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Biomedical subjects

H W Pfister

Publications and source records attributed to H W Pfister.

At least 19 recordsLinked to original sources

Detection of Mycoplasma pneumoniae DNA in cerebrospinal fluid of a patient with M. pneumoniae infection-"associated" stroke.

A 36-year-old woman presented with an acute ischemic stroke and a concomitant Mycoplasma pneumoniae infection that had been proven clinically, bacteriologically, and serologically. M. pneumoniae DNA was demonstrated in cerebrospinal fluid by positive nested polymerase chain reaction, and intrathecal antibody production was also detected. Contrary to previous reports about M. pneumoniae-associated stroke, most thrombostatic abnormalities in this patient occurred after stroke onset. Although the cause of stroke remains unclear in this patient, central nervous system invasion of M. pneumoniae DNA has to be considered a possible cause in rare cases of cerebral ischemia.

Adult↗

Experimental meningitis in the rat: protection by uric acid at human physiological blood concentrations.

The natural peroxynitrite scavenger uric acid was previously shown to be protective in a rat model of pneumococcal meningitis; however, rats have much lower blood uric acid levels than humans. Therefore, we evaluated its therapeutic effect at human physiological blood concentrations. Intraperitoneal pretreatment with uric acid increased its blood concentrations from 44.9+/-10.0 microM in untreated rats to 169.8+/-122.6 microM and reduced the cerebrospinal fluid (CSF) pleocytosis from 12767+/-2520 to 8376+/-2450 cells/microl (P<0.05) and the intracranial pressure from 11.6+/-3.0 to 4.3+/-1.2 mm Hg (P<0.05). Coadministration of oxonic acid, an inhibitor of urate oxidase, increased the blood uric acid levels to 355.0+/-79.6 microM and further reduced the CSF pleocytosis (4190+/-1749 cells/microl, P<0.05) and the intracranial pressure (1.4+/-2.4 mm Hg). Uric acid+oxonic acid also had a beneficial effect when administered 2 or 4 h after the induction of meningitis. We demonstrate a dose-dependent anti-inflammatory effect of uric acid at blood levels in the human physiological range.

Animals↗

Reactive nitrogen species contribute to blood-labyrinth barrier disruption in suppurative labyrinthitis complicating experimental pneumococcal meningitis in the rat.

Sensorineural hearing damage is a frequent complication of bacterial meningitis, affecting as many as 30% of survivors of pneumococcal meningitis. There is a substantial body of evidence that oxidants, such as reactive nitrogen species (RNS), are central mediators of brain damage in experimental bacterial meningitis. In the present study, we investigated whether RNS also contribute to the pathophysiology of suppurative labyrinthitis in our well-established rat model of pneumococcal meningitis. In all infected rats, but not in uninfected controls, we observed suppurative labyrinthitis. Cochlear inflammation was accompanied by severe blood-labyrinth barrier (BLB) disruption as evidenced by increased Evans Blue extravasation. Furthermore, increased cochlear expression of endothelial nitric oxide synthase (eNOS) and inducible nitric oxide synthase (iNOS) was detected by immunohistochemistry. Colocalization of iNOS and tyrosine nitration (a marker of RNS attack) indicated that nitric oxide (NO) produced by iNOS contributes to oxidative cochlear damage through the action of RNS. To determine the pathophysiological role of RNS in BLB disruption, rats were treated with peroxynitrite scavengers (MnTBAP and uric acid, UA). Six h after adjunctive treatment with 300 mg/kg i.p. UA or 15 mg/kg i.p. MnTBAP+100 mg/kg i.p. ceftriaxone, BLB disruption was significantly reduced compared with that in infected animals treated only with ceftriaxone. Therefore, we conclude that RNS are involved in the breaching of the BLB during meningogenic pneumococcal labyrinthitis.

Animals↗

Differential expression of nitric oxide synthases in bacterial meningitis: role of the inducible isoform for blood-brain barrier breakdown.

The aim of the study was to determine the differential expression of nitric oxide (NO) synthase (NOS) isoforms and the pathophysiologic relevance of inducible NOS (iNOS) in experimental pneumococcal meningitis. By use of reverse transcription-polymerase chain reaction analysis, immunohistochemistry, and Western blotting, increased brain mRNA and increased protein levels of endothelial NOS (eNOS) and iNOS were detected 24 h after intracisternal pneumococcal inoculation. In iNOS-deficient mice, disruption of the blood-brain barrier (BBB) was significantly reduced, compared with that in wild-type mice. This beneficial effect of iNOS deficiency was associated with a lack of nitrotyrosine immunoreactivity. Furthermore, brain protein levels of interleukin (IL)-1beta, IL-6, and tumor necrosis factor-alpha and brain mRNA levels of macrophage inflammatory protein (MIP)-1alpha and MIP-2 were significantly reduced in infected animals lacking iNOS. These findings suggest that (1) not only iNOS but also eNOS is up-regulated in the acute phase of experimental bacterial meningitis, and (2) iNOS-derived NO contributes to peroxynitrite formation and BBB breaching in this disease.

Animals↗

Failure of alpha-melanocyte stimulating hormone to attenuate cerebral complications in experimental pneumococcal meningitis.

Alpha-melanocyte-stimulating hormone (alpha-MSH) is an endogenous neuroimmunomodulatory peptide that can inhibit a broad range of inflammatory mediators known to be involved in the pathophysiology of bacterial meningitis. We evaluated the effect of alpha-MSH in a rat model of pneumococcal meningitis. Rats were intracisternally infected with Streptococcus pneumoniae and treatment was started 6 h after infection. Both systemic and intracisternal alpha-MSH failed to influence blood-brain barrier disruption, increased intracranial pressure, brain cytokine concentrations (IL-1beta, IL-6, TNF-alpha, MIP-2, and IL-10), CSF bacterial titers, and clinical parameters of disease severity (weight loss, body temperature, and blood pressure), although the treatment strongly increased the CNS concentrations of alpha-MSH. However, systemic but not intracisternal alpha-MSH slightly reduced the CNS leukocyte accumulation, indicating that leukocyte extravasation is inhibited by alpha-MSH from the blood side. Our results show that alpha-MSH reduces the CNS leukocyte accumulation by its systemic action, but does not attenuate meningitis-associated intracranial complications.

Animals↗

Acute severe spinal cord dysfunction in bacterial meningitis in adults: MRI findings suggest extensive myelitis.

BACKGROUND: Bacterial meningitis is rarely complicated by acute spinal cord involvement (eg, myelitis, ischemic infarction, spinal abscess, or epidural hemorrhage). In spinal cord dysfunction, magnetic resonance imaging (MRI) is the imaging modality of choice. Still, MRI findings of myelitis due to bacterial meningitis in adults have not been reported. METHODS: Spinal MRIs were obtained during the acute stage of meningitis and on follow-up in 3 adults with bacterial meningitis that was complicated by paraparesis or tetraparesis and bowel and bladder incontinence. The causative pathogens were Streptococcus pneumoniae and Neisseria meningitidis; in 1 patient, the pathogen was not identified. RESULTS: In all cases, spinal MRI ruled out a compression of the cord by an extramedullary mass but demonstrated hyperintensities on T2-weighted images that predominantly involved the gray matter and extended from the cervical to the lumbar cord. Leptomeningeal and discrete nodular intramedullary enhancement on T1-weighted images was detected only in 1 patient. Follow-up examinations revealed that hyperintensities resolved completely in 1 patient, while a central cavitation developed in the cervical spinal cord of another, and the MRI findings were progressive during the first 4 weeks in the third patient. In all cases, severe paresis and bowel and bladder incontinence persisted. CONCLUSION: We demonstrate for the first time the MRI findings of adults with acute spinal cord involvement during bacterial meningitis. Magnetic resonance imaging showed central intramedullary hyperintensities on T2-weighted images that extended from the cervical to the lumbar cord, indicating myelitis. Clinical follow-up examinations suggest that myelitis during bacterial meningitis has an unfavorable prognosis.

Adolescent↗

Extensive myelitis associated with Mycoplasma pneumoniae infection: magnetic resonance imaging and clinical long-term follow-up.

Myelitis is a severe neurological complication associated with Mycoplasma pneumoniae infections. Little is known about the extent and the reversibility of this myelitis, and reports on the value of spinal imaging are inconclusive. To obtain more information on the diagnostic and prognostic value of spinal magnetic resonance imaging (MRI) we studied the clinical course and MRI long-term follow-up of two patients with extensive myelitis associated with M. pneumoniae infection. The neuroradiological findings were correlated with the clinical extent of the spinal syndrome, but their reversibility preceded clinical improvement. These preliminary findings indicate that follow-up spinal MRI may give valuable prognostic information in cases of M. pneumoniae associated myelitis and warrant further more systematic studies to ascertain the relationship between spinal MRI findings and prognosis.

Adult↗

Lack of endothelial nitric oxide synthase aggravates murine pneumococcal meningitis.

Nitric oxide (NO) plays a central role in the pathogenesis of bacterial meningitis. However, the role of NO produced by endothelial NO synthase (eNOS) in meningitis is still unclear. We investigated the influence of eNOS depletion on the inflammatory host response, intracranial complications, and outcome in experimental pneumococcal meningitis. Leukocyte accumulation in the cerebrospinal fluid was more pronounced in infected eNOS-deficient mice than in infected wild type mice. This effect could be attributed to an increased expression of P-selectin, macrophage inflammatory protein-2, keratinocyte-derived cytokine, and interleukin (IL)-1beta in the brain of infected eNOS-deficient mice. However, no differences in the cerebral expression of intercellular adhesion molecule-1, tumor necrosis factor-alpha, and IL-6 as well as of neuronal NOS and inducible NOS could be detected between infected wild type and mutant mice. In addition to enhanced leukocyte infiltration into the CSF, meningitis-associated intracranial complications including blood-brain barrier disruption and the rise in intracranial pressure were significantly augmented in infected eNOS-deficient mice. The aggravation of intracranial complications was paralleled by a worsening of the disease, as evidenced by a more pronounced hypothermia, an enhanced weight reduction, and an increased death rate. The current data indicate that eNOS deficiency is detrimental in bacterial meningitis. This effect seems to be related to an increased expression of (certain) cytokines/chemokines and adhesion molecules; thus leading to increased meningeal inflammation and, subsequently, to aggravated intracranial complications.

Animals↗

Pharmacologic interference with NF-kappaB activation attenuates central nervous system complications in experimental Pneumococcal meningitis.

This study assessed the effects of 2 different inhibitors of NF-kappaB activation on central nervous system complications and clinical symptoms in an advanced stage of experimental pneumococcal meningitis: the calpain inhibitor I N-acetyl-leucinyl-leucinyl-norleucinal (ALLN), which interferes with IkappaB proteolysis, and BAY 11-7085, which inhibits IkappaB phosphorylation. Pneumococcal meningitis was associated with an increase in NF-kappaB activity, as determined by immunohistochemistry and Western blot analysis of rat brains 24 h after infection. Treatment with ALLN or BAY 11-7085 improved the clinical scores of infected rats, compared with those of untreated infected rats. This beneficial effect was parallelled by a significant reduction of the increase in intracranial pressure, blood-brain barrier permeability (as measured by the Evans blue-extravasation technique), cerebrospinal fluid (CSF) pleocytosis, CSF interleukin-6 levels, and impairment of cerebrovascular CO(2) reactivity and autoregulation. Thus, pharmacologic interference with NF-kappaB activation might be a possible target for adjunctive therapy in bacterial meningitis.

Animals↗

Increased levels of soluble Fas receptor and Fas ligand in the cerebrospinal fluid of HIV-infected patients.

Analyses of serum samples and blood cells have revealed a dysregulation of the Fas/Fas ligand (FasL) system during HIV infection, which may be related to disease progression. As Fas and FasL have been suggested to participate in brain injury in a variety of CNS disorders, the aim of this study was to determine (1) whether soluble Fas and FasL can be detected in cerebrospinal fluid (CSF) samples from HIV-infected patients, (2) whether levels of these molecules are related to disease progression, and (3) whether levels of sFasL are related to other laboratory findings. Soluble Fas was detected in 38 of 56 (68%) and soluble Fas ligand in 17 of 56 (30%) CSF samples from HIV-infected patients. CSF levels of both molecules correlated neither with the CSF-to-serum albumin ratio nor with corresponding serum concentrations. This finding suggests that they are at least in part produced intrathecally. Levels of both CSF sFas and sFasL correlated significantly and inversely with the blood CD4+ cell counts, suggesting that the intrathecal release of both molecules is increased during progression to advanced immunodeficiency.

CD4 Lymphocyte Count↗

Human immunodeficiency virus type-1 Nef protein induces blood-brain barrier disruption in the rat: role of matrix metalloproteinase-9.

We recently showed that MMP-9 activity was detectable in the cerebrospinal fluid (CSF) of about half of neurologically symptomatic HIV-infected patients. Using an experimental animal model, we detected MMP-9 activity in CSF samples from rats that had been injected intracisternally with recombinant HIV-1 Nef protein, but not after injection of heat-treated Nef, gp120, gp160 or PBS. Nef also induced a breaching of the blood-brain barrier (BBB), which could be inhibited by pretreatment with the matrix metalloproteinase (MMP) inhibitor batimastat. In vitro Nef only slightly induced MMP-9 activity in freshly isolated human peripheral blood mononuclear cells and in the murine macrophage cell line RAW 264.7, but not in endothelial, neuronal or astroglial cell lines. Taken together, our findings indicate that HIV-1 Nef protein can induce BBB disruption in the rat - presumably via MMP induction.

Animals↗

[Prevention of meningococcal meningitis].

In Germany, the incidence of meningococcal disease is approximately 1/100,000 and has not risen during recent years. Transmission occurs by direct contact with respiratory droplets, mostly from asymptomatic carriers and less frequently from patients with meningococal disease. The incubation period can vary from 2-10 days but usually is 3-4 days. Incidence is highest in children and decreases with age. The mortality from meningococcal disease is approximately 10%. In case meningococcal meningitis is clinically suspected antibiotic treatment (in Germany with penicillin G or a cephalosporin) should not be delayed. Patients must be isolated for at least 24 hours after the institution of antibiotic therapy. For early detection of local outbreaks, public health authorities should be quickly informed of suspected cases. Persons in close contact should be treated with antimicrobial chemoprophylaxis. In addition to rifampin, ciprofloxacin or ceftriaxone can be used for chemoprophylaxis. For control of local outbreaks of serogroup C meningococcal disease, the meningococcal vaccine can be used.

Anti-Bacterial Agents↗

[Gliomatosis cerebri: two case reports with atypical clinical and neuroradiologic findings].

The diagnosis of the rare disease Gliomatosis cerebri requires the correlation of clinical, radiological, and pathological findings. We report on two patients with intravitally diagnosed gliomatosis cerebri. Due to the unusually high malignancy of the tumor cells, diagnosis was complicated by atypical findings such as gadolinium enhancement in MRI and raised intracranial pressure. The clinical course, differential diagnosis, and literature are summarized briefly.

Biopsy↗

Intracranial dural arteriovenous fistula with spinal medullary venous drainage.

We report on a 46-year-old patient in whom an intracranial dural arteriovenous (AV) fistula, supplied by a branch of the ascending pharyngeal artery, drained into spinal veins and produced rapidly progressive symptoms of myelopathy and brainstem dysfunction including respiratory insufficiency. Magnetic resonance imaging studies demonstrated brainstem oedema and dilated veins of the brainstem and spinal cord. Endovascular embolization of the fistula led to good neurological recovery, although the patient had been paraplegic for 24 h prior to embolization. This case demonstrates the MRI characteristics of an intracranial dural AV fistula with spinal drainage and illustrates the importance of early diagnosis and treatment. Even paraplegia may be reversible, if angiography is performed and the fistula treated before ischaemic and gliotic changes become irreversible.

Central Nervous System Vascular Malformations↗