Catalog No.
Product Name
Application
Product Information
Citations
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Biochemical Assay Reagent
(2-Dodecen-1-yl)succinic anhydride is an organic reagent primarily utilized in biochemical assays. This compound serves as an important intermediate in the synthesis of various polymers, including plastics and resins, and is relevant in industrial applications such as coatings, inks, and textiles. Additionally, it functions as a precursor for pharmaceutical intermediates and surfactants, making it valuable for diverse research applications in material science and drug development. -
Impurity of Daptomectin
Linear daptomycin is an impurity of daptomectin, a lipopeptide antibiotic. It retains some antimicrobial properties and can serve as a useful reference standard in chemical analysis and purification studies related to daptomectin. Its role in assessing the quality and composition of daptomectin formulations is crucial for research applications in microbiology and pharmaceutical development. -
Biochemical Reagent
Phenylboronic acid is a biochemical reagent that acts as a versatile organic compound in various life science applications. It primarily interacts with diols, facilitating the formation of boronate esters, which has implications in glycoprotein analysis and sensor development. This compound is widely used in studies of carbohydrate recognition and the development of therapeutic agents targeting glycosylation processes. -
Biochemical Assay Reagent
Trimethylphenylammonium iodide is a biochemical assay reagent that acts as a quaternary ammonium compound. It is utilized in various life science research applications, including studies involving membrane interactions and cellular uptake. This compound aids in facilitating biochemical reactions and can serve as a modifying agent in experimental protocols. -
Biochemical Assay Reagent
Chrysoidine R is a biochemical assay reagent that acts as a biological dye and analytical tool in various life science applications. It is commonly utilized for staining and detecting proteins, nucleic acids, and cell structures in histological and cytological studies. Chrysoidine R supports research in areas such as molecular biology, biochemistry, and cellular imaging, facilitating enhanced visualization and analysis of biological samples. -
Biochemical Reagent
1-Naphthoic acid is a biochemical reagent known for its role in organic synthesis and as a building block in the production of various pharmaceuticals and agrochemicals. Its chemical structure features a naphthalene moiety, which contributes to its unique properties in biological applications. Researchers utilize 1-naphthoic acid in studies related to enzyme inhibition, receptor interaction, and the development of novel chemical compounds. -
Biochemical Assay Reagent
Sodium dodecanoate is the sodium salt of lauric acid, a medium-chain saturated fatty acid. It functions primarily as a surfactant and emulsifier, making it valuable in biochemical assays for maintaining solution stability and facilitating the solubilization of hydrophobic compounds. This reagent is widely utilized in research contexts, particularly in the formulation of cosmetics, personal care products, and various cleaning agents. Additionally, it serves as a food additive in the food industry to enhance texture and stability. -
Biochemical Assay Reagent
Ethyl decanoate is an organic compound used primarily as a biochemical assay reagent. It serves as a substrate or intermediate in various biochemical reactions, enabling the study of enzymatic activity and metabolic processes. Additionally, ethyl decanoate is utilized in the preparation of flavors and food seasonings, contributing to research on flavor chemistry and sensory analysis. -
Metal-organic Framework
[1,1'-Biphenyl]-4-carboxylic acid serves as a ligand in the formation of metal-organic frameworks (MOFs). Its carboxylic acid moiety enhances coordination with metal ions, facilitating the synthesis of robust MOF structures. This compound is utilized in research applications focused on gas storage, separation processes, and catalysis, making it a valuable reagent for material science and nanotechnology studies. -
Biochemical Assay Reagent
2-Methoxynaphthalene serves as a valuable biochemical assay reagent, primarily utilized to explore the catalytic benefits of delamination processes. This compound is also instrumental in the study of alkali metal-mediated manganization (AMMMn) reactions, enabling researchers to delve into fundamental mechanisms and enhance understanding of catalytic systems. -
Biochemical Assay Reagent
1,1-Dimethyl-4-phenylpiperazinium iodide is a biochemical assay reagent that functions as a cholinergic agonist, primarily targeting nicotinic and muscarinic acetylcholine receptors. This compound is utilized in various research applications to study neurotransmission, muscle contraction, and signal transduction pathways. Its ability to evoke physiological responses makes it valuable in pharmacological and neurobiological studies. -
Biochemical Assay Reagent
2-Methyl-5-(p-tolyldiazenyl)aniline is a biochemical assay reagent primarily utilized for its role in spectroscopic applications and analytical chemistry. This compound serves as a dye precursor and is effective in biological studies due to its distinctive absorbance characteristics. It is relevant for research involving colorimetric assays and monitoring biochemical interactions, making it valuable for life science applications. -
Drug Impurity
Aripiprazole impurity 20 is a known impurity associated with the antipsychotic drug Aripiprazole. This compound can be utilized in regulatory and analytical research to assess the purity of Aripiprazole formulations. Its presence and concentration can provide valuable insights into the synthesis and stability of the drug, ensuring compliance with quality control standards in pharmaceutical development. -
Biochemical Assay Reagent
3-(Dimethylamino)benzoic acid functions as a biochemical assay reagent, primarily utilized to facilitate the development of innovative polymers and coatings. Its distinctive optical and electronic properties make it valuable for enhancing material performance in various applications. This compound serves as a critical component in studies focused on advancing materials science. -
Metal-organic Framework
2-Aminobenzene-1,4-disulfonic acid functions as a key component in the synthesis of metal-organic frameworks (MOFs). This compound exhibits significant potential in catalysis, gas adsorption, and separation processes due to its unique structural properties. Its application in MOF research enables the development of advanced materials for environmental and energy-related technologies. -
Biochemical Reagent
4-Chlororesorcinol is a biochemical reagent widely utilized in life science research. As a phenolic compound, it exhibits significant antioxidant properties and can be employed in various assays for evaluating biological activities. Its applications include studies on enzyme inhibition, oxidative stress, and potential therapeutic effects in cellular models. -
Biochemical Reagent
Thiophene-3-carboxylic acid is a biochemical reagent that serves as a versatile organic compound in life sciences research. It is primarily utilized for its role in various synthetic pathways and can function as a building block for more complex molecular structures. This compound is valuable in studies involving organic chemistry, drug development, and the exploration of biochemical processes. -
Drug Derivative
Bornyval is a chemical derivative of valerian, primarily targeting the modulation of GABA receptors. It exhibits sedative and anxiolytic properties, making it valuable for research applications focused on neuropharmacology and the study of sleep disorders. Bornyval can facilitate the investigation of potential therapeutic strategies for anxiety and related conditions. -
Biochemical Reagent
Coenzyme Q2 is a potent biochemical reagent that functions as an essential cofactor in the electron transport chain. Primarily known for its role in mitochondrial respiration, it facilitates ATP synthesis and contributes to cellular energy metabolism. This compound is valuable for research applications focused on oxidative phosphorylation, mitochondrial function, and the study of metabolic disorders. -
Biochemical Assay Reagents
3-Methylbenzoic acid is a weakly acidic compound primarily utilized as an intermediate in the synthesis of various chemicals, pharmaceuticals, and agrochemicals. Its structural features make it valuable in the development of compounds such as the insect repellent DEET. This reagent is frequently employed in biochemical assays and research applications that require manipulation of aromatic carboxylic acids. -
Biochemical Assay Reagents
H-His-Ala-OH is a dipeptide with significant utility as a substrate in biochemical assays. It plays a crucial role in probing enzyme activities and interactions, facilitating studies in peptide synthesis and protein function. This compound is valuable for researchers analyzing enzymatic pathways and conducting assays related to protein chemistry. -
Biochemical Assay Reagent
Stearyl acetate is an ester compound primarily utilized as a biochemical assay reagent. Its hydrophobic properties make it suitable for various applications in life sciences, including studies on lipid metabolism and cell membrane interactions. This compound aids in the formulation of biological materials, facilitating research in pharmacology and biochemistry. -
Metal-organic Framework
2-(4'-TrifluoroMethylphenylthio)benzoic acid primarily targets metal-organic frameworks (MOFs). This compound plays a significant role in the synthesis of MOFs, which are utilized in various applications including gas storage, separation, and catalysis. Its unique structural properties make it a valuable reagent for researchers investigating advanced materials in the field of chemical research. -
Biochemical Reagent
7-Azaindole is a biochemical reagent primarily utilized for its role as a nitrogen-containing heterocycle. It exhibits key biological activity as a synthetic intermediate in the production of diverse organic compounds, thereby offering significant utility in life sciences research. This compound is particularly valuable for studies involving chemical biology and the development of therapeutic agents. -
Metal-organic Framework
3,3',3''-(1,3,5-Benzoltriyl)tris(benzoesaeure) is a versatile ligand for the construction of metal-organic frameworks (MOFs). It exhibits strong coordination properties, enabling the inclusion of various metal ions to form stable frameworks. This compound is particularly useful in applications such as gas storage, separation processes, and catalysis research due to its tunable porosity and surface area. -
Ester Product
Lauryl laurate, an ester product, serves as a key surfactant and emulsifier due to its capacity to lower surface tension in aqueous solutions. This compound is widely utilized in formulations for pharmaceuticals, cosmetics, and food products, facilitating improved solubility and stability. Its unique properties make it valuable in various research applications involving lipid interactions and formulation science. -
Aggregation pheromone
Methyl (2E,4Z)-2,4-decadienoate is identified as a primary component of the male-produced aggregation pheromone in E. conspersus. This compound plays a crucial role in mediating behavioral responses related to aggregation and mating in this species. Its applications in research include investigations into pheromone signaling, insect behavior studies, and ecological interactions involving E. conspersus. -
Lipid
Phosphatidylinositol bis-4,5-phosphate, 1,2-dipalmitoyl is a phosphoinositide that plays a critical role in cellular signaling pathways. As a structural lipid, it interacts with proteins involved in membrane trafficking and signal transduction processes. This compound is essential for studying the dynamics of lipid signaling and its influence on cellular functions, making it valuable for research applications in cell biology and biochemistry. -
Lipid
1-Linolenin-2-linolein-3-EPA is an acylglycerol that serves as a bioactive lipid compound. It is primarily involved in modulating lipid metabolism and inflammatory responses. This reagent is valuable for studies examining the roles of polyunsaturated fatty acids in cellular signaling, energy homeostasis, and potential therapeutic applications in metabolic diseases. -
Lipid
5(Z),8(Z),11(Z),14(Z),17(Z),20(Z)-Tricosahexaenoic acid is an unsaturated fatty acid that functions primarily as a bioactive lipid. It has been shown to exhibit various biological activities, including modulation of cellular signaling pathways and potential anti-inflammatory effects. This compound is utilized in research investigating lipid metabolism, fatty acid profiles, and the role of unsaturated fatty acids in health and disease. -
Lipid
1,3-Didocosenoin (13E) functions primarily as a lipid molecule, specifically an acylglycerol. This compound plays a crucial role in lipid metabolism and is relevant in studies exploring fatty acid biosynthesis and membrane dynamics. Its unique structure and biological activity make it a valuable reagent for research applications in lipid biochemistry and cellular signaling pathways. -
Lipid
1-Monotetracosanoin is an acylglycerol that serves as a lipid molecule. It plays a significant role in various biological processes, including energy storage and membrane structure. This compound is useful in research applications focused on lipid metabolism and cellular signaling pathways. Its unique properties make it a valuable reagent for studies investigating lipid-related phenomena in biological systems. -
Lipid
1-Myristoyl-2-docosahexaenoyl-sn-glycero-3-phosphatidylethanolamine is a glycerophospholipid that plays a critical role in membrane biology. This compound is involved in various cellular processes, including cell signaling and membrane dynamics. Its unique fatty acid composition makes it particularly valuable for studying lipid interactions and their effects on cellular behavior. Research applications include lipidomics, membrane biophysics, and the investigation of lipid-related diseases. -
Lipid
Methyl 14(Z)-tricosenoate is an unsaturated fatty acid methyl ester (FAME) that primarily targets lipid metabolism. This compound is involved in various biological processes, including cellular signaling and membrane fluidity. It is utilized in research applications related to lipid biochemistry and fatty acid metabolism, providing insights into lipid-related diseases and physiological functions. -
Lipid
C24:1 Ceramide (d17:1/24:1(15Z)) is a sphingolipid that plays a critical role in cell signaling and membrane structure. This compound is known to influence various biological processes, including apoptosis, inflammation, and cellular stress responses. C24:1 Ceramide is utilized in research to explore its impact on lipid metabolism and its potential therapeutic applications in conditions such as neurodegenerative diseases and cancer. -
Lipid
C17:0 iGB3 is a glycosphingolipid that plays a vital role in cellular signaling and membrane dynamics. It is primarily involved in lipid metabolism and cell-cell interaction processes. Research applications include studies on glycolipid functions in neurobiology and immune response, as well as investigations into their roles in disease pathology. -
Lipid
(2E,10Z,13Z,16Z)-Docosatetraenoic acid is an unsaturated fatty acid that plays a crucial role in membrane fluidity and signaling pathways. Its primary mechanism involves participation in lipid metabolism and cellular processes related to inflammation and neuroprotection. This compound is widely utilized in research applications focusing on the physiological effects of fatty acids, including studies on cardiovascular health and neurodegenerative diseases. -
Lipid
2(E),7(Z),10(Z),13(Z),16(Z)-Docosapentaenoic acid is an unsaturated fatty acid that plays a crucial role in lipid metabolism. It can influence various biological processes, including inflammatory responses and cell signaling pathways. This compound is utilized in research focused on fatty acid metabolism, cardiovascular health, and the exploration of its potential therapeutic applications in metabolic disorders. -
Lipid
1,3-Caprin-2-myristin is an acylglycerol that primarily targets lipid metabolism pathways. It exhibits key biological activity in mimicking natural triglycerides and can be utilized in studies focused on lipid digestion, absorption, and metabolism. Its role in various lipid-based formulations makes it a valuable reagent for research on lipid biochemistry and related pharmacological applications. -
Lipid
Methyl 7(Z),10(Z),13(Z)-nonadecatrienoate is an unsaturated fatty acid methyl ester (FAME) that acts primarily on lipid metabolism. This compound exhibits potential biological activities linked to various metabolic pathways and may serve as a model for studying the effects of unsaturated fatty acids on cellular processes. Research applications include investigations into lipid signaling, membrane dynamics, and metabolic disorders. -
Lipid
1,3-Linolenin-2-myristin is an acylglycerol that primarily targets lipid metabolism. This compound exhibits distinct biological activities, including modulating lipid profiles and influencing membrane fluidity. Its applications in research include studies on lipid metabolism, cell membrane dynamics, and potential therapeutic roles in metabolic disorders. -
Lipid
Methyl 9(Z)-eicosenoate is an unsaturated fatty acid methyl ester that targets lipid metabolism. This compound exhibits significant biological activity as a potential precursor in the biosynthesis of bioactive lipids and fatty acids. It is commonly utilized in research applications focusing on lipid biochemistry and metabolic pathways involving long-chain fatty acids. -
Ester Product
(all-Z)-6,9,12,15,18-Heneicosapentaenoic acid ethyl ester is an ester derivative of heneicosapentaenoic acid. It is known for its potential anti-inflammatory and neuroprotective properties, making it a valuable tool in studies of lipid metabolism and cellular signaling. This compound is commonly used in research related to cardiovascular health, neurobiology, and metabolic diseases. -
Lipid
10-Methylene stearic acid methyl ester is a fatty acid derivative that plays a significant role in lipid metabolism. This compound has been utilized in various research applications focused on lipid-related pathways and metabolic studies. Its unique structural features enable investigations into membrane fluidity and the modulation of lipid profiles in biological systems. -
Lipid
C-8 Ceramide-1-phosphate ammonium is a specialized lipid molecule that serves as a bioactive metabolite in cellular signaling pathways. It is primarily involved in modulating diverse biological functions, including cell proliferation, apoptosis, and inflammation. C-8 Ceramide-1-phosphate ammonium is utilized in research applications focused on lipid biochemistry, signal transduction, and the study of sphingolipid metabolism. -
Lipid
1-Olein-2-hexanoin-3-palmitin is a triacylglycerol that plays a crucial role in lipid metabolism. This compound is relevant for studies investigating lipid storage, membrane structure, and cellular energy dynamics. It is commonly utilized in research focusing on metabolic disorders and the role of lipids in various biological processes. -
Lipid
C24:1 Mono-sulfo Galactosyl (α) ceramide (d18:1/24:1) ammonium is a glycosphingolipid with significant roles in cell membrane structure and signaling. This compound is involved in various biological processes, including cell adhesion and recognition, and is essential for studying lipid metabolism and membrane interactions. It serves as a valuable reagent in research applications related to neuroscience, immunology, and cellular biology. -
Lipid
1,2-Palmitin-3-palmitolein is a triglyceride that primarily targets lipid metabolism. This compound exhibits significant biological activity in studies related to lipid storage and release, making it valuable for research on metabolic disorders and obesity. It serves as a useful reagent for investigations into the roles of specific lipid species in cellular signaling and energy homeostasis. -
Lipid
16:0-20:4 PS sodium is a phosphatidylserine, a phospholipid that plays a critical role in cellular signaling and membrane dynamics. This compound is known for its ability to interact with various proteins involved in apoptosis and cell migration, making it valuable in studies of neurobiology and cancer research. Its unique fatty acid composition may influence membrane properties, facilitating investigations into lipid metabolism and cellular function. -
Lipid
1,3-Laurin-2-palmitin is an acylglycerol known for its structural role in lipid bilayers. This compound exhibits key biological activities as a fuel source and as a component in lipid metabolism studies. It is applicable in research related to lipid formulation, drug delivery systems, and the investigation of membrane dynamics.

