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The pathogenesis of chorioretinal disease in onchocerciasis.

The pathogenesis of onchocercal chorioretinopathy is poorly understood. In this article, Philip Cooper, Ronald Guderian, Roberto Proaño and David Taylor discuss the important clinical, histological and epidemiological features of the resulting lesions that cause blindness, and review the numerous mechanisins that have been put forward to explain its pathogenesis. The pathogenesis of anterior segment disease, particulary sclerosing keratitis, has been reviewed in depth previously(1) and will not be discussed here.

Journal Article↗

Cutaneous secondary syphilis: preliminary immunohistopathologic support for a role for immune complexes in lesion pathogenesis.

A circulating immune complex-mediated pathogenesis for lesions of secondary syphilis has been postulated. Textbook descriptions of a lymphoplasmacytic histopathologic picture have contradicted a role for circulating immune complexes in lesion pathogenesis. Four patients with early cutaneous lesions of secondary syphilis were studied. All four patients had serum Raji cell and/or Clq binding assay evidence for circulating immune complexes. Three patients showed a neutrophilic vascular reaction on histologic study of early lesions. The patients studied had immunofluorescence microscopic evidence of immunoreactant deposition in dermal blood vessels (4 hours) and/or a neutrophilic vascular reaction (24 hours) after intradermal histamine injection. Dieterle staining of lesional tissue from all patients showed the presence of treponemal organisms in dermal blood vessels. This new preliminary evidence adds some support to a circulating immune complex-mediated pathogenesis of cutaneous lesions in human secondary syphilis.

Adult↗

Does an infrasonic acoustic shock wave resonance of the manganese 3+ loaded/copper depleted prion protein initiate the pathogenesis of TSE?

Intensive exposures to natural and artificial sources of infrasonic acoustic shock (tectonic disturbances, supersonic aeroplanes, etc.) have been observed in ecosystems supporting mammalian populations that are blighted by clusters of traditional and new variant strains of transmissible spongiform encephalopathy (TSE). But TSEs will only emerge in those 'infrasound-rich' environments which are simultaneously influenced by eco-factors that induce a high manganese (Mn)/low copper (Cu)-zinc (Zn) ratio in brains of local mammalian populations. Since cellular prion protein (PrPc) is a cupro-protein expressed throughout the circadian mediated pathways of the body, it is proposed that PrP's Cu component performs a role in the conduction and distribution of endogenous electromagnetic energy; energy that has been transduced from incoming ultraviolet, acoustic, geomagnetic radiations. TSE pathogenesis is initiated once Mn substitutes at the vacant Cu domain on PrPc and forms a nonpathogenic, protease resistant, 'sleeping' prion. A second stage of pathogenesis comes into play once a low frequency wave of infrasonic shock metamorphoses the piezoelectric atomic structure of the Mn 3+ component of the prion, thereby 'priming' the sleeping prion into its fully fledged, pathogenic TSE isoform - where the paramagnetic status of the Mn 3+ atom is transformed into a stable ferrimagnetic lattice work, due to the strong electron-phonon coupling resulting from the dynamic 'Jahn-Teller' type distortions of the oxygen octahedra specific to the trivalent Mn species. The so called 'infectivity' of the prion is a misnomer and should be correctly defined as the contagious field inducing capacity of the ferrimagnetic Mn 3+ component of the prion; which remains pathogenic at all temperatures below the 'curie point'. A progressive domino-like 'metal to ligand to metal' ferrimagnetic corruption of the conduits of electromagnetic superexchange is initiated. The TSE diseased brain can be likened to a solar charged battery on continuous charge; where the Mn contaminated/Cu depleted circadian-auditory pathways absorb and pile up, rather than conduct the vital life force energies of incoming ultra violet, acoustic and geomagnetic radiation. Instead of harnessing these energies for the body's own bio-rhythmic requirements, an infrasonic shock induced metamorphosis of the Mn atom intervenes; initiating an explosive pathogenesis that perverts the healthy pathways of darkness and light; Cu prions are replaced by hyperpolarized Mn 3+ prions that seed self perpetuating 'cluster bombs' of free radical mediated neurodegeneration. TSE ensues.

Animals↗

Towards a greater understanding of the pathogenesis of holoprosencephaly.

Holoprosencephaly is a malformation of the cerebral hemispheres resulting in the absence of the inter-hemispheric fissure along with other defects of brain development. Frequently midline defects of the craniofacial structures are also present. This malformation sequence has been of interest for many years because of the well recognized genetic and environmental pathogeneses, although the molecular pathogenesis remained elusive. Recent studies have begun clarifying the molecular pathogenesis of holoprosencephaly. Herein is reviewed the syndromes associated with holoprosencephaly, the pathology of this disorder, genetic and environment factors, and a current understanding of the molecular pathogenesis of this disorder.

Animals↗

Comparison of anti 60 and 52 kDa SS-A/Ro antibodies in the pathogenesis of cutaneous lupus erythematosus.

Anti SS-A/Ro antibodies are involved in the pathogenesis of cutaneous lupus erythematosus (CLE) in a part through antibody dependent cellular cytotoxicity (ADCC). However, it is still obscure which and how anti 60 and anti 52 kDa Ro antibodies are involved. To address the issue, we examined both types of anti Ro antibodies of sera from patients with systemic LE (SLE) or discoid LE (LE). The titer of anti 60 kDa antibody in SLE was significantly much higher than that of DLE or control. The positive ratio of DLE showed more higher tendency than control, but it was not statistically significant. The similar tendency was observed in the titer of anti 52 kDa antibody. An association between the anti 60 kDa antibody and the anti 52 kDa antibody was statistically significant in SLE patients. Although the relative index (RI) was statistically significant in DLE, they included many negative sera, which biased the statistics. Both anti 60 kDa antibody and anti 52 kDa antibody could induce significant ADCC of ultraviolet B (UVB) light-irradiated keratinocytes from neonatal foreskins and/or normal adults, in which anti 60 kDa antibody showed higher cytotoxicity than anti 52 kDa antibody. The autologous combination studies (keratinocytes and monospecific anti 60 or anti 52 kDa antibody from patients) suggested anti 60 kDa antibody was more potent to induce ADCC activity than anti 52 kDa antibody. Taken together, it is likely that anti 60 kDa antibody dependent keratinocyte damage plays more significant role in the pathogenesis of SLE skin lesions than anti 52 kDa dependent damage. However, both type antibodies seemed to have little contribution to the pathogenesis of DLE skin lesion.

Adult↗

Role of free oxygen radicals and prostanoids in the pathogenesis of Henoch-Schönlein Purpura.

The pathogenesis of Henoch-Schonlein Purpura (HSP) is still controversial. The aim of our study was to investigate the role of oxidative stress and cyclooxygenase (CO) pathway products in the pathogenesis of HSP. In order to investigate this, malondialdehyde (MDA) levels, indicating lipid peroxidation, prostaglandin E (PGE)-like activity as inflammatory mediator and vitamin E (vit-E) levels indicating anti-oxidant status were studied in a group of 10 children with HSP (five girls and five boys, aged 6-21 years, mean 10.7 years), both in the acute and recovery phase of the disease and in five age and sex-matched healthy children as a control group. The patients were also grouped into low and high clinical score groups. Plasma levels of MDA and PGE-like activity were significantly elevated in the active phase of HSP compared to the recovery phase. Vit-E levels were significantly reduced in the active phase compared to the recovery phase. The plasma levels of PGE-like activity of the patients obtained in the active phase were significantly higher than the levels of the control group, whereas the levels of the recovery phase were significantly lower than in the control group. No such difference between the controls and MDA and vit-E levels in the patient group was shown. No correlation between the clinical scores and the parameters studied could be found. Our findings indicate that oxidant stress and CO pathway products may play a role in the pathogenesis of HSP.

Child↗

The use of animal infection models to study the pathogenesis of melioidosis and glanders.

The use of animal infection models is central to the study of microbial pathogenesis. In combination with genetic, immunological and antigen purification techniques, much can be learned regarding the pathogenesis of diseases caused by microorganisms. This update focuses on the recent use of animal infection models to study the pathogenesis of melioidosis and glanders.

Animals↗

Gene expression profiles of microvascular endothelial cells after stimuli implicated in the pathogenesis of vasoocclusion.

Altered gene expression in endothelial cells interacting with sickle red blood cells (RBC) and other blood components, in particular the pro-inflammatory cytokines, is an essential step in the pathogenesis of vasoocclusive crises in sickle cell disease (SCD). Using cDNA arrays, we monitored gene expression profiles of human lung microvascular endothelial cells (HMVEC-L) after stimuli that are likely involved in the pathogenesis of vasoocclusion. We detected increased expression of multiple genes in HMVEC-L after their exposure to pro-inflammatory cytokines TNFalpha and IL-1beta and to RBC with increased external exposure of phosphatidylserine and RBC from a patient with SC hemoglobin. While some of these genes have previously been implicated in vascular damage, many represent new targets for investigation of the pathogenesis of vasoocclusion in SCD.

Cells, Cultured↗

Epidemiology, pathogenesis, and treatment of the common cold.

OBJECTIVE: Reading this article will reinforce the reader's knowledge of the pathogenesis of the common cold. The rationale for current and potential therapies for the common cold are reviewed in the context of current concepts of the pathogenesis of these illnesses. DATA SOURCES AND STUDY SELECTION: A MEDLINE literature search was done using the search terms common cold, rhinovirus, and viral respiratory infection. The search was restricted to the English language. Articles were selected for review if the title and/or abstract suggested the content was relevant to the subject of this review. The bibliographies of selected articles were used as a source of additional literature. RESULTS: Recent studies suggest that the host response to the virus is an important contributor to the pathogenesis of the common cold. Inflammatory mediators, especially the pro-inflammatory cytokines, appear to be an important component of this response and present an attractive target for new interventions for common cold therapies. Currently available treatments for the common cold have limited efficacy against specific symptoms. These therapies should be selected to treat the specific symptoms that are perceived to be the most bothersome by the patient.

Adult↗

Pathogenesis of asthma.

The conception of the pathogenesis of a disease is probably as important in determining the selection of therapies as is the evidence provided by outcome studies of their efficacy. The recent evolution in our understanding of the pathogenesis of asthma has nicely paralleled advances in clinical research on new forms of treatment. This evolution has occurred so smoothly that we may not be fully aware how far it has taken us. Airflow obstruction is still regarded as the fundamental cause of the characteristic asthmatic symptoms of shortness of breath, chest tightness, and wheezing, while the factors leading to airflow obstruction are still assumed to include spasm of airway smooth muscle, thickening of the airway wall, and inspissation of viscid plugs of mucus in the airway lumen. What is new is the recognition of asthma as a chronic disease of the lower airways associated with characteristic inflammatory changes (involving lymphocytes, mast cells, and eosinophils), and possibly irreversible "remodeling" of the airways (by deposition of collagen and proteoglycans, proliferation and transformation of resident cells, and infiltration with inflammatory cells). This modern conception of asthma differs dramatically from the former perception of the disease as an episodic illness characterized by disturbance of the contractile function of airway smooth muscle. The new interpretation has important implications not just for the development of future therapies based on the inflammatory mechanisms involved in the pathogenesis of asthma, but also for the ways in which current therapies should be used.

Asthma↗

Current studies on the pathogenesis of melioidosis.

Burkholderia pseudomallei is a major cause of bacterial septicemias in many parts of the world, particularly Thailand; the known geographic range of the organism appears to be enlarging as awareness of the organism and the disease it causes--melioidosis--increases. B. pseudomallei is intrinsically resistant to most antibiotics, and our knowledge of B. pseudomallei pathogenesis is lacking. Thus, the long-term objective of our research is to define at a molecular level the pathogenesis by combining genetic, immunologic, and biochemical approaches with animal model studies. Basic studies on B. pseudomallei pathogenesis are acutely needed to provide a knowledge base to rationally design new modes of therapy directed against this organism.

Animals↗

Vascular pathogenesis of normal-tension glaucoma: a possible pathogenetic factor, other than intraocular pressure, of glaucomatous optic neuropathy.

Elevated intraocular pressure is significant in the pathogenesis of glaucomatous optic neuropathy in glaucoma, however a number of studies suggest that pressure-independent factor(s) are also associated with the pathogenesis. In this article, the significance of vascular pathogenesis in glaucoma is discussed. A brief overview of substances used to treat glaucoma, independent of an effect on intraocular pressure, such as calcium channel blockers, is also discussed.

Animals↗

Genetic analyses of gene function and pathogenesis of murine cytomegalovirus by transposon-mediated mutagenesis.

Murine cytomegalovirus (MCMV) has a linear genome of 230 kb and encodes more than 170 genes, many of which have not been extensively studied for their functions in pathogenesis in vivo. A Tn3-based transposon was constructed and used to generate MCMV mutants by disrupting viral gene targets. The functions of the mutated genes were investigated by studying the viral mutants in cultured cells and in immunocompetent Balb/c and immunodeficient SCID mice. A pool of MCMV mutants that contained the transposon sequence randomly inserted at the viral genome was generated. Studies of several mutants (e.g. a viral mutant with the transposon inserted at open reading frame m09) in cultured cells and in mice indicate that the presence of the transposon sequence per se in the viral genome does not significantly affect viral growth in vitro and in vivo. Moreover, the genome structures of the viral mutants, including the transposon insertion regions, were stable during replication in cultured cells and in animals. Several viral mutants (e.g. a viral mutant with the transposon at M27) that are attenuated in growth and virulence in animals were identified. These results suggest that the genes mutated in these viral mutants may be important for viral virulence and pathogenesis. The Tn3-based system may be a useful tool for the systematic construction of CMV mutants and for studies of CMV gene functions in viral replication in vitro and in pathogenesis in vivo.

Animals↗

Activation of the JNK-AP-1 signal transduction pathway is associated with pathogenesis and progression of human osteosarcomas.

Osteosarcomas represent the most common primary malignant bone tumors; however, comprehension of the molecular mechanisms underlying their pathogenesis is far from thorough. Studies in cultured cells have demonstrated that the c-Jun N-terminal kinase (JNK) signal transduction pathway participates in the proliferation, differentiation, and apoptosis of osteoblasts. Phosphorylated JNKs activate the oncoprotein c-Jun, which is known to form the activator protein-1 (AP-1) transcription factor as a homo- or heterodimer. c-Jun's principal dimerization partner is c-Fos, which participates in the differentiation and function of osteoblasts and in the pathogenesis of osteosarcomas. A similar role for the JNK cascade in the malignant transformation of human osteoblasts and in the generation of osteosarcomas has not been documented. Our study addressed the possibility that a functional upregulation of the JNK pathway is implicated in the pathogenesis of osteosarcomas. To this end, we employed immunohistochemistry to examine normal bone and osteosarcoma cells in paraffin-embedded sections from 56 patients with high-grade tumors and 15 patients with low-grade tumors. We assessed the protein levels of the two major JNK isoforms (JNK1 and JNK2); their phosphorylated-hence activated-species, p-JNK; their substrate, c- Jun; its phosphorylated (activated) form, pc-Jun; and c-Jun's heterodimeric partner, c-Fos. We also examined the immunohistochemical profile of the alpha chain of the nascent polypeptide-associated complex (alpha-NAC), an osteoblast-specific AP-1 coactivator that potentiates the transcriptional activity of the c-Jun/c-Jun homodimer. Positive immunostaining for JNK1, JNK2, p-JNK, c-Jun, pc-Jun, c-Fos, and alpha-NAC was observed in 86, 93, 94, 99, 97, 99, and 97.5% of the samples, respectively, whereas normal bone was devoid of these immunoreactivities. The cellular levels of all proteins were significantly correlated to each other (P < 0.001 for each correlation). Moreover, significantly higher expression levels of all proteins were detected in high-grade tumors compared to levels in low-grade ones. The observed expression profile of alpha-NAC implies that the active AP-1 in human osteosarcomas most likely comprises c-Jun/c-Jun homodimers. When cellular levels of the JNK pathway components and c-Fos were evaluated as possible biological markers of tumor grade, high expression of c-Jun and abundant pc-Jun predicted a high-grade tumor. Our findings provide novel evidence that the JNK signaling pathway is functionally operative in the malignant transformation of osteoblasts and the subsequent development and progression of human osteosarcomas. Evaluation of c-Jun expression and JNK-dependent activation may facilitate an improved prediction of the tumor's clinical behavior and potentially be exploited in designing patient-tailored treatment regimens.

Adolescent↗

[Canine panosteitis: an idiopathic bone disease investigated in the light of a new hypothesis concerning pathogenesis. Part 1: Clinical and diagnostic aspects].

Panosteitis, an idiopathic bone disease of young dogs, was investigated in the light of a new, empirically based hypothesis governing its pathogenesis. Extensive clinical observations suggest a close relationship between the incidence of this disease and the commercialization of various protein-rich, high-calorie dog foods. The theory of an "osseous compartment syndrome" provides a hypothetical pathogenesis, which corroborates this findings. An excessive accumulation of protein causes intraosseous edema due to its osmotic effects. Because bone is a rigid compartment, this leads to an increase in intramedullary pressure and compression of blood vessels. Subsequent osseous ischemia leads to a deficient metabolic state (decreased oxygenation, inadequate influx of nutritive substances, local acidosis, decreased removal of metabolites, disruption of local biochemical processes, etc.), and a vicious circle is created due to the resulting local inflammation. The disease is aggravated by increased metabolism due to excessive physical activity. Within the context of a pilot study, clinical, radiographic, scintigraphic and thermographic examinations and a therapeutic trial with benzopyron were carried out. In addition, more modern investigative tools, including osteomyelography, magnetic resonance tomography and intraosseous pressure measurements were used to provide objective data concerning the pathogenesis of panosteitis. In most cases, clinical remission was seen within days of monotherapy with the proteolytic substance, benzopyron (Cumartrin). This finding appears to corroborate our hypothesis.

Animal Feed↗

Longitudinal follow up of SIVmac pathogenesis in rhesus macaques of Chinese origin: emergence of B cell lymphoma.

Two subspecies of rhesus (Rh) macaques, the Chinese (Ch) and Indian (Ind) subspecies were infected intravenously with 100TCID50 SIVmac239. CD4+, CD8+ T cells, plasma viral loads, depletion of intestinal lymphocytes with memory phenotype, humoral immune responses and clinical courses were monitored for 600 days. The pathogenesis of SIVmac was also compared with primary human immunodeficiency virus (HIV) infection of humans. Plasma viral loads in Ch Rh were lower in the acute and chronic phases compared with Ind Rh. SIVmac pathogenesis in Ch Rh was closer to virus loads in untreated HIV infected humans. Ch Rh had higher CD4/CD8 ratios, stronger antibody responses and interestingly, less depletion of intestinal memory CCR5+ CD4+ T lymphocytes compared with Ind Rh. One Ch Rh developed B cell origin lymphoma at 570 days post-infection, the first such report in this subspecies. Three of four Ind Rh developed AIDS within 6 months. The findings indicate that Ch Rh are more resistant to SIVmac pathogenesis compared with Ind Rh and that Ch Rh paralleled HIV-1 infections in untreated adult humans. The SIVmac infected Ch Rh subspecies are an acceptable model for HIV/AIDS.

Aging↗

The localisation of sorbitol pathway activity in the rat renal cortex and its relationship to the pathogenesis of the renal complications of diabetes mellitus.

A series of in vivo and in vitro investigations was performed to examine the localisation of sorbitol pathway activity in the rat renal cortex and to investigate the possible relation that the acculumation of sorbitol pathway intermediates in renal cortical tissue may have to the pathogenesis of renal complications in diabetes mellitus. Neither of the sorbitol pathway intermediates, sorbitol or fructose, were detected either in intact glomeruli which had been isolated from rats rendered chronically diabetic with streptozotocin, or in metabolically active glomeruli which had been incubated in vitro in high glucose media. Such data agreed with previously published observations that the enzyme aldose reductase is not present in renal glomeruli, and suggested that changes in sorbitol pathway activity cannot be directly related to the pathogenesis of diabetic glomerulosclerosis. Sorbitol was detected in low concentrations (3.1 mu-mol/g protein) in cortical tubules which had been isolated from the renal cortex of rats rendered chronically diabetic with streptozotocin. This concentration of sorbitol was higher than that in the intact renal cortex of the diabetic animal (0.3 mu-mol/g protein) or in the cortical tubules of non-diabetic animals (0.5 mu-mol/g protein). It is apparent that the renal cortical tubule is a major site of sorbitol pathway activity in the renal cortex. However, there is presently no obvious causal relationship between the accumulation of such relatively low concentrations of sorbitol in the renal cortical tubule and the pathogenesis of glomerulosclerosis or cortical tubular lesions in diabetes.

Animals↗

Entry is a rate-limiting step for viral infection in a Drosophila melanogaster model of pathogenesis.

The identification of host factors that control susceptibility to infection has been hampered by a lack of amenable genetic systems. We established an in vivo model to determine the host factors that control pathogenesis and identified viral entry as a rate-limiting step for infection. We infected Drosophila melanogaster cells and adults with drosophila C virus and found that the clathrin-mediated endocytotic pathway is essential for both infection and pathogenesis. Heterozygosity for mutations in genes involved in endocytosis is sufficient to protect flies from pathogenicity, indicating the exquisite sensitivity and dependency of the virus on this pathway. Thus, this virus model provides a sensitive and efficient approach for identifying components required for pathogenesis.

Animals↗