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Apexbio Technology LLC CIS-3-HEXEN-1-OL-1G
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Catalog No. 5000569960
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cis-3-Hexen-1-ol (CAS No 928-96-1) is a natural compound commonly used in biomedical research It originates from plants and is a key component in the aroma of freshly cut grass contributing to its classification in the category of volatile organic compounds The mechanism of action for cis-3-Hexen-1-ol involves the modulation of cellular signaling pathways often affecting calcium ion channels and influencing oxidative stress responses In vitro its activity is typically observed in the nanomolar to low micromolar range suggesting its effectiveness in low concentrations Common applications include use in cell models to study reactive oxygen species production as well as in animal studies to investigate its effects on inflammation and odor perception It is also employed in drug screening processes to explore its potential therapeutic benefits Experimental concentrations typically depend on the specific research design allowing flexibility in various experimental settings

Catalog No. 50-005-69960 Supplier Apexbio Technology LLC Supplier No. C71541000
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cis-3-Hexen-1-ol (CAS No 928-96-1) is a natural compound commonly used in biomedical research It originates from plants and is a key component in the aroma of freshly cut grass contributing to its classification in the category of volatile organic compounds The mechanism of action for cis-3-Hexen-1-ol involves the modulation of cellular signaling pathways often affecting calcium ion channels and influencing oxidative stress responses In vitro its activity is typically observed in the nanomolar to low micromolar range suggesting its effectiveness in low concentrations Common applications include use in cell models to study reactive oxygen species production as well as in animal studies to investigate its effects on inflammation and odor perception It is also employed in drug screening processes to explore its potential therapeutic benefits Experimental concentrations typically depend on the specific research design allowing flexibility in various experimental settings

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