20 Results for "

chemical detection

" in MedChemExpress (MCE) Product Catalog:
Products (20)

20 Results for "chemical detection" in MCE Product Catalog:

3
3 Cited Publications
Cat. No.: HY-15922
CAS No.: 521-31-3
Synonyms: Diogenes reagent
Luminol is a chemical that exhibits chemiluminescence with pKa values of 6.74 and 15.1. Luminol exhibits chemiluminescence (CL) at 425 nm λmax. Luminol is commonly used in forensics as a diagnostic tool for the detection of blood stains .
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3
3 Cited Publications
Cat. No.: HY-15922A
CAS No.: 20666-12-0
Luminol sodium salt is a chemical that exhibits chemiluminescence with pKa values of 6.74 and 15.1. Luminol sodium salt exhibits chemiluminescence (CL) at 425 nm λmax. Luminol sodium salt is commonly used in forensics as a diagnostic tool for the detection of blood stains .
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3
3 Cited Publications
Cat. No.: HY-K1099

MCE Endotoxin Detection Kit (Recombinant Factor C) is suitable for the detection of endotoxins in therapeutic injectable drugs for human use (such as chemical drugs, antibiotics, and biologics), as well as in medical devices including dialysis fluids and implantable devices. It can be applied throughout raw material screening, process development, manufacturing, and commercialization stages.

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Cat. No.: HY-D0860
CAS No.: 5704-04-1
Tricine is widely used as a buffer in protein electrophoresis, nucleic acid analysis, and immunology, which can help adjust pH and stabilize chemical reactions. In addition, the compound can also be used in research in certain medical fields, such as in antibody detection and drug screening.
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Cat. No.: HY-34515
CAS No.: 1660-93-1
Synonyms: TMPhen; 3,4,7,8-Tetramethyl-1,10-phenanthroline
3,4,7,8-Tetramethyl-1,10-phenanthroline (TMPhen) is an organic molecule commonly used as a ligand or catalyst. It has a wide range of applications in different fields, such as organometallic chemical reactions, electrochemical detection, and organic optoelectronic devices. Due to its excellent performance in fluorescent probes, biosensors and photocatalytic reactions, it has been widely used in research in the fields of chemistry and life sciences.
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Cat. No.: HY-D0862
CAS No.: 145551-16-2
DIDNTB is a dye. DIDNTB exhibits chemical sensitivity and specificity toward albumin. DIDNTB is much less affected by other proteins. DIDNTB enables the detection of urinary albumin at concentrations ≥10 mg/L .\n
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Cat. No.: HY-W133919
CAS No.: 28631-66-5
Aniline Blue sodium is a water-soluble dye commonly used as a biological stain for the detection of nucleic acids and proteins in various laboratory procedures such as electrophoresis and microscopy. Aniline Blue sodium has unique chemical properties that allow it to bind to specific cellular components, producing a color change that facilitates their visualization and analysis.
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Cat. No.: HY-D2443
AF594 DBCO is an AlexaFluor 594-conjugated DBCO click chemistry probe for fluorescent labeling of azido-modified cholesterol probes. DBCO is a commonly used chemical biomarker group. AF594 DBCO (Excitation wavelength about 590 nm, emission wavelength about 617 nm) can be used to label proteins, cells and other biomolecules for fluorescence imaging and flow cytometry detection .
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Cat. No.: HY-W004547
CAS No.: 18511-69-8
Synonyms: 4,4'-Diamino-2,2'-bipyridine
(NH2)2bpy (4,4'-Diamino-2,2'-bipyridine) is an organic compound commonly used as a catalyst and complexing reagent. It can form complexes with other metal ions or organic molecules, and can play a catalytic role in some organic synthesis reactions. In addition, this compound is also widely used in some chemical analysis and detection methods, such as in biological analysis and electrochemical analysis
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Cat. No.: HY-W200545
CAS No.: 4693-01-0
Research Areas:  

Others

1M6 is a reagent used for chemical detection of RNA structure .
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Cat. No.: HY-D0898
CAS No.: 21872-70-8
2,4-Dichlorobenzenediazonium tetrafluoroborate is an organic compound commonly used in organic synthesis and dye preparation reactions. It can be used as an azotating agent to form azo dyes with other organic substances, and can be used in coatings, pigments and paints and other industries. In addition, the compound is widely used in certain chemical analysis and detection methods, such as in scientific instruments such as electron microscopes and mass spectrometers. Although the compound has no direct medical applications, it plays an important role in chemical research and laboratory studies.
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Cat. No.: HY-D2475
CAS No.: 1359828-78-6
2-Amino-5-methoxybenzamidoxime is a chemical probe for detection of ketone, including aromatic ketones, hydroxyl ketones, cyclic ketones and aliphatic ketones. 2-Amino-5-methoxybenzamidoxime exhibits an excitation maximal wavelength of 389 nm and a emission maximal wavelength of 515 nm .
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Cat. No.: HY-160043
Research Areas:  

Cancer

AL6 aptamer sodium is a short-chain nucleic acid aptamer chemically synthesized in vitro. AL6 aptamer sodium specifically targets Angiopoietin (Ang) for the specific detection of Ang. The AL6 aptamer binds to Ang, causing the rotational motion of the fluorophore on the AL6 aptamer to become slower. The concentration of Ang in the test solution can be quantified by detecting the anisotropy of AL6 aptamer/Ang .
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Cat. No.: HY-D3581
Target:  

Fluorescent Dye

Research Areas:  

Others

AF594 Picolyl Azide is a composite fluorescent probe formed by covalent linkage of the Alexa Fluor 594 fluorophore and the Picolyl Azide functional group via chemical bonds. AF594 Picolyl Azide contains a copper chelation domain, and through the copper-catalyzed azide-alkyne cycloaddition click chemistry reaction, it can covalently label alkyne-bearing target molecules and generate fluorescent detection signals. AF594 Picolyl Azide can be used for the detection of alkyne-modified sialylated glycoconjugates, and can also label nascent bacterial polypeptides to determine bacterial protein synthesis rates .
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Cat. No.: HY-L152
5,064 compounds

19F-NMR has proved to be a detection mode in fragment-based drug discovery (FBDD) for studies of protein structure and interactions. 19F shows high sensitivity for NMR detection, and the exquisite sensitivity of 19F chemical shifts and linewidths to ligand binding all make it a valuable approach in FBDD.F (Fluorine) -Fragments can be used for 19F-NMR detection after binding to target proteins, and can be used as an effective 19F-NMR tool for FBDD.

MCE designs a unique collection of 5,064 F-fragments, all of which obey a heuristic rule called the “Rule of Three (RO3)”, in which molecular weight ≤300 Da, the number of hydrogen bond donors (H-donors) ≤3, the number of hydrogen bond acceptors (H-acceptors) is ≤3 and cLogP is ≤3. This F-fragments library is an important source of lead-like drugs.

Cat. No.: HY-D3170
C-HBrO-GGT is a dual-target fluorescent indicator with specificity for γ-glutamyl transpeptidase (GGT) and hypobromous acid (HBrO). C-HBrO-GGT acts as a substrate for GGT and HBrO, undergoing enzymatic or chemical modification to trigger channel-specific fluorescence, with sequential activation requiring initial GGT hydrolysis. C-HBrO-GGT enables simultaneous in vitro and in vivo fluorescence detection of GGT and HBrO. C-HBrO-GGT identifies mature atherosclerotic plaque positions and provides early warning of plaque formation before visual or classical immunofluorescent detection. C-HBrO-GGT can be used for the research of atherosclerosis (Ex/Em = 370 nm/500 nm) .
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Cat. No.: HY-W150770
CAS No.: 1740-57-4
Synonyms: Isophthalic acid diamide
Target:  

Drug Intermediate

Research Areas:  

Others

Isophthalamide (Isophthalic acid diamide) is a widely used chemical scaffold for the design of high-performance fluorescent chemosensors.Isophthalamide, with its inherent hydrogen-bond-donating properties and tunable chelating cavity, enables highly selective recognition and detection of various analytes ranging from inorganic ions to complex organic molecules.Isophthalamide can be incorporated with various fluorophores to develop sensors displaying “turn-on” or “turn-off” signal responses.Isophthalamide-based sensors are thus capable of detecting diverse analytes including metal ions, anions, neutral molecules, pharmaceuticals, and explosives .
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Cat. No.: HY-D3109
CAS No.: 148043-22-5
Target:  

Fluorescent Dye

Research Areas:  

Others

pH-Ap-1 is a fluorescent probe used for ratiometric monitoring of pH fluctuations during autophagy in living cells, and it can detect intracellular pH changes in the autophagy process. For fluorescence detection of pH-Ap-1, its excitation wavelength is 475 nm, with an emission wavelength of 538 nm under alkaline conditions and 645 nm under acidic conditions. For intracellular imaging, excitation is performed at 488 nm: the emission light ranging from 500-550 nm is collected via the green channel corresponding to 538 nm, while the emission light ranging from 625-750 nm is collected via the red channel corresponding to 645 nm. pH-Ap-1 exhibits excellent photostability and chemical stability .
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Cat. No.: HY-184641
Aminated magnetic microspheres are superparamagnetic magnetic particles with amino functional groups modified on their surface, widely used in biomedical and molecular biology research. This 1μm aminated magnetic microsphere is composed of polystyrene and nano-iron oxide, exhibiting hydrophilicity and good biocompatibility. The aminated magnetic microspheres possess superparamagnetism, fast magnetic response, good monodispersity, ensuring reaction uniformity and detection consistency. The unique rough surface structure and polymer modification give the aminated magnetic microspheres a high amino density, allowing them to covalently couple with bioligands such as peptides, proteins, oligonucleotides, drug molecules, and glycoproteins through the action of special chemical reagents (such as glutaraldehyde). They serve as excellent coating materials and are important carrier tools in medical and biomolecular research.
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Cat. No.: HY-LD002
100 billion compounds

The discovery of hit molecule is a cornerstone of drug development. Among the diverse tools available, DNA-encoded libraries have emerged a revolutionary platform for high-throughput screening. Compared with traditional HTS, DEL features shorter screening processes, lower costs, simpler assays, and larger library capacities.

DEL Construction utilizes split-and-pool synthesis, a combinatorial chemistry approach that involves iterative splitting, reaction, and pooling. This strategy enables rapid, exponential assembly of fragments in minimal steps without the need for individual compound synthesis andassoicicated isolation or purification steps, thus greatly reducing overall costs. The technology enables simultaneous affinity screeningof massive compound collections to target proteins in a single step. By coupling chemical structures with unique DNA barcodes, each compound is tagged with a distinct DNA sequence for convenient tracking and decoding.DELs readily enable the construction and efficient screening of libraries containing millions to billions of compounds. As a result, DEL screening combines the dual advantages of high efficiency and low cost, making DEL a transformative technology in modern drug discovery.

The DEL kit consists of 50 independent libraries with a total scale of 100 billion compounds. It is constructed through stepwise combinatorial chemistry strategies involving 2-, 3-, and 4-round synthesis. By employing diverse scaffolds and flexible linking strategies, it encompasses various ring systems, linear frameworks, and heterocyclic structures. Screening can be achieved solely through affinity, independent of target-specific activity detection methods. This library is suitable for DEL screening against a wide range of targets.

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