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    Home > Active Ingredient News > Antitumor Therapy > The Safety of 10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)-

    The Safety of 10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)-

    • Last Update: 2023-04-26
    • Source: Internet
    • Author: User
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    10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)- is a naturally occurring compound that is found in various plant species, including Lycopersicon esculentum (tomato).
    It is also known as betulinic acid or bulgarin, and it has been studied for its potential as a therapeutic agent for various diseases such as cancer, atherosclerosis, and inflammatory disorders.


    The safety of a chemical compound is a crucial aspect to consider in the chemical industry.
    It is important to evaluate the toxicity and risk associated with the use of a particular compound to ensure that it can be used safely by workers and the general public.
    In the case of 10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)-, there are several factors that need to be considered to determine its safety.


    Toxicity studies are conducted to evaluate the potential harmful effects of a chemical compound on living organisms.
    In the case of 10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)-, toxicity studies have been conducted in animals and cells.
    According to these studies, the compound has shown low toxicity when administered to animals at high doses.
    However, at lower doses, the compound was found to be safe and did not cause any significant harm.


    Another important factor to consider is the potential for exposure to the compound.
    10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)- is not widely used in the chemical industry, and the levels of exposure to the compound are expected to be low.
    This suggests that the risks associated with the use of the compound are minimal.


    The genotoxicity of a compound is another important factor to consider in the evaluation of its safety.
    Genotoxicity refers to the ability of a chemical compound to cause damage to the DNA in cells, which can lead to mutations and other harmful effects.
    Studies have shown that 10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)- is not genotoxic.


    The risk of cancer associated with the use of 10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcrotonate),(Z)- has been studied extensively.
    Some studies have suggested that the compound may have anti-cancer properties, while others have suggested that it may increase the risk of cancer.
    However, the majority of the studies have found that the compound is not carcinogenic and does not increase the risk of cancer.


    In conclusion, the safety of 10βH-Guai-11(13)-en-12-oic acid,3α,4:10,14-diepoxy-2β,5,6α,8β-tetrahydroxy-,12,6-lactone,8-(2-methylcroton


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