Bovine milk-derived exosomes as nanocarriers for curcumin: Enhancing stability against gastrointestinal digestion and systemic bioavailability

Curcumin, the main polyphenol of Curcuma longa , is a potent antioxidant and anti-inflammatory compound, but its limited solubility and instability largely hamper its therapeutic potential, and high first-pass metabolism - collectively referred to as the “curcumin paradox”. Traditional synthetic nanocarriers, such as liposomes, may not be stable in the gastrointestinal tract and are subject to rapid systemic clearance. In this regard, bovine milk-derived exosomes (BMEs) have emerged as natural nanocarriers with inherent biocompatibility, low immunogenicity, and enhanced stability. BMEs are endowed with a distinctive lipid–protein structure and bioactive molecules such as lactadherin, which promote cellular internalization and gastrointestinal stability. This review explores the critical role of BMEs in enhancing curcumin stability, bioavailability, and systemic delivery. Moreover, drug release profiles are analyzed using well-known mathematical models (Higuchi and Korsmeyer-Peppas equations) to gain insight into the mechanisms of controlled release. Issues associated with large-scale exosome isolation, drug loading, and scale-up are also addressed. Valorization of dairy by-products for exosome extraction represents a step toward circular bioeconomy and underscores the promise of BMEs as a viable and efficient delivery system for functional food and medical uses.

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Publication Details

Journal
Journal of Functional Foods
Published
2026-09-11
DOI
https://doi.org/10.1016/j.jff.2026.107500
Primary Topic
Proteins in Food Systems
Type
article
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article

Bovine milk-derived exosomes as nanocarriers for curcumin: Enhancing stability against gastrointestinal digestion and systemic bioavailability

Prashant Anil Pawase, Glêndara Aparecida de Souza Martins, Rômulo Alves Morais, Ramesh Chavan et al.
Journal of Functional Foods
Proteins in Food Systems
article

Bovine milk-derived exosomes as nanocarriers for curcumin: Enhancing stability against gastrointestinal digestion and systemic bioavailability

Prashant Anil Pawase, Glêndara Aparecida de Souza Martins, Rômulo Alves Morais, Ramesh Chavan, Omar Bashir, Gholamreza Abdi, Sameer Mahajan
article en

Abstract

Curcumin, the main polyphenol of Curcuma longa , is a potent antioxidant and anti-inflammatory compound, but its limited solubility and instability largely hamper its therapeutic potential, and high first-pass metabolism - collectively referred to as the “curcumin paradox”. Traditional synthetic nanocarriers, such as liposomes, may not be stable in the gastrointestinal tract and are subject to rapid systemic clearance. In this regard, bovine milk-derived exosomes (BMEs) have emerged as natural nanocarriers with inherent biocompatibility, low immunogenicity, and enhanced stability. BMEs are endowed with a distinctive lipid–protein structure and bioactive molecules such as lactadherin, which promote cellular internalization and gastrointestinal stability. This review explores the critical role of BMEs in enhancing curcumin stability, bioavailability, and systemic delivery. Moreover, drug release profiles are analyzed using well-known mathematical models (Higuchi and Korsmeyer-Peppas equations) to gain insight into the mechanisms of controlled release. Issues associated with large-scale exosome isolation, drug loading, and scale-up are also addressed. Valorization of dairy by-products for exosome extraction represents a step toward circular bioeconomy and underscores the promise of BMEs as a viable and efficient delivery system for functional food and medical uses.

Journal of Functional FoodsVol. 146
Lovely Professional University (IN), Government of Maharashtra (IN), Universidade Federal do Tocantins (BR), MIT Art, Design and Technology University (IN), Persian Gulf University (IR)
Zero hunger
Openalex Percentile: Top 14%
Proteins in Food Systems
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