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Related Concept Videos

Acne Infection01:27

Acne Infection

Acne is a multifactorial skin condition primarily affecting adolescents and young adults, with a global prevalence estimated to exceed 75% in this demographic. The condition is characterized by the formation of comedones (blackheads and whiteheads), papules, pustules, nodules, and, in severe cases, cysts, particularly in areas rich in sebaceous glands such as the face, neck, chest, and back. The pathogenesis involves increased sebum production, follicular hyperkeratinization, colonization by...

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Rationally engineered essential oil-loaded nanocarriers for acne vulgaris: integrating multiscale molecular modeling,

Wajid Zaman1, Niamat Ullah2, Adnan Amin1

  • 1Department of Life Sciences, Yeungnam University, Gyeongsan, Republic of Korea.

Journal of Microencapsulation
|July 3, 2026
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Summary

Essential oils (EOs) show promise for acne treatment but face delivery challenges. Nanotechnology offers solutions by improving EO stability and skin penetration for better acne therapy.

Keywords:
Acne vulgarisBox-Behnken designMD simulationsnanostructured lipid carriersterpenoids

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Area of Science:

  • Dermatology
  • Nanotechnology
  • Pharmacology

Background:

  • Acne vulgaris is a common inflammatory skin condition involving bacteria like Cutibacterium acnes.
  • Current treatments such as retinoids and antibiotics have limitations including resistance and irritation.

Purpose of the Study:

  • To review essential oil (EO) nano-delivery systems for acne treatment.
  • To explore computational tools for optimizing EO nanoformulations.

Main Methods:

  • Systematic review of EO-loaded nanogels, liposomes, solid lipid nanoparticles, and nanostructured lipid carriers.
  • Emphasis on in silico tools and statistical optimization for formulation design.
  • Appraisal of nano-toxicity and safety assessment.

Main Results:

  • Nano-delivery systems enhance essential oil release and stability.
  • In silico tools aid in rational formulation engineering.
  • Safety and toxicity data are crucial for clinical translation.

Conclusions:

  • Advancing personalized dermatology and microbiome-responsive nanocarriers is key.
  • Integrated computational approaches will accelerate the development of effective nanoformulations for acne.
  • Scalable, patient-centered essential oil nanoformulations are the future of acne treatment.