4.1 Article

A spectrofluorometric analysis to evaluate transcutaneous biodistribution of fluorescent nanoparticulate gel formulations

期刊

EUROPEAN JOURNAL OF HISTOCHEMISTRY
卷 66, 期 1, 页码 -

出版社

PAGEPRESS PUBL
DOI: 10.4081/ejh.2022.3321

关键词

Organ culture; bioreactor; transcutaneous biodistribution; spectrofluorimetric analysis

资金

  1. University of Verona

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The investigation of drug delivery systems and their absorption in the body can be simplified by using bio-imaging techniques. However, the high autofluorescence of the skin makes it difficult to detect the fluorescence signal from administered fluorophores. This study developed a method to analyze the fluorescence of skin samples and distinguish the signal from administered fluorescent molecules. The results showed that solid lipid nanoparticles with polymer are a suitable drug delivery system for transcutaneous administration.
The investigation of the absorption of drug delivery systems, designed for the transport of therapeutic molecules inside the body, could be relatively simplified by the fluorophore association and tracking by means of bio-imaging techniques (i.e., optical in vivo imaging or confocal and multiphoton microscopy). However, when a fluorescence signal comes out from the skin, its specific detection can be problematic. Skin high autofluorescence can hinder the observation of administered exogenous fluorophores conjugated to drug delivery systems, making it more challenging to detect their biodistribution. In the present study, we have developed a method based on the spectrofluorometric analysis of skin samples to discriminate the fluorescent signal coming from administered fluorescent molecules from the background. Moreover, we gave a semi-quantitative evaluation of the signal intensity. Thus, we distinguished two gel formulations loading the fluorophore rhodamine B (called GEL RHO and GEL SLN-RHO). The two formulations of gels, one of which containing solid lipid nanoparticles (GEL RHO-SLN), were administered on skin explants incubated in a bioreactor, and the penetration was evaluated at different time points (2 and 6 hours). Cryostatic sections of skin samples were observed with confocal laser scanning microscopy, and a spectrofluorometric analysis was performed. Significantly higher signal intensity in the samples administered with SLN-RHO GEL, with a preferential accumulation in the hair bulbs, was found. Reaching also the deeper layers of the hair shaft after 6 hours, the solid lipid nanoparticles thickened with polymer represent a suitable drug delivery system for transcutaneous administration.

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