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Artikel-Nr: (BOSSBS-7689R)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-7689R-FITC)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R-FITC
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Artikel-Nr: (462-0553)
Lieferant: VWR Collection
Beschreibung: External PT100 probe is used for with chillers and coolers, 6000 series chiller, non-refrigerated coolers, 4100 liquid-to-liquid coolers.
UOM: 1 * 1 ST


Artikel-Nr: (ENTEDSU-00-01-00)
Lieferant: ENTEGRIS
Hersteller Artikel Nummer : DSU-00-01-00
Beschreibung: Designed for use with FluoroPure® single-use HDPE blowmolded drums, this single-use dispense head provides dispensing functions in a single connection.
UOM: 1 * 1 ST


Lieferant: HAMILTON BONADUZ
Beschreibung: Polyplast electrodes have a shatterproof plastic shaft. They are ideal for portable measurements or as entry level sensors for basic laboratory applications.

Artikel-Nr: (BOSSBS-7689R-A350)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R-A350
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-7689R-CY3)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R-CY3
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-7689R-CY5)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R-CY5
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-7689R-CY7)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R-CY7
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-7689R-CY5.5)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R-CY5.5
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Lieferant: S.C.A.T.
Beschreibung: Necessary and helpful accessories for use with SCAT electronic level controls.

Lieferant: INTERSCIENCE
Beschreibung: Dilu<i>Flow</i>® Elite automatically dilutes in seconds a solid sample with the appropriate weight of diluent with full traceability. Programmable and connectable with up to 6 diluents.

Artikel-Nr: (CONTMGMP0001)
Lieferant: CONTEC
Hersteller Artikel Nummer : MGMP0001
Beschreibung: These single use microfibre pads feature synthetic construction for the effective removal of both gross contamination and fine particles. Conveniently designed to provide a new pad for each new use, they are compatible with most existing hardware.
UOM: 1 * 140 ST


Artikel-Nr: (BOSSBS-7689R-A488)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-7689R-A488
Beschreibung: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Lieferant: BioAir S.p.A.
Beschreibung: Retrofit additional single power point for all models

Lieferant: Avantor Fluid Handling
Beschreibung: Verlieren Sie nicht die Kontrolle über Ihre Dosieranwendungen—die digitale Anzeige ermöglicht wiederholbare Steuerungen.

ISO9001 CE Compliant 2 year warranty

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Lager für diesen Artikel ist begrenzt, kann aber in einem Lagerhaus in Ihrer Nähe zur Verfügung. Bitte stellen Sie sicher, dass Sie in sind angemeldet auf dieser Seite, so dass verfügbare Bestand angezeigt werden können. Wenn das call noch angezeigt wird und Sie Hilfe benötigen, rufen Sie uns an 044 745 13 13.
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