Related Experiment Video
Updated: Mar 31, 2026

Characterization of Intra-Cartilage Transport Properties of Cationic Peptide Carriers
Published on: August 10, 2020
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.
Abstract:
Osteoarthritis (OA) is a whole-joint disorder in which cartilage, synovium, subchondral bone, meniscus, and the infrapatellar fat pad deteriorate under chronic inflammatory and mechanical stress. To date, no disease-modifying osteoarthritis drug (DMOAD) has reached approval, largely due to single-pathway targeting, insufficient joint-specific exposure, and heterogeneous OA phenotypes. Polyphenols and flavonoids are well-known natural compounds and have been extensively studied for their potential applications in OA and drug delivery. This review looks beyond commonly known polyphenols and flavonoids to profile underexplored natural chemotypes with intrinsically multi-node biology and credible potential for intra-articular (IA) translation: alkaloids, phytosteroids/withanolides, phytosterols, rare triterpenoids, marine sulfated polysaccharides, polynucleotides, humic/fulvic (including Shilajit-derived) fractions, and plant-derived oligosaccharides. For each class, this review summarizes mechanisms (anti-inflammatory, anti-catabolic, pro-anabolic, anti-angiogenic, and redox/mitochondrial) and OA-relevant evidence across pre-clinical and clinical models. Connections are then drawn between pharmacology and delivery science, including IA depots (PLGA microspheres), shear-thinning or in-situ gelling hydrogels, and advanced options such as lipidic/polymeric nanocarriers, cartilage-binding motifs, and stimuli-responsive linkers (e.g., ROS/MMP-cleavable), alongside distilling practical design rules: particle size for joint retention, charge/affinity for cartilage penetration, and compartment-aware targeting of synovium versus osteochondral interfaces. Collectively, engineered joint exposure paired with multi-node natural pharmacology offers a plausible route to first-in-class natural DMOADs.
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).
Related Concept Videos
Drug Delivery: Miscellaneous Routes
Oral inhalation and nasal sprays swiftly transfer drugs across the respiratory epithelium's mucosal layer. Inhaled glucocorticoids and bronchodilators directly target lung conditions such as asthma, while fluticasone nasal spray mitigates allergic rhinitis.
Transdermal patches transport drugs...
Drug Delivery Systems: Different Types
Drugs for Treatment of Crohn's Disease in IBD Using Biologic Agents: Anti-TNF
Prescription, Nonprescription and Orphan Drugs
The misuse and addiction to prescription drugs is a growing problem that can affect people of all age groups, specifically teenagers. This can happen when prescription medications are used in ways not intended by the prescriber, such as taking someone else's prescription or using medication for...
Modified-Release Drug Delivery Systems: Overview
Oral Drug Delivery Systems: Delayed-Release Systems

