Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Pathogenesis”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 829 records · Page 46Linked to original sources

The Zvonimir Dinter Memorial Lecture. New insights into the pathogenesis of viral infection.

Interesting recent highlights into the pathogenesis of viral infections have come from: (1) Studies of viruses that persist in cells and modify cell function without causing cell damage. (2) Transgenic mouse studies showing how tissue-specific transcriptional activators control virus expression and can determine viral tropism. (3) Studies of the influence of cell differentiation on viral expression. (4) The exploding world of cytokines, whose baffling complexity and multiple interactions are subjects of intense study. (5) Studies of the interaction of viruses with the immune system. In each case, no molecular studies are giving unprecedented insights into disease processes. However, even when viral genomes are sequenced and virulence genes identified there are additional daunting steps before we understand the role of a given gene product in pathogenesis.

Animals↗

The pathogenesis of edema disease in pigs. A review.

Edema disease is known to cause important losses in the period shortly after weaning. Although the disease is known for many decades, intensive studies with bacterial lysates of pathogenic E. coli, followed by biotechnological research the last ten years, has led to a better understanding of its pathogenesis. Especially the impact of the toxin is clearly established. Evidence also exists that adhesion factors play a crucial role in the pathogenesis of edema disease.

Animals↗

Pathogenesis of Mycobacterium bovis infection in cattle.

This paper reviews the pathogenesis of Mycobacterium bovis infection in cattle, focusing on aspects relating to the host rather than the organism. A broad concept of pathogenesis has been considered and information is presented on sources and routes of infection, as well as the immune responses and pathology. In addition, data is presented on the excretion of M. bovis from tuberculous cattle.

Animals↗

Hypoxic-hemodynamic pathogenesis of brain lesions in the newborn.

For more than a century two opposing views on the pathogenetic mechanisms and the timing of the origin of cerebral palsy (CP) have prevailed: the idea first formulated by Little attributing CP to "difficult deliveries" has been opposed by the view by Freud recognizing fetal influences, and the issue seems to be unsettled. The present review seeks to bridge the gap by recognizing that late prenatal or perinatal hypoxic-hemodynamic insult is a dominating final common path in the pathogenesis of static encephalopathies during development, in particular in premature infants. In turn, however, such lesions are determined by early genetic and environmental influences. The pathogenesis of static encephalopathy should therefore be seen as a chain of events, with its origin before gestation.

Animals↗

Molecular pathogenesis of human immunodeficiency virus infection.

Molecular studies of the pathogenesis of human immunodeficiency virus (HIV) infections have proceeded rapidly following the molecular cloning and nucleotide sequence analysis of the HIV genome. Correlation of biochemical and functional studies of HIV-infected cells with the HIV nucleotide sequence has allowed the identification and preliminary functional characterization of many HIV proteins. These include structural proteins (gag), viral enzymes (pol), and viral regulatory proteins (tat, art). Cloned HIV DNA segments have been utilized as probes for in situ nucleic acid hybridization to study the distribution of HIV-infected cells in acquired immunodeficiency syndrome (AIDS) and AIDS-related complex (ARC) patients. These studies have demonstrated the infection of macrophages as an important component of HIV-induced neurologic disease. Only very low numbers of HIV-infected lymphocytes can be identified in the peripheral blood of infected individuals. Thus, the mechanism of CD4 cell depletion in the pathogenesis of AIDS remain obscure.

Acquired Immunodeficiency Syndrome↗

Viral myocarditis: a paradigm for understanding the pathogenesis and treatment of dilated cardiomyopathy.

Although an etiologic link between viral myocarditis and idiopathic dilated cardiomyopathy has long been recognized, the actual extent of this relation has been uncertain. In this review, we examine recent developments in the molecular analysis of endomyocardial biopsy specimens, particularly techniques for gene amplification, which have unequivocally confirmed this relation and given us some insight into its significance. In addition, we show that viral myocarditis in a murine model is associated with spasm of the coronary microvasculature, leading to myocyte necrosis, fibrosis, calcification and cardiac dilation. These findings are similar to those seen in the hearts of genetically cardiomyopathic hamsters, rats and humans with hypertension and diabetes, rats after acute brain injury and models of Chagas' disease. Treatment of microvascular spasm with verapamil, captopril or alpha 1-adrenergic blocking agents appears to interrupt this pathway and has been shown to markedly impede the evolution of dilated cardiomyopathy in the genetic hamster model and a murine model of myocarditis. There is some suggestion that digitalis, though beneficial during cardiac decompensation, may actually be detrimental when administered during the early stages of myocardial disease. These experiments have led to a new paradigm for the pathogenesis of cardiomyopathy after viral myocarditis, as well as a general hypothesis for the pathogenesis of some types of dilated cardiomyopathy. They also suggest that the selection of therapeutic agents for some forms of dilated cardiomyopathy may differ significantly between the early and late stages of the disease.

Animals↗

Pathogenesis of humoral hypercalcemia of malignancy.

The three biologic activities most commonly associated with tumors that produce Humoral Hypercalcemia of Malignancy (HHM) include; 1) adenylate cyclase stimulating activity (PTH-like activity), 2) in vitro bone resorbing activity, and 3) transforming growth factor activity. The canine adenocarcinoma (CAC-8) model of HHM contains all three activities and the first two are inhibited by a PTH receptor antagonist. These data in light of the recent purification of PTH-related peptides from human tumors suggest that CAC-8 produces a PTH-related protein that is important in the pathogenesis of hypercalcemia. The CAC-8 tumor is a well characterized example of HHM and offers several advantages for further investigations on the pathogenesis of HHM: 1) transplantable tumor line from a spontaneous neoplasm in the dog, 2) tumor extracts contain the three biologic activities associated with HHM, 3) slow progressive growth rate in nude mice permits investigations on treatment of HHM, 4) increased bone resorption and formation in nude mice mimics the effects of PTH on bone, and 5) the only model of HHM that has been demonstrated to contain bone resorbing activity that can be inhibited by a PTH receptor antagonist.

Adenocarcinoma↗

The role of the neurotransmitters acetylcholine and noradrenaline in the pathogenesis of stress ulcers.

1. Adrenergic and cholinergic mechanisms seem to be involved in the pathogenesis of stress ulcers. 2. In this study, gastric ulcers were induced in rats by immobilization and cold. Prior intraperitoneal administration of both anticholinergic (atropine) as well as alpha-blocking medication (phenoxybenzamine) produced a very significant decrease in stress ulcers. 3. Additionally, using the technique of continuous intravenous perfusion in rats, acetylcholine was shown to have a gastric ulcerogenic effect, in contrast to noradrenaline. 4. It is concluded that acetylcholine is the peripheral mediator in stress ulcers, while noradrenaline intervenes at the encephalic level in stress ulcer pathogenesis.

Acetylcholine↗

Pathogenesis of scrapie is faster when infection is intraspinal instead of intracerebral.

Previous studies of mice infected peripherally with 139A scrapie showed that scrapie agent initially replicates outside the CNS and that invasion of the CNS occurs several weeks later by neural spread of infection along visceral autonomic fibres to the mid-thoracic cord, and thence to brain. Direct intracerebral infection of brain bypasses the need for extraneural replication and gives shorter incubation periods than peripheral routes. However, it was also found that the duration of the scrapie replication phase in brain, before clinical disease develops, is actually shorter with peripheral routes than with the intracerebral route. We have now investigated this surprising observation using the intraspinal route to reproduce just the neural phase of scrapie pathogenesis seen after peripheral infection. In studies of three strains of scrapie (263K, 139A and ME7) in either hamsters or mice, we have fulfilled the prediction that incubation periods should be shorter after intraspinal infection than after intracerebral infection. Detailed studies of 139A scrapie showed that the shorter incubation period by the intraspinal route could be accounted for by the shorter duration of the scrapie replication phase in brain before clinical disease developed. As a consequence, the severity of the vacuolar lesions in brain at the clinical stage of all three scrapie models was less after intraspinal infection than after intracerebral infection but the severities of vacuolation after intraspinal and intraperitoneal infection were remarkably similar. We speculate that (a) the site of injection (or of invasion) of the central nervous system determines which neural pathways become accessible for the spread of scrapie infection, and that (b) the duration of the neural phase of scrapie pathogenesis is related to the complexity of the pathways between the site of invasion and the clinical target areas in which, it is suggested, scrapie must replicate for disease to develop.

Animals↗

Pathogenesis and genetic control of resistance to the Sterne strain of Bacillus anthracis.

The pathogenesis of lethal infection by the nonecapsulated, toxigenic Sterne strain of Bacillus anthracis and the genetic basis of resistance were characterized in mice. Lethal doses of Sterne spores produced disease in susceptible mice similar to that caused by toxigenic and encapsulated B. anthracis. At the inoculation site, the mice developed an edematous exudate with large concentrations of bacilli and toxin. In the susceptible A/J strain, lethal infection was accompanied by systemic invasion and serum anthrax toxin levels increased in parallel with systemic bacterial concentrations and with the mortality rate. Host resistance to Sterne infection was associated with the ability to synthesize the complement component 5 (C5). All Sterne-resistant mouse strains had a functional gene (Hc) encoding C5, whereas susceptible mice were deficient in C5. A/J mice could be passively protected from lethal challenge by C5-positive serum but not by serum from C5-negative congenic mice. Also resistance was linked to production of C5 in individual backcross (97%) and F2 (98%) mice. The distribution pattern for recombinant inbred mice was consistent with a major role in host resistance of Hc or a closely linked locus, although other genes probably contribute. This mouse model will be useful in characterizing the pathogenesis of anthrax and testing the safety and efficacy of new anthrax vaccines.

Animals↗

Effects of immobilization stress on the pathogenesis of acute murine toxoplasmosis.

Stress modulates a variety of immune responses. We investigated the effects of immobilization stress on the pathogenesis of acute murine toxoplasmosis, an infection in which cell-mediated immunity is of major importance in host defense. Repetitive overnight immobilization beginning 3 days prior to infection enhanced (p less than 0.05) the mortality of mice infected with a virulent strain (C56) of Toxoplasma gondii (77% vs 15% mortality in restrained and control mice, respectively). Daily immobilization for 14 days prior to infection abrogated (p less than 0.05) the lethal effect of immobilization, suggesting an adaptive mechanism. To explore the effect of immobilization with a less virulent strain, the Me49 strain of T. gondii was studied. Acute infection with T. gondii Me49 resulted in anorexia and weight loss, while spleen size and respiratory burst activity of peritoneal exudate cells were enhanced (p less than 0.01). Immobilization (twice daily for 2 h) did not significantly alter survival or other clinical features of acute T. gondii infection. In addition, immobilization suppressed (p less than 0.05) phorbol myristate acetate-stimulated release of superoxide anion by peritoneal exudate cells in healthy naive mice, but not in infected mice. These findings indicate that immobilization stress can alter the pathogenesis of acute T. gondii infection in healthy mice, but the effect of this stress paradigm will be influenced, in part, by the timing of the immobilization and the virulence of the strain of T. gondii.

Animals↗

Therapeutic potential of vitamin E in the pathogenesis of spontaneous atherosclerosis.

Spontaneous atherosclerosis is largely an occlusive disease of medium-size arteries whose progression in a hyperlipidemic environment reflects chronic interactions among injury stimuli to the vessel wall and "responses to injury" by vascular tissue and certain blood components. Development of vessel lesions in animal models of spontaneous atherosclerosis and (at least in principle) in man largely reflects responses of three major cell types (vascular endothelial cells, vascular smooth muscle cells, monocytes-macrophages) as well as the content and distribution of lipids among various lipoprotein subclasses and the increased atherogenicity of modified (e.g., oxidized) lipoproteins. The severe clinical complications associated with spontaneous atherosclerosis, along with its rather common incidence in man, have focused attention on the prevention and therapy of this vascular disease state. Some pharmacological studies in animal models of spontaneous atherosclerosis and some retrospective epidemiological studies in man suggest that vitamin E, the principal (if not sole) lipid-soluble chain-breaking tissue antioxidant, might have therapeutic benefit as an antiatherosclerotic agent. This suggestion gains support from a variety of compelling in vitro evidence demonstrating direct influences of vitamin E on cells and lipoproteins likely involved in the pathogenesis of spontaneous atherosclerosis. Biochemical and cellular data indicate that the potential antiatherogenic activity of vitamin E could reflect its activities as a regulator of endothelial, smooth muscle, or monocyte-macrophage function, an inhibitor of endothelial membrane lipid peroxidation, a modulator of plasma lipid levels and lipid distribution among circulating lipoproteins, and a preventor of lipoprotein oxidative modification. On the other hand, there is a comparative lack of conclusive evidence from animal models regarding: (a) the importance to atherogenesis of vascular and cellular processes modulated by vitamin E; (b) the influence of vitamin E on these processes in vivo and, consequently, on the initiation/progression of spontaneous atherosclerosis. Therefore, pharmacologic investigation of vitamin E (and synthetic, vitamin E-like antioxidants) in nutritional and hyperlipidemic animal models of spontaneous atherosclerosis is required to establish whether any atherosclerotic impact is associated with vitamin E and, if so, what the mechanistic basis of the therapeutic benefit is. Such a line of experimental inquiry should also increase our understanding of the pathogenesis of atherosclerotic vessel disease per se.

Animals↗

E-selectin in the pathogenesis of experimental myocardial ischemia-reperfusion injury.

The role of E-selectin in the pathogenesis of an experimental model of myocardial ischemia-reperfusion injury was investigated. Pentobarbital anesthetized rats underwent left main coronary artery ligation (1 h) followed by reperfusion (1 h; MI/R). Sham operated rats were used as controls (sham MI/R). Myocardial ischemia-reperfusion injury reduced survival rate (50%), caused severe myocardial damage (necrotic area/area-at-risk 69.8 +/- 5%; necrotic area/total area = 56 +/- 7.6%), increased serum creatine phosphokinase activity (sham MI/R = 33 +/- 3 U/ml; MI/R = 215 +/- 13 U/ml), and elevated myeloperoxidase activity (investigated as an index of leukocyte adhesion and accumulation; sham MI/R = 0.11 +/- 0.02 U x 10(-3)/g tissue) in the area-at-risk (7.5 +/- 1.7 U x 10(-3)/g tissue) and in the necrotic area (7.8 +/- 2.2 U x 10(-3)/g tissue). Furthermore, MI/R rats had an increased pressure rate index, studied as a quantitative means for assessing myocardial oxygen demand. Administration of a hyperimmune serum containing antibodies against E-selectin significantly improved survival rate (80%), reduced myocardial injury (necrotic area/area-at-risk = 26.4 +/- 7%, P < 0.005; necrotic area/total area 19.1 +/- 2.8%, P < 0.005), lowered serum creatine phospokinase activity (85 +/- 5 U/ml, P < 0.001) and decreased myeloperoxidase activity in the area at risk (3.7 +/- 1.3 U x 10(-3)/g tissue, P < 0.001) and in the necrotic area (3.0 +/- 0.7 U x 10(-3)/g tissue). Finally, the administration of anti E-selectin antibodies improved the PRI in MI/R rats. The present data suggest that E-selectin in vivo plays a key role in the pathogenesis of myocardial ischemia/reperfusion injury.

Animals↗

Role of the paracrine liver endothelin system in the pathogenesis of CCl4-induced liver injury.

This study analyzed if the paracrine liver endothelin system participates in the pathogenesis of CCl4-induced hepatotoxicity. Wistar Kyoto rats were divided into four groups: a bosentan (mixed endothelin ETA and ETB receptor antagonist) treated group with CCl4 intoxication, a vehicle treated group with CCl4 intoxication, a nontreated control group and a bosentan treated control group. Hepatotoxicity was assessed by determination of alanine aminotransferase (ALT), aspartate aminotransferase (AST), lactate dehydrogenase (LDH) followed by histopathological examinations. Tissue endothelin-1 concentrations and expression of endothelin receptor subtypes were analyzed. The tissue levels of endothelin-1 in the liver of rats with CCl4 intoxication were significantly higher than those in normal rats. Scatchard analysis revealed no differences in the density and binding constant of endothelin ETA and ETB receptor between rats with CCl4 intoxication and controls. Bosentan treatment of rats undergoing CCl4 inhalation resulted in a significant protection against elevation of ALT, AST, LDH and bilirubin. Histopathological examination of live sections for necrotic, swollen and lipid-laden cells revealed findings that were in agreement with the serum enzyme data. In conclusion, this study showed that the paracrine endothelin system is involved in the pathogenesis of CCl4-induced hepatotoxicity and that the blockade of the stimulated liver endothelin systems reduces CCl4-induced liver injury.

Animals↗

Role of leukotriene B4 in the pathogenesis of hepatic ischemia-reperfusion injury in the rat.

A common feature to most models of ischemia-reperfusion injury is the accumulation of polymorphonuclear leukocytes (PMNs) into the post-ischemic tissue during the reperfusion period. Interventions that lead to decreased PMN infiltration protect against tissue injury and therefore a knowledge of the chemotactic mediators leading to PMN accumulation is essential to understanding the pathogenesis of the injury and to the development of successful therapeutic strategies. Leukotriene B4 (LTB4), a metabolite formed via the 5-lipoxygenase pathway from arachidonic acid, is one of the most potent chemotactic mediators known. We have investigated the formation of LTB4 in a well characterized model of hepatic ischemia-reperfusion injury in the rat and made use of a specific leukotriene biosynthesis inhibitor, L663,536, to determine the importance of LTB4 in the pathogenesis of the injury. LTB4 concentrations were measured with a specific and sensitive gas chromatographic-mass spectrometric method previously developed in our laboratory. In liver tissue LTB4 levels were below the detection limit of 20 pg/g before 45 min ischemia and did not increase during the first 6 h of reperfusion. However, at 15 h and 24 h reperfusion LTB4 concentrations had increased to levels 50-fold those in control liver (867 +/- 267 pg/g). The increase of plasma alanine aminotransferase (ALT) activities indicated two phases of injury, an initial phase during the first few hours of reperfusion, and a second more severe injury phase between 6 h and 24 h reperfusion. PMNs accumulated in tissue throughout the reflow period reaching 700 +/- 49 per 50 high power fields (HPF) at 24 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Alanine Transaminase↗

The role of plasma arachidonic acid metabolites in the pathogenesis and the prognosis of Henoch-Schönlein purpura.

Henoch-Schönlein Purpura (HSP) involve small vessel inflammation. Arachidonate biochemical pathways play an important role in the pathogenesis of vascular inflammation. The aim of this study was to investigate the change in the ratio of plasma arachidonic acid metabolites in the patients with HSP and evaluate the association between clinical activity and prostanoid activity in the acute phase of HSP. Plasma prostaglandin E2 (PGE2)-like activities were found to be 7.2 +/- 0.8 ng/ml in control group (n = 12) while it was 5.3 +/- 0.6 ng/ml in the patients with HSP (n = 12). Plasma leukotriene C4 (LTC4)-like activities were found to be 16.0 +/- 1.1 ng/ml in control while it was 30.9 +/- 4.3 ng/ml in the patients. The differences of LTC4-like activities and the LTC4/PGE2 ratios between the HSP patients and the controls were significant (p < 0.01, p < 0.001 respectively), but no significant difference was found in PGE2-like activities. Plasma LTC4-like activity and LTC4/PGE2 ratio were also significantly increased in the patients with high clinical score (p < 0.05, p < 0.02 respectively). These results suggested that not only cyclooxygenase products but also LTs may play an important role in vascular inflammation. Therefore LTC4/PGE2 ratio must be taken into consideration in the pathogenesis and the prognosis of HSP.

Adolescent↗

The role of the dystrophin-glycoprotein complex in the molecular pathogenesis of muscular dystrophies.

The dystrophin-glycoprotein complex is considered to be a major trans-sarcolemmal structure which provides a linkage between the subsarcolemmal actin cytoskeleton and the extracellular matrix component laminin. Recently, deficiency of the dystrophin-associated proteins has been shown to play an important role in the molecular pathogenesis of several forms of muscular dystrophy. These include Duchenne muscular dystrophy (DMD), symptomatic DMD carriers, Becker muscular dystrophy and severe childhood autosomal recessive muscular dystrophy with DMD-like phenotype prevalent in North Africa. In Fukuyama-type congenital muscular dystrophy (FCMD), the finding of abnormal expression of the dystrophin-associated proteins may provide a clue to its molecular pathogenesis. These recent findings indicate that the linkage between the subsarcolemmal cytoskeleton and extracellular matrix via the dystrophin-glycoprotein complex is critical for maintaining the integrity of muscle cell function.

Child↗

Pathogenesis of osteoporosis.

Fractures, the clinical outcome associated with osteoporosis, have a complex pathogenesis involving, in most cases, both trauma to the bone and increased skeletal fragility. Recent evidence also suggests that the geometry of the bone is important in determining fracture risk, and geometric properties are in part genetically determined. Skeletal fragility is largely determined by bone mass and the microstructure of bone. Loss of trabeculae and their connections has been well documented and undoubtedly contributes to risk of some fractures. Microdamage has also been shown to occur within the skeleton and could contribute to fragility. Peak bone mass is a major factor in determination of subsequent fracture risk and it has both genetic and environmental determinants. Twin studies have suggested a major genetic contribution and that a few genes may be responsible, but these genes have not been clearly identified. Nutrition, especially calcium intake, and exercise also contribute to the determination of peak bone mass and are especially important during the major period of bone acquisition up to the age of 18. Bone loss among women begins in the perimenopausal period, although loss from the hip begins earlier. The loss is associated with both estrogen and androgen concentrations. Later in life other factors such as the development of secondary hyperparathyroidism may contribute to the continued loss of bone. Males lose bone at about half the rate of females, but the underlying contributing factors are not well documented. The pathogenesis of osteoporotic fractures is complex, but this allows for the development of multiple interventions, which may reduce the frequency of such fractures.

Adult↗