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M Kraft

Publications and source records attributed to M Kraft.

At least 91 records · Page 5Linked to original sources

Accumulation of tyrosine hydroxylase messenger RNA molecules in the rat mesencephalon by chronic caffeine treatment.

In the present study we assessed the effect of chronic treatment with caffeine on the levels of the messenger RNA molecule encoding the enzyme tyrosine hydroxylase (TH) by in situ hybridization histochemistry in the ventral tegmental area (VTA) and the substantia nigra compacta (SNc) of the rat brain. Animals that received caffeine for nine consecutive days at doses of 20, 40 and 80 mg/kg of body weight displayed increased TH mRNA levels in the SNc (up to 64% above vehicle-injected controls) and the VTA (33% above controls). Moreover, the increases observed at 80 mg/kg of caffeine were prevented by concurrent administration of the non-competitive N-methyl-D-aspartate (NMDA) receptor antagonist MK-801 (0.25 mg/kg). These results demonstrate that chronic exposure to caffeine, an adenosine A2 receptor antagonist, alters the levels of expression of the mRNA encoding the rate limiting enzyme in catecholamine biosynthesis.

Animals↗

Structural rearrangements on HIV-1 Tat (32-72) TAR complex formation.

Expression of the early genes of the human immunodeficiency virus type-I (HIV-1) genome is under the control of a trans-activator (Tat) protein. HIV-1 Tat action requires binding to TAR (trans-activation responsive element), an RNA sequence located at the 5'-end of all lentiviral mRNAs. We used various spectroscopic methods to investigate conformational changes on HIV-1 TAR binding to the HIV-1 (32-72) Tat peptide BP1. It comprises the RNA binding region and binds specifically to TAR. We conclude from our experiments that the regular A-form of the TAR RNA is slightly distorted towards the B-form when bound to BP1. Thus, the major groove is widened and the binding of BP1 facilitated. BP1 presumably adopts an extended conformation when binding to TAR and may fit well into the TAR major groove.

Amino Acid Sequence↗

The N-terminal X-X-Pro sequence of the HIV-1 Tat protein is important for the inhibition of dipeptidyl peptidase IV (DP IV/CD26) and the suppression of mitogen-induced proliferation of human T cells.

Recent data in the literature suggest that the HIV-1 Tat(1-86) protein exhibits immunosuppressive effects. Moreover, Tat was found to interact with dipeptidyl peptidase IV (DP IV), which is identical to the T cell activation marker CD26. Here we show that the N-terminal amino acid sequence of Tat is essential for the inhibition of DP IV-catalyzed IL-2(1-12) degradation. N-terminal modification of Tat with rhodamine prevented inhibition of enzymatic activity of DP IV as well as suppression of DNA synthesis of mitogen-stimulated human T cells. Moreover, natural peptides containing the X-X-Pro N-terminal motif of Tat also inhibited DP IV activity. These data suggest the existence of endogenous immunomodulatory oligopeptides which influence immune cell proliferation and differentiation via DP IV as does HIV-1 Tat.

Amino Acid Sequence↗

Theophylline's effect on neutrophil function and the late asthmatic response.

BACKGROUND: The decrement in lung function associated with the late asthmatic response after allergen challenge is believed to be mediated by an inflammatory response in the airways. Theophylline has been shown to inhibit the late asthmatic response, but the mechanisms are not clear. OBJECTIVE: The study was designed to determine whether theophylline would inhibit the late asthmatic response by reducing neutrophil activation and subsequent superoxide production. METHODS: Twelve subjects with asthma underwent treatment in this double-blind, randomized, crossover study. Each subject received theophylline and placebo in random order in two treatment periods of 3 weeks each. Each treatment period was followed by an allergen challenge and blood neutrophil function analysis. RESULTS: At therapeutic levels theophylline increased FEV1 at baseline and during the allergen challenge and increased the percentage suppression of neutrophil superoxide production by adenosine. CONCLUSION: Theophylline improved pulmonary function at baseline and during an allergen challenge, in part perhaps, by increasing the neutrophil's response to feedback inhibition by adenosine. However, theophylline did not decrease the severity and duration of the late asthmatic response.

Adult↗

Theophylline: potential antiinflammatory effects in nocturnal asthma.

BACKGROUND: Recent information suggests that one of the therapeutic properties of theophylline is an antiinflammatory effect. OBJECTIVE: We evaluated this potential effect of theophylline in eight patients with nocturnal asthma. METHODS: The study design was a randomized, double-blind, placebo-controlled crossover of 2-week treatment periods, separated by a 1-week washout period. Spirometry and bronchoscopy were performed. RESULTS: Theophylline, compared with placebo, significantly improved the overnight decrement in lung function. The higher the nocturnal theophylline level, the greater the improvement in lung function. Theophylline also significantly decreased the percentage of neutrophils in the 4:00 AM bronchoalveolar lavage fluid and stimulated leukotriene B4 levels from macrophages obtained at 4:00 AM. The greater change in neutrophils correlated with increasing serum theophylline concentration. Also, the change in leukotriene B4 production was significantly correlated with the theophylline-induced decrement in lavage granulocytes (neutrophils and eosinophils). CONCLUSION: This study suggests that one action of theophylline is to alter inflammatory cell number and function in nocturnal asthma and that it may do this through an leukotriene B4-mediated mechanism.

Anti-Inflammatory Agents, Non-Steroidal↗

CD26 mediates the action of HIV-1 Tat protein on DNA synthesis and cytokine production in U937 cells.

The human immunodeficiency virus 1 (HIV-1) Tat protein is known to be capable of suppressing antigen- and CD3-induced activation of human T cells. Previously, it was shown that Tat can bind to the dipeptidyl peptidase IV (DP IV, CD26) and inhibit the degradation of the chromogenic substrate Gly-Pro-p-nitroanilide. Using the method of free zone capillary electrophoresis, here we have shown that the DP IV-catalyzed hydrolysis of the NH2-X-Pro-containing cytokine peptides IL-2(1-12), IL-1 beta(1-6), and IL-6(1-12) was also significantly inhibited by the Tat protein. Moreover, HIV-1 Tat at a concentration of 10 micrograms/ml was found to have a strong suppressive effect on DNA synthesis and IL-1 beta production, but stimulates secretion of IL-1 receptor antagonist (IL-1RA) and TNF-alpha of CD26-expressing U937-H cells. It did not impair neither DNA synthesis nor cytokine production of low CD26-expressing U937-L cells. Similar results have been found with synthetic DP IV/CD26 inhibitors (Immunobiol., 1994, vol. 192, pp. 121-136). These data strongly suggest that Tat protein is a potent "natural" inhibitor of DP IV/CD26, and they support the hypothesis that DPIV plays a role in Tat's immunosuppressive activity.

Cytokines↗

Magnesium attenuates the neutrophil respiratory burst in adult asthmatic patients.

INTRODUCTION: IV magnesium (Mg2+) has been proposed as an emergent treatment for acute asthma exacerbations. Recent studies have focused on the effects of Mg2+ on bronchial smooth muscle, yet asthma is primarily an inflammatory disease. OBJECTIVE: To assess the effects of Mg2+ on the neutrophil respiratory burst of adult patients with asthma. METHODS: A prospective, blind study of volunteer adult asthmatic patients was performed. The patients' polymorphonuclear neutrophils (PMNs) were isolated, purified, and placed into phosphate-buffered saline with the following test conditions: concentrations of magnesium chloride (MgCl2) added: 0 mmol MgCl2, 1 mmol MgCl2 (low), and 10 mmol MgCl2 (high) both with and without the calcium (Ca2+) ionophore A23187 (0.1 mmol). PMNs were activated using N-formyl-methionyl-leucyl-phenylalanine (fMLP) (10 mumol), and the production of superoxide (O2-) was measured by the spectrophotometric reduction of cytochrome c. RESULTS: Mg2+ reduced activated PMN O2- production compared with that for no Mg2+ (1.0 +/- 0.1 nmol O2-/5 x 10(5) PMN/min) in both low (-0.52* +/- 0.3 nmol O2-/5 x 10(5) PMN/min) and high (-0.76* +/- 0.3 nmol O2-/5 x 10(5) PMN/min; *p < 0.05) concentrations. The addition of A23187 increased O2- production in both the high (0.53* +/- 0.02 nmol O2-/5 x 10(5) PMN/min) and the low (1.5* +/- 0.6 nmol O2-/5 x 10(5) x 10(5) PMN/min) Mg2+ groups, with no change in the control group (1.2 +/- 0.2 nmol O2-/10(5) PMN/min). CONCLUSIONS: In clinically relevant concentrations, Mg2+ attenuates the neutrophil respiratory burst in adult asthmatic patients. Mg2+ appears to affect PMNs by interfering with extracellular Ca2+ influx. Mg2+ may have a beneficial anti-inflammatory effect in asthmatic individuals.

Acute Disease↗

Alveolar tissue inflammation in asthma.

As physiologic and autopsy evidence suggests that peripheral airways and parenchyma are involved in asthma, we hypothesized that significant alveolar tissue inflammation is present in patients with stable, chronic asthma. Eleven patients with nocturnal asthma (NA) and 10 patients with non-nocturnal asthma (NNA) were studied. Each subject underwent two bronchoscopies with proximal airway endobronchial and distal alveolar tissue transbronchial biopsy in a random order at 4:00 P.M. and 4:00 A.M. Morphometric analysis was used to determine the number per volume (Nv) of inflammatory cells. Between-group comparisons showed that the Nv of eosinophils was greater in the NA alveolar tissue 4:00 A.M. compared with the subjects with NNA (40.2 x 10(3) [26.4-57.1 x 10(3), IQ] versus 15.7 x 10(3) [2.1-35.2 x 10(3), IQ], p = 0.05). In regard to the airway biopsies, no difference in the inflammatory and epithelial cells between the two groups was seen at either time. The NA group exhibited greater eosinophils and macrophages in the alveolar tissue at 4:00 A.M. compared with 4:00 P.M. (40.2 x 10(3) [26.4-57.1 x 10(3), IQ] versus 10.3 x 10(3) [2.7-16.8 x 10(3), IQ], p = 0.016 for eosinophils and 215.1 x 10(3) [129.9-356.1 x 10(3), IQ] versus 166.3 x 10(3) [150.7-212.6 x 10(3), IQ], p = 0.031 for macrophages). Only alveolar tissue eosinophils, not proximal airway tissue eosinophils, correlated with the nocturnal decrement in lung function (r = -0.54, p = 0.03). These findings suggest that eosinophils and macrophages accumulate to a greater extent in the alveolar tissue and these changes contribute more to the variation in lung function compared with inflammation in the more proximal tissue.

Adult↗

[Mucopolysaccharidoses from the view point of mucopolysaccharidoses families--10 years' experiences of the "Austrian Society for Mucopolysaccharidoses"].

The mucopolysaccharidoses (MPS) are rare inborn errors of metabolism. They are caused by defects in enzymes which are necessary for the degradation of mucopolysaccharides. An effective causal treatment is not available as yet. Nevertheless, it is the duty of the doctor, both from the medical and human aspect to assist MPS patients and their families physically and psychologically over many years. This task needs much empathy, working morale and knowledge of these diseases on the part of the medical adviser involved, but also demonstrates the limitations of active medical treatment. Since 10 years the "Austrian Society for Mucopolysaccharidoses" has tried to fill the gap between the MPS families' need for help and the still discouraging current medical treatment prospectives.

Adaptation, Psychological↗

Radiation-induced changes in transforming growth factor beta and collagen expression in the murine bladder wall and its correlation with bladder function.

Late radiation-induced changes in transforming growth factor beta (TGF-beta), collagen I and collagen III content of the bladder wall, as well as morphological alterations of the uroepithelium, were analyzed quantitatively in an immunohistochemical study. An interlaboratory, i.e. interstrain, comparison of two mouse strains (Amsterdam C3H/Hen Af-nu+ and Munich C3H Neu) with different dose-effect relationships for late bladder damage was made, choosing radiation doses producing equivalent functional alterations in both strains (ED80 of 25 Gy and 19 Gy, respectively, 40 weeks after irradiation). In one strain of mouse, cystometry was also performed in the same animals at different times after irradiation. The TGF-beta staining intensity showed a progressive increase between 90 and 360 days after irradiation. This increase was similar in both strains of mouse treated with functionally equivalent doses (ED80) and was less pronounced after a lower, ED40, dose in the Munich mice. In both strains, there was a radiation-induced increase in both collagen subtypes from 180 days after irradiation with the ED80. The ratio of collagen type I/III, however, decreased in the Amsterdam mice and increased in the Munich mice. The relative radioresistance of the Amsterdam mice may therefore be partly due to a greater contribution of the elastic collagen type III, affording greater bladder compliance after irradiation. The extent of radiation-induced uroepithelial denudations or papillomatous outgrowths, the TGF-beta staining intensity and collagen I/III ratio were each correlated to bladder function determined by cystometry for the Munich mice. This correlation was statistically significant for all three parameters for group mean responses and, with the exception of the collagen I/III ratio, also for individual mice. These experiments indicate that chronic radiation-induced alterations in TGF-beta expression and connective tissue metabolism in the bladder wall are possibly important factors determining reduced bladder function after irradiation.

Animals↗

Structural studies of HIV-1 Tat protein.

Tat (trans-activator) proteins are early RNA binding proteins regulating lentiviral transcription. These proteins are necessary components in the life cycle of all known lentiviruses, such as the human immunodeficiency viruses (HIV) or the equine infectious anemia virus (EIAV). Tat proteins are thus ideal targets for drugs intervening with lentiviral growth. The consensus RNA binding motif (TAR, trans-activation responsive element) of HIV-1 is well characterized. Structural features of the 86 amino acid HIV-1, Zaire 2 isolate (HV1Z2) Tat protein in solution were determined by two dimensional (2D) nuclear magnetic resonance (NMR) methods and molecular dynamics (MD) calculations. In general, sequence regions corresponded to structural domains of the protein. It exhibited a hydrophobic core of 16 amino acids and a glutamine-rich domain of 17 amino acids. Part of the NH2 terminus, Val4 to Pro14, was sandwiched between these domains. Two highly flexible domains corresponded to a cysteine-rich and a basic sequence region. The 16 amino acid sequence of the core region is strictly conserved among the known Tat proteins, and the three-dimensional fold of these amino acids of HV1Z2 Tat protein was highly similar to the structure of the corresponding EIAV Tat domain. HV1Z2 Tat protein contained a well defined COOH-terminal Arg-Gly-Asp (RGD) loop similar to the recently determined decorsin RGD loop.

Amino Acid Sequence↗

HIV-1 Tat potentiates TNF-induced NF-kappa B activation and cytotoxicity by altering the cellular redox state.

This study demonstrates that human immunodeficiency virus type 1 (HIV-1) Tat protein amplifies the activity of tumor necrosis factor (TNF), a cytokine that stimulates HIV-1 replication through activation of NF-kappa B. In HeLa cells stably transfected with the HIV-1 tat gene (HeLa-tat cells), expression of the Tat protein enhanced both TNF-induced activation of NF-kappa B and TNF-mediated cytotoxicity. A similar potentiation of TNF effects was observed in Jurkat T cells and HeLa cells treated with soluble Tat protein. TNF-mediated activation of NF-kappa B and cytotoxicity involves the intracellular formation of reactive oxygen intermediates. Therefore, Tat-mediated effects on the cellular redox state were analyzed. In both T cells and HeLa cells HIV-1 Tat suppressed the expression of Mn-dependent superoxide dismutase (Mn-SOD), a mitochondrial enzyme that is part of the cellular defense system against oxidative stress. Thus, Mn-SOD RNA protein levels and activity were markedly reduced in the presence of Tat. Decreased Mn-SOD expression was associated with decreased levels of glutathione and a lower ratio of reduced:oxidized glutathione. A truncated Tat protein (Tat1-72), known to transactivate the HIV-1 long terminal repeat (LTR), no longer affected Mn-SOD expression, the cellular redox state or TNF-mediated cytotoxicity. Thus, our experiments demonstrate that the C-terminal region of HIV-1 Tat is required to suppress Mn-SOD expression and to induce pro-oxidative conditions reflected by a drop in reduced glutathione (GSH) and the GSH:oxidized GSH (GSSG) ratio.(ABSTRACT TRUNCATED AT 250 WORDS)

Acquired Immunodeficiency Syndrome↗

Chronobiology and chronotherapy in medicine.

There is a fascinating and exceedingly important area of medicine that most of us have not been exposed to at any level of our medical training. This relatively new area is termed chronobiology; that is, how time-related events shape our daily biologic responses and apply to any aspect of medicine with regard to altering pathophysiology and treatment response. For example, normally occurring circadian (daily cycles, approximately 24 hours) events, such as nadirs in epinephrine and cortisol levels that occur in the body around 10 PM to 4 AM and elevated histamine and other mediator levels that occur between midnight and 4 AM, play a major role in the worsening of asthma during the night. In fact, this nocturnal exacerbation occurs in the majority of asthmatic patients. Because all biologic functions, including those of cells, organs, and the entire body, have circadian, ultradian (less than 22 hours), or infradian (greater than 26 hours) rhythms, understanding the pathophysiology and treatment of disease needs to be viewed with these changes in mind. Biologic rhythms are ingrained, and although they can be changed over time by changing the wake-sleep cycle, these alterations occur over days. However, sleep itself can adversely affect the pathophysiology of disease. The non-light/dark influence of biologic rhythms was first described in 1729 by the French astronomer Jean-Jacques de Mairan. Previously, it was presumed that the small red flowers of the plant Kalanchoe bloss feldiuna opened in the day because of the sunlight and closed at night because of the darkness. When de Mairan placed the plant in total darkness, the opening and closing of the flowers still occurred on its intrinsic circadian basis. It is intriguing to think about how the time of day governs the pathophysiology of disease. On awakening in the morning, heart rate and blood pressure briskly increase, as do platelet aggregability and other clotting factors. This can be linked to the acrophase (peak event) of heart attacks. During the afternoon we hit our best mental and physical performance, which explains why most of us state that "I am not a morning person." Even the tolerance for alcohol varies over the 24-hour cycle, with best tolerance around 5 pm (i.e. "Doctor, I only have a couple of highballs before dinner"). Thus, all biologic functions, from those of the cell, the tissue, the organs, and the entire body, run on a cycle of altering activity and function.(ABSTRACT TRUNCATED AT 400 WORDS)

Arthritis↗

Methacholine challenge does not affect bronchoalveolar fluid cell number and many indices of cell function in asthma.

Methacholine (MCh) challenge testing is often incorporated into clinical studies prior to performing bronchoscopy as a measure of bronchial hyperresponsiveness (BHR). However, the effect of methacholine on many aspects of bronchoalveolar lavage (BAL) fluid cell count and function have not been fully evaluated. Ten patients with asthma, maintained on inhaled beta 2-agonists, were studied. Each subject underwent two bronchoscopies in a random order, one preceded by methacholine challenge within 30 min of the BAL. The investigators were blinded to the regimen. Several markers of BAL fluid cell number and function were studied: cell count and differential histamine, eosinophil products, including eosinophil cationic protein and Charcot-Leyden crystal protein, macrophage production of thromboxane B2 and leukotriene B4, neutrophil lysozyme and lactoferrin, and lymphocyte typing and activation markers measured via flow cytometry. No significant differences were noted in any of these markers of cell number or function which could be ascribed to methacholine challenge. Thus, methacholine challenge does not appear to affect these markers of cell number and function. These findings indicate that a methacholine challenge can be used as a measure of bronchial hyperresponsiveness within 30 min prior to bronchoscopy without altering bronchoalveolar lavage fluid characteristics.

Adult↗