Product overview
-
Name(-)-Bicuculline methiodide
-
Short descriptionPrototypic, competitive GABAA receptor antagonist
-
Biological description
Methiodide salt form of (+)-bicuculline.
Prototypic, competitive GABAA receptor antagonist which displaces GABA from the agonist binding site to prevent receptor activation.Also acts as a negative allosteric inhibitor of channel opening to inhibit GABAA receptor activation by anaesthetic agents.
Additionally shows activity at SK calcium-activated potassium channels, nicotinic acetylcholine receptors and acetylcholinesterase.
Reversibly and competitively blocks GABAA receptor mediated currents. Widely used to isolate glutamate receptor mediated EPSCs (excitatory postsynaptic potentials).
Shows convulsant action and induces epilepsy.Freebase, methochloride and methobromide salts also available.
-
Alternative namesBIC, BMI
-
Biological actionAntagonist
-
Purity>98%
-
Our products in actionSubmit Your Citation Now
Images
Properties
-
Chemical name[R-(R*,S*)]-5-(6,8-Dihydro-8-oxofuro[3,4-e]-1,3-benzodioxol-6-yl)-5,6,7,8-tetrahydro-6,6-dimethyl-1,3-dioxolo[4,5-g]isoquinolinium iodide
-
Molecular Weight509.3
-
Chemical structure
![(-)-Bicuculline methiodide [40709-69-1] (-)-Bicuculline methiodide [40709-69-1]](images/hellobio/201710/hb0893.png)
-
Molecular FormulaC21H20INO6
-
CAS Number40709-69-1
-
PubChem identifier104871
-
SMILESC[N+]1(CCC2=CC3=C(C=C2C1C4C5=C(C6=C(C=C5)OCO6)C(=O)O4)OCO3)C.[I-]
-
SourceSynthetic
-
InChiInChI=1S/C21H20NO6.HI/c1-22(2)6-5-11-7-15-16(26-9-25-15)8-13(11)18(22)19-12-3-4-14-20(27-10-24-14)17(12)21(23)28-19;/h3-4,7-8,18-19H,5-6,9-10H2,1-2H3;1H/q+1;/p-1/t18-,19+;/m0./s1
-
InChiKeyHKJKCPKPSSVUHY-GRTNUQQKSA-M
-
MDL numberMFCD00078966
-
AppearanceYellow solid
Applications
-
Application notes
The GABAA receptor antagonist bicuculline is commonly used to reduce levels of inhibition by blocking the actions of the neurotransmitter GABA. Bicuculline is commonly used at concentrations of 100 μM and above.
Bicuculline methiodide from Hello Bio reduces both spontaneous inhibitory post synaptic currents (IPSC) and evoked IPSCs (see Fig 1 above). It was effective at concentrations of 1 mM with complete receptor blockade at 100 μM.
#Protocol 1: Evoked and spontaneous inhibitory post synaptic currents (IPSCs)
- Whole cell voltage clamp recordings were obtained from layer V neurons of the mouse prelimbic cortex brain slice.
- A stimulating electrode was placed in layers II/III and IPSCs were evoked by a single square (150 μs) pulse every 10 sec at a stimulus intensity that gave a reliable IPSC.
- IPSCs were evoked at a range of neuron holding voltages to measure the reversal potential of the current to ensure it was GABAergic.
- Neurons were held at 0mV and IPSCs continuously stimulated and recorded in response to 5 min applications of varying concentrations of Bicuculline methiodide until complete receptor inhibition.
- Spontaneous IPSCs were recorded before and after addition of Bicuculline methiodide by holding the neuron at 0mV and recording for 10 sec.
- All recordings for IPSCs were made in the presence of AMPAR antagonists.
Storing and Using Your Product
-
Storage instructionsRoom temperature
-
Solubility overviewSoluble in water (20mM) or DMSO (50mM)
-
ImportantThis product is for RESEARCH USE ONLY and is not intended for therapeutic or diagnostic use. Not for human or veterinary use.
References for (-)-Bicuculline methiodide
Advantages of an antagonist: bicuculline and other GABA antagonists.
Johnston GA (2013) Br J Pharmacol 169(2) : 328-36.PubMedID: 23425285Differential effects of iontophoretic in vivo application of the GABA(A)-antagonists bicuculline and gabazine in sensory cortex.
Kurt S et al (2006) Hear Res 212(1-2) : 224-35.PubMedID: 16442250[Bicuculline inhibits airway remodeling in a murine model of chronic asthma].
Zhu T et al (2010) Nan Fang Yi Ke Da Xue Xue Bao 30(4) : 842-6.PubMedID: 20423862
ebiomall.com
>
>
>
>
>
>
>
>
>
>
>
>
常用流动相加酸碱后PH的总结,希望大家能够提供一点自己测过的结果,谢谢先
1.直接用固体磷酸钠配制成50mM的磷酸钠溶液,再调pH到7.4;(我们试着用这个做了下,发现挂不上柱)
2.配置磷酸钠盐缓冲液:按NaH2PO4:Na2HPO4以19:81的摩尔比配制成pH7.4的缓冲液?(附一张百度出来的配方
)
3.如果是磷酸钠盐缓冲液,可以直接将50mM的NaH2PO4的水溶液用NaOH调成pH7.4吗?
再者,2和3这两个方法配制的磷酸钠盐缓冲液有什么区别?最终效果是一样的吗?如果不一样,有什么理论的知识支撑呢?个人感觉是分析化学中酸碱理论中的缓冲液那里的知识。求帮忙解答这些疑问。
另外,我还想问一下,pH对于Ni柱对His-tagged的蛋白的分离纯化影响大吗?是怎么影响的?谢谢大家了!
有了源数据之后把源数据按照大小排列,
选中源数据区域-->ALT+A1-->选中图标区右键-->更改图表类型-->散点图
因为是考察不同PH对药物的影响,样品又不好改变其PH值,这种情况怎么办?希望有经验的高手指教。
我的流动相是甲醇-水(90:10)
谢谢赐教!
请进子版按格式发贴,自行修改,谢谢。
由弱酸及其盐、弱碱及其盐组成的混合溶液,能在一定程度上抵消、减轻外加强酸或强碱对溶液酸碱度的影响,从而保持溶液的pH值相对稳定。这种溶液称为缓冲溶液。
:)
我在做一细菌不同酸碱度生长状况时,发现这些奇怪现象:pH=3的培养基灭菌(TSB液体培养基)灭菌后pH上升到到9.2!而原来pH=9.0的降到8.7(基本没多少变化),请问各位大侠,这是什么原因?
一般做不同酸碱度生长实验时,该如何才能防止pH在湿热灭菌后基本不变化?
是否可以理解为纯化水得PH范围为6.3-7.6?能否直接用pH计测量?谢谢!

![]()
暂无品牌分类



