Delivery of potential natural disease-modifying osteoarthritis drugs: Beyond polyphenols and flavonoids

Sheraz Ahmed1, Noelle K Comolli2

  • 1Department of Chemical & Biological Engineering, Villanova University, Villanova, PA 19085, United States; Department of Mechanical Engineering, Villanova University, Villanova, PA 19085, United States.

Insights

This review explores novel natural compounds beyond polyphenols and flavonoids for osteoarthritis treatment. Combining multi-node natural pharmacology with advanced delivery systems offers a promising path for developing new disease-modifying osteoarthritis drugs.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Biomaterials Science

Background:

  • Osteoarthritis (OA) is a complex joint disorder involving cartilage, synovium, and bone degradation due to inflammation and mechanical stress.
  • Current treatments lack disease-modifying capabilities, often failing due to single-pathway targeting and heterogeneous patient phenotypes.
  • Polyphenols and flavonoids are studied for OA, but underexplored natural compounds offer multi-node therapeutic potential.

Purpose of the Study:

  • To review underexplored natural chemotypes for osteoarthritis treatment.
  • To explore their multi-node biological mechanisms and potential for intra-articular (IA) delivery.
  • To connect natural product pharmacology with advanced drug delivery strategies for OA.

Main Methods:

  • Literature review of natural compounds including alkaloids, phytosteroids, rare triterpenoids, marine polysaccharides, and others.
  • Analysis of their anti-inflammatory, anti-catabolic, pro-anabolic, anti-angiogenic, and redox mechanisms.
  • Evaluation of drug delivery systems like IA depots, hydrogels, nanocarriers, and targeting strategies.

Main Results:

  • Identified several classes of natural compounds with multi-node OA-relevant mechanisms.
  • Summarized pre-clinical and clinical evidence for these compounds.
  • Detailed various IA delivery strategies, including particle size, charge, and targeting for optimal joint exposure.

Conclusions:

  • Underexplored natural compounds possess multi-node pharmacology suitable for OA.
  • Engineered intra-articular delivery enhances joint exposure and therapeutic efficacy.
  • This combined approach presents a viable strategy for developing novel, natural disease-modifying osteoarthritis drugs (DMOADs).

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