共查询到20条相似文献,搜索用时 15 毫秒
1.
Levetiracetam (LEV), a new anticonvulsant agent primarily used to treat epilepsy, has been used in pain treatment but the cellular mechanism of this action remains unclear. This study aimed to investigate effects of LEV on the excitability and membrane depolarization-induced calcium signaling in isolated rat sensory neurons using the whole-cell patch clamp and fura 2-based ratiometric Ca(2+)-imaging techniques. Dorsal root ganglia (DRG) were excised from neonatal rats, and cultured following enzymatic and mechanical dissociation. Under current clamp conditions, acute application of LEV (30 μM, 100 μM and 300 μM) significantly increased input resistance and caused the membrane to hyperpolarize from resting membrane potential in a dose-dependent manner. Reversal potentials of action potential (AP) after hyperpolarising amplitudes were shifted to more negative, toward to potassium equilibrium potentials, after application of LEV. It also caused a decrease in number of APs in neurons fired multiple APs in response to prolonged depolarization. Fura-2 fluorescence Ca(2+) imaging protocols revealed that HiK(+) (30 mM)-induced intracellular free Ca(2+) ([Ca(2+)](i)) was inhibited to 97.8 ± 4.6% (n = 17), 92.6 ± 4.8% (n = 17, p < 0.01) and 89.1 ± 5.1% (n = 18, p < 0.01) after application of 30 μM, 100 μM and 300 μM LEV (respectively), without any significant effect on basal levels of [Ca(2+)](i). This is the first evidence for the effect of LEV on the excitability of rat sensory neurons through an effect which might involve activation of potassium channels and inhibition of entry of Ca(2+), providing new insights for cellular mechanism(s) of LEV in pain treatment modalities. 相似文献
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《Journal of receptor and signal transduction research》2013,33(3):156-162
Levetiracetam (LEV), a new anticonvulsant agent primarily used to treat epilepsy, has been used in pain treatment but the cellular mechanism of this action remains unclear. This study aimed to investigate effects of LEV on the excitability and membrane depolarization-induced calcium signaling in isolated rat sensory neurons using the whole-cell patch clamp and fura 2–based ratiometric Ca2+-imaging techniques. Dorsal root ganglia (DRG) were excised from neonatal rats, and cultured following enzymatic and mechanical dissociation. Under current clamp conditions, acute application of LEV (30 µM, 100 µM and 300 µM) significantly increased input resistance and caused the membrane to hyperpolarize from resting membrane potential in a dose-dependent manner. Reversal potentials of action potential (AP) after hyperpolarising amplitudes were shifted to more negative, toward to potassium equilibrium potentials, after application of LEV. It also caused a decrease in number of APs in neurons fired multiple APs in response to prolonged depolarization. Fura-2 fluorescence Ca2+ imaging protocols revealed that HiK+ (30 mM)-induced intracellular free Ca2+ ([Ca2+]i) was inhibited to 97.8 ± 4.6% (n = 17), 92.6 ± 4.8% (n = 17, p < 0.01) and 89.1 ± 5.1% (n = 18, p < 0.01) after application of 30 µM, 100 µM and 300 µM LEV (respectively), without any significant effect on basal levels of [Ca2+]i. This is the first evidence for the effect of LEV on the excitability of rat sensory neurons through an effect which might involve activation of potassium channels and inhibition of entry of Ca2+, providing new insights for cellular mechanism(s) of LEV in pain treatment modalities. 相似文献
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Robert V. Farese William J. Prudente 《Biochimica et Biophysica Acta (BBA)/General Subjects》1977,497(2):386-395
To define the role of calcium during corticotropin-induced steroidogenesis, adrenal sections were incubated under conditions of varying degrees of calcium depletion. Corticosterone production, [14C]leucine incorporation into protein, and tissue cyclic AMP levels were measured concomitantly. Omitting calcium from the incubation inhibited all three processes to variable extents, thus limiting conclusions regarding which process is most dependent on calcium.While calcium was required during the early phase of corticotropin action, it was not required during later phases; rapid induction of calcium defiency did not diminish the heightened rate of steroidogenesis previously induced by corticotropin in the presence of calcium. Thus, while calcium is required for induction of steroidogenesis factor(s), the operation of the latter is not dependent upon calcium in the extracellular fluid. 相似文献
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To define the role of calcium during corticotropin-induced steroidogenesis, adrenal sections were incubated under conditions of varying degrees of calcium depletion. Corticosterone production, [14C]leucine incorporation into protein, and tissue cyclic AMP levels were measured concomitantly. Omitting calcium from the incubation media inhibited all three processes to variable extents, thus limiting conclusions regarding which process is most dependent on calcium. While calcium was required during the early phase of corticotropin action, it was not required during later phases: rapid induction of calcium deficiency did not diminish the heightened rate of steroidogenesis previously induced by corticotropin in the presence of calcium. Thus, while calcium is required for induction of steroidogenesis factor(s), the operation of the latter is not dependent upon calcium in the extracellular fluid. 相似文献
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Multicolored protein conformation states in the photocycle of transducer-free sensory rhodopsin-I 下载免费PDF全文
Sensory rhodopsin-I (SRI), a phototaxis receptor of archaebacteria, is a retinal-binding protein that exists in the cell membrane intimately associated with a signal-transducing protein (HtrI) homologous to eubacterial chemotaxis receptors. Transducer-free sensory rhodopsin-I (fSRI), from cells devoid of HtrI, undergoes a photochemical cycle kinetically different from that of native SRI. We report here on the measurement and analysis of the photochemical kinetics of fSRI reactions in the 350-750-nm spectral range and in a 10(-7) s to 1 s time window. The lack of specific intermolecular interactions between SRI and HtrI results in early return of the ground form via distinct branching reactions in fSRI, not evident in the photocycle of native SRI. The chromophore transitions are loosely coupled to protein structural transitions. The coexistence of multiple spectral forms within kinetic intermediates is interpreted within the concept of multicolored protein conformational states. 相似文献
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Independent and interrelated regulation of ornithine decarboxylase by calcium and cAMP in fetal rat osteoblasts 总被引:1,自引:0,他引:1
The present study was undertaken to determine in fetal rat osteoblasts whether and how the intracellular messengers calcium and cAMP are involved in stimulation of ornithine decarboxylase (ODC) activity. For that purpose we used different drugs affecting [Ca2+]i and cAMP concentration. A23187 stimulates ODC activity in a biphasic way, with maximal stimulation at 100 nM A23187. At that concentration no stimulation of cAMP production was observed. Basal and A23187-stimulated (100 nM) ODC activity were inhibited by EGTA and trifluoperazine. Forskolin stimulated dose-dependently both ODC activity and cAMP production. Besides these effects forskolin (1 and 10 microM) increased the [Ca2+]i via an increased calcium influx. Addition of La3+, verapamil or EGTA, but not of trifluoperazine, significantly inhibited the forskolin-stimulated (10 microM) ODC activity. When forskolin (100 nM and 1 microM) was added together with 1 microM A23187, a synergistic stimulation of ODC activity was observed. These results implicate that calcium is involved in basal ODC activity, and that ODC activity can be stimulated via (1) a cAMP-independent calcium pathway, and (2) a calcium-dependent, cAMP pathway. It is proposed that ODC activity can be stimulated via interaction between calcium and cAMP. 相似文献
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L N Kats N A Zigangirova N D Konstantinova S V Prozorovski? 《Zhurnal mikrobiologii, epidemiologii, i immunobiologii》1984,(9):50-54
The unbalanced growth forms (UGF), also known as heteromorphous or pleomorphous forms, of salmonellae were obtained under the action of penicillin, homologous antiserum in combination with complement and lysozyme, as well as ultraviolet radiation. The effect of these factors was studied after their momentaneous action and in successive passages. The viability of UGF was determined in terms of colony-forming units. The appearance of UGF was induced by penicillin, a complex of immune substances and ultraviolet radiation, yet the action of two latter factors irreparably damaged most of the cells. The formation of UGF, showing stability in prolonged passages and capable of transformation into L-forms, occurred only under the influence of penicillin. Elementary bodies appeared in UGF, both capable and incapable of transformation into L-forms after successive passages. In the viable part of the UGF population obtained under the action of all the above factors damages in the peptidoglycan layer of the cell wall and, partly, in the cytoplasmic membrane, as well as disturbances in the process of cell division, linked with these cell elements, were observed. 相似文献
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Calcium dynamics in the endoplasmic reticulum of dorsal root ganglion neurons of rats during Ca2+ release induced by caffeine and subsequent Ca2+ uptake were studied. Calcium release is shown to include two (a short transient and a prolonged slow) phases. We suggest
that the transient phase reflects release of free Ca from the calcium store, while the slow phase reflects transition of Ca
from a bound form to a free one. The process of Ca2+ uptake is characterized by exponential recovery of the calcium level in the store due to the SERCA activity.
Neirofiziologiya/Neurophysiology, Vol. 38, No. 4, pp. 361–363, July–August, 2006. 相似文献
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Citrate content of liver and kidney of rat in various metabolic states and in fluoracetate poisoning 总被引:1,自引:1,他引:0 下载免费PDF全文
The citrate content of rat liver changes little when normal rats are starved, when starved rats are re-fed with various diets and when normal animals are made diabetic with alloxan. The citrate content of rat kidney changes little on starvation, but it doubles on induction of diabetes. Fluoroacetate poisoning has relatively little effect on the citrate content of liver under a variety of conditions except that normal female rats show a 2·4-fold increase. Fluoroacetate poisoning leads to increases in the citrate content of kidney under all conditions. The relevance of these observations to the regulation of fatty acid synthesis is discussed. The acetic anhydride–pyridine method and the pentabromoacetone method for the estimation of citrate are compared. 相似文献
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Li F Obrosova IG Abatan O Tian D Larkin D Stuenkel EL Stevens MJ 《American journal of physiology. Endocrinology and metabolism》2005,288(1):E29-E36
The etiology of painful diabetic neuropathy is poorly understood, but may result from neuronal hyperexcitability secondary to alterations of Ca2+ signaling in sensory neurons. The naturally occurring amino acid taurine functions as an osmolyte, antioxidant, Ca2+ modulator, inhibitory neurotransmitter, and analgesic such that its depletion in diabetes may predispose one to neuronal hyperexcitability and pain. This study reports the effects of taurine replacement on hyperalgesia and sensory neuron Ca2+ homeostasis in streptozotocin-diabetic (STZ-D) rats. Nondiabetic and STZ-D rats were treated with a 2% taurine-supplemented diet for 6-12 wk. Thermal hyperalgesia and mechanical allodynia were determined by measuring hindpaw withdrawal latency to radiant heat and the withdrawal threshold to the von Frey anesthesiometer. Intracellular Ca2+ signaling was explored in neurons from L4-L6 dorsal root ganglia (DRG), using fura 2 fluorescence. Taurine replacement of diabetic rats attenuated deficits of nerve conduction and prevented reductions of mechanical and thermal withdrawal threshold and latency, respectively. In small DRG sensory neurons from diabetic rats, recovery of intracellular Ca2+ concentration ([Ca2+]i) in response to KCl was slowed and 73% corrected by taurine. The amplitudes of caffeine and ATP-induced [Ca2+]i transients were decreased by 47 and 27% (P < 0.05), respectively, in diabetic rat DRG sensory neurons and corrected by 74 and 93% (P < 0.05), respectively, by taurine replacement. These data indicate that taurine is important in the regulation of neuronal Ca2+ signaling and that taurine deficiency may predispose one to nerve hyperexcitability and pain, complicating diabetes. 相似文献
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E. A. Bulantseva Nguyen Tien Thang A. O. Ruzhitsky M. A. Protsenko N. P. Korableva 《Applied Biochemistry and Microbiology》2009,45(1):93-96
The effects of ethylene-evolving preparations—2-chloroethylphosphonic acid (2-CEPA), the new generation binary preparation ethacide, and the specific inhibitor of ethylene biosynthesis aminooxyacetic acid (AOA)—on the ethylene evolution by banana (Musa sp.) fruits at various ripening stages and the content of protein inhibitor of polygalacturonase (PIPG), associated with prevention of fruit tissue softening, were studied. It was demonstrated that the ripening stage was of significant importance for the results of treatment with the mentioned preparations. Their effects were most pronounced in the fruits of medium ripeness. 2-CEPA and ethacide increased the ethylene evolution in banana fruits on the average by 25–30%. AOA treatment decreased the ethylene evolution in these fruits by 30%. The PIPG content in fruit pulp was insignificant; 2-CEPA almost did not change its content in banana skin, while ethacide and AOA somewhat decreased it. Consequently, the regulators of ethylene biosynthesis have a potential for optimizing the state of banana fruits during storage and sale. 相似文献
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The participation of different calcium-regulated mechanisms in the generation of cytosolic Ca(2+) transients during neuronal excitation has been compared in isolated large and small primary (dorsal root ganglia (DRG)) and secondary (spinal dorsal horn (DH)) rat sensory neurones. As it was shown before in murine primary sensory neurones the application of mitochondrial protonophore CCCP by itself induced only small elevation of [Ca(2+)](i). However, its preceding application substantially increased the peak amplitude of depolarization-induced transients. Application of CCCP immediately after termination of the depolarizing pulse induced in both types of primary neurones a massive release of Ca(2+) from mitochondria into the cytosol. In secondary neurones application of CCCP by itself induced a substantial release of Ca(2+) from the mitochondria, but its preceding application resulted in only an insignificant increase in the peak amplitude of depolarization-triggered calcium transients. Application of CCCP immediately after termination of depolarization elicited a small release of Ca(2+), which became more pronounced when the application was delayed. Preceding application of CCCP increased the amplitude of the transients induced by caffeine-triggered Ca(2+) release from the endoplasmic reticulum in secondary neurones and did not affect those in large primary neurones. These findings may be explained by substantial differences in the density and distribution of mitochondria in the cytosol of primary and secondary sensory neurones. This suggestion was confirmed electronmicroscopically, showing a much lower density of mitochondria near plasmalemma in secondary sensory neurones and predominant clustered location of mitochondria beneath the plasmalemma in the primary cells. The possible functional importance of these differences is discussed. 相似文献