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Biomedical subjects

M Meyer

Publications and source records attributed to M Meyer.

At least 253 records · Page 14Linked to original sources

Design, synthesis and structure relationships of new N,N',N",N"'-tetrakis (omega-amino alkyl) tetraazamacrocycles.

A number of N,N',N",N"'-tetrakis (omega-aminoalkyl) tetraazamacrocycles and related compounds were synthesized and evaluated for their inhibitory effects on human immunodeficiency virus type 1 (HIV-1) and duck hepatitis B virus (DHBV) replication. The activity of these compounds was found to be highly dependent upon structural features: (i) the length of the alkyl linker connecting the nitrogen atoms of the macrocyclic ring to the exocyclic nitrogen atoms of the terminal amino groups (five methylenes favoured antiviral activity); (ii) substitution of the terminal amino groups of the linker reduced antiviral activity; and (iii) the size of the tetraazamacrocyclic ring (14 or 15 atoms) did not markedly affect the antiviral activity. Some analogues were potent inhibitors of HIV-1 replication, with anti-HIV activity similar to that of biscyclam (JM 2763). In contrast, other analogues were found to be highly toxic in duck hepatocyte primary culture, the 2.2.15 cell line and to a lesser extent in MT-4 cells. Structural parameters, macrocyclic ring size and metal-chelating ability have been used to develop a structure-activity relationship model in order to aid the design of antiviral molecules derived from N,N',N",N"'-tetrakis (omega-aminoalkyl) tetraazamacrocycles.

Animals↗

[Primary liposarcomas of the mediastinum].

Primary liposarcomas of the mediastinum are rare neoplasms comprising less than 1% of mediastinal tumors. While in early stages often asymptomatic they may grow to an enormous size and then exhibit various clinical symptoms mimicking lung or heart disease by compression of adjacent intrathoracic organs. Intention of surgical treatment is to relieve the symptoms and to establish the histological diagnosis. Surgery alone may be curative in some cases. The role of additional radio- and chemotherapy remains questionable. We report two cases of primary mediastinal liposarcomas that were treated surgically in our institution.

Aged↗

Alloplastic sternal replacement in malignant sternal tumors. Case report and review of the literature.

Although not seldom as a palliative procedure, the preferred treatment of locally recurrent breast cancer or chest wall involvement by metastases is full-thickness chest wall resection. For closure and coverage of the defect various techniques are described. Autoplastic reconstruction is indicated for smaller defects, while larger defects usually require alloplastic materials, especially in case of chest instability after resection. We report the case of a 55-year-old female who developed a locally recurrent breast cancer with infiltration of the sternum 4 years after left sided ablation. En bloc resection of the chest wall including the complete sternum was followed by replacement with a computer-aided custom made polyethylene sternal prosthesis. With this procedure we stabilized the chest wall with protection of the underlying organs, avoided prolonged postoperative ventilation and achieved a satisfying cosmetic result.

Biocompatible Materials↗

Septic Shock due to Cytomegalovirus Infection in Acute Respiratory Distress Syndrome after Falciparum Malaria.

Incidence of falciparum malaria in developed countries has increased in recent years due to tourism to tropical countries and immigration from Asia and Africa. In Switzerland, about 250 cases of malaria were reported in 1994 to the Federal Office of Health, including three cases with fatal outcome.1 The most commonly described complications of plasmodia infection are cerebral malaria, acute renal failure, and severe anemia with disseminated intravascular coagulation. However, pulmonary involvement occurs in 3 to 10% of cases and represents the most serious complication of this infection, with a lethality of 70%.2,3 Furthermore, a pronounced general immunosuppression has been reported in malaria patients, which may predispose them to opportunistic infections.4 We report a case of Plasmodium falciparum infection complicated by severe acute respiratory distress syndrome (ARDS) with development of systemic cytomegalovirus (CMV) infection leading to death. This evolution implies a severe immune deficiency associated with malaria, as previously suggested in the literature.

Journal Article↗

Adenovirus-mediated gene transfer reconstitutes depressed sarcoplasmic reticulum Ca2+-ATPase levels and shortens prolonged cardiac myocyte Ca2+ transients.

BACKGROUND: Decreased expression of the sarcoplasmic reticulum (SR) Ca2+-ATPase of the cardiac myocyte (SERCA2) and abnormal Ca2+ regulation have been independently linked to human heart failure. This study was designed to determine whether expression of a SERCA2 transgene could reconstitute depressed cardiac myocyte SERCA2 levels, augment SR Ca2+ uptake, and shorten prolonged excitation-contraction (EC)-associated Ca2+ transients in neonatal rat cardiac myocytes (NM). METHODS AND RESULTS: Cultured NM were treated with phorbol-12-myristate-13-acetate (PMA), a compound that decreases endogenous SERCA2 expression and results in prolongation of EC-associated Ca2+ transients. PMA-treated NM had a 75% reduction in SERCA2 mRNA and a 40% reduction in SERCA2 protein levels. SERCA2 adenovirus infection increased SERCA2 mRNA expression to 2.5 times control and reconstituted SERCA2 protein levels in PMA-treated cells. This reconstitution was associated with a 32.4% reduction in the time for decline of the Indo-1 Ca2+ transient to half-maximum levels (t(1/2) [Ca2+]i) (P<.05). A 34.5% augmentation of oxalate-facilitated SR Ca2+ uptake was also documented in SERCA2 adenovirus-infected cells (P<.05). CONCLUSIONS: Adenovirus-mediated expression of a SERCA2 transgene can reconstitute depressed endogenous SERCA2 levels, shorten prolonged Ca2+ transients, and augment SR Ca2+ uptake. It is conceivable that such an approach might be used in vivo to normalize altered Ca2+ regulation in human heart failure.

Adenoviridae↗

Overexpression of the rat sarcoplasmic reticulum Ca2+ ATPase gene in the heart of transgenic mice accelerates calcium transients and cardiac relaxation.

The Ca2+ ATPase of the sarcoplasmic reticulum (SERCA2) plays a dominant role in lowering cytoplasmic calcium levels during cardiac relaxation and reduction of its activity has been linked to delayed diastolic relaxation in hypothyroid and failing hearts. To determine the contractile alterations resulting from increased SERCA2 expression, we generated transgenic mice overexpressing a rat SERCA2 transgene. Characterization of a heterozygous transgenic mouse line (CJ5) showed that the amount of SERCA2 mRNA and protein increased 2. 6-fold and 1.2-fold, respectively, relative to control mice. Determination of the relative synthesis rate of SERCA2 protein showed an 82% increase. The mRNA levels of some of the other genes involved in calcium handling, such as the ryanodine receptor and calsequestrin, remained unchanged, but the mRNA levels of phospholamban and Na+/Ca2+ exchanger increased 1.4-fold and 1.8-fold, respectively. The increase in phospholamban or Na+/Ca2+ exchanger mRNAs did not, however, result in changes in protein levels. Functional analysis of calcium handling and contractile parameters in isolated cardiac myocytes indicated that the intracellular calcium decline (t1/2) and myocyte relengthening (t1/2) were accelerated by 23 and 22%, respectively. In addition, the rate of myocyte shortening was also significantly faster. In isolated papillary muscle from SERCA2 transgenic mice, the time to half maximum postrest potentiation was significantly shorter than in negative littermates. Furthermore, cardiac function measured in vivo, demonstrated significantly accelerated contraction and relaxation in SERCA2 transgenic mice that were further augmented in both groups with isoproterenol administration. Similar results were obtained for the contractile performance of myocytes isolated from a separate line (CJ2) of homozygous SERCA2 transgenic mice. Our findings suggest, for the first time, that increased SERCA2 expression is feasible in vivo and results in enhanced calcium transients, myocardial contractility, and relaxation that may have further therapeutic implications.

Animals↗

In vitro binding of the response regulator CitB and of its carboxy-terminal domain to A + T-rich DNA target sequences in the control region of the divergent citC and citS operons of Klebsiella pneumoniae.

The genes specifically required for citrate fermentation in Klebsiella pneumoniae form a cluster on the chromosome consisting of two divergently transcribed groups, citCDEFG and citS-oadGAB-citAB. Northern blot analyses described here and elsewhere indicate that each group forms an operon. The transcriptional start sites of citC and citS, which were mapped in this work by primer extension, are separated by a stretch of 193 bp with an extraordinary high A + T content of 67%. Expression of the citrate fermentation genes was recently shown to be positively controlled by a two-component signal transduction system encoded by the promoter-distal genes of the citS operon, citA (sensor kinase) and citB (response regulator). As a first step towards the functional characterization of CitB, we analysed its DNA-binding properties. To this end, the entire CitB, its N-terminal receiver domain (CitBN), and its C-terminal output domain (CitBC), all modified by a (His)6-tag, were purified. CitB(His) and CitBN(His) could be phosphorylated either with acetylphosphate or with ATP plus MalE-CitAC. The latter protein contains the kinase domain of CitA fused to the C terminus of the maltose-binding protein. Upon phosphorylation, CitB(His) became more resistant towards limited proteolysis by trypsin, reflecting substantial changes in tertiary structure. In gel retardation assays, CitB(His) bound specifically to the citC-citS intergenic region. The retardation pattern changed significantly upon phosphorylation and the apparent binding affinity increased 10 to 100-fold. Depending on the protein concentration, four different phospho-CitB(His)-DNA complexes could be resolved, suggesting the presence of multiple binding sites between citC and citS. DNase I footprints revealed two protected regions extending maximally from -55 to -89 relative to the citS transcription start and from -50 to -96 relative to the citC transcription start. Gel retardation and DNase I footprint assays with CitBC(His) showed that the C-terminal domain is sufficient for specific DNA binding. Since its properties were similar to that of unphosphorylated CitB(His), an essential role of the N-terminal receiver domain in high-affinity DNA binding was indicated. The positions of the binding sites for CitB and of putative recognition sequences for the cAMP receptor protein suggested a model for the interaction of these activators with RNA polymerase.

Bacterial Proteins↗

Requirement of cofactors for RXR/RAR-mediated transcriptional activation in vitro.

Using crude in vitro systems, we have previously shown that RXR/RAR heterodimers are able to activate transcription from the RAR beta 2 promoter in a retinoid-dependent manner. Here we demonstrate that cofactors distinct from general transcription factors or receptors are required to mediate retinoic acid-dependent transcription in vitro.

Cell Extracts↗

Ataxia and altered dendritic calcium signaling in mice carrying a targeted null mutation of the calbindin D28k gene.

Intracellular calcium-binding proteins are abundantly expressed in many neuronal populations. Previous evidence suggests that calcium-binding proteins can modulate various neuronal properties, presumably by their action as calcium buffers. The importance of calcium-binding proteins for nervous system function in an intact integrated system is, however, less clear. To investigate the physiological role of a major endogenous calcium-binding protein, calbindin D28k (calbindin) in vivo, we have generated calbindin null mutant mice by gene targeting. Surprisingly, calbindin deficiency does not affect general parameters of development and behavior or the structure of the nervous system at the light microscopic level. Null mutants are, however, severely impaired in tests of motor coordination, suggesting functional deficits in cerebellar pathways. Purkinje neurons, the only efferent of the cerebellar cortex, and inferior olive neurons, the source of the climbing fiber afferent, have previously been shown to express calbindin. Correlated with this unusual type of ataxia, confocal calcium imaging of Purkinje cells in cerebellar slices revealed marked changes of synaptically evoked postsynaptic calcium transients. Their fast, but not their slow, decay component had larger amplitudes in null mutant than in wild-type mice. We conclude that endogenous calbindin is of crucial importance for integrated nervous system function.

Animals↗

Cerebral glucose metabolism in patients with spasmodic torticollis.

The pathophysiology of spasmodic torticollis is not clear. Basal ganglia dysfunction has been suggested to underlie this clinical syndrome. We studied resting cerebral glucose metabolism in 10 spasmodic torticollis patients and 10 healthy controls by using positron-emission tomography and [18F]2-fluoro-2-deoxy-D-glucose. Statistical parametric mapping (SPM95) was used to compare both groups on a pixel-by-pixel basis. Torticollis patients showed a significantly higher glucose metabolism bilaterally in the lentiform nucleus (p < 0.005). Analyses performed using normalization of regional to global glucose metabolism confirmed this finding (controls, 1.26 +/- 0.06, and patients, 1.35 +/- 0.06; p < 0.01). The torticollis score did not correlate with glucose metabolism, nor did disease duration or side of chin direction. Our results indicate that the lentiform nucleus plays a predominant role in the pathophysiology of idiopathic spasmodic torticollis.

Adult↗

Calcium handling proteins in the failing human heart.

There is accumulating evidence that disturbed calcium homeostasis may play a key role in the pathophysiology of human heart failure. Because disturbed calcium handling could result from altered protein expression, levels of calcium handling proteins were quantitated by Western Blot analysis in failing and nonfailing human myocardium from hearts with endstage failing dilated or ischemic cardiomyopathy. Protein levels of the sarcoplasmic reticulum calcium release channel (ryanodine receptor) and of calcium storage proteins (calsequestrin and calreticulin) were similar in failing and nonfailing human myocardium. However, proteins involved in calcium removal from the cytosol were significantly altered in the failing human heart: 1) SR-Ca(2+)-ATPase, relevant for removal of calcium from the cytosol into the lumen of the sarcoplasmic reticulum, was decreased; 2) phospholamban, which inhibits the SR-Ca(2+)-ATPase in the basal unphosphorylated state, was slightly decreased; 3) the ratio of SR-Ca(2+)-ATPase to phospholamban was decreased; 4) the sarcolemmal Na(+)-Ca(2+)-exchanger, relevant for transsarcolemmal calcium extrusion was increased in the failing hearts. In summary, altered levels of proteins involved in calcium removal from the cytosol suggest an increase in transsarcolemmal calcium elimination relative to sarcoplasmic reticulum calcium removal. These findings support the concept that reduced function of the sarcoplasmic reticulum to accumulate calcium may reflect a major defect in excitation-contraction coupling in human heart failure.

Calcium↗

Cyclic nucleotide phosphodiesterase in human cavernous smooth muscle.

Cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP) are important second messengers in mediating relaxation of various smooth-muscle cells. This second-messenger pathway also appears to be essential for cavernous smooth-muscle relaxation on the basis of the assumption it would be of theoretical and clinical interest to determine the functional relevance of various phosphodiesterase (PDE) isoenzymes in human cavernous smooth-muscle This study was concentrated on characterizing PDE isoenzymes that exist in cavernous smooth muscle and evaluating the effect of selective PDE inhibitors on relaxation that is needed for the initiation of erection. Separation of PDE isoenzymes was performed using anion-exchange chromatography [diethylaminoethanol (DEAE)-Sepharose column], and a modification of the PDE-assay method proposed by Thompson and Lakey was used. The relaxation effect of PDE inhibitors was evaluated in an organ-bath study. Three different PDE isoenzymes have been shown in human cavernous smooth-muscle homogenate: cGMP-inhibited PDE (PDE III), cAMP-specific PDE (PDE IV), and cGMP-specific PDE (PDE V). All PDE inhibitors tested showed a relaxation effect on isolated human cavernous smooth-muscle, albeit with differing potency. Quazinone (a selective PDE III inhibitor) had potency at least equal to that of papaverine (a non-selective PDE inhibitor) and had a superior effect as compared with Rolipram (a selective PDE IV inhibitor) and zaprinast (a selective PDE V inhibitor). The present study provides the rationale and opens the possibility of using selective PDE inhibitors in the treatment of patients with erectile dysfunction.

Animals↗

[Regression of Yoshida sarcoma during normoxia and hypoxia after fractionated irradiation].

PURPOSE: Tumor regression is one of the most important factors determinating the tumor control probability after radiotherapy. The changes in the regression of tumors during fractionated radiotherapy and the application of different radioprotectors or radiosensitizers make render to assess their effectivity. MATERIAL AND METHOD: The effect of hypoxic breathing (8.1% O2) on the tumor regression of Yoshida sarcoma was studied using rats of Wistar strain. Different fractionation schedules were used: 10 x 3 Gy, 6 x 5 Gy and 3 x 10 Gy. RESULTS: No significant changes in the tumor regression after radiotherapy in any group in any time independent from respiratoric hypoxia were recorded. The tumor regression rate was significantly influenced by treatment schedule (p < 0.0005). CONCLUSIONS: Our results support the hypothesis of hypoxy-radiotherapy: The acute hypoxic hypoxia, caused due the breathing of hypoxic gas mixture with 8 to 10% oxygen, did not influence the radiation induced tumor regression in animal experiment. For this criterium no protection can be shown. The influence of hypoxy-radiotherapy on the local tumor control is necessary to evaluate in further experiments.

Acute Disease↗

[Oxygen pressure distribution in lymph node metastases and the changes during acute respiratory hypoxia].

PURPOSE: The radiosensitivity of tissues is essentially influenced by hypoxia. Based on the oxygen effect a new therapeutic modality has been developed to protect healthy tissues while hypoxic breathing during irradiation. PATIENTS AND METHOD: The effect of hypoxic breathing (8.1% O2) on the pO2 in metastatic lymph nodes was studied in 14 patients. Tissue oxygenation was assessed using a polarographic electrode system. RESULTS: The median pO2 was 19.6 mm Hg prior to hypoxic breathing with a great intra- and intertumoral variability. The relative frequency of pO2-values < 5 mm Hg was between 0 and 88%. During hypoxic breathing we registered no significant changes in the mean, the median or the pO2 values < 5 mm Hg. CONCLUSIONS: In metastatic lymph nodes can be found chronic hypoxia with great inter- and intratumoral pO2 variability. The hypoxic breathing (8.1% O2) shows no significant modifications of the tumor oxygenation with increased pO2 variability. This fact explains the experimental and clinical experience, that the hypoxic breathing (8 to 10% O2) protects the healthy tissue without changes in the radiosensitivity of chronic hypoxic tumor tissue.

Acute Disease↗