Vicenin-2 (CAS 23666-13-9): A Deep Dive into its Potential
Explore the significant biological activities and research applications of this potent flavonoid glycoside.
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Vicenin-2
Vicenin-2 is a naturally occurring flavonoid glycoside, recognized for its potent antioxidant properties. As a secondary metabolite from plants like those in the Asteraceae family, it plays a crucial role in combating oxidative stress through free radical scavenging and enzyme modulation. This makes it a valuable compound for various research purposes.
- Explore Vicenin-2 biological activities, uncovering its multifaceted effects in cellular processes.
- Understand the significant Vicenin-2 antioxidant properties, crucial for cellular health and protection against damage.
- Learn about diverse Vicenin-2 research applications, from basic science to potential therapeutic avenues.
- Delve into Vicenin-2 phytochemical studies to understand its extraction and chemical characterization from natural sources.
Key Advantages of Vicenin-2
Robust Antioxidant Action
Leverage Vicenin-2's potent antioxidant properties to protect cells from oxidative damage, a key factor in aging and disease.
Broad Research Utility
Benefit from the wide range of Vicenin-2 research applications, facilitating advancements in pharmacology and biochemistry.
Natural Origin Benefits
Harness the power of medicinal plant bioactives like Vicenin-2, offering a natural approach to health and wellness research.
Key Applications
Pharmacological Research
Used extensively in Vicenin-2 pharmacological studies to investigate its effects on various physiological systems and potential therapeutic applications.
Cellular Health Studies
Investigate Vicenin-2 health benefits in the context of oxidative stress, neuroprotection, and cardiovascular health.
Phytochemical Analysis
Essential for Vicenin-2 phytochemical studies, aiding in the identification and characterization of natural compounds from plant extracts.
Drug Discovery & Development
Serve as a valuable lead compound or tool in the discovery and development of new pharmaceuticals, particularly those targeting oxidative stress-related diseases.