World journal of gastrointestinal pharmacology and therapeutics

Using tiny nutrient carriers to improve human health

Updated

Abstract

Encapsulation within phosphatidylcholine-rich bilayers enhanced nutrient stability and improved absorption by two-fold to ten-fold compared to free compounds.

  • Nanoliposomal delivery platforms may effectively shield sensitive nutrients and navigate biological barriers.
  • Ligand-mediated targeting strategies can achieve organ-specific accumulation, with up to a four-fold increase in renal cortex uptake for kidney-targeted liposomes.
  • Mitochondrial targeting strategies restored mitochondrial function and reduced reactive oxygen species in preclinical models of cardiomyopathy and neurodegeneration.
  • PEGylation can prolong circulation half-life by 3-6 hours but may cause immunogenic responses in about one-quarter of recipients.
  • Only three studies reported pilot-scale manufacturing with Good Manufacturing Practice-compliant reproducibility, indicating scalability challenges.
  • Optimization of lipid composition and targeting mechanisms is necessary to enhance therapeutic effectiveness while addressing manufacturing and safety obstacles.

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Funding

Competing interests

Conflict-of-interest statement: I have no conflicts to disclose.
PubMed

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