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W R Anderson

Publications and source records attributed to W R Anderson.

At least 37 records · Page 2Linked to original sources

Correlative transmission and scanning electron microscopy study of microglia activated by interferon-gamma and tumor necrosis factor-alpha in vitro.

Microglia, in response to cytokines, demonstrate a number of enhanced biochemical and functional properties which reflect a state of activation. In this study, we evaluated the ultrastructural alterations of murine microglia that were associated with activation by interferon-gamma (IFN-gamma) plus tumor necrosis factor-alpha (TNF-alpha). Microglial cell culture treated with these cytokines generated significant amounts of the free radical nitric oxide (NO), a biochemical marker of activation. Correlative transmission (TEM) and scanning (SEM) electron microscopic analyses of these cytokine-activated microglia demonstrated two prominent features: proliferation of cell processes and increased formation of membrane bound dense bodies typical of lysosomes. Since activated microglia have been implicated in the pathogenesis of a number of neurodegenerative diseases, application of the ultrastructural findings in the in vitro study may prove useful in determining the state of activation of microglia in brain specimens from patients with these neurological disorders.

Animals↗

CD14 receptor-mediated uptake of nonopsonized Mycobacterium tuberculosis by human microglia.

This study was carried out to determine the role of CD14 receptors in the uptake of nonopsonized Mycobacterium tuberculosis by human microglia. Treatment of microglial cell cultures with antibodies to CD14 or with soluble CD14 significantly blocked infection by M. tuberculosis H37Rv, suggesting that CD14 receptors could facilitate entry of nonopsonized tubercle bacilli into macrophages within the brain.

Antigens, CD↗

Improved brain delivery and in vitro activity of zidovudine through the use of a redox chemical delivery system.

OBJECTIVE: Improved therapy for AIDS dementia and related encephalopathies may be achieved through enhanced delivery of effective antiretroviral agents to the central nervous system (CNS). DESIGN: A novel chemical delivery system (CDS) was used, which utilized redox trapping of drugs in the brain. This study was aimed at defining the pharmacokinetics of a zidovudine (ZDV)-CDS as well as establishing its in vitro antiviral efficacy against HIV in both lymphocytes and in a neural cell line. RESULTS: ZDV-CDS administered parenterally to rats produced significantly higher brain levels of ZDV [area under the curve (AUC), 425 micrograms x min/g] than equimolar ZDV (AUC, 13.5 micrograms x min/g). Native ZDV uptake was minimal after 1 h when analyzed in CEM lymphocytes and in SKNMC neuroblastoma cell line. By contrast, marked uptake of ZDV-CDS was followed by biochemical conversion of ZDV-CDS to its main metabolites (ZDV-CDS quaternary salt, ZDV-Q+, and native ZDV). These improved uptake profiles were associated with greater in vitro virucidal effect. ZDV-CDS at 0.5 microM was 80% more effective than ZDV in suppressing p24 production in a lymphocyte culture infected with 6000 median tissue culture infective doses (TCID50) of the HIV N1T strain and 50% more effective at 0.05 microM. Furthermore, syncytia formation was completely suppressed at a ZDV-CDS dose of 0.5 microM (600 TCID50) but native ZDV at the same dose was ineffective. Finally, while ZDV (at 0.5 microM) is not active in reducing viral replication in an SKNMC neural cell line, the ZDV-CDS complex significantly suppressed p24 synthesis. CONCLUSION: The ZDV-CDS complex is capable of delivering higher ZDV doses to lymphocytes and neural cells, with improved antiretroviral activity.

Acquired Immunodeficiency Syndrome↗

Effect of molecular manipulation on the estrogenic activity of a brain-targeting estradiol chemical delivery system.

The structural parameters important for biological efficacy of an estradiol chemical delivery system (CDS), a brain-targeting approach based on redox trapping, were examined by molecular manipulation of a prototype derivative, estradiol 17-(1-methyl-1, 4-dihydronicotinate) (E2-CDS). Seven E2-CDS analogs in which the N-methyl substituent was altered were prepared including N-substituted short and medium straight chain alkyl, short branched chain alkyl, and aralkyl derivatives. Chemical and in vitro testing indicated that the most stable derivative was the N-benzyl E2-CDS. The analogs were tested in an intact male rat model to assess various central estrogenic manifestations including the rate of body weight gain, serum E2 and testosterone concentrations, and seminal vesicle, prostate and pituitary weight changes. Results indicated that all prepared CDS derivatives exerted some degree of central estrogenization with the most potent compounds being the parent E2-CDS and its ethyl homologue. Importantly, while the ethyl E2-CDS was equipotent to E2-CDS in various biological assays, it did not significantly elevate serum E2 compared to vehicle control at day 14.

Animals↗

Role of cytokines in lipopolysaccharide-induced functional and structural abnormalities of astrocytes.

The mechanism underlying meningitis-associated brain injury is unclear. This study investigated the hypothesis that lipopolysaccharide (LPS) alters astrocyte function and structure via the release of proinflammatory cytokines. In enriched murine astrocyte cultures, LPS inhibited (P < 0.05) glutamine synthetase activity, 3H-gamma aminobutyric acid uptake, and DNA synthesis; LPS also induced ultrastructural changes. Antibodies to tumor necrosis factor-alpha, interleukin-1, and interleukin-6 blocked (P < 0.05) in part the LPS-induced inhibition of astrocyte function. Also, treatment of astrocyte cultures with cytokines significantly altered these astrocyte functions and ultrastructure. Taken together, the present findings support the hypothesis that LPS affects astrocyte function and structure via the release of proinflammatory cytokines, especially tumor necrosis factor-alpha.

Animals↗

Morphine amplifies HIV-1 expression in chronically infected promonocytes cocultured with human brain cells.

Previous studies have shown that morphine promotes the replication of human immunodeficiency virus (HIV)-1 in peripheral blood mononuclear cell cocultures. In the present study, we tested the hypothesis that morphine would amplify HIV-1 expression in the chronically infected promonocytic clone U1 when cocultured with lipopolysaccharide-stimulated human fetal brain cells. Marked upregulation of HIV-1 expression was observed in these cocultures (quantified by measurement of HIV-1 p24 antigen levels in supernatants), and treatment of brain cells with morphine resulted in a bell-shaped dose-dependent enhancement of viral expression. The mechanism of morphine's amplifying effect appears to be opioid receptor-mediated and to involve enhanced production of tumor necrosis factor-alpha by microglial cells.

Acquired Immunodeficiency Syndrome↗

Na,K-ATPase is decreased in hippocampus of kainate-lesioned rats.

The effects of intraventricular injection of kainic acid on the Na,K-ATPase (Na,K pump) were examined in discrete pyramidal cell regions of rat hippocampus. [3H]Ouabain binding was used to quantitate Na,K-ATPase catalytic subunits and in situ hybridization was used to determine Na,K-ATPase mRNA levels. Large decreases were found in both [3H]ouabain binding and alpha 3 isoform mRNA in hippocampus areas, especially in the CA3 pyramidal cell layer, which sustains heavy cell losses as a result of bilateral, intraventricular injection of kainic acid. Substantial decreases in the high affinity component of ouabain binding and in the alpha 3 isoform mRNA (but not isoforms for other Na,K-ATPase subunits) were also observed in the CA1 region of hippocampus, an area preserved in this model. High affinity [3H]ouabain binding was decreased 25-33% in the stratum pyramidale and stratum radiatum after treatment with kainic acid, and alpha 3 mRNA was decreased by 26-50%. To further characterize the decrease in alpha 3 mRNA, animals were killed at 1, 2, and 3 weeks after injection of kainate and results show a large decrease in alpha 3 mRNA only at 2 weeks recovery time. While the pathology underlying temporal lobe epilepsy is unclear, changes in the Na,K-ATPase may be involved in abnormal firing characteristics of cells in epileptic tissue.

Animals↗

De novo immunotactoid glomerulopathy of the renal allograft: possible association with cytomegalovirus infection.

A 59-year-old man with end-stage renal failure from systemic vasculitis developed de novo immunotactoid glomerulopathy of the renal allograft, with clinical evidence of hematuria, proteinuria, and acute renal failure 6 weeks after cadaveric renal transplantation. The morphologic lesion of immunotactoid glomerulopathy and the clinical renal disease resolved during the following 2 weeks. The disease had not recurred in the subsequent 20 months of posttransplant follow-up. During the same period, the patient also developed systemic cytomegalovirus (CMV) infection with viremia, acute hepatitis, and bone marrow suppression. The clinical manifestations of CMV illness and the renal disease have subsided following the withdrawal of immunosuppressive agents and simultaneous treatment with ganciclovir. Although there is no direct proof that CMV infection was responsible for the development of immunotactoid glomerulopathy, the circumstantial evidence in this patient strongly suggests that these two disease were temporally linked. To our knowledge, the association between CMV infection and immunotactoid glomerulopathy has not been documented previously.

Cytomegalovirus Infections↗

Nitric oxide production and neurotoxicity mediated by activated microglia from human versus mouse brain.

Recent studies indicate that human macrophages lack a high-output inducible nitric oxide synthase (NOS) antimicrobial system. In the present study, microglial cells derived from fetal human versus neonatal mouse brain were compared in a coculture assay of human and murine neuronal cell injury. Neurotoxicity (reflected by lactate dehydrogenase release and impaired neuronal uptake of [3H] gamma-amino butyric acid) and nitric oxide (NO) production (assessed by measurement of nitrite) were observed only in cocultures containing interferon (IFN)-gamma-lipopolysaccharide (LPS)-stimulated murine microglia. Cultures of purified human fetal microglia, however, did produce low levels of NO upon stimulation with IFN-gamma-LPS. These findings support the proposal that human macrophages have an inefficient IFN-gamma-inducible NOS and suggest that in tissues, such as brain, this deficiency could be advantageous for neighboring cells.

Aged↗

Pulmonary neuroendocrine cells in pediatric lung disease: alterations in airway structure in infants with bronchopulmonary dysplasia.

Despite four decades of investigation, the function of pulmonary neuroendocrine cells (NEC) remains unclear. Since NEC secretory products may influence airway growth or differentiation or alter airway smooth muscle tone, increased numbers of NEC seen in bronchopulmonary dysplasia (BPD) may be partially responsible for the genesis of the structural and pathophysiological alterations seen in this disease state. Changes in airway structure were studied in six infants dying with BPD and six conceptional age-matched control infants dying of noncardiopulmonary disease. Changes in bombesin-, calcitonin-, and serotonin-immunoreactive NEC were quantified in lung specimens from three infants who died at 2 months of age with severe BPD and three conceptional age-matched controls. There were no differences in either bronchiolar or bronchial airway epithelial areas, but significant increases in bronchiolar (1.8-fold) (P < 0.001) and especially bronchial smooth muscle (2.5-fold) (P < 0.001) were documented in infants with BPD. Few bombesin-, calcitonin-, and serotonin-immunoreactive cells were identified in cartilaginous airways; however, there was a clear increase in the total number of bronchiolar immunoreactive cells in infants with severe BPD (28.5 +/- 11.2 cells/mm airway epithelium) compared to control infants (4.5 +/- 4.9) (P < 0.05). Our results confirm that airway wall composition does change in BPD, but there is either no or an inverse correlation between NEC number and airway epithelial and smooth muscle areas and cell numbers. The role of NEC secretory products in airway smooth muscle growth and function requires further investigation.

Bombesin↗

Activated microglia inhibit multiplication of Toxoplasma gondii via a nitric oxide mechanism.

The role of microglia in host defense against Toxoplasma gondii is unknown. In the present study, we investigated the multiplication of T. gondii tachyzoites in murine microglial cell cultures. T. gondii multiplied readily in these cells; multiplication was prevented when microglia were activated with interferon-gamma plus lipopolysaccharide, a treatment that also upregulates nitric oxide (NO) synthase activity. Simultaneous treatment of microglial cell cultures with activation signals and the NO synthase inhibitor NG-monomethyl-L-arginine (NGMA) prevented the antitoxoplasmic activity. Transmission electron microscopic analysis demonstrated degenerative tachyzoites in activated microglia but not in control or NGMA groups. These findings support the view that the host defense function of activated microglia against T. gondii involves generation of the free radical NO.

Animals↗

Value of liver biopsy in the evaluation and management of chronic liver disease in renal transplant recipients.

PURPOSE: Liver disease is a frequent complication in renal transplant recipients. To understand the nature and progression of hepatic disease in these patients, we performed percutaneous biopsies in 77 subjects who had chronic liver dysfunction in the posttransplant period. The purpose of the present investigation is to delineate the morphologic spectrum of chronic liver disease in the renal allograft recipients and to characterize the clinical and histologic progression of each of the different morphologic forms. PATIENTS AND METHODS: Between 1971 and 1990, 915 patients received renal transplants at the Hennepin County Medical Center, Minneapolis, Minnesota. One hundred nineteen (13%) of them had abnormal liver function that persisted for longer than 6 months. Percutaneous liver biopsies were performed in 77 of these patients, but adequate tissue for histologic evaluation was available in only 72. After the biopsy, the clinical and histologic course of each subject was monitored in relation to the baseline hepatic morphology. To assess the predictive value of serum enzymes in diagnosing the histologic lesions, the level of serum enzymes at the time of the biopsy was correlated with the morphologic diagnosis. In addition, several clinical, biochemical, etiologic, and histologic variables were screened for their association with histologic progression to liver cirrhosis. RESULTS: The morphologic diagnosis in the 72 specimens evaluated at baseline was as follows: fat metamorphosis in 8 (11%), chronic persistent hepatitis in 20 (28%), early chronic active hepatitis in 20 (28%), advanced chronic active hepatitis in 15 (21%), and hemosiderosis in 9 (12%). There was no statistical correlation between the serum enzyme levels and the histologic diagnosis. During a mean follow-up of 5.7 +/- 3.9 years, clinical progression to hepatic failure and death occurred in 35% of patients with early chronic active hepatitis, 55% with hemosiderosis, and 60% with advanced chronic active hepatitis. None of the patients with the morphologic diagnosis of fat metamorphosis or chronic persistent hepatitis died as a consequence of hepatic failure. Follow-up liver specimens were obtained in 34 (47%) of the original 72 subjects after a mean interval of 4.5 +/- 4.3 years. Of the 15 patients with the initial diagnosis of early chronic active hepatitis, 9 (60%) showed morphologic transition to advanced chronic active hepatitis, and in 1 of the 5 patients with hemosiderosis (20%), the lesion had resolved after successive phlebotomies. During the follow-up, 60% with early chronic active hepatitis (9 of 14), 66% with hemosiderosis (2 of 3), and 100% with advanced chronic active hepatitis (4 of 4) showed histologic progression to liver cirrhosis. On the contrary, no morphologic alterations were observed in the follow-up specimens of patients with fat metamorphosis or chronic persistent hepatitis. Of the different variables screened for their association with histologic progression, older age at transplant, female sex, and morphologic diagnosis of advanced chronic active hepatitis were found to be significant. CONCLUSION: Histologic diagnosis can be a useful marker in predicting the course of chronic liver disease after renal transplantation. Liver biopsy should be incorporated into the evaluation and management of chronic liver disease in renal transplant recipients.

Adult↗

Anatomical and morphological evaluation of pacemaker lead compression.

In recent years, pacemaker lead failure due to compressive damage has been reported with increasing frequency. To document the mechanism of this failure, we evaluated explanted mechanically damaged leads with electrical testing, optical microscopy, and in some cases, scanning electron microscopy (SEM). In addition, we performed an autopsy study to measure the compressive loads on catheters placed percutaneously through the costoclavicular angle, as well as by cephalic cutdown. Of the 49 explanted compression damaged leads with enough clinical data for analysis, all had been placed by percutaneous subclavian puncture. Our autopsy data confirmed the significant increase in pressures generated in the costoclavicular angle for medial percutaneous subclavian catheterization (126 +/- 26 mmHg) compared to a more lateral percutaneous subclavian puncture (63 +/- 15 mmHg) or a cephalic cutdown (38 +/- 13 mmHg) (P < 0.01). In vivo coil compression testing documented loads up to 100 pounds per linear inch of coil and a compressive morphology by SEM identical to that seen in the clinical explants. Pacemaker leads appear to be susceptible to compression damage when placed by subclavian venipuncture. When possible, leads should be placed such that they avoid the tight costoclavicular angle.

Bloodletting↗

Plasma membrane Ca(2+)-ATPase isoforms: distribution of mRNAs in rat brain by in situ hybridization.

Several mRNAs which encode for isoforms of the plasma membrane Ca(2+)-transport ATPase (PMCA) are present in adult rat brain. Using in situ hybridization with antisense oligonucleotide probes we found complex patterns of specific hybridization for three isoforms (PMCA1-3). Each rat brain region studied exhibited a distinct pattern of expression of isoforms. PMCA1 mRNA, which is widely distributed in rat tissues, was highest in CA1 pyramidal cells of hippocampus and very low in hypothalamic nuclei, cerebellum and choroid plexus. PMCA2 mRNA was highest in Purkinje cells of cerebellum and low in caudate-putamen, hypothalamic nuclei, habenula and choroid plexus. The highest levels of PMCA3 mRNA were found in habenula and choroid plexus. The PMCA1-3 isoforms appeared to be expressed primarily in neurons since hybridization was detected neither in white matter nor in regions rich in astrocytes. In different regions, different levels of expression of each PMCA mRNA may underlie specialized requirements for calcium homeostasis in specific neurons.

Animals↗