Glycyrrhetinic acid micelles
Glycyrrhizic acid (GA) is a saponin derived from the root of the traditional Chinese medicine licorice. It possesses various pharmacological effects, such as anti-inflammatory, antioxidant, immunomodulatory, and antiviral activity. In addition to its own pharmacological activity, GA can form complexes with many drugs and other natural products. Structurally, glycyrrhizic acid is an amphiphilic molecule; its hydrophilic portion consists of glucuronic acid residues, while its hydrophobic portion is composed of glycyrrhizic acid residues. It can aggregate in water to form self-assembled micelles. Glycyrrhizic acid encapsulates hydrophobic drugs through self-assembly into host-guest complexes, thereby increasing drug solubility and inhibiting precipitation. These complexes can also achieve sustained and controlled release of encapsulated drugs. Therefore, glycyrrhizic acid micelles can serve as drug carriers to improve the absorption of hydrophobic drugs.
For research use only. We do not sell to patients.
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biological Activity
Description
Chemical Information
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SMILES
[Glycyrrhetinic acid micelles]
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocols
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Research Protocol for Infectious Diseases
Infectious-disease experiments test how pathogens interact with host barriers, innate immune receptors, inflammatory signaling, pathogen replication, and tissue injury; pattern-recognition receptors such as TLRs, RIG-I-like receptors, NOD-like receptors, and inflammasomes detect microbial molecules and activate NF-κB, interferon, and cytokine responses. The central hypothesis is that infection severity reflects the balance between pathogen burden and host response: protective inflammation restricts pathogen growth, whereas excessive or mislocalized inflammation contributes to tissue damage and disease phenotype. Unresolved questions include which host pathways are protective versus pathogenic, why some infection models fail to translate to human disease, and which combined readouts best predict clinically relevant infection outcomes.
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Research Protocol for Inflammation-related Diseases
The NLRP3 inflammasome is a cytosolic innate immune signaling platform that integrates priming signals and danger-signal activation to promote caspase-1 activation, maturation of IL-1β and IL-18, and gasdermin D-mediated pyroptotic cell death. The core experimental logic is to determine whether inflammatory disease phenotypes are driven by increased NLRP3 expression, ASC-containing inflammasome assembly, caspase-1 cleavage, GSDMD cleavage, and extracellular release of IL-1β/IL-18 rather than by nonspecific cell injury alone. The pathway is strongly linked to inflammation-related disease phenotypes because monosodium urate crystals activate NALP3/NLRP3 inflammasome signaling in gout-like crystal inflammation, cholesterol crystals activate NLRP3 inflammasomes in atherogenesis models, and DSS-induced intestinal inflammation has been reported to involve NLRP3 inflammasome activity. However, experimental colitis studies also show context-dependent protective effects of NLRP3 inflammasome co
Purity & Documentation
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)