Carboxylic acid salts
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Medchemexpress LLC Sodium formate-d | 3996-15-4 | 99.8% | 69.01 g/mol | CDNaO2 | 100 MG
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Deuterium-labeled sodium formate supplied as a stable-isotope reagent for analytical and biochemical applications. High isotopic and chemical purity makes it suitable as an internal standard for mass spectrometry, an NMR reference, and for isotope-labeling studies.
- Deuterium-labeled sodium formate (CDNaO2)
- Purity 99.8%
- CAS number 3996-15-4
- Molecular weight 69.01 g/mol
- Soluble in water and DMSO
- Intended for use as internal standard, NMR reference, or isotopic tracer
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Medchemexpress LLC 5-bromouridine 5'-triphosphate sodium salt | 161848-60-8 | MFCD00274403 | 98.0% | 563.04 g/mol | C9H14BrN2O15P3.xNa | 1 MG
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5-BrUTP sodium salt is a brominated uridine triphosphate used as a nucleotide analog to label RNA in transcription assays. It can be enzymatically incorporated into nascent RNA during in vitro transcription or cellular labeling, and incorporated BrUTP residues are detected immunologically to quantify or visualize newly synthesized RNA.
- Enables labeling of newly synthesized RNA for transcription analysis.
- Detectable by anti-BrdU antibodies for immunodetection.
- Brominated uridine analog compatible with enzymatic incorporation during transcription.
- Sodium salt form offers improved aqueous solubility for biochemical workflows.
- High purity (98.0%) suitable for sensitive biochemical assays.
- Available in multiple pack sizes to support small- and large-scale experiments.
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Medchemexpress LLC Sodium formate-d | 3996-15-4 | 99.8% | 69.01 | CDNaO2 | 1 G
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Deuterium-labeled sodium formate used as a stable-isotope tracer and internal standard for analytical methods, and as a biochemical reagent in catalytic reactions. Supplied as a high-purity solid suitable for NMR, GC-MS, and LC-MS applications.
- Deuterium-labeled sodium formate for use as tracer and internal standard.
- Suitable for NMR, GC-MS, and LC-MS quantitation.
- High purity: 99.8%.
- Chemical formula CDNaO2; molecular weight 69.01.
- Available as 1 g solid; soluble in water and DMSO.
- Store sealed at 4°C away from moisture; in solution store at -80°C (6 months) or -20°C (1 month).
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Medchemexpress LLC Sodium formate-d | 3996-15-4 | 99.8% | 69.01 | CDNaO2 | 500 MG
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Sodium formate-d is the deuterium-labeled analog of sodium formate supplied as a solid stable-isotope reagent used as a tracer and internal standard in analytical chemistry and as a biochemical reagent in synthesis and catalytic reactions. It is provided with high purity and characterized solubility and storage recommendations.
- Deuterium-labeled tracer for analytical quantitation.
- Suitable as an internal standard for NMR, GC-MS, and LC-MS.
- High purity: 99.8%.
- Molecular weight 69.01; chemical formula CDNaO2.
- Solubility: water ≥ 100 mg/mL; DMSO limited, may require warming.
- Storage: store sealed at 4°C; in solution keep at -80°C (6 months) or -20°C (1 month).
- Supplied as a 500 mg solid.
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AdipoGen D-Luciferin potassium salt
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Chemical. CAS 115144-35-9. Formula C11H7KN2O3S2. MW 318.41. D-Luciferin is the most popular and versatile bioluminescent substrate. Firefly luciferase produces light by the ATP-dependent oxidation Mg2 as cofactor of luciferin. It emits a characteristic yellow-green emission in the presence of oxygen, which shifts to red light in vivo. The 560nm chemiluminescence from this reaction peaks within seconds, with light output that is proportional to luciferase activity when luciferin and ATP are present in excess. Firefly luciferase has long been conjugated to antibodies and used as a label in immunoassays using luciferin as the substrate for detection. One particular advantage to the enzyme is that there is low endogenous luciferase activity in mammalian tissues besides its high sensitivity. Through the utilization of ATP, the reaction can be further used to indicate the presence of energy or life in order to function as a life-death stain.
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AdipoGen D-Luciferin potassium salt
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Chemical. CAS 115144-35-9. Formula C11H7KN2O3S2. MW 318.41. D-Luciferin is the most popular and versatile bioluminescent substrate. Firefly luciferase produces light by the ATP-dependent oxidation Mg2 as cofactor of luciferin. It emits a characteristic yellow-green emission in the presence of oxygen, which shifts to red light in vivo. The 560nm chemiluminescence from this reaction peaks within seconds, with light output that is proportional to luciferase activity when luciferin and ATP are present in excess. Firefly luciferase has long been conjugated to antibodies and used as a label in immunoassays using luciferin as the substrate for detection. One particular advantage to the enzyme is that there is low endogenous luciferase activity in mammalian tissues besides its high sensitivity. Through the utilization of ATP, the reaction can be further used to indicate the presence of energy or life in order to function as a life-death stain.
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Apexbio Technology LLC Concanavalin A (Con A)-HyperFluor 647 5mg(5 mg/mL)
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Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues HyperFluorTM 647 is a fluorescent dye that emits green fluorescence under UV light (Ex/Em 656 nm/670 nm) This conjugation provides Con A-HyperFluorTM 647 a high visualization capability when detecting carbohydrate molecules on cell surfaces This product is HyperFluorTM 647-labeled Concanavalin A provided in solution form It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
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Apexbio Technology LLC Concanavalin A (Con A)-HyperFluor 488 5mg(5 mg/mL)
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Small and/or specialty supplier based on Federal laws and SBA requirements.
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Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues HyperFluorTM 488 is a fluorescent dye that emits green fluorescence under UV light (Ex/Em 495 nm/519 nm) This combination grants Con A-HyperFluorTM 488 superior visualization capability when detecting carbohydrate molecules on cell surfaces This product is HyperFluorTM 488-labeled Con A in solution form It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Apexbio Technology LLC Concanavalin A (Con A)-FITC 5x5mg(5 mg/mL)
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Small and/or specialty supplier based on Federal laws and SBA requirements.
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Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues FITC is a fluorescent dye that emits a green fluorescence under UV light (Ex/Em 495 nm/515 nm) This combination endows Con A-FITC with high visualization capability making it efficient for detecting carbohydrate molecules on the cell surface This product is FITC-labeled Con A in solution form It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Apexbio Technology LLC Concanavalin A (Con A)-HyperFluor 594 5mg(5 mg/mL)
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Small and/or specialty supplier based on Federal laws and SBA requirements.
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Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues HyperFluor 594 is a fluorescent dye that emits green fluorescence under UV light (Ex/Em 590 nm/617 nm) This conjugation significantly enhances the visualization capability of Con A-HyperFluor 594 for detecting carbohydrate molecules on the cell surface This product is a solution-form Concanavalin A labeled with HyperFluor 594 It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Apexbio Technology LLC Concanavalin A (Con A)-HyperFluor 647 5x5mg(5 mg/mL)
Small and Specialty Supplier Partner
Small and/or specialty supplier based on Federal laws and SBA requirements.
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Small and/or specialty supplier based on Federal laws and SBA requirements.
Learn More
Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues HyperFluorTM 647 is a fluorescent dye that emits green fluorescence under UV light (Ex/Em 656 nm/670 nm) This conjugation provides Con A-HyperFluorTM 647 a high visualization capability when detecting carbohydrate molecules on cell surfaces This product is HyperFluorTM 647-labeled Concanavalin A provided in solution form It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Apexbio Technology LLC Concanavalin A (Con A)-FITC 5mg(5 mg/mL)
Small and Specialty Supplier Partner
Small and/or specialty supplier based on Federal laws and SBA requirements.
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Small and/or specialty supplier based on Federal laws and SBA requirements.
Learn More
Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues FITC is a fluorescent dye that emits a green fluorescence under UV light (Ex/Em 495 nm/515 nm) This combination endows Con A-FITC with high visualization capability making it efficient for detecting carbohydrate molecules on the cell surface This product is FITC-labeled Con A in solution form It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Apexbio Technology LLC Concanavalin A (Con A)-HyperFluor 594 5x5mg(5 mg/mL)
Small and Specialty Supplier Partner
Small and/or specialty supplier based on Federal laws and SBA requirements.
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Small and/or specialty supplier based on Federal laws and SBA requirements.
Learn More
Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues HyperFluor 594 is a fluorescent dye that emits green fluorescence under UV light (Ex/Em 590 nm/617 nm) This conjugation significantly enhances the visualization capability of Con A-HyperFluor 594 for detecting carbohydrate molecules on the cell surface This product is a solution-form Concanavalin A labeled with HyperFluor 594 It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
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Apexbio Technology LLC Concanavalin A (Con A)-HyperFluor 488 5x5mg(5 mg/mL)
Small and Specialty Supplier Partner
Small and/or specialty supplier based on Federal laws and SBA requirements.
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Small and/or specialty supplier based on Federal laws and SBA requirements.
Learn More
Concanavalin A (Con A) derived from Canavalia ensiformis (jack bean) is a plant lectin protein with a molecular weight of approximately 104 kDa Each subunit can bind one Ca2 ion and one Mn2 ion and has one carbohydrate binding site Con A is capable of binding to various glycoproteins glycolipids and -D-glucose and -D-mannose residues HyperFluorTM 488 is a fluorescent dye that emits green fluorescence under UV light (Ex/Em 495 nm/519 nm) This combination grants Con A-HyperFluorTM 488 superior visualization capability when detecting carbohydrate molecules on cell surfaces This product is HyperFluorTM 488-labeled Con A in solution form It is applicable in glycobiology research serving as a probe to detect carbohydrate molecules on the cell surface and analyzed effectively using flow cytometry Applying IHC staining procedures with this product allows visualization of carbohydrate distribution in tissues or cells under a fluorescence microscope
Non-distribution item offered as a customer accommodation; additional freight charges may apply.
Learn More