82 Results for "

Acrylamide

" in MedChemExpress (MCE) Product Catalog:
Products (82)

82 Results for "Acrylamide" in MCE Product Catalog:

Cat. No.: HY-W543655
CAS No.: 2828433-64-1
Target:  

MOFs

Research Areas:  

Others

(2E,2'E)-N,N'-(1,4-Phenylenebis(methylene))bis(3-(pyridin-4-yl)acrylamide) is a metal-organic framework (MOF).
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Cat. No.: HY-D3129
Target:  

Fluorescent Dye

Research Areas:  

Others

Ratio-pHCL-1 is a fluorescent probe for quantitative ratiometric pH imaging in biological systems. Ratio-pHCL-1 consists of an acrylamide 1,2-dioxetane chemiluminescent scaffold and a linked pH-sensitive carbon fluorescein fluorophore, and functions via chemically initiated electron exchange luminescence (CIEEL) decomposition and chemiluminescence resonance energy transfer (CRET). Ratio-pHCL-1 can cross cell membranes and accumulate intracellularly, enabling pH measurement within the range of 6.8-8.4 .
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Cat. No.: HY-W714541
CAS No.: 168208-30-8
Target:  

Drug Metabolite

Research Areas:  

Metabolic Disease

N-Acetyl-S-(2-cyanoethyl) -L-cysteine ammonium salt is the urinary metabolite of acrylamide in vivo.
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Cat. No.: HY-W017180
CAS No.: 72707-66-5
Synonyms: α-(Bromomethyl)acrylic acid; α-Methylated Acrylamide; α-MAA
Target:  

Drug Intermediate

Research Areas:  

Cancer

2-(Bromomethyl) acrylic acid (α-MAA) is a component of Ibt-DOX (HY-181546) .
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Cat. No.: HY-W587436
CAS No.: 81690-92-8
Target:  

Drug Metabolite

Research Areas:  

Metabolic Disease

N-Acetyl-S-(2-carbamoylethyl) -L-cysteine is the urinary metabolite of acrylamide in humans, and its association with other diseases.
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Cat. No.: HY-W800833
CAS No.: 55946-27-5
Research Areas:  

Others

Benzyl N-[2-(prop-2-enamido)ethyl]carbamate is a short aliphatic linker featuring a Cbz-protected amine and an acrylamide. Acrylamide is a Michael acceptor which is a good Michael acceptor which can be used in thiol-based bioconjugation or polymerization. Meanwhile, the Cbz protecting group can be removed using Pd-C hydrogenation to reveal a free amine that can participate in a wide variety of reactions such as couplings or reductive amination.
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Cat. No.: HY-179189
Synonyms: Folate-PEG400-ACA
FA-PEG400-ACA (Folate-PEG400-ACA) is a compound composed of Folic acid (HY-16637), PEG, and acrylamide. Folic acid (-FA) has a high affinity for folic acid receptors and can be used to target cell membrane receptors for drug delivery.
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Cat. No.: HY-179189A
Synonyms: Folate-PEG600-ACA
FA-PEG600-ACA (Folate-PEG600-ACA) is a compound composed of Folic acid (HY-16637), PEG, and acrylamide. Folic acid (-FA) has a high affinity for folic acid receptors and can be used to target cell membrane receptors for drug delivery.
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Cat. No.: HY-179189B
Synonyms: Folate-PEG1000-ACA
FA-PEG1000-ACA (Folate-PEG1000-ACA) is a compound composed of Folic acid (HY-16637), PEG, and acrylamide. Folic acid (-FA) has a high affinity for folic acid receptors and can be used to target cell membrane receptors for drug delivery.
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Cat. No.: HY-179189C
Synonyms: Folate-PEG2000-ACA
FA-PEG2000-ACA (Folate-PEG2000-ACA) is a compound composed of Folic acid (HY-16637), PEG, and acrylamide. Folic acid (-FA) has a high affinity for folic acid receptors and can be used to target cell membrane receptors for drug delivery.
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Cat. No.: HY-179189D
Synonyms: Folate-PEG3400-ACA
FA-PEG3400-ACA (Folate-PEG3400-ACA) is a compound composed of Folic acid (HY-16637), PEG, and acrylamide. Folic acid (-FA) has a high affinity for folic acid receptors and can be used to target cell membrane receptors for drug delivery.
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Cat. No.: HY-179189E
Synonyms: Folate-PEG5000-ACA
FA-PEG5000-ACA (Folate-PEG5000-ACA) is a compound composed of Folic acid (HY-16637), PEG, and acrylamide. Folic acid (-FA) has a high affinity for folic acid receptors and can be used to target cell membrane receptors for drug delivery.
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Cat. No.: HY-179189H
Synonyms: Folate-PEG10000-ACA
FA-PEG10000-ACA (Folate-PEG10000-ACA) is a compound composed of Folic acid (HY-16637), PEG, and acrylamide. Folic acid (-FA) has a high affinity for folic acid receptors and can be used to target cell membrane receptors for drug delivery.
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Cat. No.: HY-L153
5,267 compounds

Covalent inhibitors are small molecules that can bind specifically to target proteins through covalent bonds and inhibit their biological functions. Although for a long time, covalent targeting has been playing a subordinate role in drug discovery, with an increasing number of reports on successful clinical applications of such drugs, the potential of these agents is now being acknowledged. Currently, cysteine is the most common covalent amino acid residue in a variety of covalent drugs, and various warheads have been developed that can react with cysteine, providing the key building blocks for covalent drugs to form covalent bonds.

To meet the development needs of covalent inhibitors targeting cysteine, MCE has designed a unique collection of 5,267 compounds with different covalent warheads that target cysteine. The MCE Cysteine Targeted Covalent Library is designed using the following covalent warheads: Acrylamides, Propiolic acid ester, Dimethylamine functionalized acrylamides, Chloroacetamides, Acrylonitrile, 2-Cyanoacrylamide, Aziridine, Haloacetamide, etc.

Cat. No.: HY-P11480
CAS No.: 3105660-96-3
Target:  

Trk Receptor

Research Areas:  

Neurological Disease

TrkA/NGF-IN-1 (Peptide 19) is an inhibitor of protein-protein interactions between TrkA and NGF (IC50: 21 nM for human TrkA in PathHunter assay). TrkA/NGF-IN-1 shows an analgesic effect in a rat incisional pain model .
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Cat. No.: HY-L154
3,728 compounds

Covalent inhibitors are small molecules that can bind specifically to target proteins through covalent bonds and inhibit their biological functions. Although for a long time, covalent targeting has been playing a subordinate role in drug discovery, with an increasing number of reports on successful clinical applications of such drugs, the potential of these agents is now being acknowledged. Currently, cysteine is the most common covalent amino acid residue in a variety of covalent drugs, and various warheads have been developed that can react with cysteine, providing the key building blocks for covalent drugs to form covalent bonds.

To meet the development needs of covalent inhibitors targeting cysteine, MCE has designed a unique collection of 3,728 fragments with different covalent warheads that target cysteine. The MCE Cysteine Targeted Covalent Fragment Library is designed using the following covalent warheads: Acrylamides, Propiolic acid ester, Dimethylamine functionalized acrylamides, Chloroacetamides, Acrylonitrile, 2-Cyanoacrylamide, Aziridine, Haloacetamide, etc. All fragments are pre-filtered with the Rule of Three restrictions which can be used for fragment-based covalent drug development.

Cat. No.: HY-P12133
CAS No.: 3080063-21-1
Target:  

GLP Receptor

Research Areas:  

Metabolic Disease

Tapimtrutide is a gastric inhibitory polypeptide (GIP) and glucagon-like peptide 1 (GLP-1) receptor agonist. Tapimtrutide can be used for the research of diabetes .
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Cat. No.: HY-L0118V
942 compounds

A unique set of molecules containing mild electrophilic moieties that covalently interact with amino acid residues in the target protein. The diversity of our compounds for covalent drug discovery ranges from natural product-like scaffolds to macrocycles, creating multiple opportunities in hit generation for a selected target.

Cat. No.: HY-165400
CAS No.: 143413-84-7
TODi-1 (TOTO) is a double-stranded DNA binder and Fluorescence enhancer (with a lambda max of 513 nm for dsDNA-TOTO). TODi-1 forms stable bis-intercalation complexes with double-stranded DNA. TODi-1 shows almost no fluorescence in free solution, but its fluorescence intensity increases significantly upon binding to double-stranded DNA .
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Cat. No.: HY-L036
1,618 compounds

Small molecule covalent inhibitors, or irreversible inhibitors, are a type of inhibitors that exert their biological functions by irreversibly binding to target through covalent bonds. Compared with non-covalent inhibitors, covalent inhibitors have obvious advantages in bioactivity, such that covalent warheads can target rare residues of a particular target protein, thus leading to the development of highly selective inhibitors and achieving a more complete and continued target occupancy in living systems. In recent years, the distinct strengths of covalent inhibitors in overcoming drug resistance had been recognized. However, toxicity can be a real challenge related to this class of therapeutics due to their potential for off-target reactivity and has led to these drugs being disfavored as a drug class. The drug design and optimization of covalent inhibitors has become a hot spot in drug discovery.

MCE covalent inhibitor library contains 1,618 small molecules including identified covalent inhibitors and other bioactive molecules having common covalent reactive groups as warheads, such as acrylamides, activated terminal acetylenes, Sulfonyl fluorides/esters, cloracetamides, alkyl halides, epoxides, aziridines, disulfides, etc.