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March 25, 2026International Journal of Molecular Sciences3 citationsOpen Access

Terpenoid Phytosomes as Advanced Delivery Systems: Molecular Interactions, Pharmacological Potential, and Scalable Manufacturing Approaches

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SSShynggys SergazySAShyngys AliakparGAGulimzhan S. Adekenova

Key Points

  • This review aims to explore the enhancement of drug delivery systems using terpenoid phytosomes.
  • Critically examines structural principles and preparation methods of phytosomes.
  • Discusses physicochemical characterization and biological performance of terpenoid phytosomes.
  • Analyzes molecular interactions between terpenoids and phospholipids.
  • Summarizes analytical techniques for phytosome formation and formulation parameters.
  • Terpenoid phytosomes improve bioavailability and pharmacokinetic performance of terpenoid compounds.
  • Molecular interactions between terpenoids and phospholipids are crucial for effective complex formation.
  • Formulation parameters significantly influence the stability and biological activity of phytosomes.
  • Challenges in safety assessment and manufacturing scalability are identified.

Abstract

Terpenoids represent a large class of bioactive natural compounds with promising pharmacological properties, including anti-inflammatory, antimicrobial, and anticancer activities. However, their clinical application is often limited by poor aqueous solubility, low membrane permeability, and suboptimal bioavailability. Phytosomal delivery systems have emerged as a promising strategy to enhance the pharmacokinetic performance of plant-derived compounds by forming molecular complexes between bioactive molecules and phospholipids. This review critically examines the structural principles, preparation methods, physicochemical characterization, and biological performance of terpenoid phytosomes. Particular attention is given to the molecular interactions between terpenoids and phospholipids that govern complex formation and vesicular assembly. The review also summarizes current analytical techniques used to confirm phytosome formation and discusses the influence of formulation parameters, including phospholipid composition and molar ratios, on stability and biological activity. In addition, emerging insights from molecular modeling and membrane interaction studies are considered to better understand the mechanisms underlying improved drug delivery. Finally, challenges related to safety assessment, manufacturing scalability, and clinical translation of phytosomal systems are discussed. Overall, terpenoid phytosomes represent a promising nanodelivery platform capable of improving the pharmacokinetic profile and therapeutic potential of terpenoid compounds.

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Cite This Study

Sergazy et al. (2026) studied this question.

synapsesocial.com/papers/69c37b74b34aaaeb1a67ddcfhttps://doi.org/10.3390/ijms27062868
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