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Biomedical subjects

M Scheller

Publications and source records attributed to M Scheller.

At least 19 recordsLinked to original sources

Butanol effects on gamma-amino butyric acid concentration-responses in human alpha1beta2gamma2L gamma-amino butyric acid type A receptors with a mutation at alpha1S270.

Alcohol enhancement of gamma-amino butyric acid type A receptor (GABA(A)R) gating at low GABA is reduced by a serine-to-isoleucine mutation at residue alphaS270, suggesting that alphaS270 forms an enhancement site. However, whether the alphaS270I mutation strengthens alcohol inhibition of GABA(A)Rs remains unexplored. Furthermore, alphaS270 mutations have not been studied in the most prevalent form of mammalian GABA(A)Rs consisting of alpha1, beta2, and gamma2 subunits. In voltage-clamped Xenopus oocytes expressing recombinant alpha1beta2gamma2L GABA(A)Rs, electrophysiological analysis of GABA concentration-responses demonstrates that the alpha1(S270I) mutation increases apparent GABA affinity and significantly reduces the Hill coefficient of GABA(A)R activation. Butanol-induced leftward-shifts in GABA concentration-responses for both wild-type alpha1beta2gamma2L and alpha1(S270I)beta2gamma2L GABA(A)Rs are equal. At high GABA, butanol neither enhances nor inhibits alpha1(S270I)beta2gamma2L responses. Thus, in the dominant mammalian GABA(A)R isoform, the alphaS270I mutation affects neither enhancement nor inhibition by butanol, but alters the gating mechanism by reducing cooperativity, producing an apparent reduction in alcohol enhancement at low GABA.

1-Butanol↗

The gamma subunit determines whether anesthetic-induced leftward shift is altered by a mutation at alpha1S270 in alpha1beta2gamma2L GABA(A) receptors.

BACKGROUND: A major action of volatile anesthetics is enhancement of gamma-aminobutyric acid receptor type A (GABA(A)R) currents. In recombinant GABA(A)Rs consisting of several subunit mixtures, mutating the alpha1 subunit serine at position 270 to isoleucine [alpha1(S270I)] was reported to eliminate anesthetic-induced enhancement at low GABA concentrations. In the absence of studies at high GABA concentrations, it remains unclear whether alpha1(S270I) affects enhancement versus inhibition by volatile anesthetics. Furthermore, the majority of GABA(A)Rs in mammalian brain are thought to consist of alpha1, beta2, and gamma2 subunits, and the alpha1(S270I) mutation has not been studied in the context of this combination. METHODS: Recombinant GABA(A)Rs composed of alpha1beta2 or alpha1beta2gamma2L subunit mixtures were studied electrophysiologically in whole Xenopus oocytes in the voltage clamp configuration. Currents elicited by GABA (0.03 microM to 1 mM) were measured in the absence and presence of isoflurane or halothane. Anesthetic effects on GABA concentration responses were evaluated for individual oocytes. RESULTS: In wild-type alpha1beta2gamma2L GABA(A), anesthetics at approximately 2 minimum alveolar concentration (MAC) shifted GABA concentration response curves to the left approximately threefold, decreased the Hill coefficient, and enhanced currents at all GABA concentrations. The alpha1(S270I) mutation itself rendered the GABA(A)R more sensitive to GABA and reduced the Hill coefficient. At low GABA concentrations (EC5), anesthetic enhancement of peak current was much smaller in alpha1(S270I)beta2gamma2L versus wild-type channels. Paradoxically, the leftward shift of the whole GABA concentration-response relation by anesthetics was the same in both mutant and wild-type channels. At high GABA concentrations, volatile anesthetics reduced currents in alpha1(S270I)beta2gammaL GABA(A)Rs. In parallel studies on alpha1beta2 (gamma-less) GABA(A)Rs, anesthetic-induced leftward shifts in wild-type receptors were more than eightfold at 2 MAC, and the alpha1(S270I) mutation nearly eliminated anesthetic-induced leftward shift. CONCLUSIONS: The results support a role for alpha1S270 in alpha1beta2gamma2L GABA(A)R gating and sensitivity to inhibition by volatile anesthetics. The alpha1S270 locus also modulates anesthetic enhancement in alpha1beta2 GABA(A)R. The presence of the gamma2L subunit reduces anesthetic-induced left shift of wild-type GABA(A)R and nullifies the impact of the alpha1(S2701) mutation on anesthetic modulation. Thus, the gamma2L subunit plays a significant role in GABA(A)R modulation by volatile anesthetic compounds.

Amino Acid Substitution↗

Nonhalogenated alkane anesthetics fail to potentiate agonist actions on two ligand-gated ion channels.

BACKGROUND: Although ether, alcohol, and halogenated alkane anesthetics potentiate agonist actions or increase the apparent agonist affinity of ligand-gated ion channels at clinically relevant concentrations, the effects of nonhalogenated alkane anesthetics on ligand-gated ion channels have not been studied. The current study assessed the abilities of two representative nonhalogenated alkane anesthetics (cyclopropane and butane) to potentiate agonist actions or increase the apparent agonist affinity of two representative ligand-gated ion channels: the nicotinic acetylcholine receptor and y-aminobutyric acid type A (GABA(A)) receptor. METHODS: Nicotinic acetylcholine receptors were obtained from the electroplax organ of Torpedo nobiliana, and human GABA(A) receptors (alpha1beta2gamma2L) were expressed in human embryonic kidney 293 cells. The Torpedo nicotinic acetylcholine receptors apparent agonist affinity in the presence and absence of anesthetic was assessed by measuring the apparent rates of desensitization induced by a range of acetylcholine concentrations. The GABA(A) receptor's apparent agonist affinity in the presence and absence of anesthetic was assessed by measuring the peak currents induced by a range of GABA concentrations. RESULTS: Neither cyclopropane nor butane potentiated agonist actions or increased the apparent agonist affinity (reduced the apparent agonist dissociation constant) of the Torpedo nicotinic acetylcholine receptor or GABA(A) receptor. At clinically relevant concentrations, cyclopropane and butane reduced the apparent rate of Torpedo nicotinic acetylcholine receptor desensitization induced by low concentrations of agonist. CONCLUSIONS: Our results suggest that the in vivo central nervous system depressant effects of nonhalogenated alkane anesthetics do not result from their abilities to potentiate agonist actions on ligand-gated ion channels. Other targets or mechanisms more likely account for the anesthetic activities of nonhalogenated alkane anesthetics.

Algorithms↗

Dual action of isoflurane on the gamma-aminobutyric acid (GABA)-mediated currents through recombinant alpha(1)beta(2)gamma(2L)-GABA(A)-receptor channels.

Isoflurane (ISO) increased the agonist-induced chloride flux through the gamma-aminobutyric acid A receptor (GABA(A)R). This may reflect an anesthetic-induced increase in the apparent agonist affinity. A dual effect of anesthetics was postulated for both the nicotinic acetylcholine receptor (nAChR) and the GABA(A)R. We tested the hypothesis that, in addition to a blocking effect, ISO increases gamma-aminobutyric acid (GABA)-gated currents through recombinant GABA(A)R channels. HEK293 cells were transfected with rat cDNA for alpha(1),beta(2),gamma(2L) subunits. Currents elicited by 1 mM or 0. 01 mM GABA, respectively, alone, or with increasing concentrations of ISO, were recorded by using standard patch clamp techniques. ISO reduced the peak current elicited by 1 mM GABA. Currents induced by 0.01 mM GABA were potentiated by small ISO (twofold at 0.5 mM ISO) and inhibited by larger concentrations. Withdrawal of ISO and GABA induced rebound currents, suggesting an open-channel block by ISO. These currents increased with increasing concentrations of ISO. At large concentrations of ISO, the inhibitory effect predominated and was caused by, at least partly, an open-channel block. At small concentrations of ISO, potentiation of the GABA-gated currents was more prominent. This dual action of ISO indicates different binding sites at the GABA(A)R. The balance between potentiation and block depends on the concentrations of both ISO and GABA.

Anesthetics, Inhalation↗

Acid aspiration prophylaxis and caesarean section.

Acid aspiration syndrome still contributes to the few anaesthesia-related deaths in caesarean section. Although none of the numerous measures intended to prevent such fatalities is based on clear evidence, many different regimens are being used. As obstetric acid aspiration syndrome occurs mainly in general anaesthesia, using regional techniques wherever possible may be the most effective prophylactic measure.

Journal Article↗

Altered development and cytokine responses of myeloid progenitors in the absence of transcription factor, interferon consensus sequence binding protein.

Mice deficient for the transcription factor, interferon consensus sequence binding protein (ICSBP), are immunodeficient and develop disease symptoms similar to human chronic myeloid leukemia (CML). To elucidate the hematopoietic disorder of ICSBP(-/-) mice, we investigated the growth, differentiation, and leukemogenic potential of ICSBP(-/-) myeloid progenitor cells in vitro, as well as by cell-transfers in vivo. We report that adult bone marrow, as well as fetal liver of ICSBP-deficient mice harbor increased numbers of progenitor cells, which are hyperresponsive to both granulocyte macrophage colony-stimulating factor (GM-CSF) and G-CSF in vitro. In contrast, their response to M-CSF is strongly reduced and, surprisingly, ICSBP(-/-) colonies formed in the presence of M-CSF are mostly of granulocytic morphology. This disproportional differentiation toward cells of the granulocytic lineage in vitro parallels the expansion of granulocytes in ICSBP(-/-) mice and correlates with a 4-fold reduction of M-CSF receptor expressing cells in bone marrow. Cell transfer studies showed an intrinsic leukemogenic potential and long-term reconstitution capability of ICSBP(-/-) progenitors. Further experiments demonstrated strongly reduced adhesion of colony-forming cells from ICSBP(-/-) bone marrow to fibronectin. In summary, ICSBP(-/-) myeloid progenitor cells share several abnormal features with CML progenitors, suggesting that the distal parts of signaling pathways of these two disorders are overlapping.

Adult↗

[Prophylaxis against obstetric acid aspiration syndrome in the German Federal Republic in 1997. A review based on results of a federal survey].

A survey of all German hospitals providing obstetric anesthesia was performed in 1997 (n = 1061, recovery rate 82%; comprising about 700,000 deliveries and 115,000 cesareans, resp.) concerning the routine prophylactic measures for acid aspiration syndrome (AAS) in pregnant patients and before obstetric procedures (i.e., prevention of aspiration by positioning, Sellick's manoeuvre, reduction of intragastric volume, or reduction of gastric content acidity). In pregnant patients, any prophylaxis of AAS is performed in 36%. Of the patients expecting delivery in the labour ward, only 7% receive pharmacological AAS treatment. Before scheduled (urgent, non-emergency) cesarean section in general anesthesia, 93% (94%) of patients receive prophylactic treatment, either pharmacological or non-pharmacological. Before regional anesthesia, the corresponding numbers are 52% for both scheduled or urgent CS.

Adult↗

Anesthesia for cesarean section and acid aspiration prophylaxis: a German survey.

UNLABELLED: We surveyed routine anesthetic practice and measures to prevent acid aspiration syndrome (AAS) in patients undergoing cesarean section (CS) throughout Germany. Of 1061 questionnaires, 81.9% were returned. For scheduled CS, general anesthesia was used in 63% of cases, and for urgent CS, it was used in 82% of cases. Regional anesthesia was used less often for both scheduled and urgent CS in smaller (< or =500 deliveries/yr; 28% and 16%, respectively) than in medium-sized (500-1000 deliveries/yr; 42% and 19%, respectively) or major obstetric departments (>1000 deliveries/yr; 45% and 21%, respectively). Among the regional techniques, epidural anesthesia (59%) was preferred more than spinal anesthesia (40%) in scheduled CS. In urgent CS, spinal anesthesia predominated (56% vs 42%). Pharmacological AAS prophylaxis is routinely used in 69% (68%) of departments before elective (urgent) CS under general anesthesia and in 52% under regional anesthesia. H2-blocking drugs are preferred for AAS prophylaxis over H2-blocker plus sodium citrate and sodium citrate alone. Both the incidence of and the mortality from AAS at CS are very low in Germany (<1 fatality per year). Nevertheless, AAS prophylaxis deserves more widespread use in obstetric anesthesia and in other patients at risk (e.g., children, outpatients). IMPLICATIONS: According to a countrywide survey, the use of regional anesthesia for cesarean section and pharmacological prophylaxis of acid aspiration syndrome is considerably less common in Germany than in the United States, United Kingdom, or other European countries.

Anesthesia, Conduction↗

The NO synthase inhibitors L-Name and L-NMMA, but not L-arginine, block the mammalian nicotinic acetylcholine receptor channel.

(1) Nitric oxide (NO) synthase inhibitors (NOS-I) such as L-Name (N(G)-nitro L-arginine methyl ester) and L-NMMA (N(G)-monomethyl L-arginine) may enhance anesthesia indirectly by inhibiting the NO pathway. Moreover, NOS-I interact directly with receptor proteins. In an animal study, L-NMMA potentiated muscle relaxants. (2) The present experiments investigate the effects of L-NMMA, L-Name, and L-arginine on the nicotinic acetylcholine receptor channel (nAChR) using patch clamp techniques and a piezo-driven application system. Both NOS-I appear to directly interact with the nAChR in the open as well as in the closed conformation. L-Arginine has no effect.

Animals↗

[Anesthesia in cesarean section in the FRG in 1997. Results of a nationwide survey].

A survey of all German hospitals providing obstetric anaesthesia in 1997 (n = 1061, recovery rate 82% comprising 115,000 Caesarean sections revealed that most Caesarean sections (CS) are performed under general anaesthesia (GA). For elective CS, the average was 63%, and 82% for urgent (non-emergency) section. Succinylcholine is the standard neuromuscular blocker for intubation. Of the regional techniques, epidural continuous anaesthesia (ED) is preferred for elective CS (59%) over subarachnoid (SA, 10%) and combined epidural and subarachnoid anaesthesia (CSE). In urgent CS, SA is used more often (56%) than ED (42%) and CSE. With increasing number of births per year, the use of regional techniques is more common.

Anesthesia, General↗

Interaction of midazolam with the nicotinic acetylcholine receptor of mouse myotubes.

The effects of midazolam on the peripheral embryonic nicotinergic acetylcholine receptor (nAChR) of mouse myotubes were studied to elucidate the mechanism of its effect on neuromuscular transmission. Standard patch clamp techniques on outside-out patches were used. Pulses of 10(-4) M acetylcholine (ACh) applied by a liquid filament switch technique elicited macroscopic channel currents with a peak current amplitude of approximately 40 pA within <1 ms. The current decayed with a time constant of 30-100 ms due to desensitization. When midazolam was added in stepwise increased concentrations (10(-7) M to 7 x 10(-4) M) to the pulses, the current decay became bi-exponential, and a concentration-dependent decrease of the fast component of decay was observed. The current amplitude, however, was reduced slightly, and only at high concentrations of midazolam. This may indicate that midazolam binds to the open channel to cause the block. The rate constant of block (b(+1)) was found to be 1.8 x 10(6) M/s. Recovery experiments revealed a rate of unblocking (b(-1)) of approximately 2 x 10(-1) s(-1). After preincubation of the patches with midazolam, a substantial reduction of the current amplitude was seen at very low midazolam concentrations (<10(-7) M), which suggests an additional closed channel block with a Kd of approximately 10(-6) M. This closed channel block may be responsible for the muscle-relaxing effects of midazolam.

Acetylcholine↗

Isoflurane and sevoflurane interact with the nicotinic acetylcholine receptor channels in micromolar concentrations.

BACKGROUND: This study was performed to elucidate and compare the effects of sevoflurane and of isoflurane on the nicotinic acetylcholine receptor of mouse myotubes. The experiments were done with special reference to anesthetic concentrations considerably less than those used for clinical anesthesia. METHODS: The patch-clamp technique was used to record acetylcholine-activated currents from the embryonic type of the nicotinic acetylcholine receptor in the outside-out mode. A piezo-driven liquid filament switch was used for the ultrafast application of acetylcholine alone or in combination with isoflurane or sevoflurane. In addition, the patches were preexposed to either anesthetic, preceding the activation with acetylcholine. RESULTS: The current elicited by acetylcholine was reduced reversibly and in a concentration-dependent manner by both anesthetics, which were equally effective. Preexposure of the patches to isoflurane or sevoflurane showed an additional inhibition that was present at micromolar concentrations. The time courses of current decay could be fitted by single exponentials for isoflurane. At higher concentrations of sevoflurane, the current decay became biexponential. In contrast to isoflurane, sevoflurane increased the time constants of desensitization when applied in low concentrations. CONCLUSIONS: At the nicotinic acetylcholine receptor, isoflurane and sevoflurane act primarily through the same mechanisms: Both affect the open and the closed state of the channels in concentrations equal to and less than those encountered clinically. The kinetics of desensitization, however, are altered in a different manner. Thus there may be several different sites of interaction.

Anesthetics, Inhalation↗

[Epidemiology and clinical aspects of malaria in the canton hospital and in St. Clara Hospital, Basel 1970-1992].

History, signs and symptoms, chemoprophylaxis and management of 150 malaria patients hospitalized at the University Hospital and St. Clara Hospital (Claraspital) of Basel, Switzerland, were analyzed from 1970 to 1992. Mainly due to increasing travel in endemic areas, an increase from 3.2 cases per year for the years 1970 to 1981 to 9.5 cases per year for the years 1982 to 1992 occurred. In the latest period, more patients had to be admitted to the intensive care unit (14.0% from 1970 to 1986, 28.1% from 1987 to 1992). Infections with plasmodium falciparum were more frequent in later years, the incidence of plasmodium vivax and non-typifiable plasmodia decreased. Compliance for chemoprophylaxis was insufficient, with only 21.8% of all patients taking a correct prophylaxis in the latest period. Malaria is a significant health problem in industrialized countries like Switzerland with increasing incidence and worsening course due to the development of drug resistance.

Adult↗

Ketamine blocks currents through mammalian nicotinic acetylcholine receptor channels by interaction with both the open and the closed state.

Single channel recordings have shown that ketamine (Ket) decreases the open time of the nicotinic acetylcholine receptor channel (nAChR). The present experiments on simultaneous openings of the nAChRs of mouse myotubes investigate the interaction of Ket with the open as well as with the closed state of the channels. The patch-clamp technique was used to record currents activated by 10(-4) M acetylcholine (ACh) in the outside-out mode. ACh together with increasing concentrations of Ket was applied with a piezo-driven system. In a second protocol, the patches were preexposed to Ket before activation with ACh. With addition of Ket, the currents showed a biexponential decay, indicating an open-channel block. The peak current amplitude decreased reversibly and in a concentration-dependent manner. The rate constants of block (b+1) and of unblock (b-1) were modeled by computer simulation and were found to be: b+1 = 3 x 10(6) M/s, b-1 = 100/s. Preexposure of the patches to Ket revealed an additional block with a KD of approximately 2 x 10(-6) M, which is below clinical concentrations. These data suggest that Ket also interacts with the closed state of the nAChR.

Acetylcholine↗

[Self-assessment of blood alcohol content in acute alcoholic intoxication].

During a drinking experiment 20 young male volunteers were asked to estimate the amount of their BAC and commented on their driving ability and their readiness to participate in road traffic. During the resorption phase the majority of the volunteers estimated their BAC too low, whereas in the early elimination phase most of their estimates were to high. The majority of the volunteers felt able to drive throughout the whole experiment which demonstrates an impairment of essential control functions as early as low to medium alcohol intoxication.

Adolescent↗

Induction of metalloproteinase activity, cartilage matrix degradation and inhibition of endochondral mineralization in vitro by E. coli lipopolysaccharide is mediated by interleukin 1 alpha.

Chronic inflammation and degradation of connective tissue in the course of periodontitis are maintained by bacterial products such as lipopolysaccharides (LPS), which probably act via inflammation mediators, e.g. cytokines. We investigated the effects of lipopolysaccharide (LPS) from E. coli and mouse recombinant interleukin 1 alpha (mrIL-1) on chondrogenesis, endochondral mineralization, matrix metalloproteinase activation and matrix degradation in vitro using cartilage organoid cultures. Mesenchymal cells of limb buds from mouse embryos (day 12) were grown at high density on a membrane filter at the medium/air interphase for 14 days. Chondrogenesis occurred during the first 6 days of culture. Endochondral mineralization took place upon addition of 5 mM beta-glycerophosphate from day 7 to 14. Treatment of the cultures with LPS and mrIL-1 on days 2 to 14 and during mineralization on days 7 to 14 resulted in a marked decrease of types I and II collagen, matrix mineralization and proteoglycan content. In the medium, proteoglycan content and metalloproteinase activity were enhanced. LPS induced IL-1 alpha production and release into the medium. LPS antagonist polymyxin B partly abolished the LPS effect, whereas IL-1 receptor antagonist (IL-1ra) partly abolished both LPS and mrIL-1 effects. Reversal of LPS-induced effects by IL-1ra was comparable to the reversal of mrIL-1 effects, only the decrease in type II collagen after LPS treatment was abolished to a lesser extent by IL-1ra.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

[Enflurane blocks ion current through the nicotinic acetylcholine receptor].

AIM: The study investigates the influence of enflurane (EN) on macroscopic currents of the nicotinic acetylcholinergic receptor channel (nAChR). This ion channel is a representative member of the superfamily of ligand-gated receptor channels and is better characterized than all the other receptors in respect of structure and function. METHODS: For the experiments the patch-clamp technique was used to study the embryonic type of the nAChR expressed by cultured mouse-myotubes. Patch-clamp recordings were performed in the outside-out-mode from these preparations. To match the rapid desensitization kinetics of ligand-activated ion channels, a liquid filament switch technique was used for the application of agonists to the excised patches. This technique allows for change of solution within 300 microseconds. We used a saturating concentration of 10(-4) M acetylcholine (ACh), activating almost all available ion channels on a patch. Pulses of 10(-4) M ACh together with EN in different concentrations were applied repetitively. RESULTS: The current elicited by 10(-4) M ACh is reduced reversibly in a concentration-dependent manner by EN in clinically relevant concentrations: 1,44 x 10(-5) M EN inhibit about 10%, 1.44 x 10(-4) M 25%, 1.44 x 10(-3) M 35%, and 1.44 x 10(-2) M 75% of the ion flux (averaged results from 48 patches). EN decreases the time constant of the current decay. This acceleration of desensitisation kinetics is partly reversible if followed by application of 10(-4) M ACh. CONCLUSION: In this study we were able to show that EN reduces the currents of the ligand-gated embryonic-like nAChR in clinically relevant concentrations. Volatile anaesthetics are known to influence GABAA-, glutamate-, and glycine- activated receptors, which are members of the same family of ligand-gated receptor-channel units. Thus, the action of volatile anaesthetics on ligand-gated receptors may play a role in the mechanism of general anaesthesia. The interaction of volatile anaesthetics with nondepolarising neuromuscular blockers may also be based on this effect at the neuromuscular junction.

Acetylcholine↗

[CT findings in expert assessment of legal responsibility].

C.A.T. head scannering is useful in forensic psychiatry to complete other investigations such as psychological tests, neurological examinations and EEG. The findings in 389 forensic cases, examined between 1984 and 1990, are referred.

Adolescent↗