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LAVANDULYL ACETATE.

Valuable CAS 25905-14-0 / PERFUMING

Lavandulyl Acetate is a naturally occurring ester and a key aromatic constituent of lavender essential oil. It contributes to lavender's well-regarded soothing and regenerative properties, offering benefits such as anti-inflammatory action and mild antimicrobial characteristics for the skin.

Anti-inflammatory Antimicrobial Skin Regenerative Fragrance

Science

Operating as a component within lavender oil, Lavandulyl Acetate contributes to anti-inflammatory effects by modulating the production of pro-inflammatory cytokines, specifically reducing IL-6 and IL-8. It also promotes skin regeneration through increasing the expression of vascular endothelial growth factor (VEGF) in keratinocytes. Furthermore, this compound helps impart antimicrobial properties, contributing to the bactericidal effects observed in lavender oil. It is noted that, at higher concentrations, similar to other essential oil components, it may potentially cause cellular membrane damage.


Research

Medium confidence
Effective range N/A
Optimal

N/A

Key findings

  1. 01 While specific clinical studies for pure Lavandulyl Acetate with defined concentrations are limited, its efficacy is evidenced through studies on lavender essential oil, in which it is a key component. Lavender oil has been demonstrated to reduce microbial cell counts on the skin at concentrations of 50 µL/cm³ and 70 µL/cm³.
  2. 02 Lavender essential oil, containing varying levels of Lavandulyl Acetate (e.g., 5.5% to 23.2%), has shown concentration-dependent inhibitory effects on pro-inflammatory cytokines (IL-6, IL-8) and an increase in the pro-regenerative growth factor VEGF in in vitro keratinocyte models.
  3. 03 Topical application of a cream containing 0.5% w/w Lavandula stoechas essential oil (inclusive of Lavandulyl Acetate) in an in vivo animal model resulted in significant wound healing, achieving wound contractions of 26.4%, 78%, and 96.3% on days 4, 11, and 16, respectively.

Transparency

Not commonly dusted
Min. effective
0.021%
Red flag below
0.021%

Lavandulyl Acetate is not typically 'dusted' in skincare formulations. Its maximum recommended concentration of 0.021% in leave-on products, as per RIFM standards, indicates its role as a potent contributing active or fragrance component, rather than a high-volume, potentially ineffective ingredient.


The Formula

Solubility
Oil
Optimal pH N/A
0 7 14

Stability

To maintain stability and efficacy, Lavandulyl Acetate should be stored in a cool, dry, and well-ventilated environment, away from direct heat and sunlight.

Synergies

  • Likely synergistic with other components found in lavender essential oil, enhancing overall calming and skin-benefiting effects.
  • May complement other botanical extracts with anti-inflammatory or regenerative properties.

Conflicts

  • Formulation at concentrations exceeding the recommended safety limits may lead to cellular damage or skin irritation.

Safety

CIR Status
Not reviewed
Max tested
0.021%
Sensitization risk Low

Lavandulyl Acetate is deemed safe by the Research Institute for Fragrance Materials (RIFM) under IFRA standards, with a maximum acceptable concentration of 0.021% for leave-on skin products. Safety assessments indicate a low risk for genotoxicity, repeated dose toxicity, reproductive toxicity, skin sensitization (exposure below 900 μg/cm² dermal sensitization threshold), and phototoxicity at current exposure levels. The European Food Safety Authority (EFSA) also found no safety concerns in flavor evaluations. While generally well-tolerated at recommended concentrations, direct contact with essential oils, of which Lavandulyl Acetate is a component, can potentially lead to irritation or allergic reactions in susceptible individuals.


Your Skin

No Normal
No Dry
No Oily
Yes Sensitive
Irritancy Low
Comedogenicity Unknown

Our Assessment

Valuable

Lavandulyl Acetate is a valuable ingredient that contributes anti-inflammatory, antimicrobial, and pro-regenerative benefits within complex botanical skincare formulations when precisely incorporated at its safe and regulated concentrations.


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