Magnesium Green™, AM, cell permeant - Special Packaging
Magnesium Green™, AM, cell permeant - Special Packaging
Invitrogen™

Magnesium Green™, AM, cell permeant - Special Packaging

La sal de potasio Magnesium Green™, AM con permeabilidad celular muestra una afinidad superior para Mg2+ (Kd ∼1,0 mM) queMás información
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Número de catálogoCantidad
M373520 x 50 μg
Número de catálogo M3735
Precio (USD)
978,48
Each
Añadir al carro de la compra
Cantidad:
20 x 50 μg
Precio (USD)
978,48
Each
Añadir al carro de la compra
La sal de potasio Magnesium Green™, AM con permeabilidad celular muestra una afinidad superior para Mg2+ (Kd ∼1,0 mM) que mag-fura-2 (Kd ∼1,9 mM) o mag-indo-1 (Kd ∼2,7 mM). Al unir Mg2+, Magnesium Green muestr y aumenta la intensidad de emisión de fluorescencia sin cambiar la longitud de onda con una absorción/emisión máxima de ∼506/531 nm.

Obtenga más información sobre los indicadores de iones, incluidos el calcio, el potasio, el pH y los indicadores de potencial de membrana ›

Para uso exclusivo en investigación. No apto para uso en procedimientos diagnósticos.
Especificaciones
Método de detecciónFluorescente
Tipo de coloranteIndicador de magnesio
Cantidad20 x 50 μg
Condiciones de envíoTemperatura ambiente
Para utilizar con (aplicación)Viabilidad y proliferación celulares
Para utilizar con (equipo)Microscopio de fluorescencia, Lector de microplacas
Línea de productosVerde magnesio
Tipo de productoIndicador de magnesio
Unit SizeEach
Contenido y almacenamiento
Almacenar en congelador entre -5 °C y -30 °C

Citations & References (37)

Citations & References
Abstract
Increased [Mg2+]o reduces Ca2+ influx and disruption of mitochondrial membrane potential during reoxygenation.
Authors:Sharikabad MN, Ostbye KM, Brørs O
Journal:Am J Physiol Heart Circ Physiol
PubMed ID:11668073
'Increase in extracellular Mg2+ concentration ([Mg2+]o) reduces Ca2+ accumulation during reoxygenation of hypoxic cardiomyocytes and exerts protective effects. The aims of the present study were to investigate the effect of increased [Mg(2+)](o) on Ca2+ influx and efflux, free cytosolic Ca2+ ([Ca2+]i) and Mg2+ concentrations ([Mg2+]i), Ca2+ accumulation in the presence ... More
Defective pancreatic beta-cell glycolytic signaling in hepatocyte nuclear factor-1alpha-deficient mice.
Authors:Dukes ID, Sreenan S, Roe MW, Levisetti M, Zhou YP, Ostrega D, Bell GI, Pontoglio M, Yaniv M, Philipson L, Polonsky KS
Journal:J Biol Chem
PubMed ID:9733737
'Mutations in the hepatocyte nuclear factor-1alpha (HNF-1alpha) gene cause maturity onset diabetes of the young type 3, a form of type 2 diabetes mellitus. In mice lacking the HNF-1alpha gene, insulin secretion and intracellular calcium ([Ca2+]i) responses were impaired following stimulation with nutrient secretagogues such as glucose and glyceraldehyde but ... More
Contributions of residual calcium to fast synaptic transmission.
Authors:Chen C, Regehr WG
Journal:J Neurosci
PubMed ID:10414955
'Fast neurotransmitter release is driven by high calcium (10-100 microM) near open channels (Ca(local)), followed by a much smaller (<1 microM), longer-lasting residual calcium (Ca(res)). The most prominent component of release, phasic release, lasts several milliseconds and is thought to be triggered by Ca(local). A transient tail of release then ... More
adPEO mutations in ANT1 impair ADP-ATP translocation in muscle mitochondria.
Authors:Kawamata H, Tiranti V, Magrané J, Chinopoulos C, Manfredi G,
Journal:Hum Mol Genet
PubMed ID:21586654
'Mutations in the heart and muscle isoform of adenine nucleotide translocator 1 (ANT1) are associated with autosomal-dominant progressive external opthalmoplegia (adPEO) clinically characterized by exercise intolerance, ptosis and muscle weakness. The pathogenic mechanisms underlying the mitochondrial myopathy caused by ANT1 mutations remain largely unknown. In yeast, expression of ANT1 carrying ... More
Hair bundles are specialized for ATP delivery via creatine kinase.
Authors:Shin JB, Streijger F, Beynon A, Peters T, Gadzala L, McMillen D, Bystrom C, Van der Zee CE, Wallimann T, Gillespie PG,
Journal:Neuron
PubMed ID:17270734
'When stimulated strongly, a hair cell''s mechanically sensitive hair bundle may consume ATP too rapidly for replenishment by diffusion. To provide a broad view of the bundle''s protein complement, including those proteins participating in energy metabolism, we used shotgun mass spectrometry methods to identify proteins of purified chicken vestibular bundles. ... More