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Fournisseur: Thermo Fisher Scientific
Description: 5-Amino-1,2,3,4-tétrahydrophtalazine-1,4-dione 98%
Numéro de catalogue: (MEMMHCP50)
Fournisseur: MEMMERT
Description: Les chambres d'humidification comprennent une chambre intérieure et un boîtier en acier inoxydable résistants à la corrosion ; elles sont parfaitement adaptées aux tests climatiques à long terme et à température et humidité constantes. Idéales pour les industries agro-alimentaire, cosmétique, pharmaceutique, biotechnologique et électronique. Les unités comportent un système d'auto-diagnostic avec indication de défaillance pour le contrôle de la température et de l'humidité. La chambre de travail est chauffée sur les six côtés. Ce système de chauffage et le contrôle électronique de l'humidité évitent toute formation de condensation dans la chambre. L'eau distillée est récupérée depuis un réservoir externe de 2,5 litres grâce à une pompe à amorçage automatique. Mémoire de journal interne de 1024 ko (mémoire tampon circulaire) pour la consignation de toutes les données pertinentes ; correspond à une utilisation pendant trois mois environ, à intervalles d'une minute. La conformité aux normes BPL/BPF est assurée par l'interface série USB et le logiciel « Celsius » pour la programmation et la documentation.
UOM: 1 * 1 ST


Numéro de catalogue: (BOSSBS-11554R)
Fournisseur: Bioss
Description: Hyccin is a 521 amino acid cytoplasmic protein that is widely expressed with highest levels found in heart, brain, placenta, spleen and testis. Belonging to the FAM126 family, hyccin may play a role in the ∫-catenin/Lef signaling pathway. Hyccin is likely involved in the process of myelination of the central and peripheral nervous system. Defects in the gene encoding hyccin are the cause of leukodystrophy hypomyelinating type 5 (HLD5), which is characterized by congenital cataract, progressive neurologic impairment and diffuse myelin deficiency. Individuals affected by HLD5 experience progressive pyramidal and cerebellar dysfunction along with muscle weakness in the lower limbs. Hyccin exists as two alternatively spliced isoforms and is encoded by a gene located on human chromosome 7.
UOM: 1 * 100 µl


Fournisseur: Hettich
Description: Centrifugeuse de paillasse, Couvercle pour godet 521-1236

Numéro de catalogue: (1692709.)
Fournisseur: USP
Description: USP Reference Standards are specified for use in conducting official USP–NF tests and assays. USP also provides Reference Standards specified in the Food Chemicals Codex as well as authentic substances—high-quality chemical samples—as a service to analytical, clinical, pharmaceutical and research laboratories. To confirm accuracy and reproducibility, USP Reference Standards are rigorously tested and evaluated by multiple independent laboratories including USP, commercial, regulatory, and academic labs. USP also provide publicly available, official documentary standards for pharmaceutical ingredients in the USP–NF that link directly with our primary reference standards.
UOM: 1 * 100 mg


Fournisseur: Apollo Scientific
Description: 3,4-Dioxonaphtalène-1-sulfonate de sodium

Fournisseur: Thermo Fisher Scientific
Description: 3,4-Dioxonaphtalène-1-sulfonate de sodium 98%
Numéro de catalogue: (BOSSBS-13264R-A750)
Fournisseur: Bioss
Description: There are two forms of glutamic acid decarboxylases (GADs) that exist in brain: GAD-65 (also known as GAD2) and GAD-67 (also known as GAD1, GAD or SCP). GAD-65 and GAD-67 are members of the group II decarboxylase family of proteins and are responsible for catalyzing the rate limiting step in the production of GABA (gamma-aminobutyric acid) from L-glutamic acid. Although both GADs are found in brain, GAD-65 localizes to synaptic vesicle membranes in nerve terminals, while GAD-67 is distributed throughout the cell. GAD-67 is responsible for the basal levels of GABA synthesis. In the case of a heightened demand for GABA in neurotransmission, GAD-65 transiently activates to assist in GABA production. As a member of the group II decarboxylase family, GADL1 (Glutamate decarboxylase-like protein 1) is a 521 amino acid protein that utilizes pyridoxal phosphate as a cofactor for its carboxylase activity. There are two isoforms of GADL1 that exist as a result of alternative splicing events.
UOM: 1 * 100 µl


Numéro de catalogue: (BOSSBS-13264R-A350)
Fournisseur: Bioss
Description: There are two forms of glutamic acid decarboxylases (GADs) that exist in brain: GAD-65 (also known as GAD2) and GAD-67 (also known as GAD1, GAD or SCP). GAD-65 and GAD-67 are members of the group II decarboxylase family of proteins and are responsible for catalyzing the rate limiting step in the production of GABA (gamma-aminobutyric acid) from L-glutamic acid. Although both GADs are found in brain, GAD-65 localizes to synaptic vesicle membranes in nerve terminals, while GAD-67 is distributed throughout the cell. GAD-67 is responsible for the basal levels of GABA synthesis. In the case of a heightened demand for GABA in neurotransmission, GAD-65 transiently activates to assist in GABA production. As a member of the group II decarboxylase family, GADL1 (Glutamate decarboxylase-like protein 1) is a 521 amino acid protein that utilizes pyridoxal phosphate as a cofactor for its carboxylase activity. There are two isoforms of GADL1 that exist as a result of alternative splicing events.
UOM: 1 * 100 µl


Numéro de catalogue: (BOSSBS-13264R-A488)
Fournisseur: Bioss
Description: There are two forms of glutamic acid decarboxylases (GADs) that exist in brain: GAD-65 (also known as GAD2) and GAD-67 (also known as GAD1, GAD or SCP). GAD-65 and GAD-67 are members of the group II decarboxylase family of proteins and are responsible for catalyzing the rate limiting step in the production of GABA (gamma-aminobutyric acid) from L-glutamic acid. Although both GADs are found in brain, GAD-65 localizes to synaptic vesicle membranes in nerve terminals, while GAD-67 is distributed throughout the cell. GAD-67 is responsible for the basal levels of GABA synthesis. In the case of a heightened demand for GABA in neurotransmission, GAD-65 transiently activates to assist in GABA production. As a member of the group II decarboxylase family, GADL1 (Glutamate decarboxylase-like protein 1) is a 521 amino acid protein that utilizes pyridoxal phosphate as a cofactor for its carboxylase activity. There are two isoforms of GADL1 that exist as a result of alternative splicing events.
UOM: 1 * 100 µl


Numéro de catalogue: (521-0323)
Fournisseur: JOUAN
Description: Centrifugeuse de paillasse, Jeu de 4 réducteurs pour flacon conique 250 ml Corning (avec 521-0322)
UOM: 1 * 4 ST


Numéro de catalogue: (HEID591-61210-00)
Fournisseur: Heidolph Instruments GmbH & Co.KG
Description: For high-performance distillation with the best separation performance, suitable for most solvents (A1 version), also when processing foaming media (A2 version): Version with adapter for Hei-VAP Industrial with glassware of the A series (A1, A2).
UOM: 1 * 1 ST

New Product


Numéro de catalogue: (BOSSBS-13264R-CY5)
Fournisseur: Bioss
Description: There are two forms of glutamic acid decarboxylases (GADs) that exist in brain: GAD-65 (also known as GAD2) and GAD-67 (also known as GAD1, GAD or SCP). GAD-65 and GAD-67 are members of the group II decarboxylase family of proteins and are responsible for catalyzing the rate limiting step in the production of GABA (gamma-aminobutyric acid) from L-glutamic acid. Although both GADs are found in brain, GAD-65 localizes to synaptic vesicle membranes in nerve terminals, while GAD-67 is distributed throughout the cell. GAD-67 is responsible for the basal levels of GABA synthesis. In the case of a heightened demand for GABA in neurotransmission, GAD-65 transiently activates to assist in GABA production. As a member of the group II decarboxylase family, GADL1 (Glutamate decarboxylase-like protein 1) is a 521 amino acid protein that utilizes pyridoxal phosphate as a cofactor for its carboxylase activity. There are two isoforms of GADL1 that exist as a result of alternative splicing events.
UOM: 1 * 100 µl


Numéro de catalogue: (BOSSBS-13264R-CY7)
Fournisseur: Bioss
Description: There are two forms of glutamic acid decarboxylases (GADs) that exist in brain: GAD-65 (also known as GAD2) and GAD-67 (also known as GAD1, GAD or SCP). GAD-65 and GAD-67 are members of the group II decarboxylase family of proteins and are responsible for catalyzing the rate limiting step in the production of GABA (gamma-aminobutyric acid) from L-glutamic acid. Although both GADs are found in brain, GAD-65 localizes to synaptic vesicle membranes in nerve terminals, while GAD-67 is distributed throughout the cell. GAD-67 is responsible for the basal levels of GABA synthesis. In the case of a heightened demand for GABA in neurotransmission, GAD-65 transiently activates to assist in GABA production. As a member of the group II decarboxylase family, GADL1 (Glutamate decarboxylase-like protein 1) is a 521 amino acid protein that utilizes pyridoxal phosphate as a cofactor for its carboxylase activity. There are two isoforms of GADL1 that exist as a result of alternative splicing events.
UOM: 1 * 100 µl


Numéro de catalogue: (BOSSBS-13264R-A647)
Fournisseur: Bioss
Description: There are two forms of glutamic acid decarboxylases (GADs) that exist in brain: GAD-65 (also known as GAD2) and GAD-67 (also known as GAD1, GAD or SCP). GAD-65 and GAD-67 are members of the group II decarboxylase family of proteins and are responsible for catalyzing the rate limiting step in the production of GABA (gamma-aminobutyric acid) from L-glutamic acid. Although both GADs are found in brain, GAD-65 localizes to synaptic vesicle membranes in nerve terminals, while GAD-67 is distributed throughout the cell. GAD-67 is responsible for the basal levels of GABA synthesis. In the case of a heightened demand for GABA in neurotransmission, GAD-65 transiently activates to assist in GABA production. As a member of the group II decarboxylase family, GADL1 (Glutamate decarboxylase-like protein 1) is a 521 amino acid protein that utilizes pyridoxal phosphate as a cofactor for its carboxylase activity. There are two isoforms of GADL1 that exist as a result of alternative splicing events.
UOM: 1 * 100 µl


Numéro de catalogue: (BOSSBS-13264R-FITC)
Fournisseur: Bioss
Description: There are two forms of glutamic acid decarboxylases (GADs) that exist in brain: GAD-65 (also known as GAD2) and GAD-67 (also known as GAD1, GAD or SCP). GAD-65 and GAD-67 are members of the group II decarboxylase family of proteins and are responsible for catalyzing the rate limiting step in the production of GABA (gamma-aminobutyric acid) from L-glutamic acid. Although both GADs are found in brain, GAD-65 localizes to synaptic vesicle membranes in nerve terminals, while GAD-67 is distributed throughout the cell. GAD-67 is responsible for the basal levels of GABA synthesis. In the case of a heightened demand for GABA in neurotransmission, GAD-65 transiently activates to assist in GABA production. As a member of the group II decarboxylase family, GADL1 (Glutamate decarboxylase-like protein 1) is a 521 amino acid protein that utilizes pyridoxal phosphate as a cofactor for its carboxylase activity. There are two isoforms of GADL1 that exist as a result of alternative splicing events.
UOM: 1 * 100 µl


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