Camellia Sinensis-Derived Nanovesicles
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Camellia Sinensis-Derived Nanovesicles

Product Name: Camellia Sinensis-Derived Nanovesicles
Catalog Number: ALPE-PN003
Plant Source: Camellia sinensis
Particle Size: 30–200 nm
Particle Concentration: ≥5 × 1010 particles/g

Description

Camellia sinensis-derived nanovesicles are a next-generation, plant-derived skincare ingredient inspired by the centuries-old benefits of Camellia sinensis (tea) and enhanced by advanced nanotechnology. These naturally secreted nano-sized vesicles—also known as tea-derived nanocarriers—are isolated from tea leaves through a refined ultracentrifugation process. Their lipid bilayer structure allows them to encapsulate and protect potent bioactives such as catechins (EGCG, EGC, EC), polyphenols, flavonoids, amino acids, and antioxidant enzymes.

Offering superior skin penetration, stability, and targeted delivery, Camellia sinensis-derived nanovesicles provide broad-spectrum skincare benefits, including antioxidant defense, brightening, anti-inflammation, and sebum control. Their biocompatible nature makes them ideal for sensitive and acne-prone skin, while their multifunctionality aligns with clean beauty trends and high-performance cosmetic formulations.

Key Benefits

  • Antioxidant Defense: Neutralizes free radicals and protects skin from environmental stressors, helping reduce signs of premature aging.
  • Brightening & Even Skin Tone: Inhibits melanin synthesis to promote a more radiant and even complexion.
  • Anti-Inflammatory & Soothing: Calms irritated and sensitive skin by reducing the release of inflammatory mediators and enzymes.
  • Sebum Regulation & Acne Care: Helps manage oily skin and acne by inhibiting acne-causing bacteria and regulating oil production.
  • Barrier Strengthening & Hydration: Supports the skin barrier and enhances moisture retention, improving overall skin health.
  • Scalp & Hair Support: Can be used in scalp treatments to improve microcirculation and promote follicle vitality.

Mechanism of Action

These Camellia sinensis-derived nanovesicles feature a lipid bilayer similar to cell membranes, ensuring high compatibility and absorption.

  • Deliver bioactives directly into skin cells such as keratinocytes and fibroblasts
  • Enhance the stability of sensitive ingredients like polyphenols and vitamins
  • Modulate inflammation, melanogenesis, and oxidative damage at the cellular level
  • Support targeted delivery for improved efficacy with lower active concentrations

Advantages Over Conventional Extracts

FeatureCamellia Sinensis-Derived NanovesiclesTraditional Tea Extracts
PenetrationExcellent (nano-size + lipid structure)Limited (larger molecules)
StabilityHigh (encapsulated protection)Low (oxidation/light-sensitive)
BioavailabilityEnhanced through targeted deliveryLess efficient
CompatibilityGentle, low irritationMay cause sensitivity at high dose
Active ComplexityContains lipids, catechins, RNAs, etc.Primarily polyphenols

Applications

  • Antioxidant serums and anti-aging creams
  • Brightening and spot-correcting formulas
  • Acne and oily skin care products
  • Calming and soothing treatments for sensitive skin
  • Scalp and body care formulations targeting microcirculation and detox

Specification

ItemSpecification
IngredientsCamellia sinensis extract, water, 4-hydroxyacetophenone, 1,2-hexanediol, isoprene glycol
Recommended Usage0.5%–5% (w/w)
pH Range5.0–7.0
Particle Size30–200 nm
Particle Concentration≥5 × 1010 particles/g
Total Plate Count≤10 CFU/g
Shelf Life24 months
Storage ConditionsStore in a cool, dry place, protected from light and tightly sealed

Positioning

Camellia sinensis-derived nanovesicles provide a clean-label, science-backed solution for modern skincare brands seeking multifunctional, natural, and effective bioactive. Ideal for use in advanced skincare, hair care, and wellness applications, they bring traditional botanical benefits into the future of cosmetic science.

Interested in elevating your product line with tea nanotechnology? Contact us today to request a sample or speak with our technical team.

Please kindly note that our products and services are for research use only.