24414 Results for: "Bacitracin+zinc+salt"
Multi-parameter meter (pH/ISE/conductivity/DO), bench, inoLab® Multi 9620 IDS
Supplier: WTW
Digital high performance multi-parameter device with two galvanically isolated measuring channels for pH/mV, ISE (including incremental methods), conductivity and oxygen measurements. With comprehensive GLP functions.
Expand 2 Items
BATTERY 1,4V FOR INCUBATOR 1 * 6 items
Supplier: MOINEAU
BATTERY 1,4V FOR INCUBATOR 1 * 6 items
Expand 1 Items
Anti-SIK1 Rabbit Polyclonal Antibody (FITC (Fluorescein Isothiocyanate))
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Anti-SIK1 Rabbit Polyclonal Antibody (Alexa Fluor® 488)
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Anti-SIK1 Rabbit Polyclonal Antibody (Cy5.5®)
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Anti-SIK1 Rabbit Polyclonal Antibody (Cy5®)
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Anti-SIK1 Rabbit Polyclonal Antibody
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Anti-SIK1 Rabbit Polyclonal Antibody (Alexa Fluor® 647)
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Anti-SIK1 Rabbit Polyclonal Antibody (Alexa Fluor® 555)
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Ammonium iron(II) sulphate hexahydrate 99+% for analysis
Supplier: Thermo Fisher Scientific
Ammonium iron(II) sulphate hexahydrate 99+% for analysis
Expand 5 Items
Anti-SIK1 Rabbit Polyclonal Antibody (HRP (Horseradish Peroxidase))
Supplier: Bioss
Serine/threonine-protein kinase involved in various processes such as cell cycle regulation, gluconeogenesis and lipogenesis regulation, muscle growth and differentiation and tumor suppression. Phosphorylates HDAC4, HDAC5, PPME1, SREBF1, CRTC1/TORC1 and CRTC2/TORC2. Acts as a tumor suppressor and plays a key role in p53/TP53-dependent anoikis, a type of apoptosis triggered by cell detachment: required for phosphorylation of p53/TP53 in response to loss of adhesion and is able to suppress metastasis. Part of a sodium-sensing signaling network, probably by mediating phosphorylation of PPME1: following increases in intracellular sodium, SIK1 is activated by CaMK1 and phosphorylates PPME1 subunit of protein phosphatase 2A (PP2A), leading to dephosphorylation of sodium/potassium-transporting ATPase ATP1A1 and subsequent increase activity of ATP1A1. Acts as a regulator of muscle cells by phosphorylating and inhibiting class II histone deacetylases HDAC4 and HDAC5, leading to promote expression of MEF2 target genes in myocytes. Also required during cardiomyogenesis by regulating the exit of cardiomyoblasts from the cell cycle via down-regulation of CDKN1C/p57Kip2. Acts as a regulator of hepatic gluconeogenesis by phosphorylating and repressing the CREB-specific coactivators CRTC1/TORC1 and CRTC2/TORC2, leading to inhibit CREB activity. Also regulates hepatic lipogenesis by phosphorylating and inhibiting SREBF1. In concert with CRTC1/TORC1, regulates the light-induced entrainment of the circadian clock by attenuating PER1 induction; represses CREB-mediated transcription of PER1 by phosphorylating and deactivating CRTC1/TORC1 (By similarity).
Expand 1 Items
Potency:~900 µ g/mg Crystalline Topoisomerase II inhibitor 1 * 1 g
Supplier: MP Biomedicals
Potency:~900 µ g/mg Crystalline Topoisomerase II inhibitor 1 * 1 g
Expand 1 Items
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 100 mg
Supplier: Cayman Chemical
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 100 mg
Expand 1 Items
Ammonium cerium(IV) sulphate dihydrate ≥98.0% (RT), Puriss. p.a. ACS analytical reagent, Fluka™
Supplier: Honeywell Chemicals
Ammonium cerium(IV) sulphate dihydrate ≥98.0% (RT), Puriss. p.a. ACS, Fluka™
Expand 1 Items
Ammonium iron(II) sulphate hexahydrate 98.5-101.5% ACS
Supplier: Thermo Fisher Scientific
Ammonium iron(II) sulphate hexahydrate 98.5-101.5% ACS
Expand 2 Items
Ammonium cerium(IV) sulphate dihydrate 95% ACS
Supplier: Thermo Fisher Scientific
Ammonium cerium(IV) sulphate dihydrate 95% ACS
Expand 3 Items
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 250 mg
Supplier: Cayman Chemical
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 250 mg
Expand 1 Items
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 500 mg
Supplier: Cayman Chemical
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 500 mg
Expand 1 Items
Photoinitiator of polymerization useful in either acid or alkaline buffer systems. 1 * 5 g
Supplier: MP Biomedicals
Photoinitiator of polymerization useful in either acid or alkaline buffer systems. 1 * 5 g
Expand 1 Items
Di(Tris) SaltCrystallinePurity: 98+%Substrate for assay of alkaline phosphatase. 1 * 25 g
Supplier: MP Biomedicals
Di(Tris) SaltCrystallinePurity: 98+%Substrate for assay of alkaline phosphatase. 1 * 25 g
Expand 1 Items
Di(Tris) SaltCrystallinePurity: 98+%Substrate for assay of alkaline phosphatase. 1 * 5 g
Supplier: MP Biomedicals
Di(Tris) SaltCrystallinePurity: 98+%Substrate for assay of alkaline phosphatase. 1 * 5 g
Expand 1 Items
Potency:~900 µ g/mg Crystalline Topoisomerase II inhibitor 1 * 5 g
Supplier: MP Biomedicals
Potency:~900 µ g/mg Crystalline Topoisomerase II inhibitor 1 * 5 g
Expand 1 Items
[EN]CORTISTATIN-14 (TRIFLUOROACETATE SAL
Supplier: Cayman Chemical
[EN]CORTISTATIN-14 (TRIFLUOROACETATE SAL
Expand 1 Items
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 1 g
Supplier: Cayman Chemical
Cefazolin is a broad-spectrum, first-generation cephalosporin antibiotic that is active in vitro against most Gram-positive and Gram -negative bacteria.{25759} It inhibits bacterial cell wall synthesis, causing growth to cease without lysis (5 µg/ml 1 * 1 g
Expand 1 Items
Mode of action and Anti-microbial spectrum: Ampicillin is an inhibitor of bacterial cell wall synthesis which acts by inhibiting the cross-linking of peptidoglycan. It is used in the selection of antibiotic cell hybrids, and has a high rate of actio 1 * 10 g
Supplier: G-Biosciences
Mode of action and Anti-microbial spectrum: Ampicillin is an inhibitor of bacterial cell wall synthesis which acts by inhibiting the cross-linking of peptidoglycan. It is used in the selection of antibiotic cell hybrids, and has a high rate of actio 1 * 10 g