| Literature DB >> 32120992 |
Rita Ambrus1, Péter Gieszinger1, Róbert Gáspár2, Anita Sztojkov-Ivanov3, Eszter Ducza3, Árpád Márki4, Tamás Janáky5, Ferenc Tömösi5, Gábor Kecskeméti5, Piroska Szabó-Révész1, Csilla Bartos1.
Abstract
Nasal drug delivery has become a popular research field in the last years. This is not surprising since the nose possesses unique anatomical and physical properties. Via the nasal mucosa local, systemic, and directly central nerve systemic (CNS) effect is achievable. Powders have favorable physicochemical properties over liquid formulations. Lamotrigine (LAM) is an antiepileptic agent with a relatively mild side effect spectrum, but only available in tablet form on market. Reducing the particle size to the nano range can affect the bioavailability of pharmaceutical products. The aim of this article was to continue the work started, compare the in vitro properties of a nanonized lamotrigine containing nasal powder (nanoLAMpowder) and its physical mixture (PM) that were prepared by dry milling. Moreover, to study their trans-epithelial absorption to reach the blood and target the brain by axonal transport. Due to the dry milling technique, the particle size of LAM, their surface and also their structure changed that led to higher in vitro dissolution and permeability rate. The results of the in vivo tests showed that the axonal transport of the drug was assumable by both intranasal formulations because the drug was present in the brain within a really short time, but the LAM from the nanoLAMpowder liberated even faster.Entities:
Keywords: in vivo study; lamotrigine; nasal powder; nose to brain delivery; permeability
Mesh:
Substances:
Year: 2020 PMID: 32120992 PMCID: PMC7179229 DOI: 10.3390/molecules25051065
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
The particle size of the products
| Particle Size of Product (µm) | Particle Size of LAM in the Products (nm) | |
|---|---|---|
| LAM | 6.57 ± 5.59 | - |
| PM | 16.39 ± 7.17 | Aggregated |
| nanoLAMpowder | 29.91 ± 15.85 | 97 ± 60 |
Figure 1SEM pictures of the samples. In picture (a) raw LAM particles, in picture (b) the PM sample, and in picture (c) the nanoLAMpowder can be seen. Abbreviations: physical mixture (PM); nanonized lamotrigine containing nasal powder (nanoLAMpowder).
Figure 2Differential scanning calorimetry (DSC) curves of the samples.
Figure 3XRPD diffractograms of the samples.
Figure 4In vitro dissolution study of the samples in pH 5.60 buffer at 30 °C.
Figure 5In vitro permeability study of the samples.
The calculated Flux (J) and the permeability coefficient (Kp) values.
| J (µg/cm2/h) | Kp (cm/h) | |
|---|---|---|
| LAM | 35.29 | 0.011 |
| PM | 27.11 | 0.008 |
| nanoLAMpowder | 100 | 0.030 |
Figure 6The concentration values of lamotrigine (LAM) in the blood plasma in the case of IV and intranasal administration.
Figure 7Plasma AUC values of powders and IV formulation.
Figure 8The concentration values of LAM in the brain samples.
Figure 9The cerebral AUC values of the formulations.
Calculated parameters of intranasal powders applying IV administration as a benchmark. AUC: Area under the curve.
| abs. BA for brain (%) | AUCbrain/AUCblood | DTE | |
|---|---|---|---|
| IV injection | 100 | 2.02 | 1 |
| nano LAM powder | 39.84 | 5.06 | 2.49 |
| PM | 21.30 | 6.29 | 3.11 |