9 Results for "

carbohydrate metabolic pathways

" in MedChemExpress (MCE) Product Catalog:
Products (9)

9 Results for "carbohydrate metabolic pathways" in MCE Product Catalog:

29
29 Publications Verification
Cat. No.: HY-W250119
CAS No.: 23411-34-9
Synonyms: EDTA disodium calcium salt hydrate; Ethylenediaminetetraacetic acid disodium calcium salt hydrate
Calcium disodium edetate hydrate (EDTA disodium calcium salt hydrate) is a metal chelator and antifungal agent. Calcium disodium edetate hydrate chelates Mn 2+, damages mitochondria, and interferes with carbohydrate metabolic pathways, particularly the synthesis of pyruvate in glycolysis. Calcium disodium edetate hydrate inhibits Penicillium digitatum and delays conidial germination. Calcium disodium edetate (hydrate) enhances the host defense system of citrus fruits. Calcium disodium edetate hydrate is applicable to research related to citrus green mold .
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1
1 Cited Publications
Cat. No.: HY-W712327
CAS No.: 105931-44-0
Research Areas:  

Others

D-Xylulose 5-phosphate sodium is a pentose phosphate ester and an essential intermediate metabolite in the pentose phosphate pathway (PPP) and the non-oxidative phase of the pentose phosphate pathway. D-xylulose-5-phosphate sodium can be efficiently synthesized through the phosphorylation of D-xylulose catalyzed by D-xylulokinase (XKS1 from Saccharomyces cerevisiae), with ATP regeneration facilitated by the phosphoenolpyruvate (PEP)/pyruvate kinase (PK) system .
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1
1 Cited Publications
Cat. No.: HY-B1162
CAS No.: 4065-45-6
Synonyms: Benzophenone-4
Sulisobenzone (Benzophenone-4) is a benzophenone-type UV filter. Sulisobenzone can act as a endocrine disrupting compound. Sulisobenzone disrupts energy metabolism, nucleotide synthesis, oxidative stress response, and endocrine function. Sulisobenzone thyroid hormone biosynthesis and induces oxidative stress .
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Cat. No.: HY-W039953
CAS No.: 98924-81-3
Synonyms: N-azidoacetylglucosamine-tetraacylated
Research Areas:  

Infection

Ac4GlcNAz (N-azidoacetylglucosamine-tetraacylated) is an azido-containing fully acetylated N-acetylglucosamine analog, a metabolic glycan marker, and also an inducer of S-glycosylation. Ac4GlcNAz can be taken up by bacteria, processed via endogenous carbohydrate biosynthesis pathways, and integrated into glycans by replacing natural monosaccharides. Under alkali promotion, Ac4GlcNAz undergoes β-elimination to form α,β-unsaturated aldehydes, which then bind to cysteine residues via Michael addition. Ac4GlcNAz can be integrated into glycoproteins. Ac4GlcNAz is applicable to research related to Helicobacter pylori infection .
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Cat. No.: HY-W145500
CAS No.: 469-90-9
Synonyms: Sedoheptulosan
Sedoheptulose anhydride is a compound belonging to the class of carbohydrates. It is a derivative of sedoheptulose, a seven-carbon sugar. Sedoheptulose anhydride is commonly used in biochemistry as a precursor for various metabolic pathways. It can be converted into Sedoheptulose 1,7-bisphosphate, which is an important molecule for photosynthesis and carbon fixation. In addition to its use in biochemistry, Sedoheptulose anhydride has applications in cancer research.
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Cat. No.: HY-W008504
CAS No.: 497-09-6
Target:  

Endogenous Metabolite

Research Areas:  

Others

L-(-)-Glyceraldehyde serves as a crucial intermediate in the metabolic pathways of carbohydrates.
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Cat. No.: HY-L252
76 compounds

Carbohydrate metabolism serves as a central hub for energy supply and biosynthesis in living organisms and plays a critical role in the onset and progression of various diseases. In recent years, studies have shown that tumor cells reprogram their energy metabolism through aerobic glycolysis (the Warburg effect) to support rapid proliferation. Immune cells also rely on specific carbohydrate metabolic pathways to regulate their activation and differentiation states, while disorders such as diabetes and metabolic syndrome arise directly from dysregulation of carbohydrate metabolism. In addition, enzymes and key metabolic nodes involved in carbohydrate metabolism have become important targets for drug discovery, and therapeutic strategies targeting glycolysis, the pentose phosphate pathway, and energy metabolism are continuously advancing the treatment of cancer and metabolic diseases. Therefore, systematic analysis of carbohydrate metabolic networks and their associated metabolites is of great significance for elucidating disease mechanisms and developing novel therapeutic approaches.

The MCE Carbohydrate Metabolism Metabolite Library is constructed based on classical carbohydrate metabolic pathways and contains 76 metabolites. It systematically integrates key metabolic networks, including glycolysis, the pentose phosphate pathway, the tricarboxylic acid (TCA) cycle, monosaccharide metabolism, and sugar acid interconversions. The library comprehensively covers core metabolic nodes from glucose uptake and utilization to energy production and biosynthesis, while also incorporating important upstream and downstream intermediates. It enables accurate representation of intracellular metabolic flux dynamics and is well suited for applications such as metabolic flux analysis, target validation, and mechanistic studies. Furthermore, it provides robust support for multi-omics integration and the development of precision intervention strategies.

Cat. No.: HY-183094
CAS No.: 931619-99-7
Target:  

PGC-1α

Research Areas:  

Metabolic Disease

AM73 is a PGC-1α1 stabilizer. AM73 increases the expression levels of Ucp1 and Cidea in brown adipocytes, and enhances basal mitochondrial respiration and uncoupled respiration. AM73 regulates hypoxia, brown adipocyte differentiation, carbohydrate metabolism and insulin signaling pathways in brown adipocytes. AM73 alters the thermogenic process of white adipocytes. AM73 is applicable to the research of obesity and related metabolic disorders .
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Cat. No.: HY-L123
6,767 compounds

Human metabolism is an integral part of cellular function that reflects individual differences in health, disease, diet, and lifestyle. Many health conditions such as obesity, diabetes, hypertension, heart disease, and cancer are associated with abnormal metabolic states. In the pathological state of the human body, metabolic pathways are significantly altered, resulting in aberrant levels of intermediates or end-products that can be viewed as potential diagnostic biomarkers or even therapeutic targets. Therefore, detection, identification and quantification of human metabolites are very important for drug metabolism research in drug development.

MCE offers a unique collection of 6,767 human metabolites, including endogenous metabolites and exogenous metabolites, covering multiple structure types, such as lipids, amino acids, nucleic acids, carbohydrates, organic acids, biogenic amines, vitamins,. MCE Human Metabolites Library is a helpful tool for studying the relationship between diseases and metabolism.