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Biomedical subjects

David Leppert

Publications and source records attributed to David Leppert.

16 recordsLinked to original sources

Screening for Lrrk2 G2019S and clinical comparison of Tunisian and North American Caucasian Parkinson's disease families.

Mutations in the leucine-rich repeat kinase-2 gene (LRRK2) are responsible for some forms of familial as well as sporadic Parkinson's disease (PD). The purpose of this study was to examine the frequency of a single pathogenic mutation (6055G > A) in the kinase domain of this gene in United States and Tunisian familial PD and to compare clinical characteristics between patients with and without the mutation. Standardized case report forms were used for clinical and demographic data collection. We investigated the frequency of the most common substitution of LRRK2 (G2019S, 6055G>A) and its impact on epidemiological and phenotypic features. The frequency of mutations in Tunisian families was 42% (38/91) and in U.S. families 2.6% (1/39), with the unique opportunity to compare homozygous (n = 23) and heterozygous (n = 109) Tunisian carriers of G2019S substitutions. Individuals with G2019S substitutions had an older age at onset but few other differences compared with families negative for the substitution. Patients with LRRK2 mutations had typical clinical features of PD. Comparisons between individuals with heterozygous and homozygous LRRK2 mutations suggested that gene dosage was not correlated with phenotypic differences; however, the estimated penetrance was greater in homozygotes across all age groups.

Adult↗

Gene expression in cortex and hippocampus during acute pneumococcal meningitis.

BACKGROUND: Pneumococcal meningitis is associated with high mortality (approximately 30%) and morbidity. Up to 50% of survivors are affected by neurological sequelae due to a wide spectrum of brain injury mainly affecting the cortex and hippocampus. Despite this significant disease burden, the genetic program that regulates the host response leading to brain damage as a consequence of bacterial meningitis is largely unknown. We used an infant rat model of pneumococcal meningitis to assess gene expression profiles in cortex and hippocampus at 22 and 44 hours after infection and in controls at 22 h after mock-infection with saline. To analyze the biological significance of the data generated by Affymetrix DNA microarrays, a bioinformatics pipeline was used combining (i) a literature-profiling algorithm to cluster genes based on the vocabulary of abstracts indexed in MEDLINE (NCBI) and (ii) the self-organizing map (SOM), a clustering technique based on covariance in gene expression kinetics. RESULTS: Among 598 genes differentially regulated (change factor > or = 1.5; p < or = 0.05), 77% were automatically assigned to one of 11 functional groups with 94% accuracy. SOM disclosed six patterns of expression kinetics. Genes associated with growth control/neuroplasticity, signal transduction, cell death/survival, cytoskeleton, and immunity were generally upregulated. In contrast, genes related to neurotransmission and lipid metabolism were transiently downregulated on the whole. The majority of the genes associated with ionic homeostasis, neurotransmission, signal transduction and lipid metabolism were differentially regulated specifically in the hippocampus. Of the cell death/survival genes found to be continuously upregulated only in hippocampus, the majority are pro-apoptotic, while those continuously upregulated only in cortex are anti-apoptotic. CONCLUSION: Temporal and spatial analysis of gene expression in experimental pneumococcal meningitis identified potential targets for therapy.

Acute Disease↗

Pro-invasive gene regulating effect of irradiation and combined temozolomide-radiation treatment on surviving human malignant glioma cells.

The current chemotherapeutic treatment of glioblastoma patients has minor success. Little is known about the molecular and cellular mechanisms of the resistance of gliomas towards current therapies. This study investigated both suppressive cellular effects and regulation of extracellular matrix remodeling proteins with pro-invasive activity in surviving human glioblastoma cells under clinically relevant treatments. All cellular and molecular biological investigations were performed on the genetically well-defined and clinically relevant p53-wild type U87Mg glioma cells. Malignant glioma cells underwent either radiation or temozolomide treatments alone, or combined chemo/radio treatment. Protein expression patterns were investigated by two-dimensional polyacrylamide gel electrophoresis followed by protein spot identification using tandem mass spectrometry analysis. Specific expression levels were quantified by Western-blotting. Extracellular gelatinase activities for both metalloproteinases MMP-2 and MMP-9 were determined by zymogramms. Survival curves indicated no effective suppression of glioma cells under all treatment conditions tested. Morphological changes demonstrated sub-lethal effect of both temozolomide and combined treatment. Expression of MMP-2, MMP-9, and membrane type 1 matrix metalloproteinases (MT1-MMP) was differentially up-regulated by increasing cellular density and treatment conditions. A significantly enhanced extracellular degrading activity under all treatment conditions tested was demonstrated for MMP-2 only. Being a marker for brain tumour progression and angiogenesis, lysozyme c was highly up-regulated under the combined chemo/radio treatment. The activation of proteins with pro-invasive activity indicates an increasing malignancy grade of surviving glioma cells under treatment conditions tested correlating well with more aggressive tumour phenotypes observed clinically in recurrences of treated glioblastomas.

Antineoplastic Agents, Alkylating↗

Clinical features of Parkinson disease patients with homozygous leucine-rich repeat kinase 2 G2019S mutations.

BACKGROUND: The G2019S mutation is the most common pathogenic substitution in the leucine-rich repeat kinase 2 (LRRK2) gene, which has recently been identified in familial and sporadic Parkinson disease (PD). OBJECTIVES: To report the clinical characteristics of PD patients with homozygous LRRK2 6055G>A (G2019S) mutations and to compare them with previously published descriptions of heterozygous patients. DESIGN: Descriptive clinical report from an international consortium of studies. Subjects Patients with familial PD and homozygous LRRK2 mutations included 23 Tunisians, 2 Algerians, 2 US patients, 1 Canadian, and 1 Moroccan. RESULTS: There were no observable differences between the homozygote and heterozygote phenotypes. CONCLUSIONS: Parkinson disease related to LRRK2 is characterized by typical clinical features, and the similarities between patients with homozygous and heterozygous mutations do not support a gene dosage effect.

Aged↗

CD24 and myosin light polypeptide 2 are involved in prevention of experimental autoimmune encephalomyelitis by myelin basic protein-pulsed dendritic cells.

We previously demonstrated that injection of myelin basic protein-pulsed (MBP-pulsed)--but not of unpulsed--autologous bone marrow-derived dendritic cells (DC) efficiently prevents experimental autoimmune encephalomyelitis (EAE) in Lewis rats. To define the molecules involved, we used 3 groups of rats pretreated subcutaneously with MBP-DC, or unpulsed DC, or PBS (control EAE). Four weeks later, all rats were immunized with encephalitogenic MBP peptide and adjuvant. Microarray analyses were done to screen for genes that differ among the 3 groups. Based on microarray analysis data, we used real-time PCR to measure expression of six probably involved genes in draining lymph node cells obtained on day 0, day 7 and day 14 post immunization (p.i.). Two of these 6 genes were consistently altered in both microarray analyses and RT-PCR. They are CD24 antigen being persistently low, and myosin light polypeptide 2 (Myl2) being high in the acute immune response in MBP-DC pretreated rats that develop resistance to EAE. These two genes could be targeted to treat EAE and, possibly, multiple sclerosis.

Animals↗

Characterization of Mca-Lys-Pro-Leu-Gly-Leu-Dpa-Ala-Arg-NH2, a fluorogenic substrate with increased specificity constants for collagenases and tumor necrosis factor converting enzyme.

Matrix metalloproteinases (MMPs) and the related tumor necrosis factor converting enzyme (TACE) are involved in tissue remodeling, cell migration, and processing of signaling molecules, such as cytokines and adhesion molecules. Fluorescence-quenched peptide substrates have been widely used to quantitate the actual enzymatic activity of MMPs. However, the various MMPs have very different specific activities toward these substrates. This restricts their value for the determination of composite proteolytic activity of mixtures of metalloproteinases in biological fluids. The N-terminal elongation of the most widely used MMP substrate (FS-1) with a Lys to the sequence Mca-Lys-Pro-Leu-Gly-Leu-Dpa-Ala-Arg-NH(2) (FS-6) yields a fluorogenic peptide with improved substrate properties. As compared to FS-1, the specificity constant (kcat/Km) of FS-6 for collagenases (MMP-1, MMP-8, MMP-13) and MT1-MMP (MMP-14) is increased two- to ninefold and threefold, respectively, while those for gelatinases and matrilysin remain equally high. Using high-performance liquid chromatography-fluorescence detection, MMP activity can be quantitated in the picomolar range. FS-6 shows up to twofold higher specificity constants (kcat/Km of 0.8x10(6)M(-1)s(-1)) for TACE, as compared to standard substrates Mca-PLAQAV-Dpa-RSSSAR-NH(2) and Dabcyl-LAQAVRSSSAR-EDANS. FS-6 is fully water soluble and thus allows measurement of metalloproteinase activity in tissue culture conditions, e.g., on the surface of viable cells in situ.

ADAM Proteins↗

Multiple sclerosis as a generalized CNS disease--comparative microarray analysis of normal appearing white matter and lesions in secondary progressive MS.

We used microarrays to compare the gene expression profile in active lesions and donor-matched normal appearing white matter (NAWM) from brain autopsy samples of patients with secondary progressive multiple sclerosis (MS) with that from controls who died from non-neurological diseases. The 123 genes in lesions, and 47 genes in NAWM(MS) were differentially expressed. Lesions distinguished from NAWM(MS) by a higher expression of genes related to immunoglobulin synthesis and neuroglial differentiation, while cellular immune response elements were equally dysregulated in both tissue compartments. Current results provide molecular evidence of a continuum of dysfunctional homeostasis and inflammatory changes between lesions and NAWM(MS), and support the concept of MS pathogenesis being a generalised process that involves the entire CNS.

Brain↗

Increased expression of matrix metalloproteinases in mononuclear blood cells of normal-tension glaucoma patients.

PURPOSE: Glaucomatous optic neuropathy involves tissue remodeling by matrix metalloproteinases (MMPs). In this study we investigated MMP gene expression in circulating leukocytes isolated from normal tension glaucoma (NTG) patients in comparison to healthy controls. METHODS: Blood samples were collected from 6 glaucoma patients and 6 age- and sex-matched healthy controls. Leukocytes were separated using Ficoll-Hypaque gradient. mRNA pools were used for subtractive hybridization to identify genes with altered expression. The subtracted genes were sequenced and individual mRNA pools were quantified using semiquantitative RT-PCRs. Target PCR products were confirmed using sequence-based restriction analysis. In this study we focused on MMPs. RESULTS: MMP-9 and MT1-MMP (MMP-14) were subtracted as upregulated genes in the group of NTG patients. Upregulation of these genes was confirmed by RT-PCR and Western-blot analysis in all 6 patients. The expression of the tissue inhibitor of matrix metalloproteinases TIMP-1 was slightly enhanced in patients as compared with controls. Expression of MMP-2 was not detected in leukocytes either in glaucoma patients or in healthy subjects. CONCLUSION: A simultaneous upregulation of both MMP-9 and MT1-MMP gene expression and only slightly enhanced expression of TIMP-1 suggest an increased enzymatic matrix metalloproteinase activity delivered by mononuclear blood cells in these patients.

Adult↗

Stimulus recognition and its relationship to the cerebral event-related potential.

BACKGROUND: The relationship between the event-related cerebral potential (ERP) and perceptual awareness by the subject is poorly understood. The authors manipulated the process of stimulus recognition to examine the effect of changes in a subject's awareness on different components of the ERP and on behavioral (motor) responses. METHODS: Ten subjects listened to a series of 400 tone pips, one of which (frequent tone) was slightly louder than the other (rare tone; 14% of trials). Stimuli were presented in blocks of 10 tones and, following each block, subjects were asked how many rare tones they had detected and if they were aware of any errors that they had made during that block. Cerebral and motor responses were recorded by surface electrodes. RESULTS: When subjects were aware of having responded erroneously to either the rare or frequent tone, their response times were shorter than for correct responses to that tone. When subjects were unaware of such errors, however, the response times were delayed compared to correct responses and to error responses of which the subject was aware. When the subject made an error by responding to the rare tone as if it were frequent and was aware of the error, the N2 and P3 latencies were delayed. By contrast, when subjects were unaware of such errors, no N2 or P3 components were present. Similar findings were noted when subjects responded to a frequent tone as if it were rare. CONCLUSIONS: These results suggest that the N2 and P3 components of the ERP reflect the awareness of the subject that an unexpected event has occurred, regardless of whether it is an unexpected stimulus or an unexpectedly erroneous response to that stimulus. The recording of ERP may provide a means of measuring perceptual awareness in other contexts.

Acoustic Stimulation↗

Neutralizing antibodies against IFN-beta in multiple sclerosis: antagonization of IFN-beta mediated suppression of MMPs.

Neutralizing antibodies (NAb) against interferon-beta (IFN-beta) develop in about a third of treated multiple sclerosis patients and are believed to reduce therapeutic efficacy of IFN-beta on clinical and MRI measures. The expression of the interferon acute-response protein, myxovirus resistance protein A (MxA) is a sensitive measure of the biological activity of therapeutically applied IFN-beta and of its reduced bioavailability due to NAb. However, MxA may not be operative in the pathogenesis of multiple sclerosis or the therapeutic effect of IFN-beta. Instead, matrix metalloproteinases (MMPs) are increased in brain tissue, CSF and blood circulation of multiple sclerosis patients and function as effector molecules in several steps of multiple sclerosis pathogenesis. One of the molecular mechanisms by which IFN-beta exerts its beneficial effect in multiple sclerosis is reduction of MMP-9 expression and increase of its endogenous tissue inhibitor, TIMP-1. Quantitative PCR measurements of MMP-2 and MMP-9, TIMP-1 and TIMP-2, and MxA were performed in peripheral mononuclear cells from clinically stable multiple sclerosis patients with relapsing remitting disease course after short-term and long-term treatment with IFN-beta. IFN-beta therapy down-regulated the expression of MMP-9 and abolished that of MMP-2 in long-term, but not short-term treated multiple sclerosis, while levels of MxA were increased in both instances. The presence of NAb reversed these effects, i.e. led to reduced MxA and increased MMP-2/MMP-9 expression levels compared with NAb- patients. In contrast, expression of TIMPs in peripheral blood mononuclear cells remained unaffected by IFN-beta therapy and the presence of NAb. While MxA is able to detect the biological action and reduced bioavailability of IFN-beta on the basis of single injections, only MMP-9 shows quantitative correlation with the NAb titre. Together with evidence that an imbalance between MMP and TIMP expression is a crucial pathogenetic feature in multiple sclerosis, these findings support the concept of a significant role of NAb in reducing the therapeutic efficacy of IFN-beta.

Antibodies↗

Matrix metalloproteinase inhibitor reversion-inducing cysteine-rich protein with Kazal motifs: a prognostic marker for good clinical outcome in human breast carcinoma.

BACKGROUND: The recently described reversion-inducing cysteine-rich protein with Kazal motifs (RECK) inhibits membrane Type 1 matrix metalloproteinase (MMP-14), MMP-2, and MMP-9 secretion and enzymatic activity. Its expression is essential for normal vasculogenesis. Down-regulation of RECK has been implicated in tumor angiogenesis and progression. METHODS: The authors assessed the prognostic value of RECK expression in tumor tissue specimens from 278 breast carcinoma patients with a median follow-up time of 75 months (range, 2-169 months). RECK mRNA levels were measured by real-time quantitative reverse transcriptase-polymerase chain reaction. RESULTS: Expression levels of RECK were lower in tumor tissue specimens than in adjacent normal breast tissue specimens from 10 patients (P = 0.028). No relevant associations of RECK with established clinicopathologic factors or treatment regimens were found. RECK expression predicted a longer recurrence-free survival time (RFS; P = 0.037) at the optimal cutoff value (hazard ratio, 0.66; 95% confidence interval, 0.44-0.98). The 100 patients whose tumors exhibited low levels of RECK had a mean RFS time of 80.4 months and a 61.8% 5-year RFS rate, whereas the 178 patients with tumors with high RECK expression had a mean RFS time of 91.2 months and a 73.0% 5-year RFS rate. Multivariate Cox regression analysis showed that RECK expression maintained a significant independent prognostic value for RFS time (P = 0.047). CONCLUSIONS: These results are in agreement with the notion of RECK being an important tumor-suppressor gene. Therefore, the possibility of applying RECK, a pharmaceutical mimetic, or drugs activating endogenous RECK expression, as possible therapeutic or preventive agents for breast carcinoma should be explored.

Biomarkers, Tumor↗

Respiratory failure due to bilateral diaphragm palsy as an early manifestation of ALS.

BACKGROUND: Diaphragm palsy is common in the advanced stages of motor neuron disease and is a primary cause of fatal outcome However, respiratory failure is a presenting symptom of motor neuron disease in only a small number of patients. CASE REPORT: We present the case of a patient with dyspnea and orthopnea followed by subacute respiratory failure due to bilateral diaphragm paralysis as the first manifestation of amyotrophic lateral sclerosis. CONCLUSIONS: Failure of respiratory muscle function can be the first symptom of motor neuron disease, and may precede clinical manifestation in voluntary motor units in ALS. Therefore, in cases of unexplained acute respiratory failure or when respiratory support must be continued for no clear reason, a motor neuron disease such as amyotrophic lateral sclerosis, which leads to respiratory muscle weakness and diaphragm paralysis, should be taken into consideration.

Acute Disease↗

Levels of matrix metalloproteinase-9 within cerebrospinal fluid in a rabbit model of coccidioidal meningitis and vasculitis.

Matrix metalloproteinase (MMP)-9 is produced by the central nervous system and inflammatory cells in a variety of inflammatory conditions in both animals and humans. MMP-9 promotes inflammation, breakdown of the blood-brain barrier, and vasculitis. Because vasculitis is seen frequently in patients with coccidioidal meningitis (CM), this study evaluated the presence of MMP-9 within the cerebrospinal fluid (CSF) of rabbits infected intracisternally with Coccidioides immitis arthroconidia. Infected rabbits demonstrated systemic and neurological sequelae to infection, including CSF pleocytosis. Levels of MMP-9 within CSF were assayed by use of zymography and compared with MMP-2 levels, which served as an internal control. Elevated levels of MMP-9 were detectable by day 3, continued to increase through day 10, and declined by day 15 after infection. MMP-9 may contribute to inflammation and vasculitis in this animal model. Future work can focus on evaluation of MMP inhibitors, to gain a better perspective of the role of this MMP in CM.

Animals↗

Matrix metalloproteinases-9 and -2 in secondary vasculitic neuropathies.

Matrix metalloproteinases (MMPs) are a family of zinc-dependent endoproteinases that play an important role in inflammation and tissue degradation. MMP-9 and MMP-2 are gelatinases that have been implicated in the degradation of the blood-brain or blood-nerve barrier. We present an immunohistochemical study on 11 nerve biopsy samples of inflammatory and non-inflammatory polyneuropathies. Perineurium and endothelium were positive for MMP-2 in all tissue sections. In addition, there was a specific up-regulation of MMP-2 in stromal cells of chronic inflammatory demyelinating polyneuropathy (CIDP) and even more in vasculitic neuropathies. MMP-9-positive cells were detected in vessel walls, infiltrates, epineurium and endoneurium of vasculitic neuropathies. In CIDP, MMP-9-positive cells were prominent in vessel walls. Only a few MMP-9-positive cells were detected in noninflammatory controls in blood vessels and adhering to vessel walls. Double staining indicated that the infiltrating cells were T cells and macrophages. Our findings suggest that MMP-9 plays an important role in inflammatory peripheral neuropathy probably as means for inflammatory cell invasion.

Adult↗