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JC-1,线粒体膜电位染料

线粒体膜电位染料
规格或纯度: 95%
有货

库存信息

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库存信息

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库存信息

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货号 (SKU) 包装规格 是否现货 价格 数量
J125134-5mg
5mg 现货 Stock Image
J125134-25mg
25mg 现货 Stock Image
J125134-50mg
50mg 现货 Stock Image

基本描述

别名 CBIC2|JC1|JC 1|5,5',6,6'-四氯-1,1',3,3'-四乙基-脒酞菁碘化物|5,5',6,6'-四氯-1,1',3,3'-四乙基苯并咪唑碳氰碘化物
英文别名 jc-1|3520-43-2|47729-63-5|5,5',6,6'-Tetrachloro-1,1',3,3'-tetraethylbenzimidazolocarbocyanine iodide|CBIC2|JC 1|JC1 dye|1,1',3,3'-Tetraethyl-5,5',6,6'-tetrachloroimidacarbocyanine iodide|5,5',6,6'-Tetrachloro-1,1',3,3'-tetraethylbenzimidazolylcarbocyanine
规格或纯度 95%
英文名称 JC-1
储存温度 避光,-20°C储存,干燥
运输条件 超低温冰袋运输
备注 如果有可能,您尽量在使用的当天配置溶液,并在当天使用完它。但是,如果您需要预先配制储备溶液,我们建议您将溶液等份保存在-20°C的密封小瓶中。通常,它们最多可以使用一个月。在使用前和打开样品瓶之前,我们建议您让您的产品在室温下平衡至少1小时。需要更多关于溶解度,用法和处理的建议吗?请访问我们的常见问题(FAQ)页面以获取更多详细信息。
产品介绍

JC-1 是一种荧光亲脂性羰花青染料,可以用来衡量线粒体的膜电位。

双发射电位敏感探针,可用于测量线粒体膜电位。 JC-1是一种低膜电位的绿色荧光(λex520 nm)单体。 在较高的电势下,JC-1形成红色荧光(λem596 nm)“ J聚集体”,表现出较宽的激发和非常窄的发射光谱。 JC-1的红色荧光与绿色荧光的比率仅取决于膜电位,不受线粒体大小,形状或密度的影响。

线粒体膜电位的下降是细胞凋亡早期的一个标志性事件。通过JC-1从红色荧光到绿色荧光的转变可以很容易地检测到细胞膜电位的下降,同时也可以用JC-1从红色荧光到绿色荧光的转变作为细胞凋亡早期的一个检测指标。
JC-1单体的最大激发波长为514nm,最大发射波长为529nm;JC-1聚合物的最大激发波长为585nm,最大发射波长为590nm。实际观察时,使用常规的观察红色荧光和绿色荧光的设置即可。
JC-1用于检测细胞的线粒体膜电位时常用的浓度范围为1~20µg/mL,对于很多细胞适宜采用的JC-1浓度为10µg/mL。

注意事项
JC-1如果一次使用量较小,需把每管再适当进行分装,尽量避免反复冻融。

为了您的安全和健康,请穿实验服并戴一次性手套操作。

JC-1 is a fluorescent lipophilic carbocyanine dye, which can be used to measure mitochondrial membrane potential.
A dual-emission potential-sensitive probe that can be used to measure mitochondrial membrane potential. JC-1 is a green-fluorescent (λex 520 nm) monomer at low membrane potential. At higher potentials, JC-1 forms red-fluorescent (λem 596 nm ) "J-aggregates," which exhibit broad excitation and very narrow emission spectra. The ratio of red to green fluorescence of JC-1 is dependent only on membrane potential, and not influenced by mitochondrial size, shape, or density.

The decrease of mitochondrial membrane potential is a landmark event in the early stage of apoptosis. The decrease of cell membrane potential can be easily detected by the transition of JC-1 from red fluorescence to green fluorescence, and the transition from red fluorescence to green fluorescence of JC-1 can also be used as an early detection indicator of apoptosis.

The maximum excitation wavelength of JC-1 monomer is 514nm and the maximum emission wavelength is 529nm; the maximum excitation wavelength of JC-1 polymer is 585nm and the maximum emission wavelength is 590nm. For actual observation, use the conventional settings for observing red fluorescence and green fluorescence.

The commonly used concentration range of JC-1 for detecting the mitochondrial membrane potential of cells is 1-20μg/mL, and the suitable concentration of JC-1 for many cells is 10μg/mL.

Precautions

If the amount of JC-1 used at a time is small, each tube needs to be appropriately divided to avoid repeated freeze-thaw.

For your safety and health, please wear lab coats and disposable gloves.

名称和标识符

IUPAC Name 5,6-dichloro-2-[(E)-3-(5,6-dichloro-1,3-diethylbenzimidazol-3-ium-2-yl)prop-2-enylidene]-1,3-diethylbenzimidazole;iodide
INCHI InChI=1S/C25H27Cl4N4.HI/c1-5-30-20-12-16(26)17(27)13-21(20)31(6-2)24(30)10-9-11-25-32(7-3)22-14-18(28)19(29)15-23(22)33(25)8-4;/h9-15H,5-8H2,1-4H3;1H/q+1;/p-1
InChi Key FYNNIUVBDKICAX-UHFFFAOYSA-M
Canonical SMILES CCN1C2=CC(=C(C=C2[N+](=C1C=CC=C3N(C4=CC(=C(C=C4N3CC)Cl)Cl)CC)CC)Cl)Cl.[I-]
Isomeric SMILES CCN1C2=CC(=C(C=C2[N+](=C1/C=C/C=C3N(C4=CC(=C(C=C4N3CC)Cl)Cl)CC)CC)Cl)Cl.[I-]
PubChem CID 5492929
分子量 652.23

化学和物理性质

溶解性 DMSO

安全和危险性(GHS)

象形图
ghs09

Environmental Hazard

ghs07

Harmful

信号词 Warning
危险声明 H315: Causes skin irritation
H319: Causes serious eye irritation
H335: May cause respiratory irritation
H302: Harmful if swallowed
H410: Very toxic to aquatic life with long lasting effects
预防措施声明 P261,P305+P351+P338,P273,P280,P302+P352,P321,P405,P501,P264,P271,P270,P304+P340,P403+P233,P362+P364,P391,P330,P264+P265,P301+P317,P337+P317,P332+P317,P319

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参考文献

1. Dong X et al..  (2022)  Inhibition of miR-421 Preserves Mitochondrial Function and Protects against Parkinson's Disease Pathogenesis via Pink1/Parkin-Dependent Mitophagy..  Dis Markers,  2022  ():  (5186252).  [PMID:35664430]
2. Zheng Y et al..  (2020)  Mir-141-3p Regulates Apoptosis and Mitochondrial Membrane Potential via Targeting Sirtuin1 in a 1-Methyl-4-Phenylpyridinium in vitro Model of Parkinson's Disease..  Biomed Res Int,  2020  ():  (7239895).  [PMID:33204711]
3. Twarog C et al..  (2020)  A head-to-head Caco-2 assay comparison of the mechanisms of action of the intestinal permeation enhancers: SNAC and sodium caprate (C10)..  Eur J Pharm Biopharm,  152  ():  (95-107).  [PMID:32387703]
4. Zhu X et al..  (2019)  Active Vitamin D and Vitamin D Receptor Help Prevent High Glucose Induced Oxidative Stress of Renal Tubular Cells via AKT/UCP2 Signaling Pathway..  Biomed Res Int,  2019  ():  (9013904).  [PMID:31275989]
5. Dar S et al..  (2017)  Bioenergetic Adaptations in Chemoresistant Ovarian Cancer Cells..  Sci Rep,  ():  (8760).  [PMID:28821788]
6. Britti E et al..  (2021)  Calcitriol increases frataxin levels and restores mitochondrial function in cell models of Friedreich Ataxia..  Biochem J,  478  ():  (1-20).  [PMID:33305808]
7. Akaike T et al..  (2017)  Cysteinyl-tRNA synthetase governs cysteine polysulfidation and mitochondrial bioenergetics..  Nat Commun,  ():  (1177).  [PMID:29079736]
8. Wu P et al..  (2021)  Ginsenoside Rg3 alleviates septic liver injury by regulating the lncRNA TUG1/miR-200c-3p/SIRT1 axis..  J Inflamm (Lond),  18  ():  (31).  [PMID:34930287]
9. Ding J et al..  (2023)  HADHA alleviates hepatic steatosis and oxidative stress in NAFLD via inactivation of the MKK3/MAPK pathway..  Mol Biol Rep,  50  (2):  (961-970).  [PMID:36376538]
10. Chen J et al..  (2021)  Inhibition of Autophagy Prevents Panax Notoginseng Saponins (PNS) Protection on Cardiac Myocytes Against Endoplasmic Reticulum (ER) Stress-Induced Mitochondrial Injury, Ca2+ Homeostasis and Associated Apoptosis..  Front Pharmacol,  12  ():  (620812).  [PMID:33762943]
11. Kaul A et al..  (2021)  Molecular Insights into the Antistress Potentials of Brazilian Green Propolis Extract and Its Constituent Artepillin C..  Molecules,  27  ():  ().  [PMID:35011307]
12. Putri JF et al..  (2019)  Mortaparib, a novel dual inhibitor of mortalin and PARP1, is a potential drug candidate for ovarian and cervical cancers..  J Exp Clin Cancer Res,  38  ():  (499).  [PMID:31856867]
13. Rodríguez-Nuevo A et al..  (2022)  Oocytes maintain ROS-free mitochondrial metabolism by suppressing complex I..  Nature,  607  (7920):  (756-761).  [PMID:35859172]
14. Rodríguez-Pascau L et al..  (2021)  PPAR gamma agonist leriglitazone improves frataxin-loss impairments in cellular and animal models of Friedreich Ataxia..  Neurobiol Dis,  148  ():  (105162).  [PMID:33171227]
15. Wang DZ et al..  (2016)  Soluble guanylate cyclase activation during ischemic injury in mice protects against postischemic inflammation at the mitochondrial level..  Am J Physiol Gastrointest Liver Physiol,  310  (9):  (G747-56).  [PMID:26950856]
16. Cardner M et al..  (2020)  Structure-function relationships of HDL in diabetes and coronary heart disease..  JCI Insight,  ():  ().  [PMID:31830004]
17. Shan L et al..  (2019)  Sulfated polysaccharide of Sepiella maindroni ink targets Akt and overcomes resistance to the FGFR inhibitor AZD4547 in bladder cancer..  Aging (Albany NY),  11  (18):  (7780-7795).  [PMID:31545294]