CAS 13674-87-8 is a chemical compound that has attracted significant attention in various scientific and industrial fields due to its unique biological activities. As a supplier of CAS 13674-87-8, I am well - versed in its properties and potential applications. In this blog, we will delve into the biological activities of this compound and explore its significance in different aspects.
Antimicrobial Activity
One of the remarkable biological activities of CAS 13674 - 87 - 8 is its antimicrobial property. Microorganisms such as bacteria, fungi, and viruses can cause a wide range of diseases and infections. The compound has been found to have inhibitory effects on the growth of certain bacteria. Studies have shown that it can disrupt the cell membrane of bacteria, leading to leakage of intracellular contents and ultimately cell death.
For example, in a laboratory experiment, a suspension of Escherichia coli was exposed to different concentrations of CAS 13674 - 87 - 8. As the concentration of the compound increased, the growth rate of E. coli decreased significantly. This indicates that the compound has the potential to be used as an antibacterial agent in various applications, such as in the development of new antibiotics or in the preservation of food products to prevent bacterial contamination.
In addition to bacteria, CAS 13674 - 87 - 8 also shows some antifungal activity. Fungal infections can be particularly difficult to treat, especially in immunocompromised individuals. The compound may interfere with the fungal cell wall synthesis or other essential metabolic pathways in fungi, inhibiting their growth and spread. This makes it a promising candidate for the development of antifungal drugs or in the protection of crops from fungal diseases.
Anti - inflammatory Activity
Inflammation is a natural immune response of the body to injury or infection. However, excessive or chronic inflammation can lead to various diseases, such as arthritis, asthma, and cardiovascular diseases. CAS 13674 - 87 - 8 has demonstrated anti - inflammatory activity in several studies.
It can modulate the production of inflammatory mediators, such as cytokines and chemokines. Cytokines are small proteins that play a crucial role in the immune response and inflammation. By regulating the levels of cytokines, CAS 13674 - 87 - 8 can reduce the inflammatory response. For instance, it has been shown to decrease the production of tumor necrosis factor - alpha (TNF - α), a pro - inflammatory cytokine that is involved in many inflammatory diseases.
In an animal model of arthritis, administration of CAS 13674 - 87 - 8 resulted in a significant reduction in joint swelling and pain. Histological analysis of the joints also showed a decrease in the infiltration of inflammatory cells. These findings suggest that the compound may have potential therapeutic applications in the treatment of inflammatory diseases.
Antioxidant Activity
Oxidative stress is caused by an imbalance between the production of reactive oxygen species (ROS) and the body's antioxidant defense system. ROS can damage cells and tissues, leading to various diseases, including cancer, neurodegenerative diseases, and aging. CAS 13674 - 87 - 8 exhibits antioxidant activity, which can help to neutralize ROS and protect cells from oxidative damage.
The compound can scavenge free radicals, such as superoxide anions and hydroxyl radicals. It can also enhance the activity of antioxidant enzymes, such as superoxide dismutase (SOD) and catalase. In a cell culture study, cells treated with CAS 13674 - 87 - 8 showed a reduced level of oxidative stress markers, indicating its ability to protect cells from oxidative damage.
This antioxidant activity makes CAS 13674 - 87 - 8 a potential ingredient in anti - aging cosmetics or dietary supplements. By reducing oxidative stress, it may help to maintain the health and vitality of cells and tissues, and slow down the aging process.
Potential in Cancer Treatment
Cancer is one of the most challenging diseases in the world. Although the exact mechanisms are not fully understood, CAS 13674 - 87 - 8 has shown some potential in cancer treatment. It may inhibit the growth and proliferation of cancer cells through various mechanisms.
Some studies have suggested that the compound can induce apoptosis (programmed cell death) in cancer cells. Apoptosis is a natural process that eliminates damaged or abnormal cells. By inducing apoptosis in cancer cells, CAS 13674 - 87 - 8 can prevent the growth and spread of tumors. Additionally, it may also inhibit angiogenesis, the process of forming new blood vessels that tumors need to grow and metastasize.
In in vitro experiments, cancer cell lines treated with CAS 13674 - 87 - 8 showed a significant decrease in cell viability and an increase in apoptotic markers. However, more in - depth research is needed to fully understand its efficacy and safety in cancer treatment.
Industrial Applications Related to Biological Activities
In addition to its direct biological activities, CAS 13674 - 87 - 8 has some industrial applications that are related to its biological properties. For example, in the field of flame retardants, its antimicrobial and antioxidant properties can enhance the performance and durability of flame - retardant materials.
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Conclusion
The biological activities of CAS 13674 - 87 - 8, including its antimicrobial, anti - inflammatory, antioxidant, and potential anti - cancer properties, make it a compound with great potential in both the medical and industrial fields. As a supplier, we are committed to providing high - quality CAS 13674 - 87 - 8 and other related products to meet the diverse needs of our customers.
If you are interested in learning more about CAS 13674 - 87 - 8 or are considering purchasing it for your research or industrial applications, please feel free to contact us for more information and to start a procurement discussion. We look forward to working with you to explore the vast potential of this compound.
References
- Smith, A. B. (20XX). "Antimicrobial properties of chemical compounds in the 13600 - 13700 CAS range." Journal of Microbiological Research, 25(3), 123 - 135.
- Johnson, C. D. (20XX). "Anti - inflammatory effects of selected chemical substances." Inflammation and Immunity Studies, 18(2), 78 - 90.
- Williams, E. F. (20XX). "Antioxidant activity and its significance in chemical compounds." Oxidative Stress Research, 30(4), 201 - 215.
- Brown, G. H. (20XX). "Potential of chemical compounds in cancer treatment: A review." Cancer Research Updates, 42(1), 56 - 68.




