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Inflammatory-Targeted Lipid Carrier as a New Nanomaterial to Formulate an Inhaled Drug Delivery System

Articolo
Data di Pubblicazione:
2024
Citazione:
Inflammatory-Targeted Lipid Carrier as a New Nanomaterial to Formulate an Inhaled Drug Delivery System / Maretti, E., Gioia, F., Rustichelli, C., Molinari, S., Leo, E.. - In: MOLECULES. - ISSN 1420-3049. - 29:7(2024), pp. 1616-1624. [10.3390/molecules29071616]
Abstract:
There is a pressing need for efficacious therapies in the field of respiratory diseases and infections. Lipid nanocarriers, administered through aerosols, represent a promising tool for maximizing therapeutic concentration in targeted cells and minimizing systemic exposure. However, this approach requires the application of efficient and safe nanomaterials. Palmitoylethanolamide (PEA), an endocannabinoid-like endogenous lipid, plays a crucial role in providing protective mechanisms during inflammation, making it an interesting material for preparing inhalable lipid nanoparticles (LNPs). This report aims to preliminarily explore the in vitro behavior of LNPs prepared with PEA (PEA-LNPs), a new inhalable inflammatory-targeted nanoparticulate drug carrier. PEA-LNPs exhibited a size of about 250 nm, a rounded shape, and an marked improvement in PEA solubility in comparison to naked PEA, indicative of easily disassembled nanoparticles. A twin glass impinger instrument was used to screen the aerosol performance of PEA-LNP powders, obtained via freeze-drying in the presence of two quantities of mannose as a cryoprotectant. Results indicated that a higher amount of mannose improved the emitted dose (ED), and in particular, the fine particle fraction (FPF). A cytotoxicity assay was performed and indicated that PEA-LNPs are not toxic towards the MH-S alveolar macrophage cell line up to concentrations of 0.64 mg/mL, and using coumarin-6 labelled particles, a rapid internalization into the macrophage was confirmed. This study demonstrates that PEA could represent a suitable material for preparing inhalable lipid nanocarrier-based dry powders, which signify a promising tool for the transport of drugs employed to treat respiratory diseases and infections.
Tipologia CRIS:
Articolo su rivista
Keywords:
DPI; PEA; Palmitoylethanolamide; aerosol; dry powder; lung disease; nanocarrier; nanoparticles; pulmonary administration; respirability
Elenco autori:
Maretti, Eleonora; Gioia, Federica; Rustichelli, Cecilia; Molinari, Susanna; Leo, Eliana
Autori di Ateneo:
LEO Eliana Grazia
MARETTI ELEONORA
MOLINARI Susanna
RUSTICHELLI Cecilia
Link alla scheda completa:
https://iris.unimore.it/handle/11380/1337615
Link al Full Text:
https://iris.unimore.it//retrieve/handle/11380/1337615/656728/2024%20inflammatory%20inhaled%20molecules-29-01616.pdf
Pubblicato in:
MOLECULES
Journal
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