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Description

admin (19653 pt) • 2022-Dec-18 11:00
Cinnamomum camphora phytoplacenta extract is derived from the phytoplacenta (plant placenta) of the camphor tree (Cinnamomum camphora). The term "phytoplacenta" refers to the nutrient-rich tissue found in plants, which is involved in supporting the development of new plant growth. This extract is used in cosmetics and skincare products for its potential regenerative and anti-aging properties. It is known for its ability to provide nutrients and bioactive compounds beneficial to the skin.
Chemical Composition and Structure
The chemical composition of Cinnamomum camphora phytoplacenta extract includes several important components:
Camphor: The primary compound with the formula C10H16O. Camphor is a bicyclic monoterpene known for its strong aroma and therapeutic benefits.
Eucalyptol (1,8-Cineole): A significant component with the formula C10H18O, recognized for its refreshing and antimicrobial properties.
Linalool: A monoterpene alcohol with the formula C10H18O, contributing to the extract's soothing and aromatic qualities.
Additional Terpenes and Phenolic Compounds: These compounds may include various terpenes and phenolic substances that support the extract's overall efficacy and stability.
The structure of camphor is:
Chemical Formula: C10H16O.
Structure: A bicyclic structure with a ketone group, essential for its distinctive aroma and therapeutic properties.
Physical Properties
Cinnamomum camphora phytoplacenta extract generally exhibits the following physical properties:
Color: Light to medium yellow.
Odor: Mild, with a subtle camphoraceous and woody scent.
Solubility: Typically soluble in oils and alcohol; limited solubility in water.
Production Process
The production process for Cinnamomum camphora phytoplacenta extract involves:
Harvesting: The phytoplacenta material from the camphor tree is collected. This material is rich in nutrients and bioactive compounds.
Extraction: The phytoplacenta is subjected to extraction processes such as cold pressing or solvent extraction to obtain the extract. Specialized techniques may be used to preserve the delicate compounds within the phytoplacenta.
Purification: The extract is purified to remove any contaminants and concentrate beneficial components.
Standardization: The final product is standardized to ensure consistent levels of key bioactive compounds and maintain efficacy.
Applications
Cinnamomum camphora phytoplacenta extract is used in:
Cosmetics: In skincare products for its potential regenerative and anti-aging properties. It is included in serums, creams, and masks aimed at improving skin texture and vitality.
Anti-Aging Products: For its ability to provide nutrients that support skin regeneration and reduce signs of aging.
Nutrient Delivery Systems: To enhance the delivery of active ingredients in various skincare formulations.
Safety
Cinnamomum camphora phytoplacenta extract is generally regarded as safe for use in cosmetics and personal care products when used as directed. It is important to adhere to recommended concentrations to avoid potential irritation or allergic reactions. Individuals with sensitive skin or allergies to camphor or related plant compounds should use the product with caution.
Environmental and Safety Considerations
The production of Cinnamomum camphora phytoplacenta extract should follow environmentally responsible practices to minimize ecological impact. Sustainable harvesting practices and efficient extraction methods are essential to reduce waste and preserve camphor tree populations. Proper labeling and handling are crucial to ensure safe and effective use in various applications.
INCI
Antimicrobial agent. This ingredient is able to suppress or inhibit the growth and replication of a broad spectrum of microorganisms such as bacteria, fungi and viruses by making the stratum corneum temporarily bactericidal and fungicidal.
Antioxidant agent. Ingredient that counteracts oxidative stress and prevents cell damage. Free radicals, pathological inflammatory processes, reactive nitrogen species and reactive oxygen species are responsible for the ageing process and many diseases caused by oxidation.
Hair conditioning agent. A significant number of ingredients with specific and targeted purposes may co-exist in hair shampoo formulations: cleansers, conditioners, thickeners, matting agents, sequestering agents, fragrances, preservatives, special additives. However, the indispensable ingredients are the cleansers and conditioners as they are necessary and sufficient for hair cleansing and manageability. The others act as commercial and non-essential auxiliaries such as: appearance, fragrance, colouring, etc. Hair conditioning agents have the task of increasing shine, manageability and volume, and reducing static electricity, especially after treatments such as colouring, ironing, waving, drying and brushing. They are, in practice, dispersants that may contain cationic surfactants, thickeners, emollients, polymers. The typology of hair conditioning agents includes: intensive conditioners, instant conditioners, thickening conditioners, drying conditioners. They can perform their task generally accompanied by other different ingredients.
Humectant. Hygroscopic compound used to minimise water loss in the skin and to prevent it from drying out by facilitating faster and greater absorption of water into the stratum corneum of the epidermis. The epidermis is the most superficial of the three layers that make up human skin (epidermis, dermis and hypodermis) and is the layer that maintains hydration in all three layers. In turn, the epidermis is composed of five layers: horny, the most superficial, granular, spinous, shiny, and basal. Humectants have the ability to retain the water they attract from the air in the stratum corneum and have the function of moisturising the skin. They are best used before emollients, which are oil-based.
Skin protectant. It creates a protective barrier on the skin to defend it from harmful substances, irritants, allergens, pathogens that can cause various inflammatory conditions. These products can also improve the natural skin barrier and in most cases more than one is needed to achieve an effective result.
Synonyms:
CAS: 92201-50-8 EC number 295-980-1