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Results for "

edc

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    35
    TargetMol | Inhibitors_Agonists
  • Dye Reagents
    3
    TargetMol | Dye_Reagents
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    17
    TargetMol | PROTAC
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    TargetMol | Natural_Products
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    TargetMol | Reagent_Kits
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    TargetMol | Antibody_Products
EDC hydrochloride
EDC-HCl Crosslinker, 1-(3-Dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride
T1994725952-53-8
EDC hydrochloride (EDC-HCl Crosslinker) is a zero-length crosslinker. EDC hydrochloride is ideal for covalently binding proteins or peptides to carboxyl containing beads, resins, or other nanoparticals.
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2-TEDC
T22502132465-10-2
2-TEDC is a potent lipoxygenase (LOX) inhibitor with inhibitory effects on 5-LOX, 12-LOX, and 15-LOX with IC50 values of 0.09 μM, 0.013 μM, and 0.5 μM, respectively.2-TEDC can be used in the study of atherosclerosis.
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6-8 weeks
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TargetMol | Inhibitor Sale
5'-O-DMTr-5-MedC(Ac)-methyl   phosphonamidite
TNU1520
5'-O-DMTr-5-MedC(Ac)-methyl   phosphonamidite is a useful organic compound for research related to life sciences and the catalog number is TNU1520.
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7-10 days
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5'-O-DMTr-5-MedC (Ac)-methyl phosphonamidite
T75201
5'-O-DMTr-5-MedC (Ac)-methyl phosphonamidite, a purine nucleoside analog, demonstrates broad antitumor activity, especially against indolent lymphoid malignancies, primarily through mechanisms involving DNA synthesis inhibition and apoptosis induction, among others [1].
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Etidocaine
T31716L36637-18-0In house
Etidocaine is an amino acidamide that acts as a local anesthetic with fast onset and long-acting properties.
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Bisphenol A
T562380-05-7
Bisphenol A is an endogenous metabolic compound of phenols and is widely used in the production of epoxy resins and polycarbonate plastics. It is reproductive, developmental and systemic toxicant and is often classified as an endocrine disruptor. It has been linked to many diseases, including respiratory disease, cardiovascular disease, diabetes, kidney disease, obesity and reproductive disorders.
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TargetMol | Citations Cited
Etidocaine Hydrochloride
W-19053, Duranest, W19053, W 19053
T3171636637-19-1
Etidocaine Hydrochloride (W19053) is a long-acting anesthetic and a blocker of the voltage-gated sodium channel.
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6-8 weeks
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TargetMol | Inhibitor Sale
9-(Boc-amino)nonanoic Acid
T71920173435-78-4
9-(Boc-amino)nonanoic Acid is an alkane chain with terminal carboxlic acid and Boc-protected amino groups. The compound can be used as a PROTAC linker in the synthesis of PROTACs. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond. The Boc group can be deprotected under mild acidic conditions to form the free amine.
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6-8 weeks
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10-Oxononadecanedioic acid
T7014618197-46-1
10-Oxononadecanedioic acid is a long alkane linker with two terminal carboxylic acid groups. The terminal carboxylic acid groups can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond.
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6-8 weeks
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WUN 73823
T699012107273-82-3
WUN 73823, also known as N,N'-bis-(acid-PEG3)-Benzothiazole Cy5 is a PEG derivative containing a cyanine dye with excitation emission maximum 649 667 nm and a free terminal carboxyl acid. Terminal carboxylic acid can react with primary amine groups in the presence of of activators (e.g. EDC, or DCC) to form a stable amide bond. The hydophilic PEG spacer increases solubility in aqueous media. This product has no formal name at the moment. For the convenience of communication, a temporary code name was therefore proposed according to MedKoo Chemical Nomenclature (see web page: https: www.medkoo.com page naming).
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6-8 weeks
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N-Fmoc-8-aminooctanoic acid
T71972126631-93-4
N-Fmoc-8-aminooctanoic acid can be used as a PROTAC linker in the synthesis of PROTACs. N-Fmoc-8-aminooctanoic acid is an alkane chian with terminal Fmoc-protected amine and carboxylic acid groups. The Fmoc group can be deprotected under basic condition to obtain the free amine which can be used for further conjugations. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond.
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6-8 weeks
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Fmoc-ε-Acp-OH
T7173288574-06-5
Fmoc-ε-Acp-OH can be used as a PROTAC linker in the synthesis of PROTACs and other conjugation applications. Fmoc-ε-Acp-OH is an alkane chian with terminal Fmoc-protected amine and carboxylic acid groups. The Fmoc group can be deprotected under basic condition to obtain the free amine which can be used for further conjugations. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond.
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6-8 weeks
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m-PEG1-acid
T208992544-06-1
M-PEG1-acid is a PEG derivative containing a terminal carboxylic acid. The hydrophilic PEG spacer increases solubility in aqueous media. In the presence of activators (e.g. EDC, DCC), the terminal carboxylic acid can be reacted with primary amine groups t
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Benzyloxy carbonyl-PEG4-Acid
T697292250278-48-7
Benzyloxy carbonyl-PEG4-acid is a linker with a benzyl protecting group and a carboxylic acid. The carboxylic acid can undergo reactions with primary amines with the help of activators (EDC or HATU). The benzyl protecting group can be removed via hydrogenolysis.
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6-8 weeks
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VUN 00829
T699022107273-32-3
VUN 00829, also known as N-(m-PEG4)-N'-(PEG4-acid)-Cy5 is a near infrared (NIR) fluorescent Cy 5 labeled PEG derivative containing free terminal carboxyl acid. Terminal carboxylic acid can react with primary amine groups in the presence of of activators (e.g. EDC, or DCC) to form a stable amide bond. The hydophilic PEG spacer increases solubility in aqueous media. Cy5 labeled PEG derivative can be easily traced from its blue color and strong fluorescence. This product has no formal name at the moment. For the convenience of communication, a temporary code name was therefore proposed according to MedKoo Chemical Nomenclature (see web page: https: www.medkoo.com page naming).
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6-8 weeks
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Boc-10-Aminodecanoic acid
T71919173606-50-3
Boc-10-Aminodecanoic acid can be used as a PROTAC linker in the synthesis of PROTACs and other conjugation applications. Boc-10-Aminodecanoic acid is an alkane chain with terminal carboxlic acid and Boc-protected amino groups. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond. The Boc group can be deprotected under mild acidic conditions to form the free amine.
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6-8 weeks
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Fmoc-4-aminobutanoic acid
T71986116821-47-7
Fmoc-4-aminobutanoic acid can be used as a PROTAC linker in the synthesis of PROTACs and other conjugation applications. Fmoc-4-aminobutanoic acid is an alkane chian with terminal Fmoc-protected amine and carboxylic acid groups. The Fmoc group can be deprotected under basic condition to obtain the free amine which can be used for further conjugations. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond.
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6-8 weeks
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DBCO-PEG24-acid
T896632765066-36-0
DBCO-PEG24-acid is a click chemistry reagent that serves as an analog of DBCO-acid featuring a PEG linker and a DBCO group. The DBCO group is typically utilized in copper-free click chemistry reactions due to its strain-promoted high energy. The hydrophilic polyethylene glycol (PEG) chain enhances water solubility. The terminal carboxylic acid group reacts with primary amine groups in the presence of activators (such as EDC or HATU), forming stable amide bonds. This compound is of reagent grade and strictly for research purposes.
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Boc-12-Ado-OH
T7190618934-81-1
Boc-12-Ado-OH can be used as a PROTAC linker in the synthesis of PROTACs. Boc-12-Ado-OH is an alkane chain with terminal carboxlic acid and Boc-protected amino groups. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond. The Boc group can be deprotected under mild acidic conditions to form the free amine.
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6-8 weeks
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7-methyl-8-oxononanoic acid
T69280407627-97-8
7-methyl-8-oxononanoic acid is an intermidate for synthesis of conjugated molecules. The acid group can derivatize amine-containing molecules in the presence of activators such as EDC or HATU.
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6-8 weeks
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Fmoc-7-amino-heptanoic acid
T71970127582-76-7
Fmoc-7-amino-heptanoic acid is an alkane chian with terminal Fmoc-protected amine and carboxylic acid groups. The compound can be used as a PROTAC linker in the synthesis of PROTACs. The Fmoc group can be deprotected under basic condition to obtain the free amine which can be used for further conjugations. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond.
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6-8 weeks
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Thiol-PEG2-acid
T719531379649-73-6
Thiol-PEG2-acid is a PEG derivative containing a thiol group and a terminal carboxylic acid. The hydrophilic PEG spacer increases solubility in aqueous media. The thiol group reacts with maleimide, OPSS, vinylsulfone and transition metal surfaces including gold, silver, etc. The terminal carboxylic acid can be reacted with primary amine groups in the presence of activators (e.g. EDC, or DCC) to form a stable amide bond.
    6-8 weeks
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    Boc-7-Aminoheptanoic acid
    T7178960142-89-4
    Boc-7-Aminoheptanoic acid can be used as a PROTAC linker in the synthesis of PROTACs and other conjugation applicaitons. Boc-7-Aminoheptanoic acid is an alkane chain with terminal carboxlic acid and Boc-protected amino groups. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond. The Boc group can be deprotected under mild acidic conditions to form the free amine.
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    6-8 weeks
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    Fmoc-12-aminododecanoic acid
    T71967128917-74-8
    Fmoc-12-aminododecanoic acid is an alkane chian with terminal Fmoc-protected amine and carboxylic acid groups. The compound can be used as a PROTAC linker in the synthesis of PROTACs. The Fmoc group can be deprotected under basic condition to obtain the free amine which can be used for further conjugations. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond.
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    6-8 weeks
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