Multi-Modal Imaging to Assess the Follicular Delivery of Zinc Pyrithione

Author:

Mangion Sean E.ORCID,Sandiford Lydia,Mohammed YousufORCID,Roberts Michael S.ORCID,Holmes Amy M.ORCID

Abstract

Zinc pyrithione (ZnPT) is a widely used antifungal, usually applied as a microparticle suspension to facilitate delivery into the hair follicles, where it then dissociates into a soluble monomeric form that is bioactive against yeast and other microorganisms. In this study, we use multiphoton microscopy (MPM) and fluorescence lifetime imaging microscopy (FLIM) to characterise ZnPT formulations and map the delivery of particles into follicles within human skin. To simulate real-world conditions, it was applied using a massage or no-massage technique, while simultaneously assessing the dissolution using Zinpyr-1, a zinc labile fluorescent probe. ZnPT particles can be detected in a range of shampoo formulations using both MPM and FLIM, though FLIM is optimal for detection as it allows spectral and lifetime discrimination leading to increased selectivity and sensitivity. In aqueous suspensions, the ZnPT 7.2 µm particles could be detected up to 500 µm in the follicle. The ZnPT particles in formulations were finer (1.0–3.3 µm), resulting in rapid dissolution on the skin surface and within follicles, evidenced by a reduced particle signal at 24 h but enhanced Zinpyr-1 intensity in the follicular and surface epithelium. This study shows how MPM-FLIM multimodal imaging can be used as a useful tool to assess ZnPT delivery to skin and its subsequent dissolution.

Funder

National Health and Medical Research Council

Publisher

MDPI AG

Subject

Pharmaceutical Science

Reference46 articles.

1. Zinc OmadineTM 48% Aqueous Dispersion FPS (Fine Particle Size) Safe & Effective Dandruff Relief,2014

2. Dandruff (pityriasis capitis simplex): Of yeasts and men;Saint-Leger,2005

3. Quantitative Microbiology of the Scalp in Non-Dandruff, Dandruff, and Seborrheic Dermatitis

4. Targeted Delivery of Zinc Pyrithione to Skin Epithelia

5. Product Pharmacology and Medical Actives in Achieving Therapeutic Benefits

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