
Katalognummer: 1140 - 2011F
Produktkategori: Företag och industri > Vetenskap och laboratorium
Storlek: 10 x 50 ug
| Storage and shipping | Overnight |
|---|
2011C
ION Natrium Green – 2 (ING-2) AM is a membrane permeable, yellow-green fluorescent, intracellular sodium (Na⁺) indicator. Formerly known as Asante Natrium Green - 2 (ANG-2). Has improved cellular loading and significantly higher brightness than SBFI. Its spectral properties (Ex/Em: 525 nm/545 nm) and large dynamic range make ING-2 the best Na⁺ indicator for high-throughput screening applications targeting Na⁺ channels, and non-selective monovalent cation channels. Also compatible with fluorescence microscopy using common fluorescein, GFP or more ideally YFP filters.Excitation: 525 nm | Emission: 545 nm | Kd: 20 mM
2011F
ION Natrium Green – 2 (ING-2) AM is a membrane permeable, yellow-green fluorescent, intracellular sodium (Na⁺) indicator. Formerly known as Asante Natrium Green - 2 (ANG-2). Has improved cellular loading and significantly higher brightness than SBFI. Its spectral properties (Ex/Em: 525 nm/545 nm) and large dynamic range make ING-2 the best Na⁺ indicator for high-throughput screening applications targeting Na⁺ channels, and non-selective monovalent cation channels. Also compatible with fluorescence microscopy using common fluorescein, GFP or more ideally YFP filters.Excitation: 525 nm | Emission: 545 nm | Kd: 20 mM
2011G
ION Natrium Green – 2 (ING-2) AM is a membrane permeable, yellow-green fluorescent, intracellular sodium (Na⁺) indicator. Formerly known as Asante Natrium Green - 2 (ANG-2). Has improved cellular loading and significantly higher brightness than SBFI. Its spectral properties (Ex/Em: 525 nm/545 nm) and large dynamic range make ING-2 the best Na⁺ indicator for high-throughput screening applications targeting Na⁺ channels, and non-selective monovalent cation channels. Also compatible with fluorescence microscopy using common fluorescein, GFP or more ideally YFP filters.Excitation: 525 nm | Emission: 545 nm | Kd: 20 mM
1045G
Calcium indicator, membrane impermeable. Compatible with flow cytometry, plate reader, and fluorescence microscopy assays.Excitation: 490 nm | Emission: 515 nm | Kd: 355 nM | Purity: >95%Fluo-4 is the most used and the most trusted of the single-wavelength Ca²⁺ indicators. It has been the indicator of choice for countless basic research studies and has been the used to screen many tens-of-millions of compounds using high-throughput screening (HTS) to discover pharmacological tools and drugs for GPCRs, and a wide variety of Ca²⁺ permeable ion channels and transporters.Fluo-4 K⁺ Salt is a membrane impermeable form of Fluo-4 that can be used in lipid membrane-free systems, in liposomes, or can be introduced into cells by electroporation, microinjection or other methods.
1091C
ION Calcium Red-1. Red fluorescent calcium indicator, membrane permeable. Optimal for multiplexing and tissue imaging.Excitation: 580 nm | Emission: 660 nm | Kd: 480 nM | Purity: >95%ION Calcium Red - 1 (ICR-1) is a red fluorescent (Ex/Em 580nm/660nm) calcium (Ca²⁺) indicator for intracellular Ca²⁺ measurements. ICR-1's long-wavelength emission and a large Stokes shift reduces contributions of autofluorescence, making ICR-1 AM optimal for cellular and tissue imaging applications. ICR-1 can also be multiplexed with GFP-labeled cells or other green fluorophores commonly used in experiments. Unlike some other red fluorescent Ca²⁺ indicators, ICR-1 does not accumulate in the mitochondria. Data supporting fluorescence lifetime imaging and multiphoton imaging capabilities have also been demonstrated.
1091F
ION Calcium Red-1. Red fluorescent calcium indicator, membrane permeable. Optimal for multiplexing and tissue imaging.Excitation: 580 nm | Emission: 660 nm | Kd: 480 nM | Purity: >95%ION Calcium Red - 1 (ICR-1) is a red fluorescent (Ex/Em 580nm/660nm) calcium (Ca²⁺) indicator for intracellular Ca²⁺ measurements. ICR-1's long-wavelength emission and a large Stokes shift reduces contributions of autofluorescence, making ICR-1 AM optimal for cellular and tissue imaging applications. ICR-1 can also be multiplexed with GFP-labeled cells or other green fluorophores commonly used in experiments. Unlike some other red fluorescent Ca²⁺ indicators, ICR-1 does not accumulate in the mitochondria. Data supporting fluorescence lifetime imaging and multiphoton imaging capabilities have also been demonstrated.

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