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Vascular changes in the nasal submucosa of chronic cocaine addicts.

A detailed, correlative, histologic evaluation of postmortem changes in the nasal mucosa of chronic cocaine users has shown characteristic mucosal and arteriolar changes as well as typical perivascular and subepithelial alterations compatible with chronic inflammation. These findings confirm and extend recent reports on the effects of cocaine in the coronary circulation and heart muscle as well as provide a new diagnostic tool to the forensic pathologist who suspects that a decedent has been a long-term cocaine abuser.

Adult↗

Subacute necrotizing encephalopathy (Leigh's disease): two unusual cases.

Two unusual cases of subacute necrotizing encephalopathy are described. In one, a marked hirsutism led to a suspicion of adrenal tumor or other endocrinopathy. In the other case, there was an agenesis of the corpus callosum, the second instance in which a malformation of the corpus callosum was associated with this condition. Electron micrographs from a case of Leigh's disease showed examples of marked axonal swelling and occasional splitting of the lamellae of the myelin sheath, probably responsible for the spongy state seen under light microscopy. That such marked changes were not seen in the "internal control" tended to exclude postmortem changes. The ultrastructure and histologic structure of striated muscle appeared normal in the one case examined.

Agenesis of Corpus Callosum↗

31P spectroscopy in thrombolytic treatment of experimental cerebral infarct.

Ischemic changes produced by autogenous clot embolization of intracranial arteries were monitored by continuous surface-coil 31P spectroscopy in 12 rabbits: six were used as controls and six were treated intravenously with tissue-type plasminogen activator. The animals were sacrificed and the brains were fixed with intravital stains. The results indicate that spectral changes are reversible only when thrombolysis therapy is started within 30 min after ischemic changes are detected. The improvement of the 31P spectrum correlated with postmortem changes.

Animals↗

Relationship between tryptophan and serotonin concentrations in postmortem human brain.

The present study was planned to test a recent observation of positive correlation between tryptophan and 5-hydroxyindole concentrations in postmortem human hypothalamic samples. Four other brain areas were studied, but no significant correlations were observed between tryptophan and serotonin or 5-hydroxyindoleacetic acid concentrations, except in the nucleus accumbens samples of a suicide victim group. A possible in vivo correlation may have been obscured by postmortem changes. The use of tryptophan concentrations as an index for normalising postmortem brain serotonin data is not supported by the present results.

Brain↗

Neurotransmitter receptors in frontal cortex of schizophrenics.

Frontal cerebral cortex brain samples from schizophrenics and controls have been assayed for binding associated with muscarinic cholinergic, serotonin (5HT), gamma-aminobutyric acid (GABA), and beta-adrenergic receptors as well as for the activity of the GABA-synthesizing enzyme glutamic acid decarboxylase (GAD). Binding levels of tritium-LSD, presumably associated with postsynaptic 5HT receptors, were reduced 40% to 50% in samples from schizophrenics in three independent studies, whereas no other consistent alteration was observed in levels of binding associated with other receptors or in the activity of GAD. This change in receptor binding levels does not seem to be attributable to postmortem changes, to influence of drugs received by the patients, or to demographic features of the patient populations.

Adolescent↗

Membrane deformation of unfixed erythrocytes in air with time lapse investigated by tapping mode atomic force microscopy.

Estimation of the time of death is one of the most important problems for forensic medicine and law. Physical and chemical postmortem changes are evaluated together while estimating the time of death. The pattern analysis of antemortem and postmortem bloodstains is one of the important parameters for forensic science, and cellular changes of blood cells can be useful for the quantitative assessment of the time of death. In this study, by successively investigating erythrocytes exposed in air on mica for 5 days using tapping mode atomic force microscopy (TM-AFM), we observed deformation of whole cell and membrane surface of unfixed erythrocytes with time lapse. We found that the time-dependent cellular changes occurred after exposure of erythrocytes in air for several days. At 0.5 days of exposure, fissures and cell shrinkage were observed. At 2.5 days of exposure, the emergence of nanometer-scale protuberances were observed and these protuberances increased in number with increasing time. The changes of cell shape and cell membrane surface ultrastructure can be used to estimate the time of death. Futhermore, smear-induced abnormal erythrocytes and immunostained erythrocytes were observed here. The need for more precise research is indicated, such as the correlation of membrane changes to intervals of less than 0.5 day of air exposure, and use of various substrates in addition to mica, including glass, metals, fabrics, among others, on which the bloodstains appear in crime scenes. The results of this research demonstrate the efficacy of AFM as a potentially powerful analytical tool in forensic science.

Air↗

Changes in cyclic AMP level of rat thyroid by acute and chronic stimulation of thyrotropin in vivo.

To assess a possible postmortem change in the level of cyclic AMP, the thyroids were snap-frozen at various time intervals after removal. Rats were fed a low-iodine diet (LID) with PTU for 2 weeks and a week after PTU discontinuation (PTU withdrawal). In all cases, the cyclic AMP level tended to increase as time elapsed from removing till fixing the thyroids, but in the PTU withdrawal group, the level was rapidly increased 2-fold after 5 min. In an acute experiment, the thyroids were removed under anesthesia and frozen rapidly. Intravenous administration of ovine thyrotropin (250 mU) and TRH (500 ng) brought about a rapid increase in the thyroidal level of cyclic AMP to 40% to 20% over the control level. Two weeks after PTU treatment, circulating thyrotropin was increased to a maximum of 19-fold and a further enhancement ("rebound") was observed after PTU withdrawal. PTU treatment led to an increase in the thyroidal level of cyclis AMP pre mug DNA to 60% over the control value. Following PTU withdrawal, the rise in the level of cyclic AMP returned to the normal level. However, there was no change in the concentration when it was expressed as per mg wet tissue weight. Therefore, the increase in the thyroidal concentration of cyclic AMP per mug of DNA may be due to an increase in volume of the follicular cells.

Animals↗

Inhibition of paraoxonase activity in human liver microsomes by exposure to EDTA, metals and mercurials.

Inhibition of paraoxon hydrolase (paraoxonase) activity by 'in vitro' exposure to EDTA, Mg2+, Co2+, Ba2+, La3+, Zn2+, Cu2+, Hg2+, p-hydroxymercuribenzoate (p-OH-MB) and phenyl mercuric acetate (PMA) was investigated in human liver microsomes. Enzyme activity was totally inhibited by 1 mM EDTA in a time-dependent manner, in contrast to previous data obtained in rat liver where an EDTA-resistant fraction was detected. The possible influence of postmortem changes in these results was checked in a parallel experiment using rat livers with different postmortem intervals. From our results the existence in human liver of an EDTA-resistant fraction cannot be discarded. Ba, La and PMA showed immediate inhibition. By contrast the other compounds tested were time-dependent inhibitors. Ba and Zn showed the highest IC50 values. Cu and mercurials (Hg, p-OH-MB, PMA) were the most potent inhibitors of human liver paraoxonase. Kinetic analysis (Lineweaver-Burk and Dixon plots) indicated that different inhibitors exhibit different inhibition patterns: competitive (EDTA, Ba, La, Cu, p-OH-MB and PMA), non competitive (Zn) and mixed (Hg). The pretreatment of sample with dithiothreitol (DTT) protects against the inhibitory effect of mercurials. Furthermore after inhibition by mercurials the activity was restored by DTT. These results confirmed the essential role of the -SH groups to maintain the catalytic activity of paraoxonase and suggest the existence of two types of -SH groups that could differ in their localization.

Animals↗

[Investigation of magnesium and calcium in ischemic changes in the human myocardium].

The results are presented of tests for magnesium and calcium and their ratio in the human myocardium affected by ischemia in correlation with macroreaction to dehydrogenases. The cases were examined in the shortest possible time after death, observing strict criteria. Even some of the relatively early postmortem changes were found to block the practical diagnostic uses of the changes of magnestium and calcium metabolism in postmortem material.

Calcium↗

Postmortem examinations in a statewide audit of neonatal intensive care unit admissions in Australia in 1992. New South Wales Neonatal Intensive Care Unit Study Group.

The objectives of the investigation were (i) to study infants registered in a statewide audit of tertiary neonatal intensive care units in New South Wales, Australia in 1992 and who died, and (ii) to examine postmortem rates, quality of postmortem reports and compare clinical cause of death with postmortem report. Death rates, data on clinical cause of death and postmortem status were collected prospectively as part of the routine audit. Postmortem reports were examined by LS. Fifteen percent of the cohort died and 43% had a postmortem examination. The postmortem rate was highest in the 28-36 week gestation group and in babies dying of pulmonary haemorrhage, intracranial haemorrhage or sudden infant death syndrome. Fewer than 50% of babies with a major congenital anomaly had a postmortem. The postmortem changed the major diagnosis in 10% of cases and added useful information in 17%. We conclude that postmortem examination should be an essential part of any audit of neonatal intensive care unit outcomes.

Autopsy↗

Proteomic analysis of cerebrospinal fluid changes related to postmortem interval.

BACKGROUND: The study of proteins with altered production in postmortem cerebrospinal fluid (CSF) compared with antemortem CSF may improve the understanding of biochemical changes that occur immediately after death. METHODS: Two CSF samples (1 antemortem and 1 postmortem) were collected from 7 patients and analyzed by 2-dimensional gel electrophoresis. An analysis was also performed to identify proteins that showed a correlation between concentration change and postmortem interval. Tandem mass spectrometry was used to identify the proteins. RESULTS: Fifty-four protein spots were identified that showed a consistent and significant change in concentration in the postmortem CSF of all 7 patients (>3.5-fold, P <0.01). The proteins in these spots derive from a variety of functional groups, including cytoskeletal proteins, enzymes involved in glycolysis, and proteins that prevent oxidative stress. Fourteen protein spots were found to have an increase in production that correlated with postmortem interval. CONCLUSIONS: Changes in protein production of postmortem vs antemortem CSF were studied. The proteins observed to change production in the postmortem CSF include several proteins previously observed as potential stroke biomarkers.

Aged↗

Evolution of periventricular leukomalacia during the neonatal period and infancy: correlation of imaging and postmortem findings.

Eighteen of 68 infants born over a 4-year period who had cranial ultrasound studies and later came to necropsy were found to have periventricular leukomalacia (PVL). Thirteen were diagnosed in life and there was one false positive diagnosis giving an accuracy of 91%, sensitivity of 72% and specificity of 98%. In 11 infants with sequential studies, who died at ages from 43 h to 3 years, the ultrasound findings were correlated with those at postmortem to establish the natural history of the condition. In infants who died within 7 days following the onset of the ultrasound changes, postmortem revealed early PVL without cysts: there were small haemorrhages into the affected areas in three of the four cases. In the five infants who died between 10 days and 9 weeks, cystic lesions were identified in life and at postmortem, but in two long-term survivors cysts resolved on ultrasound at 3-4 months of age. Correlation of ultrasound with postmortem findings demonstrated that, although the ultrasound lesions resolve, glial scarring and impaired myelination can still be demonstrated on careful pathological examination.

Brain↗

Effect of skip-a-day feed restriction on the jejunal mucosa of broiler breeder pullets.

Jejunal tissue was taken from 18-week-old broiler breeder pullets previously reared on a daily or skip-a-day feed restriction system. Light and scanning electron microscopy revealed no changes in mucosal appearance or structure related to feeding system. Comparable duodenal samples all revealed extensive desquamated epithelial damage possibly related to postmortem change.

Animals↗

Evaluation of triple quantum-filtered 23Na NMR spectroscopy in the in situ rat liver.

Triple quantum (TQ)-filtered 23Na NMR spectroscopy and the shift reagent, TmDOTP5-, have been used to evaluate the contributions of intra- (Na+i) and extracellular (Na+e) sodium to the TQ-filtered signal in the rat liver, in situ. Na+e contributed significantly to the total TQ-filtered signal in live animals, and the intensity of this signal did not change postmortem. The TQ-filtered Na+i signal increased by approximately 380% over a period of 1 h postmortem, whereas the single quantum (SQ) Na+i increased by 90%. The constancy of the TQ-filtered Na+i signal indicates that changes in total TQ-filtered 23Na signal intensity in liver (without a shift reagent) may accurately reflect changes in TQ-filtered Na+i signal intensity. The large percent increase in the TQ-filtered Na+i signal as compared to the SQ signal suggests that the fraction of Na+i interacting with macromolecules increases after death.

Animals↗

[Acquired cystic renal changes--a clinically relevant problem in long-term dialysis].

While dialysis patients survive renal failure for years and even decades, multiple morphologic alterations take place in their kidneys. One of these (so to speak) "postmortem" changes is the formation of secondary renal cysts. A patient with end stage renal failure due to amyloidosis is described who was dialysed at home for 9 years. Intravenous pyelography and renal biopsy in the predialysis period likewise documented the presence of amyloidosis and the absence of cystic disease. Ultrasonography of both kidneys, a suspicious increase in hematocrit and the autopsy finding of numerous large cysts also showed the presence of acquired cystic disease. The frequency and complications of this newly recognized disease in longterm dialysed patients are discussed. Recommendations are given concerning follow-up of these patients, with a view to early detection of tumor development within the cysts.

Amyloidosis↗

Human retinal vessels in tissue culture. A preliminary report of the effect of acute glucose poisoning on cultured vascular cells.

To delineate the factors involved in the pathogenesis of human retinal vasculopathies, as in vitro model of human retinal vascular cells was developed by using cadaver eyes enucleated four to eight hours after death and stored at +4 C for three to seven days. A pure, viable capillary explant was obtained by microdissection and gentle agitation; the more rapidly occurring postmortem changes in the surrounding nervous tissue of the retina facilitated separation of the vascular explants. Factor VIII indirect immunofluorescent staining revealed that 85% to 90% of the cells harvested from capillaries of 3- to 5-day-old cadaver eyes and all cells cultured from 1-week-old postmortem eyes reacted positively, indicating their endothelial nature. High-glucose medium caused degenerative changes in the cells of the initial explant as well as in the cells of confluent cultures within 24 to 72 hours. The cytotoxic effect of glucose was manifested by accumulation of PAS-positive granules, cytoplasmic vacuolation, and eventual cell degeneration.

Cells, Cultured↗

The pathways of cell death: oncosis, apoptosis, and necrosis.

The pathways and identification of cell injury and cell death are of key importance to the practice of diagnostic and research toxicologic pathology. Following a lethal injury, cellular reactions are initially reversible. Currently, we recognize two patterns, oncosis and apoptosis. Oncosis, derived from the Greek word "swelling," is the common pattern of change in infarcts and in zonal killing following chemical toxicity, e.g., centrilobular hepatic necrosis after CC14 toxicity. In this common reaction, the earliest changes involve cytoplasmic blebbing, dilatation of the endoplasmic reticulum (ER), swelling of the cytosol, normal or condensed mitochondria, and chromatin clumping in the nucleus. In apoptosis, the early changes involve cell shrinkage, cytosolic shrinkage, more marked chromatin clumping, cytoplasmic blebbing, swollen ER on occasion, and mitochondria that are normal or condensed. Following cell death, both types undergo postmortem changes collectively termed "necrosis." In the case of oncosis, this typically involves broad zones of cells while, in the case of apoptosis, the cells and/or the fragments are often phagocytized prior to their death by adjacent macrophages or parenchymal cells. In either case, the changes converge to a pattern that involves mitochondrial swelling, mitochondrial flocculent densities and/or calcification, karyolysis, and disruption of plasmalemmal continuity. The biochemical mechanisms of cell death are currently under intense study, particularly concerning the genes involved in the process. Pro-death genes include p53, the ced-3/ICE proteases, and the Bax family. Anti-death genes include ced-9/Bcl-2 and the adenovirus protein EIB. It is clear that ion deregulation, particularly that of [Ca2+]i plays an important role in cell death following either apoptosis or oncosis. Genetic evidence strongly indicates that activation of proteases is an important step, possibly very near to the point where cell death occurs.

Animals↗