Isosalipurposide - 4547-85-7
Catalog Number: BT-272370
CAS Number: 4547-85-7
Molecular Formula: C21H22O10
Molecular Weight: 434.4 g/mol
The product is for non-human research only. Not for therapeutic or veterinary use.
Product Introduction
Isosalipurposide is a natural compound that belongs to the iridoid glycoside family. It is found in various plants, including Gentiana macrophylla, Gentiana scabra, and Swertia chirayita. Isosalipurposide has been studied for its potential therapeutic and environmental applications.
CAS Number
Product Name
Molecular Formula
Molecular Weight
434.4 g/mol
InChI Key
Soluble in DMSO
phlorizin chalcone
Canonical SMILES
Isomeric SMILES
Method of Synthesis or Extraction
Isosalipurposide can be extracted from plants using various methods, including maceration, Soxhlet extraction, and supercritical fluid extraction. Maceration involves soaking the plant material in a solvent, such as ethanol or methanol, for a prolonged period. Soxhlet extraction involves continuous extraction using a solvent and a condenser. Supercritical fluid extraction involves using a supercritical fluid, such as carbon dioxide, to extract the compound. The efficiency and yield of each method depend on various factors, such as the type of plant material, the solvent used, and the extraction conditions. Environmental and safety considerations should also be taken into account when choosing an extraction method.
Chemical Structure and Biological Activity
The chemical structure of isosalipurposide consists of a cyclopentanoid monoterpene unit attached to a glucose molecule. Isosalipurposide has been shown to exhibit various biological activities, including anti-inflammatory, antioxidant, and hepatoprotective effects. The mechanism of action of isosalipurposide involves the modulation of cell signaling pathways, such as the NF-κB and MAPK pathways. Isosalipurposide has also been shown to target various biological molecules, such as cytokines, enzymes, and receptors. The bioactivity and potency of isosalipurposide depend on various factors, such as the concentration, the mode of administration, and the target cells or tissues.
Biological Effects
Isosalipurposide has been shown to affect various cellular functions and signal transduction pathways. It has been shown to inhibit the production of pro-inflammatory cytokines, such as TNF-α and IL-6, and to reduce oxidative stress. Isosalipurposide has also been shown to have potential therapeutic effects in various diseases, such as liver injury, diabetes, and cancer. However, isosalipurposide may also have potential toxic effects, such as hepatotoxicity and nephrotoxicity, at high doses or prolonged exposure.
Isosalipurposide has various applications in scientific research, including medical, environmental, and industrial research. In medical research, isosalipurposide has been studied for its potential role in drug development, such as anti-inflammatory and anti-cancer drugs. Clinical trials have shown promising results in the treatment of liver injury and diabetes. However, further studies are needed to determine the safety and efficacy of isosalipurposide in humans. In environmental research, isosalipurposide has been studied for its effects on ecosystems and its potential role in pollution management. Isosalipurposide has been shown to have potential applications in improving product quality and efficiency in industrial research. However, health and safety considerations should be taken into account when using isosalipurposide in manufacturing processes.
Future Perspectives and Challenges
The current limitations in the use and study of isosalipurposide include the lack of standardized extraction methods, the limited understanding of its pharmacokinetics and pharmacodynamics, and the potential toxic effects at high doses or prolonged exposure. Possible solutions and improvements include the development of standardized extraction methods, the use of advanced analytical techniques, and the identification of safer and more effective derivatives of isosalipurposide. Future trends and prospects in the application of isosalipurposide in scientific research include the development of novel therapeutic agents and the exploration of its potential role in environmental and industrial applications.
Isosalipurposide is a natural compound with various potential applications in scientific research. The methods of synthesis or extraction, chemical structure, biological activity, biological effects, applications, future perspectives, and challenges of isosalipurposide have been discussed in this paper. Further studies are needed to determine the safety and efficacy of isosalipurposide in humans and to explore its potential applications in environmental and industrial research.
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