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1100 results for "Nitric Acid"

1100 Results for: "Nitric Acid"

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Anti-SLC3A2 Rabbit Polyclonal Antibody (Alexa Fluor® 350)

Supplier: Bioss

Required for the function of light chain amino-acid transporters. Involved in sodium-independent, high-affinity transport of large neutral amino acids such as phenylalanine, tyrosine, leucine, arginine and tryptophan. Involved in guiding and targeting of LAT1 and LAT2 to the plasma membrane. When associated with SLC7A6 or SLC7A7 acts as an arginine/glutamine exchanger, following an antiport mechanism for amino acid transport, influencing arginine release in exchange for extracellular amino acids. Plays a role in nitric oxide synthesis in human umbilical vein endothelial cells (HUVECs) via transport of L-arginine. Required for normal and neoplastic cell growth. When associated with SLC7A5/LAT1, is also involved in the transport of L-DOPA across the blood-brain barrier, and that of thyroid hormones triiodothyronine (T3) and thyroxine (T4) across the cell membrane in tissues such as placenta. Involved in the uptake of methylmercury (MeHg) when administered as the L-cysteine or D,L-homocysteine complexes, and hence plays a role in metal ion homeostasis and toxicity. When associated with SLC7A5 or SLC7A8, involved in the cellular activity of small molecular weight nitrosothiols, via the stereoselective transport of L-nitrosocysteine (L-CNSO) across the transmembrane. Together with ICAM1, regulates the transport activity LAT2 in polarized intestinal cells, by generating and delivering intracellular signals. When associated with SLC7A5, plays an important role in transporting L-leucine from the circulating blood to the retina across the inner blood-retinal barrier.

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Anti-SLC3A2 Rabbit Polyclonal Antibody (Alexa Fluor® 555)

Supplier: Bioss

Required for the function of light chain amino-acid transporters. Involved in sodium-independent, high-affinity transport of large neutral amino acids such as phenylalanine, tyrosine, leucine, arginine and tryptophan. Involved in guiding and targeting of LAT1 and LAT2 to the plasma membrane. When associated with SLC7A6 or SLC7A7 acts as an arginine/glutamine exchanger, following an antiport mechanism for amino acid transport, influencing arginine release in exchange for extracellular amino acids. Plays a role in nitric oxide synthesis in human umbilical vein endothelial cells (HUVECs) via transport of L-arginine. Required for normal and neoplastic cell growth. When associated with SLC7A5/LAT1, is also involved in the transport of L-DOPA across the blood-brain barrier, and that of thyroid hormones triiodothyronine (T3) and thyroxine (T4) across the cell membrane in tissues such as placenta. Involved in the uptake of methylmercury (MeHg) when administered as the L-cysteine or D,L-homocysteine complexes, and hence plays a role in metal ion homeostasis and toxicity. When associated with SLC7A5 or SLC7A8, involved in the cellular activity of small molecular weight nitrosothiols, via the stereoselective transport of L-nitrosocysteine (L-CNSO) across the transmembrane. Together with ICAM1, regulates the transport activity LAT2 in polarized intestinal cells, by generating and delivering intracellular signals. When associated with SLC7A5, plays an important role in transporting L-leucine from the circulating blood to the retina across the inner blood-retinal barrier.

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Anti-SLC3A2 Rabbit Polyclonal Antibody (Cy5®)

Supplier: Bioss

Required for the function of light chain amino-acid transporters. Involved in sodium-independent, high-affinity transport of large neutral amino acids such as phenylalanine, tyrosine, leucine, arginine and tryptophan. Involved in guiding and targeting of LAT1 and LAT2 to the plasma membrane. When associated with SLC7A6 or SLC7A7 acts as an arginine/glutamine exchanger, following an antiport mechanism for amino acid transport, influencing arginine release in exchange for extracellular amino acids. Plays a role in nitric oxide synthesis in human umbilical vein endothelial cells (HUVECs) via transport of L-arginine. Required for normal and neoplastic cell growth. When associated with SLC7A5/LAT1, is also involved in the transport of L-DOPA across the blood-brain barrier, and that of thyroid hormones triiodothyronine (T3) and thyroxine (T4) across the cell membrane in tissues such as placenta. Involved in the uptake of methylmercury (MeHg) when administered as the L-cysteine or D,L-homocysteine complexes, and hence plays a role in metal ion homeostasis and toxicity. When associated with SLC7A5 or SLC7A8, involved in the cellular activity of small molecular weight nitrosothiols, via the stereoselective transport of L-nitrosocysteine (L-CNSO) across the transmembrane. Together with ICAM1, regulates the transport activity LAT2 in polarized intestinal cells, by generating and delivering intracellular signals. When associated with SLC7A5, plays an important role in transporting L-leucine from the circulating blood to the retina across the inner blood-retinal barrier.

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Anti-CD98 Rabbit Polyclonal Antibody (Alexa Fluor® 750)

Supplier: Bioss

Required for the function of light chain amino-acid transporters. Involved in sodium-independent, high-affinity transport of large neutral amino acids such as phenylalanine, tyrosine, leucine, arginine and tryptophan. Involved in guiding and targeting of LAT1 and LAT2 to the plasma membrane. When associated with SLC7A6 or SLC7A7 acts as an arginine/glutamine exchanger, following an antiport mechanism for amino acid transport, influencing arginine release in exchange for extracellular amino acids. Plays a role in nitric oxide synthesis in human umbilical vein endothelial cells (HUVECs) via transport of L-arginine. Required for normal and neoplastic cell growth. When associated with SLC7A5/LAT1, is also involved in the transport of L-DOPA across the blood-brain barrier, and that of thyroid hormones triiodothyronine (T3) and thyroxine (T4) across the cell membrane in tissues such as placenta. Involved in the uptake of methylmercury (MeHg) when administered as the L-cysteine or D,L-homocysteine complexes, and hence plays a role in metal ion homeostasis and toxicity. When associated with SLC7A5 or SLC7A8, involved in the cellular activity of small molecular weight nitrosothiols, via the stereoselective transport of L-nitrosocysteine (L-CNSO) across the transmembrane. Together with ICAM1, regulates the transport activity LAT2 in polarised intestinal cells, by generating and delivering intracellular signals. When associated with SLC7A5, plays an important role in transporting L-leucine from the circulating blood to the retina across the inner blood-retinal barrier.

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Anti-SLC3A2 Rabbit Polyclonal Antibody (HRP (Horseradish Peroxidase))

Supplier: Bioss

Required for the function of light chain amino-acid transporters. Involved in sodium-independent, high-affinity transport of large neutral amino acids such as phenylalanine, tyrosine, leucine, arginine and tryptophan. Involved in guiding and targeting of LAT1 and LAT2 to the plasma membrane. When associated with SLC7A6 or SLC7A7 acts as an arginine/glutamine exchanger, following an antiport mechanism for amino acid transport, influencing arginine release in exchange for extracellular amino acids. Plays a role in nitric oxide synthesis in human umbilical vein endothelial cells (HUVECs) via transport of L-arginine. Required for normal and neoplastic cell growth. When associated with SLC7A5/LAT1, is also involved in the transport of L-DOPA across the blood-brain barrier, and that of thyroid hormones triiodothyronine (T3) and thyroxine (T4) across the cell membrane in tissues such as placenta. Involved in the uptake of methylmercury (MeHg) when administered as the L-cysteine or D,L-homocysteine complexes, and hence plays a role in metal ion homeostasis and toxicity. When associated with SLC7A5 or SLC7A8, involved in the cellular activity of small molecular weight nitrosothiols, via the stereoselective transport of L-nitrosocysteine (L-CNSO) across the transmembrane. Together with ICAM1, regulates the transport activity LAT2 in polarized intestinal cells, by generating and delivering intracellular signals. When associated with SLC7A5, plays an important role in transporting L-leucine from the circulating blood to the retina across the inner blood-retinal barrier.

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Anti-SLC3A2 Rabbit Polyclonal Antibody (Cy5.5®)

Supplier: Bioss

Required for the function of light chain amino-acid transporters. Involved in sodium-independent, high-affinity transport of large neutral amino acids such as phenylalanine, tyrosine, leucine, arginine and tryptophan. Involved in guiding and targeting of LAT1 and LAT2 to the plasma membrane. When associated with SLC7A6 or SLC7A7 acts as an arginine/glutamine exchanger, following an antiport mechanism for amino acid transport, influencing arginine release in exchange for extracellular amino acids. Plays a role in nitric oxide synthesis in human umbilical vein endothelial cells (HUVECs) via transport of L-arginine. Required for normal and neoplastic cell growth. When associated with SLC7A5/LAT1, is also involved in the transport of L-DOPA across the blood-brain barrier, and that of thyroid hormones triiodothyronine (T3) and thyroxine (T4) across the cell membrane in tissues such as placenta. Involved in the uptake of methylmercury (MeHg) when administered as the L-cysteine or D,L-homocysteine complexes, and hence plays a role in metal ion homeostasis and toxicity. When associated with SLC7A5 or SLC7A8, involved in the cellular activity of small molecular weight nitrosothiols, via the stereoselective transport of L-nitrosocysteine (L-CNSO) across the transmembrane. Together with ICAM1, regulates the transport activity LAT2 in polarized intestinal cells, by generating and delivering intracellular signals. When associated with SLC7A5, plays an important role in transporting L-leucine from the circulating blood to the retina across the inner blood-retinal barrier.

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Human Recombinant EDF1 (from E. coli)

Supplier: ProSci Inc.

Endothelial Differentiation-Related Factor 1 (EDF1) is a 148 amino acid transcriptional coactivator that contains 1 HTH cro/C1-type DNA-binding domain. It has been postulated that the protein functions as a bridging molecule that interconnects regulatory proteins and the basal transcriptional machinery, thereby modulating the transcription of genes involved in endothelial differentiation. When endothelial cells are induced to differentiate in vitro, EDF1 is downregulated, leading to inhibition of cell growth and cell polarization. EDF1 binds calmodulin thorough its IQ domain and regulates nitric oxide synthase activity through calmodulin sequestration in the cytoplasm. Though ubiquitously expressed, EDF1 is most abundant in adult liver, heart, adipose tissues, intestine and pancreas. In fetal tissues, EDF1 is most abundant in kidney. There are two isoforms of EDF1 that are produced as a result of alternative splicing events.

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Anti-IL13 Rabbit Polyclonal Antibody (Biotin)

Anti-IL13 Rabbit Polyclonal Antibody (Biotin)

Supplier: ProSci Inc.

L13 inhibits proinflammatory cytokine production and stimulates antibody production. It induces proliferation in the human pre myeloid cell line TF1. IL13 has multiple effects on the differentiation and functions of monocytes and macrophages. It suppresses cytotoxic functions and induces changes in the morphology of human monocytes and in the phenotype of human monocytes and B cells by upregulating MHC class II expression. IL13 will also decrease the production of nitric oxide by activated murine macrophages, leading to impaired parasiticidal activity. Human and mouse interleukin 13 share approximately 58% amino acid sequence identity. Although human and mouse IL13 are equally active on human cells, human IL13 is much less active than mouse IL13 on mouse cells. Human IL13 and human IL4 also share approximately 30% sequence homology and have similar biological functions.

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Anti-IL13 Rabbit Polyclonal Antibody

Anti-IL13 Rabbit Polyclonal Antibody

Supplier: ProSci Inc.

L13 inhibits proinflammatory cytokine production and stimulates antibody production. It induces proliferation in the human pre myeloid cell line TF1. IL13 has multiple effects on the differentiation and functions of monocytes and macrophages. It suppresses cytotoxic functions and induces changes in the morphology of human monocytes and in the phenotype of human monocytes and B cells by upregulating MHC class II expression. IL13 will also decrease the production of nitric oxide by activated murine macrophages, leading to impaired parasiticidal activity. Human and mouse interleukin 13 share approximately 58% amino acid sequence identity. Although human and mouse IL13 are equally active on human cells, human IL13 is much less active than mouse IL13 on mouse cells. Human IL13 and human IL4 also share approximately 30% sequence homology and have similar biological functions.

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Anti-APE1 Polyclonal Antibody

Anti-APE1 Polyclonal Antibody

Supplier: Boster Bio

Polyclonal antibody for APE1/APEX1 detection. Host: Rabbit.Size: 100μg/vial. Tested applications: IHC-P. Reactive species: Human. APE1/APEX1 information: Molecular Weight: 35555 MW; Subcellular Localization: Nucleus. Nucleus, nucleolus. Nucleus speckle. Endoplasmic reticulum. Cytoplasm. Detected in the cytoplasm of B-cells stimulated to switch (By similarity). Colocalized with SIRT1 in the nucleus. Colocalized with YBX1 in nuclear speckles after genotoxic stress. Together with OGG1 is recruited to nuclear speckles in UVA-irradiated cells. Colocalized with nucleolin and NPM1 in the nucleolus. Its nucleolar localization is cell cycle dependent and requires active rRNA transcription. Colocalized with calreticulin in the endoplasmic reticulum. Translocation from the nucleus to the cytoplasm is stimulated in presence of nitric oxide (NO) and function in a CRM1-dependent manner, possibly as a consequence of demasking a nuclear export signal (amino acid position 64-80). S-nitrosylation at Cys-93 and Cys-310 regulates its nuclear-cytosolic shuttling. Ubiquitinated form is localized predominantly in the cytoplasm.

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Cesium nitrate ≥99%, EMSURE® for analysis, Supelco®

Supplier: Merck

Cesium nitrate ≥99%, EMSURE® for analysis, Supelco®

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DAF-2 diacetate, Sigma-Aldrich®

Supplier: SIGMA ALDRICH MICROSCOPY

Cell permeable fluorescent detector of nitric oxide in living cells. 4,5-Diaminofluorescein diacetate (DAF-2 DA) has been used as a fluorescent dye for NO (nitric oxide) detection.

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Cesium nitrate ≥99.8% (metals basis)

Supplier: Thermo Fisher Scientific

Cesium nitrate ≥99.8% (metals basis)

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Cesium nitrate 99,9%

Supplier: Apollo Scientific

Cesium nitrate 99,9%

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Cesium nitrate ≥99.999% (metals basis)

Supplier: Thermo Fisher Scientific

Cesium nitrate ≥99.999% (metals basis)

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Cesium nitrate ≥99.99% (metals basis)

Supplier: Thermo Fisher Scientific

Cesium nitrate ≥99.99% (metals basis)

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Silver nitrate 99-100.5% Ph. Eur.

Silver nitrate 99-100.5% Ph. Eur.

Supplier: VWR Chemicals

Silver nitrate 99-100.5% Ph. Eur.

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Silver nitrate 0.1 mol/l concentrated aqueous solution, Titrisol®, Supelco®

Silver nitrate 0.1 mol/l concentrated aqueous solution, Titrisol®, Supelco®

Supplier: Merck

Silver nitrate 0.1 mol/l concentrated aqueous solution, Titrisol®, Supelco®

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Silver nitrate 0.025 mol/l (0.025 N)

Silver nitrate 0.025 mol/l (0.025 N)

Supplier: VWR Chemicals

Silver nitrate 0.025 mol/l (0.025 N)

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Silver nitrate 0.02 mol/l (0.02 N) in 2-propanol

Silver nitrate 0.02 mol/l (0.02 N) in 2-propanol

Supplier: VWR Chemicals

Silver nitrate 0.02 mol/l (0.02 N) in 2-propanol

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Silver nitrate ≥99.5%, GPR RECTAPUR®

Silver nitrate ≥99.5%, GPR RECTAPUR®

Supplier: VWR Chemicals

Silver nitrate ≥99.5%, GPR RECTAPUR®

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Silver nitrate, BAKER ANALYZED® ACS, J.T.Baker®

Supplier: Avantor

Silver nitrate, BAKER ANALYZED® ACS, J.T.Baker®

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Silver nitrate in pyridine Reag. Ph. Eur. 1078304

Silver nitrate in pyridine Reag. Ph. Eur. 1078304

Supplier: VWR Chemicals

Silver nitrate in pyridine Reag. Ph. Eur. 1078304

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Silver nitrate 4,791 g/l 0.0282 mol/l (0.0282 N) in aqueous solution
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Silver nitrate 1 mol/l (1 N) in aqueous solution, Titripur® volumetric solution, Supelco®

Supplier: Merck

Silver nitrate 1 mol/l (1 N) in aqueous solution, Titripur® volumetric solution, Supelco®

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Silver nitrate 0.01 N in 2-propanol, AVS TITRINORM

Silver nitrate 0.01 N in 2-propanol, AVS TITRINORM

Supplier: VWR Chemicals

Silver nitrate 0.01 N in 2-propanol, AVS TITRINORM

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Silver nitrate 0.04 mol/l (0.04 N) in aqueous solution

Silver nitrate 0.04 mol/l (0.04 N) in aqueous solution

Supplier: VWR Chemicals

Silver nitrate 0.04 mol/l (0.04 N) in aqueous solution

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Silver nitrate 1 mol/l (1 N) in aqueous solution, AVS TITRINORM volumetric solution

Silver nitrate 1 mol/l (1 N) in aqueous solution, AVS TITRINORM volumetric solution

Supplier: VWR Chemicals

Silver nitrate 1 mol/l (1 N) in aqueous solution, AVS TITRINORM volumetric solution

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Silver nitrate ≥99% ACS

Silver nitrate ≥99% ACS

Supplier: VWR Chemicals

Staining protein after electrophoretic separation. Also used to determine chloride ions in solution.

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Silver nitrate 1 mol/l (1 N) in aqueous solution, BAKER ANALYZED®, Laboratory Reagent, J.T.Baker®

Supplier: Avantor

Silver nitrate 1 mol/l (1 N) in aqueous solution, BAKER ANALYZED®, Laboratory Reagent, J.T.Baker®

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