15-keto-17-phenyl trinor Prostaglandin F2α (15-keto-17-phenyl trinor PGF2α)

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Reagent Code: #55838
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CAS Number 949564-89-0

science Other reagents with same CAS 949564-89-0

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 386.5 g/mol
Formula C₂₃H₃₀O₅
inventory_2 Storage & Handling
Storage -20°C, airtight, dry

description Product Description

This compound is primarily used in research settings to study the physiological and pharmacological effects of prostaglandins. It serves as a stable analog of prostaglandin F2α, allowing scientists to investigate its role in various biological processes, such as inflammation, smooth muscle contraction, and reproductive functions. Its structural modifications make it resistant to enzymatic degradation, providing a longer-lasting effect in experimental models. Researchers also utilize it to explore its potential therapeutic applications, particularly in conditions related to the regulation of intraocular pressure and uterine activity. Additionally, it is employed in the development of drugs targeting prostaglandin receptors, aiding in the design of more effective treatments for related disorders.

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Size Availability Unit Price Quantity
inventory 5mg
10-20 days ฿48,879.00

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15-keto-17-phenyl trinor Prostaglandin F2α (15-keto-17-phenyl trinor PGF2α)
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This compound is primarily used in research settings to study the physiological and pharmacological effects of prostaglandins. It serves as a stable analog of prostaglandin F2α, allowing scientists to investigate its role in various biological processes, such as inflammation, smooth muscle contraction, and reproductive functions. Its structural modifications make it resistant to enzymatic degradation, providing a longer-lasting effect in experimental models. Researchers also utilize it to explore its pot

This compound is primarily used in research settings to study the physiological and pharmacological effects of prostaglandins. It serves as a stable analog of prostaglandin F2α, allowing scientists to investigate its role in various biological processes, such as inflammation, smooth muscle contraction, and reproductive functions. Its structural modifications make it resistant to enzymatic degradation, providing a longer-lasting effect in experimental models. Researchers also utilize it to explore its potential therapeutic applications, particularly in conditions related to the regulation of intraocular pressure and uterine activity. Additionally, it is employed in the development of drugs targeting prostaglandin receptors, aiding in the design of more effective treatments for related disorders.

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