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Biomedical subjects

F Lang

Publications and source records attributed to F Lang.

At least 127 records · Page 7Linked to original sources

Acute regulation of the betaine/GABA transporter BGT-1 expressed in Xenopus oocytes by extracellular pH.

Besides uptake of Na(+) and Cl(-), mammalian cells counteract osmotic cell shrinkage also by Na(+)-coupled uptake of osmolytes, e. g., myo-inositol, taurine or betaine. The expression of the corresponding transporters is transcriptionally regulated by the ambient pH and osmolarity and is increased upon cell shrinkage, a process requiring hours. The present study has been performed to disclose rapid regulation by pH of osmolyte transport via BGT-1. Transport of GABA was investigated by using the two-electrode voltage-clamp technique with BGT-1 expressing Xenopus oocytes. GABA was used as a substrate, because of the low oocyte endogenous transport activity. Extracellular acidification to pH 5.5 reversibly decreased and extracellular alkalinization to pH 8.5 increased GABA-induced currents. Kinetic analysis revealed that extracellular alkalinization increases the affinity for Cl(-) as reflected by a decrease of the apparent K(m)-value for Cl(-) from >500 mM to 55.8 +/- 4.7 mM upon an increase of the pH from 7.0 to 8.5. The apparent K(m)- values for Na(+) and GABA remained unaltered in the pH range from 6.0 to 8.5. Instead, alkalinization increased the maximal current induced by saturating Na(+) and GABA concentrations. The results are compatible with a model of interference of H(+) ions with Cl(-) binding and a pH-dependent reduction of V(max) for Na(+) and GABA.

Animals↗

[Pertinence of the addiction concept in eating behavior disorders].

From a psychodynamic perspective, dependence disorders, irrespective of the object of addiction, can be seen as the expression of the subject's neurobiological, psychopathological, cultural and social vulnerability. Since vulnerability strengthens and reorganizes the personality, it can drive these subjects to perpetuate pathological behaviors. In this light, behavior disorders belong to the field of addiction diseases, especially considering that the underlying psychopathological structures are close to those observed in addiction, that depression plays a central role, and that their development into toxic addictive behavior (drugs, alcohol, psychotrope) is frequent.

Adolescent↗

Stimulation of CD95 (Fas) blocks T lymphocyte calcium channels through sphingomyelinase and sphingolipids.

Calcium influx through store-operated calcium release-activated calcium channels (CRAC) is required for T cell activation, cytokine synthesis, and proliferation. The CD95 (Apo-1/Fas) receptor plays a role in self-tolerance and tumor immune escape, and it mediates apoptosis in activated T cells. In this paper we show that CD95-stimulation blocks CRAC and Ca(2+) influx in lymphocytes through the activation of acidic sphingomyelinase (ASM) and ceramide release. The block of Ca(2+) entry is lacking in CD95-defective lpr lymphocytes as well as in ASM-defective cells and can be restored by retransfection of ASM. C2 ceramide, C6 ceramide, and sphingosine block CRAC reversibly, whereas the inactive dihydroceramide has no effect. CD95-stimulation or the addition of ceramide prevents store-operated Ca(2+) influx, activation of the transcriptional regulator NFAT, and IL-2 synthesis. The block of CRAC by sphingomyelinase metabolites adds a function to the repertoire of the CD95 receptor inhibiting T cell activation signals.

Animals↗

Cricotracheal resection for pediatric subglottic stenosis.

Until recently, cricotracheal resection (CTR) has not been commonly accepted as a treatment modality for severe subglottic stenosis in the pediatric age group. The reasons have included the risk of a possible dehiscence at the site of the anastomosis, the likelihood of injury to the recurrent laryngeal nerves, and the interference with normal growth of the larynx. Thirty-eight infants and children with a severe subglottic stenosis underwent a partial cricoid resection with primary thyrotracheal anastomosis. Thirty-three patients were tracheotomy-dependent at the time of surgery and 34 were referred cases; 27 were classified as grade III, and 10 as grade IV stenoses according to new Cotton's classification. Nineteen patients were younger than 3 years of age at the time of surgery. The tracheotomy was resected during the surgical procedure in 21 cases. Decannulation was achieved in 36/38 cases after an open procedure. There is one complete restenosis and one good result awaiting decannulation after further surgery for a Pierre Robin syndrome. The authors experienced no lesion of the recurrent laryngeal nerves and no fatality. Thirty-one patients show no exertional dyspnea, three a slight stridor while exercising, and two patients are not decannulated. The postoperative follow-up in longer than 10 years in eight cases. All patients show a normal growth of the larynx and trachea. Compared to laryngotracheoplasties, CTR gives better results for severe subglottic stenosis. This operation should become the treatment of choice for severe (grade III and IV) subglottic stenosis in infants and children.

Child↗

The tyrosine kinase lck is required for CD95-independent caspase-8 activation and apoptosis in response to ionizing radiation.

Induction of apoptosis is a hallmark of cytostatic drug and radiation-induced cell death in human lymphocytes and lymphoma cells. However, the mechanisms leading to apoptosis are not well understood. We provide evidence that ionizing radiation induces a rapid activation of caspase-8 (FLICE) followed by apoptosis independently of CD95 ligand/receptor interaction. The radiation induced cleavage pattern of procaspase-8 into mature caspase-8 resembled that following CD95 crosslinking and resulted in cleavage of the proapoptotic substrate BID. Overexpression of dominant-negative caspase-8 interfered with radiation-induced apoptosis. Caspase-8 activation by ionizing radiation was not observed in cells genetically defective for the Src-like tyrosine kinase Lck. Cells lacking Lck also displayed a marked resistance towards apoptosis induction upon ionizing radiation. After retransfection of Lck, caspase-8 activation and the capability to undergo apoptosis in response to ionizing radiation was restored. We conclude that radiation activates caspase-8 via an Lck-controlled pathway independently of CD95 ligand expression. This is a novel signaling event required for radiation induced apoptosis in T lymphoma cells.

Antibodies↗

Functional characterization of the Betaine/gamma-aminobutyric acid transporter BGT-1 expressed in Xenopus oocytes.

Betaine is an osmolyte accumulated in cells during osmotic cell shrinkage. The canine transporter mediating cellular accumulation of the osmolyte betaine and the neurotransmitter gamma-aminobutyric acid (BGT-1) was expressed in Xenopus oocytes and analyzed by two-electrode voltage clamp and tracer flux studies. Exposure of oocytes expressing BGT-1 to betaine or gamma-aminobutyric acid (GABA) depolarized the cell membrane in the current clamp mode and induced an inward current under voltage clamp conditions. At 1 mM substrate the induced currents decreased in the following order: betaine = GABA > diaminobutyric acid = beta-alanine > proline = quinidine > dimethylglycine > glycine > sarcosine. Both the Vmax and Km of GABA- and betaine-induced currents were voltage-dependent, and GABA- and betaine-induced currents and radioactive tracer uptake were strictly Na+-dependent but only partially dependent on the presence of Cl-. The apparent affinity of GABA decreased with decreasing Na+ concentrations. The Km of Na+ also depended on the GABA and Cl- concentration. A decrease of the Cl- concentration reduced the apparent affinity for Na+ and GABA, and a decrease of the Na+ concentration reduced the apparent affinity for Cl- and GABA. A comparison of 22Na+-, 36Cl--, and 14C-labeled GABA and 14C-labeled betaine fluxes and GABA- and betaine-induced currents yielded a coupling ratio of Na+/Cl-/organic substrate of 3:1:1 or 3:2:1. Based on the data, a transport model of ordered binding is proposed in which GABA binds first, Na+ second, and Cl- third. In conclusion, BGT-1 displays significant functional differences from the other members of the GABA transporter family.

Animals↗

Selection and long-term persistence of reactive CTL clones during an EBV chronic response are determined by avidity, CD8 variable contribution compensating for differences in TCR affinities.

Recent studies have suggested that the diversity of TCR repertoire after primary immunization is conserved in memory T cells and that a progressive narrowing of this repertoire may take place during recall infections. It now remains to be investigated which parameters determine the repertoire of the memory response and possibly restrict its diversity after subsequent antigenic challenges. To address this question, we took advantage of a panel of CD8+ T cell clones from the joint of a rheumatoid arthritis patient and selected for their reactivity against a single MHC/peptide complex. Characterization of both TCR chains documented a great diversity among those clones and the persistence of clonotypes over a 2-yr period. Strikingly, despite the observed repertoire heterogeneity, all clones displayed a narrow range of MHC/peptide density requirements in cytotoxicity assays (ED50 between 9 and 36 nM). TCR affinities were then indirectly estimated by blocking CD8 interaction with an anti-CD8 mAb. We found a wide range of TCR affinities among the different clonotypes that segregated with Vbeta usage. We thus propose that during an in vivo chronic response, a narrow range of avidity of the TCR-CD8 complex conditions long-term clonotype persistence, and that the level of CD8 contribution is adjusted to keep clonotypes with variable TCR affinities within this avidity window.

Adult↗

Ca2+-activated K channel of the BK-type in the inner mitochondrial membrane of a human glioma cell line.

A single channel current was recorded from mitoplasts (i.e., inner mitochondrial membrane) of the human glioma cell line LN229 using patch-clamp techniques in the mitoplast-attached mode. We frequently found a 295 +/- 18 pS channel that showed a straight i-E relation in the range +/-60 mV in 150 mM KCl solutions on either side of the mitoplast. If KCl in the bath was exchanged against NaCl, outward currents were undetectable, indicating potassium selectivity. Channel activity determined as open probability increased with increasing Ca2+ concentrations (EC50 = 0.9 microM at 60 mV). Open probability was voltage dependent. An e-fold increase of time spent in the open state was induced by a depolarization of 10.5 mV. Open probability was decreased by charybdotoxin concentration and voltage dependently (EC50 = 1.4 nM). In conclusion, we show for the first time that the inner mitochondrial membrane in human glioma cells contains a calcium-dependent K channel of the BK-type.

Calcium↗

Interference of H2O2 with stimulus-secretion coupling in mouse pancreatic beta-cells.

1. We have reported previously that in mouse pancreatic beta-cells H2O2 hyperpolarizes the membrane and increases the ATP-sensitive K+ current recorded in the perforated patch configuration of the patch-clamp technique. The present study was undertaken to elucidate the underlying mechanisms. 2. The intracellular ATP concentration measured by chemoluminescence was reduced by H2O2. The ADP concentration increased in parallel during the first 10 min, resulting in a pronounced decrease in the ATP/ADP ratio. 3. Consistent with these results, glucose-stimulated insulin secretion from isolated islets was inhibited by H2O2. 4. Membrane hyperpolarization measured with intracellular microelectrodes in intact islets and inhibition of insulin secretion were counteracted by tolbutamide, indicating that the channels are still responsive to inhibitors and that the ATP concentration is not too low to trigger exocytosis. However, the sensitivity of the beta-cells to tolbutamide was reduced after treatment with H2O2. 5. H2O2 increased the intracellular Ca2+ activity ([Ca2+]i) in a biphasic manner. A first transient rise in [Ca2+]i due to mobilization of Ca2+ from intracellular stores was followed by a sustained increase, which was at least partly dependent on Ca2+ influx. The first phase seems to reflect Ca2+ mobilization from mitochondria. 6. Our results demonstrate that H2O2 interferes with glucose metabolism, which influences the membrane potential and ATP-sensitive K+ current via the intracellular concentration of ATP. These events finally lead to an inhibition of insulin secretion despite an increase in [Ca2+]i.

Adenosine Triphosphate↗

Cell volume regulatory mechanisms in apoptotic cell death.

One of the hallmarks of apoptosis is cell shrinkage, which--at constant extracellular osmolarity--requires a decrease of cellular osmolarity. Moreover, apoptosis can be elicited by increase of extracellular osmolarity and the resistance of cells towards apoptosis correlates with their ability to regulate their volume in hypertonic environment. On the other hand, CD95-receptor-mediated apoptosis is blunted at moderate increases of extracellular osmolarity. Given the role of cell volume alterations it is not surprising that apoptosis is paralleled by marked alterations of cell volume regulatory mechanisms. Stimulation of the CD95-receptor, which confers apoptosis to a variety of cells, leads to activation of cell volume regulatory anion channel ORCC. However, activation of ORCC is paralleled by inhibition of cell volume regulatory K+ channel Kv1.3. It is only 40 to 60 minutes after triggering of the CD95-receptor when the cells release the organic osmolyte taurine and shrink.

Animals↗

Molecular and functional characterization of s-KCNQ1 potassium channel from rectal gland of Squalus acanthias.

Functional and pharmacological data point to the involvement of KCNQ1/IsK potassium channels in the basolateral potassium conductance of secretory epithelia. In this study, we report the cloning and electrophysiological characterization of the KCNQ1 protein from the salt secretory rectal gland of the spiny dogfish (Squalus acanthias). The S. acanthias KCNQ1 (s-KCNQ1) cDNA was cloned by polymerase chain reaction (PCR) intensive techniques and showed overall sequence similarities with the KCNQ1 potassium channel subunits of Man, mouse and Xenopus laevis of 64, 70 and 77%, respectively, at the translated amino acid level. Analysis of s-KCNQ1 expression on a Northern blot containing RNA from heart, rectal gland, kidney, brain, intestine, testis, liver and gills revealed distinct expression of 7.4-kb s-KCNQ1 transcripts only in rectal gland and heart. Voltage-clamp analysis of s-KCNQ1 expressed in Xenopus oocytes showed pronounced electrophysiological similarities to human and murine KCNQ1 isoforms, with a comparable sensitivity to inhibition by the chromanol 293B. Coexpression of s-KCNQ1 with human-IsK (h-IsK) induced currents with faster activation kinetics and stronger rectification than observed after coexpression of human KCNQ1 with h-IsK, with the voltage threshold of activation shifted to more negative potentials. The low activation threshold at approximately -60 mV in combination with the high expression in rectal gland cells make s-KCNQ1 a potential candidate responsible for the basolateral potassium conductance.

Animals↗

h-sgk serine-threonine protein kinase gene as transcriptional target of transforming growth factor beta in human intestine.

BACKGROUND & AIMS: Recently, the immediate early gene h-sgk was cloned as a hypertonicity-induced gene from human hepatoma cells. The aim of this study was to localize h-sgk messenger RNA (mRNA) expression in normal and inflamed intestinal mucosa and to identify potential transcriptional regulators. METHODS: h-sgk mRNA in small intestinal mucosa from healthy persons and patients with Crohn's disease was determined by in situ hybridization. Transcriptional regulation was studied by Northern blot analysis of total RNA isolated from cultured human Intestine 407, U937, and HepG2 cells. RESULTS: In normal ileum, h-sgk mRNA was selectively localized to the apical villus enterocytes, whereas no staining was detected in crypt cells. In Crohn's disease, enterocytes of the crypts expressed h-sgk and abundant h-sgk positive inflammatory cells appeared in the lamina propria. Combined h-sgk in situ hybridization and immunohistochemical analysis of CD68 antigen expression identified a part of these cells as macrophages. In addition to spatial correlation of transforming growth factor (TGF)-beta1 protein and h-sgk mRNA expression, h-sgk transcription in human Intestine 407 and HepG2 cells as well as in U937 monocytes/macrophages was strongly induced by TGF-beta1 in vitro. CONCLUSIONS: h-sgk expression in normal and inflamed intestinal mucosa may be regulated by TGF-beta1 and may contribute to the pleiotropic actions of TGF-beta1 in mucosal cell populations.

Antigens, CD↗

Intracellular mechanisms of L-selectin induced capping.

Leucocyte adhesion to endothelial cells is a tightly regulated process involving selectins, integrins and immunoglobulin-like proteins. Cell adhesion and communication are controlled by membrane dynamics like receptor capping. Capping of surface receptors is an ubiquitous mechanism but still not well understood. Employing immunofluorescence techniques, we demonstrate that L-selectin triggering results in receptor capping of the L-selectin molecules in lymphocytes. Using pharmacological inhibitors and genetic deficient cell lines we show that this process involves intracellular signalling molecules. L-Selectin capping seems to be independent on activation of p56lck-kinase, but requires the neutral sphingomyelinase, small G proteins and the cytoskeleton. Therefore, capping of L-selectin upon stimulation might play an important role in the very early phase of lymphocyte trafficking.

B-Lymphocytes↗

Treatment of advanced breast cancer with gemcitabine and vinorelbine plus human granulocyte colony-stimulating factor.

PURPOSE: A phase II trial was performed to investigate the efficacy and tolerance of gemcitabine, vinorelbine, and recombinant human granulocyte colony-stimulating factor (G-CSF) in advanced breast cancer. PATIENTS AND METHODS: Between April 96 and August 97, 60 patients entered this trial. Forty-five patients were previously untreated and 15 patients had failed previous palliative chemotherapy with (n = 10) or without anthracyclines (n = 5). Therapy consisted of gemcitabine 1000 mg/m2 on days 1 + 15 + 21 and vinorelbine 40 mg/m2 on days 1 + 21, both diluted in 250 ml saline and infused over 30 min. G-CSF was administered at 5 microg/kg/day subcutaneously from days 2-6 and 22-26. Courses were repeated every 5 weeks. Treatment was continued in case of response or stable disease until a total of six courses. RESULTS: The overall response rate was 55.5% for patients who had not received prior palliative chemotherapy (95% confidence interval, 40%-70.3%), including 5 CR (11.1%) and 20 PR (44.4%); 12 patients (27%) had stable disease (SD), and 8 (18%) progressed. Second-line treatment with this regimen resulted in 6/15 (40%) objective remissions, 5 had SD, and 4 PD. The median time to progression was 9.5 months (range, 1.5-28) in previously untreated patients, and 7.0 months (range, 2-23) in those who had failed prior chemotherapy. After a median follow-up time of 15 months, 44 patients (73%) are still alive with metastatic disease. Myelosuppression was commonly observed, though WHO 3 and 4 neutropenia occured in only 9 (15%) and 2 patients (3%), and was never complicated by septicaemia; grade 3 anemia was noted in 2 patients. Severe (WHO grade 3) nonhematologic toxicity was rarely observed, and included nausea/emesis in 3 and constipation in 2 patients. CONCLUSIONS: Our data suggest that gemcitabine and vinorelbine plus G-CSF is an effective and tolerable first- as well as second-line combination regimen for treatment of advanced breast cancer.

Adult↗

Phase II trial of gemcitabine, epirubicin and granulocyte colony-stimulating factor in patients with advanced pancreatic adenocarcinoma.

Although the novel cytidin analogue gemcitabine has shown superior anti-tumour activity than 5-fluorouracil in advanced pancreatic cancer, further improvements of therapeutic results are warranted. This goal might be achieved by combining gemcitabine with other active drugs. This trial evaluated the efficacy and tolerance of such a combination regimen with epirubicin and granulocyte colony-stimulating factor (G-CSF) in patients with metastatic disease. Seventy patients with metastatic pancreatic adenocarcinoma were enrolled in this multicentre trial. Patients received 4-weekly courses of a combination regimen consisting of epirubicin 60 mg m(-2) given as intravenous bolus injection on day 1, gemcitabine 1000 mg m(-2) infused over 30 min on days 1, 8 and 15, and G-CSF administered at 5 microg kg(-1) day(-1) subcutaneously from days 2-6 during each cycle. The efficacy of treatment was assessed by conventional measures, i.e. objective response, progression-free and overall survival, as well as by analysis of clinical benefit response (defined as > or = 50% reduction in pain intensity, > or = 50% reduction in daily analgesic consumption, and/or > or = 20-point improvement in Karnofsky performance status that was sustained for > or = 4 consecutive weeks). Of 66 patients evaluable for objective response, one achieved complete and 13 partial remissions, for an overall response rate of 21% (95% confidence interval (CI), 12-33%); 27 additional patients (41%) had stable and 25 (38%) increasing disease. The median time to progression was 3.8 months. Median survival was 7.8 months, and the probability of surviving beyond 12 months was 21.2%. Out of 60 patients with tumour-related symptoms, who were considered evaluable for clinical benefit response, 26 (43%) experienced significant palliation. The median time to achieve a clinical benefit response was 7 weeks, and its median duration was 22 weeks. Chemotherapy was well-tolerated with leukopenia/granulocytopenia representing the most common and dose-limiting side-effect. Gastrointestinal and other subjective toxicities were infrequent and generally rated minor. We conclude that the combination of gemcitabine, epirubicin and G-CSF seems to be an effective palliative treatment with only moderate toxic effects in patients with metastatic pancreatic adenocarcinoma. Our results in terms of objective and clinical benefit response, as well as survival seem to suggest an advantage over gemcitabine-monotherapy, though this remains to be confirmed in a randomized trial.

Adenocarcinoma↗

Mutations in the SLC3A1 gene in cystinuric patients: frequencies and identification of a novel mutation.

Cystinuria is a frequent autosomal recessive transport disorder characterized by defective renal resorption of cystine and other dibasic amino acids. Biochemically, three types of cystinuria can be defined. Here we present our results of screening for mutations in the SLC3A1 gene, which codes for a dibasic amino acid transporter protein and appears to be involved in the pathogenesis of cystinuria type I. Our study population consists of 5 Italian cystinuria type I patients and 10 cystinuric patients as yet unclassified as to clinical type. The latter were of different ethnic origin. In total, we found 13 point mutations and 8 genomic rearrangements in 15 cystinuric patients, i.e., our detection rate was 70% (23/30 chromosomes). Remarkably, in patients known to be suffering from cystinuria type I, the mutation detection rate was only 50%, whereas in patients unselected as to cystinuria type, we found 80% of mutations. Additionally, our results, as with those published in the literature, indicate a possible population specific distribution of mutations: Each of the 4 Greek patients analyzed here showed homozygosity for mutation T216M in exon 3. Analysis of a Yugoslavian patient showed homozygosity for a novel mutation, R365L, in exon 6 (nt1094G > T). Findings from molecular genetic studies, as well as physiological investigations, suggest that there are further genes that play a role in the etiology of cystinuria. Nevertheless, our results show that screening for mutations in the SLC3A1 gene can be a meaningful step toward molecular genetic diagnosis of cystinuria in patients without biochemical classification. As with cystic fibrosis, the finding of specific mutations in particular ethnic populations, suggest that the diagnostic approach should take into consideration a patient's ethnic origins.

Amino Acid Transport Systems, Basic↗