Syringic acid CAS 530-57-4

180570

Synonyms: Gallic acid 3,5-dimethyl ether

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Cat. No. NST-10-42
CAS 530-57-4
Purity 98% (HPLC)
Appearance Off-white Powder
Molecular formula C9H10O5
Molecular weight 198,17
Storage +2 … +8 °C

Certificate of analysis available by request to [email protected]

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Description

Syringic acid: Versatile Phenolic Compound for Advanced Biomedical Research

1. Molecular Identity

  • Chemical Name: 4-Hydroxy-3,5-dimethoxybenzoic acid
  • CAS Number: 530-57-4
  • Source: Naturally occurring in various plants, including grapes, olives, and walnuts

2. Biochemical Significance

Syringic acid is a phenolic compound with diverse biological activities. Its unique molecular structure contributes to its potential antioxidant, anti-inflammatory, and neuroprotective properties, making it a compound of significant interest in pharmaceutical research and natural product studies.

3. Key Properties of Syringic acid

  • Antioxidant: Exhibits strong free radical scavenging ability
  • Anti-inflammatory: Demonstrates potential to modulate inflammatory pathways
  • Neuroprotective: Shows promise in protecting neuronal cells
  • Cardioprotective: Indicates efficacy in improving cardiovascular health

4. Potential Research Applications

  • Oxidative stress and aging studies
  • Neurodegenerative disorder investigations
  • Cardiovascular disease research
  • Cancer prevention and treatment studies

5. Current Research Focus

Ongoing studies are investigating Syringic acid’s effects on:

  • Cellular antioxidant defense mechanisms
  • Neuroinflammatory processes in brain disorders
  • Lipid metabolism and atherosclerosis
  • Cancer cell proliferation and apoptosis

6. Formulation Challenges and Innovations

Researchers are actively working on:

  • Enhancing bioavailability through novel delivery systems
  • Developing stable formulations for various applications
  • Creating synergistic combinations with other phenolic compounds

7. Regulatory Considerations

Syringic acid (CAS 530-57-4) is primarily used in research settings. Its development for specific therapeutic applications would require comprehensive safety and efficacy evaluations to meet regulatory standards.

8. Future Research Directions

The scientific community anticipates:

  • Advanced clinical trials for neurodegenerative and cardiovascular disorders
  • Exploration of Syringic acid’s potential in combination therapies
  • Investigation of its mechanisms of action at the molecular level

9. Collaborative Opportunities

We invite neurologists, cardiologists, oncologists, and academic institutions to explore the research potential of Syringic acid. For inquiries, collaborations, or to discuss how this compound can benefit your research projects, please contact us at [email protected].

Join us in advancing biomedical research with Syringic acid – a versatile phenolic compound at the forefront of natural product-based therapeutic strategies.