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4-Methoxycinnamic acid 4-methoxycinnamate 4-Methoxyciamic acid CAS No 830-09-1

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MOQ: 25 KG
Quantity: Negotiable
Delivery date: Since the payment date 10 Days delivery
Area Origin: East Asia - China(Mainland)
Trade Terms: FOB,CIF
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 English name: 4-Methoxycinnamic acid

Other names: 4-methoxycinnamate, 4-Methoxyciamic acid, 4-MethoxyClnnamic acid

CAS No.: 830-09-1

Molecular weight: 178.18 g/mol

Molar mass: 178.062994 g/mol,   

Melting point: 173.5 °C(lit.)

Boiling point: 250.41°C (rough estimate)

Flash point: 138.6±14.4 °C

Refractive index: 1.591

Properties: White crystal Novochemy

Purity: 98%

Packaging: Seal

Storage method: Keep the container sealed and store in a cool, dry place

Usage:

Used in various cosmetic formulations in sunscreen products.

Methoxycinnamic acidis mainly used as an important intermediate in organic synthesis; P-MCA exerted antihyperglycemic/hypoglycemic effect by stimulating insulin secretion from pancreas and could be developed into a new potential for therapeutic agent used in type 2 diabetic patients. It shows various pharmacologic actions such as hepatoprotective and antihyperglycemic activities, it also can stimulate insulin secretion from pancreatic β-cells by increasing Ca2+ influx via the L-type Ca2+ channels, but not through the closure of ATP-sensitive K+ channels. 4-Methoxycinnamic acid can strongly inhibit the diphenolase activity of mushroom tyrosinase, with the IC 50 value of 0.42 mM, and the inhibition is reversible. Inhibitory effects of cinnamic acid and its derivatives on the diphenolase activity of mushroom ( Agaricus bisporus ) tyrosinase. Natural products modulate Shigella-host-cell interaction. Photosensitive semiconductor nanocrystals, photosensitive composition comprising semiconductor nanocrystals and method for forming semiconductor nanocrystal pattern using the same. Mechanisms of p-methoxycinnamic acid-induced increase in insulin secretion. Protective effect of p-methoxycinnamic acid, an active phenolic acid against 1,2-dimethylhydrazine-induced colon carcinogenesis: modulating biotransforming bacterial enzymes and xenobiotic metabolizing enzymes.

 
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