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1.
三种蜘蛛粗毒对NG108—15细胞电压门控钠通道的抑制作用   总被引:4,自引:0,他引:4  
利用小鼠神经细胞瘤×大鼠神经胶质细胞的杂交细胞NG108-15,通过全细胞记录(whole-cellrecording)模式的膜片钳技术,检验了虎纹捕鸟蛛(Selenocosmia huwena)、海南捕鸟蛛(Selenocosmia hainana)和广西大疣蛛(Macrothele guangxiasp)的粗毒对NG108-15细胞膜上电压门控TTX敏感型钠电流和延迟整流钾电流的作用.结果表明,三种蜘蛛粗毒对外向延迟整流钾电流没有明显作用,但对TTX敏感型的快钠电流表现出较强的抑制效应.抑制效应呈量效关系.三种粗毒抑制钠电流的EC  相似文献   

2.
报道了虎纹捕鸟蛛(Ornithoctonus huwena)食道下神经节的解剖以及神经细胞的分离培养方法。为开展蜘蛛神经生物学实验方法的研究,创立了一种蜘蛛神经细胞解剖方法——去胸甲解剖法。神经节细胞培养基为NaCl2 23 mmol/L;KCl6.8 mmol/L;CaCl28 mmol/L;MgCl2 5.1 mmol/L;Sucrose 5 mmol/L;Hepes 10 mmol/L;谷氨酰胺1mmol/L;青霉素200IU/ml;链霉素200μg/ml;小牛血清20%;pH7.4。在温度(27±2)℃的培养箱中培养2~4h。实验结果表明与传统方法相比较,去胸甲解剖法具有取材简便、准确、快捷和高效的特点。改进的培养基非常适合蜘蛛离体神经细胞的培养。培养的细胞状态好、数量多,细胞体呈椭圆形,细胞形状近似汤勺,有一个长的单极突起,其大小为10~30μm。  相似文献   

3.
探索了棉铃虫Helicoverpa armigera幼虫神经细胞的急性分离与体外培养的条件,并利用全细胞膜片钳技术首次对棉铃虫幼虫急性分离神经细胞的电压门控性钠、钾和钙通道的基本电生理学特性进行了研究。结果表明,棉铃虫幼虫中枢神经细胞在TC-100、L-15和Grace培养基中均可贴壁生长,在DMEM培养基中基本不能存活。在TC-100培养基分别与其它三种培养基按一定比例混合形成的培养液中,TC-100与L-15等量混合培养液更适合于神经细胞的生长。全细胞电压钳条件下,可分别记录到电压门控性钠、钾和钙通道电流。钙电流特征为高电压激活、缓慢失活;钠电流对河豚毒素敏感;钾电流可被细胞外液中的氯化四乙胺和4-氨基吡啶抑制。  相似文献   

4.
王瑞兰  梁宋平 《昆虫学报》2009,52(2):126-132
HWTX-III是从中国虎纹捕鸟蛛Ornithoctonus huwena粗毒中分离纯化到的一种昆虫神经多肽。通过应用全细胞膜片钳技术研究了HWTX-III对美洲蜚蠊Periplaneta americana神经细胞电压门控离子通道的影响。发现HWTX-III特异性地抑制美洲蜚蠊背侧不成对中间(dorsal unpaired median, DUM)神经细胞的电压门控钠通道(IC50≈1.106 μmol/L),而对电压门控钾通道没有明显的影响。HWTX-III通过一种新型的不同于其他蜘蛛毒素的机制抑制昆虫电压门控钠通道,它不影响通道的激活与失活动力学,也不明显地漂移稳态失活曲线。HWTX-III对昆虫神经细胞电压门控钠通道的特异性与新型作用机制为研究电压门控钠通道分子结构的多样性以及开发新的安全的杀虫剂提供有用的工具。  相似文献   

5.
两种虎纹捕鸟蛛昆虫毒素的分离纯化及生物学活性鉴定   总被引:1,自引:0,他引:1  
结合离子交换和反相高效液相色谱从虎纹捕鸟蛛粗毒分离纯化到 2种虎纹捕鸟蛛毒素 ,命名为虎纹捕鸟蛛毒素 Ⅶ和虎纹捕鸟蛛毒素 Ⅷ .经质谱测定这 2种毒素的分子量分别为 3981 0 2和 4 171 12 .氨基酸序列分析发现 ,这 2种虎纹捕鸟蛛毒素同源性非常高 ,只有 6个残基位点的不同 .虎纹捕鸟蛛毒素 Ⅶ和虎纹捕鸟蛛毒素 Ⅷ的生物学功能相似 ,都能对蝗虫起到麻痹作用 ;对小鼠的中枢神经作用高剂量能使小鼠产生致死 ,但低剂量虎纹捕鸟蛛毒素 Ⅷ能使小鼠产生惊厥反应 ,而低剂量虎纹捕鸟蛛毒素 Ⅶ不能使小鼠产生惊厥反应 ;这 2种毒素都能阻断小鼠离体膈神经膈肌的神经肌肉传递 ,且与虎纹捕鸟蛛毒素 I混合后都具协同作用  相似文献   

6.
海南捕鸟蛛毒素 IV(HNTX IV)是从中国捕鸟蛛Seleconosmiahainana粗毒中分离得到的一种肽类神经毒素 ,在成年大鼠背根神经节 (DRG)细胞上观察了该毒素对电压门控钠通道的影响。在全细胞膜片钳条件下 ,HNTX IV能明显抑制哺乳动物神经性河豚毒敏感型 (TTX S)钠电流 ,但不影响河豚毒不敏感型 (TTX R)钠电流。HNTX IV对DRG细胞TTX S钠电流的抑制作用具有浓度依从性 ,其有效半抑制浓度 (IC50 )为 44 .6nmol/L。该毒素不影响DRG钠电流的激活与失活时间特征 ,但能导致钠通道的半数稳态失活电压向超极化方向漂移约 10 .1mV。结果表明HNTX IV是一种新型的蜘蛛毒素 ,其影响电压门控钠通道的机制可能有别于那些结合于通道位点 3来延缓钠电流失活时间特征的蜘蛛毒素如δ 澳洲漏斗网蛛毒素、μ 美洲漏斗网蛛毒素I VI等。  相似文献   

7.
海南捕鸟蛛毒素-Ⅳ(HNTX-Ⅳ)是从中国捕鸟蛛Seleconosmia hainana粗毒中分离得到的一种肽类神经毒素,在成年大鼠背根神经节(DRG)细胞上观察了该毒素对电压门控钠通道的影响。在全细胞膜片钳条件下,HNTX-Ⅳ能明显抑制哺乳动物神经性河豚毒敏感型(TTX-S)钠电流,但不影响河豚毒不敏感型(TTX-R)钠电流,HNTX-Ⅳ对DRG细胞TTX-S钠电流的抑制作用具有浓度依从性。其有效半抑制浓度(IC50)为44.6nmol/L。该毒素不影响DRG钠电流的激活与失活时间特征,但能导致钠通道的半数稳态失活电压向超极化方向漂移约10.1mV。结果表明HNTX-Ⅳ是一种新型的蜘蛛毒素,其影响电压门控钠通道的机制可能有别于那些结合于通道位点3来延缓钠电流失活时间特征的蜘蛛毒素如δ-澳洲漏斗网蛛毒素,μ-美洲漏斗网蛛毒素I-Ⅵ等。  相似文献   

8.
成年蜜蜂脑神经细胞的培养和电生理特征   总被引:1,自引:0,他引:1  
为了研究杀虫剂等对蜜蜂毒性作用的神经机制,需在体外建立成年蜜蜂脑神经细胞的分离培养和电生理记录技术并研究其正常电生理特征,而对成年蜜蜂脑神经细胞的分离培养和电生理特性的研究报道甚少。我们采用酶解和机械吹打相结合的方法获得了数量较多且活力较好的成年意大利蜜蜂Apis mellifera脑神经细胞,并用全细胞膜片钳技术研究了成年意大利蜜蜂脑神经细胞对电流和电压刺激的反应,获得了成年意蜂脑神经细胞的基本电生理特征以及钠电流和钾电流的特性。全细胞电流钳的记录结果表明,在体外培养条件下,细胞无自发放电发生,注射电流后仅引起细胞单次放电,引起细胞放电的阈电流平均为60.8±63 pA; 细胞动作电位产生的阈电位平均为−27.4±2.3 mV。用全细胞电压钳记录了神经细胞的钠电流和钾电流。钠电流的分离是在电压刺激下通过阻断钾通道和钙通道实现。细胞的内向钠电流在指令电压为−40~−30 mV左右激活,−10 mV达峰值,钠通道的稳态失活电压V1/2为−58.4 mV; 外向钾电流成份至少包括较小的快速失活钾电流和和较大的缓慢失活钾电流(占总钾电流的80%),其半激活膜电位V1/2为3.86 mV,无明显的稳态失活。结果提示缓慢失活钾电流的特征可能是细胞单次放电的机制之一。  相似文献   

9.
通过阳离子交换和反相HPLC柱层析从海南捕鸟蛛(Ornithoconus hainana)粗毒中分离到一种新型的神经毒素,海南捕鸟蛛毒素-Ⅵ(HNTX-Ⅵ), 由34个氨基酸残基组成,含有6个保守的半胱氨酸残基. 运用全细胞膜片钳技术,研究了HNTX-Ⅵ对电压门控钠通道的影响.先前从海南捕鸟蛛粗毒中分离到的几种毒素,具有抑制哺乳动物钠通道激活的特性.本文研究结果表明,HNTX-Ⅵ能以类似于δ-atractoxins作用方式延缓蜚蠊背侧不成对中间(dorsal unpaired median,DUM)神经细胞的钠通道的失活,且导致钠通道稳态失活变得不完全,在预钳制电压大于-55 mV时形成不完全失活结构. HNTX-Ⅵ的这种新的功能不仅为探索钠通道的门控机制提供了有用的工具,也为开发新的安全的杀虫剂提供理论基础.  相似文献   

10.
虎纹捕鸟蛛毒素-XI (HWTX-XI) 是从虎纹捕鸟蛛粗毒中分离的含55个氨基酸残基的蛋白质,兼有胰蛋白酶抑制活性和电压门控钾离子通道抑制活性。通过突变HWTX-XI上的钾离子通道抑制活性关键氨基酸残基设计了2个突变体 (分别突变以下氨基酸残基:R5I,R10T,R25A和R5I,R25A),利用pVT102U/α表达载体在酿酒酵母S78中成功表达并获得了高纯度的重组蛋白质;通过分光光度计比色法、膜片钳技术和小鼠脑室注射分别比较三者的胰蛋白酶和钾通道抑制活性以及动物毒性,结果显示:HWTX-XI突变体与  相似文献   

11.
A spontaneous efflux of choline originating from the cytoplasmic free choline compartment and, partly, from metabolized form was measured from neurons and glial cells in culture. The efflux was stimulated by an excess of K+ and by the absence of Ca2+ ions from the incubation medium in both types of culture. The two effects did not appear to be synergistic.

The stimulation produced by an excess of K+ (100 mM) was blocked in neurons by 0.5 μM BaCl2 and in glia cells by 0.1 μM BaCl2 (in the presence of 30 mM K+). The stimulation produced by the absence of Ca2+ instead was not blocked by Ba2+ ions in either of the two types of culture. The results suggest that the stimulation induced by K+ (high concentration and long time of incubation) might be of biochemical rather than physiological nature and that choline may be driven out of the cells in correlation with the K+ gradient. The greater sensitivity of glial cells to K+ ions may also suggest a supportive role of these cells with respect to neurons, as they seem capable of furnishing choline for neuronal needs during depolarization.  相似文献   


12.
1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), a contaminant found in a synthetic illicit drug, can elicit in humans and monkeys a severe extrapyramidal syndrome similar to Parkinson's disease. It also induces alterations of the dopamine (DA) pathways in rodents. MPTP neurotoxicity requires its enzymatic transformation into 1-methyl-4-phenylpyridinium (MPP+) by monoamine oxidase followed by its concentration into target cells, the DA neurons. Here, we show that mesencephalic glial cells from the mouse embryo can take up MPTP in vitro, transform it into MPP+, and release it into the culture medium. MPTP is not taken up by neurons from either the mesencephalon or the striatum in vitro (8 days in serum-free conditions). However, mesencephalic neurons in culture revealed a high-affinity uptake mechanism for the metabolite MPP+, similar to that for DA. The affinity (Km) for DA uptake is fivefold higher than that for MPP+ (0.2 and 1.1 microM, respectively), whereas the number of uptake sites for MPP+ is double (Vmax = 25 and 55 pmol/mg of protein/min for DA and MPP+, respectively). Mazindol, a DA uptake inhibitor, blocks the uptake of DA and MPP+ equally well under these conditions. Moreover, by competition experiments, the two molecules appear to use the same carrier(s) to enter DA neurons. Small concentrations of MPP+ are also taken up by striatal neurons in vitro. The amount taken up represented less than 10% of the MPP+ uptake in mesencephalic neurons. Depolarization induced by veratridine released comparable proportions of labeled DA and MPP+ from mesencephalic cultures.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

13.
The effects of phorbol esters were investigated on the survival of chick sympathetic neurons in a serum-free culture medium. The protein kinase C activator phorbol 12,13-dibutyrate (PDB) supported about 40% of the plated sympathetic neurons. This number was comparable to that supported by nerve growth factor (NGF). A combination of phorbol ester and NGF did not significantly increase the number of surviving neurons. Phorbol ester-supported sympathetic neurons possessed desipramine-sensitive [3H]-norepinephrine uptake mechanism, and therefore were noradrenegic in character. Two days after the start of cultures, if NGF was replaced by phorbol ester, or phorbol ester was replaced by NGF, the number of surviving sympathetic neurons was essentially the same in both groups, and the uptake of [3H]norepinephrine was also comparable when examined 2 days after the switchover. Interchangeability between phorbol ester and NGF in the survival of sympathetic neurons suggests that both agents act on the same subpopulation of neurons of the chick sympathetic ganglia. The protein kinase C activity of cytosol and particulate fractions of NGF-supported neurons was 0.14 and 0.09 pmol/min/mg protein, respectively. In phorbol ester-supported neurons the activity in the particulate fraction increased by about fivefold. Removal of the phorbol ester after 2 days resulted in restoration of the enzyme activity in less than 1 h, and readdition of the phorbol ester again increased the activity by fivefold. When NGF was added to these neurons (1 microgram for 15 min), there was no change in the enzyme activity. Phorbol 13-acetate was ineffective in supporting sympathetic neurons in culture, as well as in enhancing protein kinase C activity. We also compared the protein kinase C activity of sympathetic neurons supported in culture by NGF and excess potassium (35 mM K+) Neurons supported in culture by 35 mM K+ for 2 days had almost eightfold more protein kinase C activity in their particulate fraction than in cytosol fraction. In NGF-supported neurons were acutely treated with excess K+, the protein kinase C activity was increased in the particulate fraction by about sevenfold in a concentration- and time-dependent manner. Excess K+ plus phorbol ester did not produce an additive effect on protein kinase C activity. PDB and excess K+ had no effect on cyclic AMP content of sympathetic neurons. In summary, the present data suggest that the neurotrophic action of PDB and excess K+ is probably mediated through protein kinase C.  相似文献   

14.
15.
Serum-free B-27 supplemented neurobasal (NB) and a 10% fetal bovine serum-supplemented Eagle's minimum essential medium (MEM+) are used to culture rat embryonic hippocampal neurons for different purposes. Although NB medium leads to enhanced cell survival, it contains biological antioxidants and is not suitable for the study of free radical damage and oxidation in cultured neurons. MEM+ without additional antioxidants has been used widely in the study of free radical damage and oxidation, although it does not support optimum neuronal survival in culture. Serum in MEM+ leads to enhanced cell survival but also promotes glial cell proliferation. In this study, we used a new combination medium (NM-2) that consists of both NB and MEM+ for growing primary hippocampal and cortical neuronal cultures. NM-2 enhanced neuronal survival 78.9% for dissociated neurons at a density of 50 cells/mm(2) and 83.1% for 100 cells/mm(2), while decreasing glial cell proliferation to 2-3% and completely inhibiting oligodendrocytes. The NM-2 minimized the effectiveness of antioxidants in the medium to the neurotoxin 4-hydroxynonenal. It also decreased neuronal clumping and provided a more even distribution of neurons. Neurons survived for 4 weeks in NM-2 without changing the original medium. NM-2 provides a good environment for studies of free radical damage and oxidation of neurons. The combination incorporates the best of both NB and MEM+ that results in high neuron survival rate, low glial cell proliferation, reduced antioxidant level, and provides relatively pure cultures of hippocampal and cortical neurons.  相似文献   

16.
Voltage-activated currents were studied in whole-cell patch-clamped rat neocortical neurons growing in culture and treated with tunicamycin (TU), an inhibitor of protein N-glycosylation. The size of the Na+ current decreased progressively in the presence of TU (1-2 microM). This decrease was faster in growing 5-14 day-old neurons (to ca. 40% of control after 24 hours of treatment) than in fully grown 20-40-day-old neurons (to ca. 40% of control after 68 hours of treatment). The fast transient K+ current (A-current) was abolished, and the delayed rectifier K+ current was markedly reduced by a 24 hour treatment with TU (1-2 microM) in growing neurons. In contrast, in fully grown neurons these currents were unaffected by the same TU treatment. The size of the Ca2+ current was significantly reduced following a 24 hour treatment with TU (1-2 microM) in neurons at early stages of differentiation, but remained stable in 20-40-day-old neurons. It is concluded that protein glycosylation, presumably of the channel proteins themselves, is important for the functional expression of voltage-activated channels in embryonic cortical neurons during the early stages of cell growth in culture; the channels become less dependent on glycosylation in mature neurons.  相似文献   

17.
Cultured adult rat dorsal root ganglion (DRG) neurons were used to study depolarization-induced Ca2+ mobilization and the effects of intracellular Ca2+ depletion on neurite outgrowth. Cytoplasmic and nuclear Ca2+ signals were visualized in dissociated DRG neurons using confocal scanning laser microspcopy and the Ca2+ indicator dye fluo-3. The depolarization-induced Ca2+ signals were highest in neurons during the first few days in culture, prior to neurite extension; during this time nuclear signals exceeded those of the cytoplasm severalfold. After several days in culture, neurons began to arborize, depolarization-induced Ca2+ signals became attenuated, and nuclear signals no longer exceeded those of the cytoplasm. Elevated Ca2+ signals were dependent upon both Ca2+ influx and intact intracellular Ca2+ stores, indicating that the signals are generated by calcuim-induced calcium release (CICR). Thapsigargin, an endoplasmic reticulum Ca2+ ATPase inhibitor, depleted intracellular Ca2+ stores and blocked the induction of the large nuclear Ca2+ signals. Treating DRG neurons briefly with thapsigargin (200 nM for 20 min) shortly after plating reduced subsequent neuritogenesis, impyling that intact Ca2+ stores are necessery for initiating neurite outgrowth. Immunostaining of DRG neurons with antibodies to Ca2+ /calmodulin-dependent kinase II (CaM kinase II) demonstrated that this enzyme is present in the nucleus at early times in culture. These observations are consistent with the idea that CICR triggered by Ca2+ entry subsequent to depolarization may elicit neurite outgrowth by activating nuclear enzymes appropriate for such outgrowth. © 1994 John Wile & Sons, Inc.  相似文献   

18.
The development of the action potential and responses to neurotransmitters have been described for a population of embryonic spinal neurons developing in vivo. A comparable pattern is seen for spinal neurons developing in dissociated cell culture. The impulse appears very early in this developmental sequence, and the action potential involves a large inward Ca2+ current. Since Ca2+ is a ubiquitous intracellular regulator, we questioned whether a large influx of Ca2+ is necessary for the subsequent differentiation of membrane properties. Embryonic Xenopus neurons grown in normal culture medium do not make Ca2+- or Na+-dependent action potentials in their cell bodies in a Ca2+-free saline containing tetrodotoxin (TTX). To achieve a chronic blockade of impulse activity, neurons were grown in a medium in which Ca2+ was replaced by Mg2+, and to which 1 mM EGTA was added. In some instances TTX was present. Neurons grown in these experimental culture media extend neurites more rapidly than controls. Action potentials cannot be elicited from neurons when examined in experimental medium. However, examination in saline reveals that the change in the ionic dependence of the impulse is indistinguishable from that observed in neurons grown in normal medium. Furthermore, the time of onset of responses to GABA is unaffected by this experimental treatment. Thus the expression of Ca2+- and Na+-dependent action potentials seems not to play a part in the early differentiation of these membrane properties. However, the later development of GABA sensitivity is reduced.  相似文献   

19.
应用正交设计建立青花菜植株的再生体系   总被引:14,自引:0,他引:14  
徐晓峰  黄学林 《广西植物》2002,22(6):513-516-516
通过L16(4 5)正交试验 ,研究最适合青花菜 2周龄下胚轴愈伤组织诱导和不定芽发生的植物生长调节物质的种类和浓度组合。结果发现在NAA、6 BA、TDZ和KT四种激素中 ,NAA对下胚轴愈伤组织发生指数、不定芽发生频率的影响作用最大 ,确定以MS +NAA 0 .2 5mg/L +6 BA 0 .2 5mg/L +TDZ 0 .0 1mg/L(琼脂 0 .8% ,蔗糖 3 % ,pH5 .8)作为单因子试验的培养基。NAA、6 BA和TDZ浓度的单因子试验结果表明最适合下胚轴的培养基配方为 :MS +NAA 0 .1mg/L +6 BA 1 .0mg/L +TDZ 0 .0 6mg/L(琼脂 0 .8% ,蔗糖 3 % ,pH5 .8)。  相似文献   

20.
Zhou C  Yang A  Chai Z 《Cytotechnology》2012,64(2):173-179
Voltage-gated Ca2+ channels (VGCCs) are key regulators of many neuronal functions, and involved in multiple central nervous system diseases. In the last 30 years, a large number of injury and disease models have been established based on cultured neurons. Culture with serum develops a mixture of neurons and glial cells, while culture without serum develops pure neurons. Both of these neuronal-culture methods are widely used. However, the properties of Ca2+ currents in neurons from these two cultures have not been compared. In this study, we cultured rat cortical neurons in serum-containing or -free medium and then recorded the Ca2+ channel currents using patch-clamp technique. Our results showed that there were significant differences in the amplitude and activation properties of whole-cell Ca2+ channel currents, and of non-L-type Ca2+ channel currents between the neurons from these two culture systems. Our data suggested that the difference of whole-cell Ca2+ currents may result from the differences in non-L-type currents. Understanding of these properties will considerably advance studies of VGCCs in neurons from pure or mixed culture.  相似文献   

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