aged 43-67 years. Eight IMA were examined by transmission electron microscopy. The distribution of the cytoskeletal proteins actin, vimentin, and desmin in the intima-media of 6 IMA was studied by immunofluorescence microscopy, polyacrylamide gel electrophoresis, and two-dimensional gel electrophoresis. The intimas were very thin, from 3 to 32 microns. The thinnest regions contained no cells. Most intimal cells had the ultrastructural features of SMC; no foam cells were found. The majority of both intimal and medial SMC had a myofilament-rich phenotype. Cells reacting to antibodies of vimentin, desmin and alpha-actin were found in both intima and media. alpha-Actin formed 67% of all actin isoforms in the intima-medial extracts. Our study confirms ultrastructurally the reported scarcity of atherosclerosis in the human IMA and shows that the majority of SMC in the IMA of even severely atherosclerotic coronary bypass patients are both ultrastructurally and biochemically in a differentiated state, which agrees with their resistance to atherosclerosis.

Actins↗

New ultrastructural observations: parallel tubular arrays in human T gamma lymphoid cells.

T gamma cells are E-rosetting cells bearing Fc receptors for IgG (E+, Fc gamma + cells). Third population (non-T, non-B) lymphoid cells are also Fc gamma + cells and contain unique inclusions called parallel tubular arrays (PTA). Although T gamma cells and third population lymphoid cells should belong to a similar population of cells, previous ultrastructural studies on purified T gamma cells have failed to reveal the presence of PTA. In this study, we have unequivocally demonstrated PTA in the majority of T gamma cells using simple rosetting techniques. A total of 76 EA hu-rosettes and 108 EA ox-rosettes prepared from an E+ enriched fraction (using sheep erythrocytes as marker particles) were directly examined by electron microscopy. PTA were found in 87% of the EA hu-rosettes and 82% of the EA ox-rosettes. Ammonium chloride, commonly used in other laboratories to lyse erythrocytes during the purification procedure was found to cause a marked decrease in the number of ultrastructurally distinct PTA profiles. In contrast, hypotonic lysis had no effect on cellular ultrastructure. This study showed for the first time that T gamma cells are ultrastructurally similar to other Fc gamma + lymphoid cells and contain PTA as a distinct marker. The significance of our findings to the basic function of this E+ Fc gamma + lymphoid population is discussed.

Ammonium Chloride↗

Biochemical and ultrastructural changes in skeletal muscle induced by a creatine antagonist.

To evaluate the essentiality of creatine and phosphocreatine for the maintenance of the ultrastructure of skeletal muscle, chicks were fed a creatine antagonist, beta-guanidinobutyric acid (beta-GBA), as 2% of a Chow diet. Chicks fed beta-GBA exhibited growth retardation and weakness, and they accumulated large amounts of a monosubstituted guanidino compound, presumably beta-GBA, in their skeletal muscles. After 2 wk, there was a 74% decrease in the uptake of [14C]-1-creatine into pectoralis muscles of chicks fed beta-GBA. After 2 wk there as a significant decrease in phosphocreatine concentrations in pectoralis muscles from 20.1 +/- 2.8 mumoles per g wet weight (mean +/- S.D.) for 8 control chicks to 16.5 +/- 2.5 for 7 chicks fed beta-GBA. Selected fibers of the pectoralis and gastrocnemius muscles of chicks fed beta-GBA exhibited ultrastructural abnormalities including loss of thick and thin filaments, disruption of the Z band, dilated mitochondria, and dilated and displaced sarcoplasmic reticulum. The pectoralis muscles of chicks given 6% creatine in addition to 2% beta-GBA in the diet accumulated little beta-GBA, maintained normal phosphocreatine concentrations, and exhibited no significant ultrastructural abnormalities. These findings are the first experimental evidence that high concentrations of phosphocreatine are essential for the maintenance of the ultrastructural integrity of skeletal muscle.

Animals↗

Ultrastructural, electron-probe, and microhardness studies of the controversial amorphous areas in the dentin of regional odontodysplasia.

The amorphous areas, which are gray in sections stained with hematoxylin and eosin and which are a prominent feature in the coronal dentin of the more severely affected cases of regional odontodysplasia, were studied ultrastructurally and with an electron probe and a Vickers microhardnesss tester. The ultrastructural findings confirmed previous histochemical evidence that the amorphous material consists of glycosaminoglycans and represents collagen-free dentinal matrix, that is, ground substance. Phosphoproteins may also present. The ultrastructural examination of nondecalcified material and electron-probe and microhardness tests supported previous microradiographic evidence that the amorphous areas are more heavily mineralized than normal dentin. The boundaries of the amorphous areas were found on ultrastructural examination to be distinct but very irregular.

Child↗