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H P Hartung

Publications and source records attributed to H P Hartung.

At least 19 recordsLinked to original sources

Low interleukin-10 production is associated with higher disability and MRI lesion load in secondary progressive multiple sclerosis.

Abnormalities in T-cell-derived cytokine production are a well-known phenomenon in multiple sclerosis (MS). An association between disability and the production of interferon gamma has been demonstrated recently. The present study investigated associations between disability, cytokine production in stimulated blood lymphocytes and magnetic resonance imaging data in 37 patients with the secondary progressive course in the stable phase of the disease. Patients with high interleukin-10 (IL-10) production had significantly lower disability scores (p=0.009) and lower T2 lesion load (p=0.03). Interleukin-10 might not only play a role in the pathological process of multiple sclerosis but has an impact on disease outcome as well.

Adult↗

Influence of age, gender, education and dexterity on upper limb motor performance in Parkinsonian patients and healthy controls.

Finger tapping, the most widely used test for evaluating motor dysfunction in Parkinson's disease (PD), was found to react sensitively to disease specific factors like disease severity and changes in medication. A possible interference caused by disease unrelated demographic factors--age, gender, education and dexterity--however has not yet been studied systematically. Various components of tapping performance of 187 healthy subjects and 200 PD patients were assessed by means of the BRAIN TEST, a digitalized test battery. The effects of demographic factors--above all education and age--were found to be significant. These influences generally affect different aspects of movement to a different extent, with speed and akinesia being affected more severely than dysmetria and arrhythmokinesis. Our study suggests that whenever precise assement of upper limb motor performance is needed, specific corrections for these demographic factors in both healthy controls and PD patients are necessary.

Adult↗

A randomized, double-blind, dose-comparison study of weekly interferon beta-1a in relapsing MS.

BACKGROUND: Interferon beta-1a (IFNbeta-1a; Avonex) is effective for the treatment of relapsing MS; however, the optimal dose of IFNbeta-1a is not known. OBJECTIVE: To determine whether IFNbeta-1a 60 micro g IM once weekly is more effective than IFNbeta-1a 30 micro g IM once weekly in reducing disability progression in relapsing MS. METHODS: In a double-blind, parallel-group, dose-comparison study, 802 patients with relapsing MS from 38 centers in Europe were randomized to IFNbeta-1a 30 micro g (n = 402) or 60 micro g (n = 400) IM once weekly for >/=36 months. The primary endpoint was disability progression, defined as time to a sustained increase of >/=1.0 point on the Expanded Disability Status Scale (EDSS) persisting for 6 months. Additional endpoints included relapses, MRI, safety, immunogenicity, and subgroup analyses of disability progression. RESULTS: Both groups showed equal rates of disability progression (hazard ratio, 0.96; 95% CI, 0.77 to 1.20; p = 0.73). In both groups the proportion of subjects with progression of disability by 36 months estimated from Kaplan-Meier curves was 37%. No dose effects were observed on any of the secondary clinical endpoints. Only one MRI measure at one time point, number of new or enlarging T2 lesions at month 36 compared with month 24, showed a difference favoring the 60- micro g dose. Both doses were well tolerated; however, slightly higher incidences of flulike symptoms and muscle weakness were observed in the 60- micro g group. The incidences of neutralizing antibodies (titers >/= 20) were 2.3% in the 30- micro g group and 5.8% in the 60- micro g group. CONCLUSION: There was no difference between IFNbeta-1a 30 micro g and 60 micro g IM in clinical or MRI measures.

Adolescent↗

Statins as immunomodulators: comparison with interferon-beta 1b in MS.

BACKGROUND: Recent data suggest that statins may be potent immunomodulatory agents. In order to evaluate the potential role of statins as immunomodulators in MS, the authors studied their immunologic effects in vitro and compared them to interferon (IFN)beta-1b. METHODS: Peripheral blood mononuclear cells (PBMC) obtained from untreated or IFN beta-1-treated patients with relapsing-remitting MS or from healthy donors (HD) and T cells were stimulated with concanavalin A, phytohemagglutinin, or antibody to CD3 in the presence of lovastatin, simvastatin, mevastatin, IFN beta-1b, or statins plus IFN beta-1b. The authors analyzed proliferative activity of T cells and B cells, cytokine production and release, activity of matrix metalloproteinases (MMP), and surface expression of activation markers, adhesion molecules, and chemokine receptors on both T and B cells. RESULTS: All three statins inhibited proliferation of stimulated PBMC in a dose-dependent manner, with simvastatin being the most potent, followed by lovastatin and mevastatin. IFN beta-1b showed a similar effect; statins and IFN beta-1b together added their inhibitory potentials. Furthermore, statins reduced the expression of activation-induced adhesion molecules on T cells, modified the T helper 1/T helper 2 cytokine balance, reduced MMP-9, and downregulated chemokine receptors on both B and T cells. Besides strong anti-inflammatory properties, statins also exhibited some proinflammatory effects. CONCLUSIONS: Statins are effective immunomodulators in vitro that merit evaluation as treatment for MS.

Adjuvants, Immunologic↗

Cardiac adverse effects associated with mitoxantrone (Novantrone) therapy in patients with MS.

BACKGROUND: Mitoxantrone (MITO) is associated with dose-related cardiotoxicity when administered concomitantly with other cytotoxic agents with or without radiotherapy for leukemia and solid tumors. OBJECTIVE: To review observed cardiotoxicity of single-agent MITO therapy for MS. METHODS: Records of 1,378 patients from three clinical trials of MITO treatment for MS were reviewed for signs and symptoms of cardiac dysfunction and left ventricular ejection fraction (LVEF) results. Duration of follow-up was a median of 29 months (4,084 patient-years). RESULTS: No patients experienced congestive heart failure (CHF) before treatment. Cumulative MITO doses ranged from 2 to 183 mg/m(2) (mean 60.5 mg/m(2), median 62.5 mg/m(2)), and 141 patients received >100 mg/m(2). Two of 1,378 patients experienced CHF after initiating MITO therapy. Of 1,378 patients, 779 completed baseline and scheduled follow-up LVEF testing. Baseline LVEF was >50% in all 779 patients. Seventeen of 779 patients had asymptomatic LVEF of <50% (incidence proportion = 2.18%, 95% CI = 1.28 to 3.47%). Although the incidence of asymptomatic LVEF of <50% was not significantly related to monthly versus 3-monthly therapy, duration of therapy, age, or gender, asymptomatic LVEF of <50% trended higher with a cumulative dose of >/=100 mg/m(2) (5.0%) than with <100 mg/m(2) (1.8%) (p = 0.06). CONCLUSIONS: The observed incidence of CHF in patients with MS who received a mean cumulative dose of 60.5 mg/m(2) MITO was <0.20%. Continued monitoring of patients with MS who are receiving MITO is needed to determine whether the incidence of CHF increases with higher cumulative MITO doses and prolonged follow-up.

Adolescent↗

[Intravenous immunoglobulins in multiple sclerosis. Studies and mechanisms of action--an update].

There is no doubt about the immunomodulatory capacity of intravenous immunoglobulins (IVIg). This also holds true for multiple sclerosis (MS), where clinical trials have shown a reduction in relapse rate and number of active lesions on MRI after IVIg treatment. Experimental data in the model of murine Theiler's virus encephalomyelitis (TMEV) gave rise to the hypothesis that IVIg may also promote remyelination. Unfortunately, recent trials were unable to demonstrate clinically relevant remyelination in MS patients treated with IVIg. A possible explanation could lie in the fact that IVIg do not influence the function of oligodendrogilial cells in vitro. In contrast, IVIg can protect oligodendrocytes against complement-mediated injury and thus provide more cells that could engage in remyelination. In addition, IVIg can modulate microglial functions in vitro, thus creating a microenvironment permissive for remyelination. Should such mechanisms also be operative in vivo, they would have escaped detection in the treatment protocols used to date. It would appear that IVIg need to be administered while the inflammatory process is still ongoing, whereas the published trials included only patients with a stable deficit when there is probably little or no active inflammation. Despite new studies on IVIg, its role in the management of MS remains elusive.

Animals↗

[Treatment of multiple sclerosis with glatiramer acetate. Current aspects of mechanisms of action, pharmacokinetics, adverse effect profile and clinical studies].

Glatiramer acetate (GA, Copaxone), a standardized mixture of synthetic polypeptides, has now been approved also in Germany for the treatment of relapsing-remitting multiple sclerosis (RR-MS). After it had been shown effective in suppression of experimental autoimmune encephalomyelitis (EAE), the animal model of multiple sclerosis (MS), it was evaluated in several clinical studies. In these studies, GA could alter the natural history of MS by both reducing the relapse rate and affecting disability. The clinical therapeutic effect of GA was consistent with the effect on magnetic resonance imaging-defined disease activity and burden in a recent multicenter study. As a daily standard dose, 20 mg of GA is injected subcutaneously. The induction of GA-reactive T-helper 2-like regulatory suppressor cells is thought to be the main mechanism of action. The most common adverse effects are mild injection site reactions. A remarkable but rare adverse effect is the only transient immediate post-injection systemic reaction manifested by flushing, chest tightness, palpitations, and dyspnea. Antibodies to GA which are induced during GA treatment do not interfere with its clinical effects.

Animals↗

Use of interferon beta in multiple sclerosis: rationale for early treatment and evidence for dose- and frequency-dependent effects on clinical response.

The current approach to the use of interferon (IFN) beta in the treatment of multiple sclerosis (MS) is, in general, conservative. However, recent findings about early events in MS and data on dose-response relationships with IFN beta indicate that such an approach may be suboptimal. Four lines of evidence suggest that delays in the initiation of therapy with IFN beta may be detrimental: 1) axonal damage secondary to inflammation starts very early in the course of MS; 2) pathological events occurring early in MS are predictive of the future course of the disease; 3) inflammatory activity in relapsing MS is not confined to episodes of clinical impairment, but often starts before the first such episode and generally continues during remissions; and 4) the immune-mediated activity that underlies MS may become more difficult to control as the disease progresses. An early treatment strategy is also supported by data from two recently published clinical studies. In addition, preclinical and clinical results suggest that the beneficial effects of IFN may be dose- and frequency-dependent. Taken together, these findings indicate that treatment with IFN beta should be started as early as possible in the course of MS, and suggest that, in order to maximize patent benefit, the highest possible dose of IFN beta should be chosen.

Animals↗

TACE mRNA expression in peripheral mononudear cells precedes new lesions on MRI in multiple sclerosis.

Tumor necrosis factor-alpha (TNF-alpha) is involved in the pathogenesis of multiple sclerosis (MS). It has to be released from its cell membrane-bound precursor by proteolytic cleavage. This is mainly performed by a member of the ADAM (a disintegrin and metalloproteinase) family of enzymes, TNF-alpha-converting enzyme (TACE, ADAM 17). In a longitudinal study on 11 relapsing-remitting MS patients, we qualitatively determined mRNA expression of TNF-alpha and TACE in peripheral blood mononuclear cells (PBMCs) without ex vivo stimulation. mRNA expression was related to disease activity as assessed by monthly gadolinium (Gd)-enhanced brain magnetic resonance imaging (MRI). Patients found positive for TACE mRNA in PBMCs showed a significantly higher mean number of new Gd-enhancing lesions per scan one month following PBMC sampling.

ADAM Proteins↗

A study of therapy-related acute leukaemia after mitoxantrone therapy for multiple sclerosis.

To evaluate the incidence of therapy-related acute leukaemia (t-AL) after single-agent mitoxantrone (MITO) treatment, we reviewed medical records of patients in three studies of single-agent MITO therapy for multiple sclerosis (MS) and existing literature on MITO therapy in MS, leukaemia, and solid tumors. Of 1378 MITO recipients in the three MS studies (mean cumulative dose of 60 mg/m2 and mean follow-up of 36 months), one patient had t-AL, an observed incidence proportion of 0.07% [95% confidence interval (CI) = 0.00-0.40%]. There were no cases of t-AL in published reports of nine additional studies of single-agent MITO therapy for MS. There was one published case report of acute promyelocytic leukoemia detected five years after initiating MITO therapy for MS. The observed incidence proportion of t-AL is very low in patients who received MITO as single-agent therapy for MS. Although these observations provide preliminary reassurance, extended follow-up of these patients and those who receive higher cumulative doses of MITO is required to define the long-term risk of t-AL after MITO therapy for MS.

Acute Disease↗

[Current status of interferon beta-1b in multiple sclerosis therapy].

BACKGROUND: With interferon beta-1b (IFN beta-1b), an effective therapeutic option for both relapsing-remitting and secondary progressive multiple sclerosis (RRMS and SPMS, respectively) was on trial. The effectiveness was shown by clinical parameters as well as sophisticated imaging techniques. Moreover, the effectiveness of IFN beta-1b could be directly compared to that of interferon beta-1a (IFN beta-1a) in patients suffering from RRMS in an independent trial. CLINICAL EFFICACY IN RRMS: In long-term application, the annual number of episodes under IFN beta-1b drops by about one third compared to placebo. The difference of the detectable cerebral lesion load in the same period totaled 17.3%. CLINICAL EFFICACY IN SPMS: For this type of MS, too, studies have shown positive results of treatment with IFN beta-1b. This applies both to clinical results and its effects on cognitive performance, quality of life and the number of cerebral lesions identifiable with MRI. COMPARISON OF BETA INTERFERONS: The preliminary evaluation of the data at 1 year of the comparative study "Independent Comparison of Interferon = INCOMIN" shows that IFN beta-1b (on alternate days w s.c.) prevented approximately twice as many attacks as IFN beta-1a (1x/w i.m.) in patients with RRMS. In that study, therefore, IFN beta-1b, administered every 2nd day, proved more effective in the period under observation. CONCLUSION: On the basis of clinical and MRI criteria, interferon beta-1b proved to be an effective treatment option in patients with RRMS or SPMS. The data show that IFN beta-1b can also be employed in the early stages of MS. The comparative study underscores the importance of frequent doses of interferon in the treatment of MS.

Adjuvants, Immunologic↗

Apolipoprotein E epsilon 4 is associated with rapid progression of multiple sclerosis.

OBJECTIVE: The apolipoprotein E (APOE) polymorphism is known to impact on various neurologic disorders and has differential effects on the immune system and on CNS repair. Previous findings concerning a possible modulation of the clinical course of MS have been inconsistent, however. METHODS: In a cross-sectional study, the authors investigated 374 patients with clinically definite MS and a disease duration of at least 3 years and related their clinical and demographic findings to the allelic polymorphism of the APOE gene. The genotype distribution of patients with MS was compared with a cohort of 389 asymptomatic, randomly selected elderly volunteers. RESULTS: The authors found no significant differences in the distribution of genotypes between patients with MS and controls. However, patients with MS with the epsilon4 allele (n = 85) had a significantly higher progression index of disability (0.46 +/- 0.4 versus 0.33 +/- 0.26; p < 0.004) and a worse ranked MS severity score (5.1 +/- 1.9 versus 5.7 +/- 1.7; p = 0.05) than their non-epsilon4 counterparts, despite significantly more frequent long-term immunotherapy in epsilon4 carriers (74% versus 58%; p < 0.007). The annual relapse rate in epsilon4 carriers (0.87 +/- 0.56) was significantly higher than in patients with MS without an epsilon4 allele (0.71 +/- 0.47; p = 0.03). CONCLUSIONS: These results suggest no effect of the APOE genotype on susceptibility to MS, but indicate an association of the APOE epsilon4 allele with a more severe course of the disease.

Adult↗

Expression and distribution of transcription factor NF-kappaB and inhibitor IkappaB in the inflamed peripheral nervous system.

The NF-kappaB family of transcription factors is critically involved in the immune response. The activity of these proteins is under strict control of an inhibitory molecule called IkappaB. The present study investigated the expression and distribution pattern of NF-kappaB and IkappaB in sural nerve biopsies obtained from patients with Guillain-Barré syndrome, chronic inflammatory demyelinating polyradiculoneuropathy, and various non-inflammatory neuropathies. In inflammatory demyelinating as well as non-inflammatory neuropathies, NF-kappaB was primarily expressed by macrophages, as determined by immunohistochemistry. IkappaB, however, could be localized to macrophages as well as T cells in inflammatory demyelinating neuropathies, whereas in non-inflammatory controls Schwann cells were found to be the primary cell type expressing this inhibitor. Quantitation of immunoreactivity revealed a statistically significant increase of NF-kappaB expression in inflammatory demyelinating cases compared to controls. Our results suggest an important function of the NF-kappaB pool in the genesis of inflammatory demyelination in the peripheral nervous system.

Guillain-Barre Syndrome↗

Oral tolerance in experimental autoimmune neuritis (EAN) of the Lewis rat. II. Adjuvant effects and bystander suppression in P2 peptide-induced EAN.

Experimental autoimmune neuritis (EAN) in Lewis rats serves as an animal model of human inflammatory demyelinating neuropathies. We previously demonstrated that EAN actively induced by immunization with bovine PNS-myelin can be suppressed by feeding of myelin. This myelin-specific oral tolerance (OT) was enhanced by coapplication of cholera toxin (CT).In the present study, EAN induced by immunization with a neuritogenic P2 peptide was completely prevented by precedent feeding of the peptide. Oral application of the P2 peptide mediated tolerance as efficient as did nasal administration. In contrast to OT by myelin, addition of CT completely prevented oral induction of tolerance to peptide-induced EAN, while adjuvant feeding alone did not modulate disease. As a possible immunological basis to explain the prevention of OT induction by CT, we identified a highly enhanced protein-specific in vitro proliferation of splenocytes from antigen/CT-fed animals compared to those of rats fed with the antigen only. The opposite effects of oral CT in combination with proteins versus myelin confirm our former assumption that CT augments myelin-induced tolerance by its binding to gangliosides present in the myelin but not in the P2 peptide solution, while free CT prevents the induction of OT. It is suggested that CT is a useful adjuvant for OT if coadministered with myelin, but requires chemical linkage to proteins to exert this function. Regulatory lymphocytes orally induced by feeding the protein keyhole limpet hemocyanine (KLH) slightly ameliorated peptide-induced EAN via bystander mechanisms, but injection of KLH in close proximity to the site of peptide-immunization was essential. The restriction of bystander suppression to that site in the lymphoid system where neuritogenic T cells are activated may limit the impact of OT as a bonafide treatment strategy in human autoimmune diseases and underscores the necessity to identify the autoantigens involved.

Administration, Intranasal↗

Schwann cell-specific regulation of IL-1 and IL-1Ra during EAN: possible relevance for immune regulation at paranodal regions.

We reported Schwann cell (SC)-specific autoregulation of IL-1 in vitro [J. Neuroimmunol. 74 (1997a)]. Whether SC resume this autoregulatory potential in vivo and what significance it may have for processes leading to inflammation and demyelination of the peripheral nerve remain obscure. Therefore, we examine SC-specific autoregulation of IL-1alpha, IL-1beta and their natural antagonist IL-1 receptor antagonist (IL-1Ra) during experimental autoimmune neuritis (EAN), a model for the human Guillain-Barre syndrome. Autoregulation of IL-1 by SC was analyzed in both, actively induced and adoptively transferred, EAN. Sciatic nerves were sampled before the onset of clinical signs, 2 to 11 days post immunization (dpi), with P2 peptide, and during clinically manifest disease, 11 to 15 dpi. In adoptively transferred EAN, sciatic nerves were analyzed at preclinical stage, 2 to 4 days post P2 peptide-specific cell transfer (dpt) and during clinical manifested phase, 5 to 10 dpt. In both models, IL-1alpha and IL-1beta were expressed by SC, during preclinical EAN. IL-1Ra was not detectable in SC at preclinical stage. Further development and progression to clinically manifest disease was accompanied by SC-specific expression of IL-1Ra. Although present in other cells in the nerve, IL-1alpha and IL-1beta were hardly detectable in SC during clinical EAN. IL-1Ra immunoreactivity highly co-localized with myelin associated glycoprotein (MAG), one of the markers for paranodal regions, sites essential for proper impulse transmission. Paranodes are also primary sites where activated macrophages make contact with SC, prior to infiltration.SC-specific autoregulation of IL-1 and IL-1Ra is suggestive of its relevance for immune regulation at paranodes during EAN.

Animals↗