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  • Trans-retinal Raw Materials Powder Retinal

    • Trans-retinal Raw Materials Powder Retinal
    • Trans-retinal Raw Materials Powder Retinal storehouse
    • Trans-retinal Raw Materials Powder Retinal quality testing
    • Trans-retinal Raw Materials Powder Retinal quality testing
    • Trans-retinal Raw Materials Powder Retinal certificate

    Product Overview:

    Vitamin A aldehyde, also known as retinal, is the closest component to A-acid, which is produced by oxidative fracture of beta-carotene. Reduction gives retinol and oxidation gives retinoic acid.

    Trans-retinal Raw Materials Powder Retinal Attributes

    Trans-retinal Raw Materials Powder

    CAS:116-31-4

    MF:C20H28O

    Trans-retinal

    MW:284.44

    EINECS:204-135-8

    Specification: 99% min Trans-retinal

    Sample:Trans-retinal Powder

    Packaging:1kg/bag, 25kg/drum

    Brand: Henrikang

    Appearance:Yellow

    Storage: Cool Dry Place

    Shelf Life: 2 Years

    Test Method: HPLC

    Trans-retinal Raw Materials Powder Retinal Details

    Trans-retinal Powder Usage and Synthesis.

    Retinaldehyde is an anti-wrinkle, anti-aging, and anti-acne skin care active ingredient. Studies have shown that retinaldehyde is less irritating to the skin than other commonly used vitamin A derivatives (e.g., retinoic acid), making it more suitable for sensitive skin.

    In addition, retinaldehyde is metabolized by the body and converted into retinoic acid, which also has the effect of treating acne, so it can be said that it is a multifunctional active additive. Retinaldehyde can be used in a variety of anti-wrinkle, anti-aging and anti-acne skin care formulations, the recommended dosage of 0.05% to 0.15% or so.

    Trans-retinal Powder

    Uses of Trans-retinal.

    Retinaldehyde is an important signaling molecule in eye development, and it has several different important roles in vertebrate eye development.

    Myopia is a developmental disease, and active expansion of the sclera in the myopic eye is an important mechanism for its elongation, and retinal may be a messenger molecule regulating the elongation of the experimental myopic eye. Studies on the relationship between retinal and the onset and development of experimental myopia have made progress, and the present study reviews retinal and its nuclear receptors, retinal, choroidal, and scleral alterations of the experimental myopic eye, and the role of retinal as a messenger to transmit signals from the retina to the sclera. as a messenger molecule that transmits ocular elongation signals from the retina to the sclera.

    Trans-retinal

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