Syringic Acid–Loaded Emulsomes as a Neuroprotective Delivery System: Formulation Optimization and In-Vivo Pharmacokinetic Evaluation

Syringic acid (SA) demonstrates significant anti-inflammatory, antioxidant, and neuroprotective properties. Unfortunately, its clinical applicability is limited by low solubility and low bioavailability. SA-loaded emulsomes were developed to overcome these limitations. The emulsomes were prepared using thin-film hydration method and optimized by a Central Composite Design. Three independent variables were studied: the solid lipid-to-phosphatidylcholine ratio, drug amount, and solid lipid type (trilaurin or tripalmitin). The measured responses were entrapment efficiency (EE%), particle size (PS), and zeta potential (ZP). The optimized formula exhibited an EE% of 61.92 ± 0.09%, a PS of 190.02 ± 0.13 nm, a PDI of 0.21 ± 0.07 and a ZP of -36.3 ± 0.98 mV. In-vitro release studies demonstrated a sustained release profile, with 92% of SA released over 24 h. The relative bioavailability of SA from the optimized formula was 219% compared to the unformulated drug. A physiologically based pharmacokinetic (PBPK) model was developed to predict plasma and tissue distribution. The model predicted a twofold increase in brain bioavailability, suggesting the potential for improved brain penetration and retention. These findings establish emulsomes as a promising nanoplatform for overcoming syringic acid's biopharmaceutical barriers and advancing its clinical potential.

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AAPS PharmSciTech
Published
2026-09-08
DOI
https://doi.org/10.1208/s12249-026-03512-5
Primary Topic
Advancements in Transdermal Drug Delivery
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article
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0.00

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article

Syringic Acid–Loaded Emulsomes as a Neuroprotective Delivery System: Formulation Optimization and In-Vivo Pharmacokinetic Evaluation

Nabila M. Sweed, Sarah S. Saleh, Mahitab H. El Bishbishy, Marwa Dawoud
AAPS PharmSciTech
Advancements in Transdermal Drug Delivery
article

Syringic Acid–Loaded Emulsomes as a Neuroprotective Delivery System: Formulation Optimization and In-Vivo Pharmacokinetic Evaluation

Nabila M. Sweed, Sarah S. Saleh, Mahitab H. El Bishbishy, Marwa Dawoud
article en

Abstract

Syringic acid (SA) demonstrates significant anti-inflammatory, antioxidant, and neuroprotective properties. Unfortunately, its clinical applicability is limited by low solubility and low bioavailability. SA-loaded emulsomes were developed to overcome these limitations. The emulsomes were prepared using thin-film hydration method and optimized by a Central Composite Design. Three independent variables were studied: the solid lipid-to-phosphatidylcholine ratio, drug amount, and solid lipid type (trilaurin or tripalmitin). The measured responses were entrapment efficiency (EE%), particle size (PS), and zeta potential (ZP). The optimized formula exhibited an EE% of 61.92 ± 0.09%, a PS of 190.02 ± 0.13 nm, a PDI of 0.21 ± 0.07 and a ZP of -36.3 ± 0.98 mV. In-vitro release studies demonstrated a sustained release profile, with 92% of SA released over 24 h. The relative bioavailability of SA from the optimized formula was 219% compared to the unformulated drug. A physiologically based pharmacokinetic (PBPK) model was developed to predict plasma and tissue distribution. The model predicted a twofold increase in brain bioavailability, suggesting the potential for improved brain penetration and retention. These findings establish emulsomes as a promising nanoplatform for overcoming syringic acid's biopharmaceutical barriers and advancing its clinical potential.

AAPS PharmSciTechVol. 27(7)
October University of Modern Sciences and Arts (EG)
Science and Technology Development Fund
Zero hunger
Openalex Percentile: Top 12%
Advancements in Transdermal Drug Delivery
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Syringic Acid–Loaded Emulsomes as a Neuroprotective Delivery System: Formulation Optimization and In-Vivo Pharmacokinetic Evaluation — Nabila M. Sweed, Sarah S. Saleh, et al. · AAPS PharmSciTech (2026) | TGRS Research Map | TGRS