Syringaresinol 98%: A Deep Dive into its Properties, Applications, and Research Potential
Explore the high-purity natural extract from clove trees, vital for scientific research and pharmacological studies.
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Syringaresinol 98%
Syringaresinol, identified by CAS number 1177-14-6 and with the chemical formula C22H26O8, is a premium natural extract derived from clove trees. It is presented as a fine white powder with a characteristic odor, making it suitable for a variety of research applications. Its high purity level ensures reliable results in scientific investigations.
- Discover the benefits of using 98% pure syringaresinol natural extract for your scientific research needs.
- Investigate the diverse applications of syringaresinol CAS 1177-14-6 in pharmacological experiments.
- Understand the role of clove extract as a source for high-quality chemical intermediates.
- Explore the potential of syringaresinol as a valuable biomarker in various studies.
Key Advantages
High Purity and Quality
Leverage the purity of syringaresinol 98% natural extract for precise and reproducible research outcomes in your projects.
Versatile Research Applications
Utilize syringaresinol CAS 1177-14-6 for a wide range of scientific research and identification purposes, including pharmacological experiments.
Natural Origin and Potential
Benefit from a natural product derived from clove extract, offering a unique profile for exploring phytochemicals and their applications.
Key Applications
Scientific Research
Syringaresinol 98% is an essential compound for various scientific research endeavors, providing a reliable source of a natural lignan glycoside.
Pharmacological Studies
Explore the pharmacological potential of syringaresinol CAS 1177-14-6 in in-vitro and in-vivo studies to understand its biological activities.
Biomarker Identification
As a derivative of natural compounds, syringaresinol can serve as a potential biomarker for consumption of specific food items or in metabolic studies.
Chemical Intermediate
The high purity of this clove extract derivative makes it a valuable chemical intermediate for synthesis in organic chemistry research.