Comparative Rheological Characterization of Hyaluronic Acid Viscosupplements for Synovial Fluid Restoration in Osteoarthritis and Knee Biomechanics

Synovial fluid (SF) rheological properties deteriorate progressively in knee osteoarthritis (OA) due to a reduction in hyaluronic acid (HA) concentration and molecular weight, compromising joint lubrication and load distribution. Restoring these properties through intra-articular viscosupplementation with HA is a widely used therapeutic strategy. However, commercially available linear HA formulations differ substantially in their mechanical behavior, and single-parameter assessments are insufficient for capturing their functional differences. In this study, eight commercially available intra-articular linear HA hydrogels—TrHLINE 1%®, TrHLINE 2%®, Hyalubrix®, Hyalgan Bio®, Pronolis® HD 2.5%, Biolevox™ HA ONE 2.5%, Suplasyn®, and Arthrum H 2%®—were evaluated under standardized conditions using steady-state viscosity, mechanical stress response, first normal stress difference (N1), storage and loss moduli (G′, G″), loss factor (tan δ), and elasticity percentage. Results revealed three distinct functional profiles: lubricant-oriented with low to moderate structural organization (Hyalgan Bio®, Suplasyn®, TrHLINE 1%®); balanced viscoelastic with sustained structural persistence (TrHLINE 2%®, Hyalubrix®, Arthrum H 2%®); and high initial rigidity with reduced dynamic persistence (Biolevox™ HA ONE 2.5%, Pronolis® HD 2.5%). These findings demonstrate that multi-parametric rheological benchmarking effectively discriminates functional differences among HA viscosupplements and supports indication-oriented product selection based on OA severity and patient mechanical demand.

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Publication Details

Journal
Gels
Published
2026-09-30
DOI
https://doi.org/10.3390/gels12100882
Primary Topic
Osteoarthritis Treatment and Mechanisms
Type
article
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article

Comparative Rheological Characterization of Hyaluronic Acid Viscosupplements for Synovial Fluid Restoration in Osteoarthritis and Knee Biomechanics

Amaia Huguet-Casquero, Alejandro Melero, Ander Pino, Claudia Goenaga Ibeas et al.
Gels
Osteoarthritis Treatment and Mechanisms
article

Comparative Rheological Characterization of Hyaluronic Acid Viscosupplements for Synovial Fluid Restoration in Osteoarthritis and Knee Biomechanics

Amaia Huguet-Casquero, Alejandro Melero, Ander Pino, Claudia Goenaga Ibeas, Nagore Martínez de Cestafe, José Marı́a Alonso, Raúl Pérez González, Miguel Ucelay López de Heredia
article en

Abstract

Synovial fluid (SF) rheological properties deteriorate progressively in knee osteoarthritis (OA) due to a reduction in hyaluronic acid (HA) concentration and molecular weight, compromising joint lubrication and load distribution. Restoring these properties through intra-articular viscosupplementation with HA is a widely used therapeutic strategy. However, commercially available linear HA formulations differ substantially in their mechanical behavior, and single-parameter assessments are insufficient for capturing their functional differences. In this study, eight commercially available intra-articular linear HA hydrogels—TrHLINE 1%®, TrHLINE 2%®, Hyalubrix®, Hyalgan Bio®, Pronolis® HD 2.5%, Biolevox™ HA ONE 2.5%, Suplasyn®, and Arthrum H 2%®—were evaluated under standardized conditions using steady-state viscosity, mechanical stress response, first normal stress difference (N1), storage and loss moduli (G′, G″), loss factor (tan δ), and elasticity percentage. Results revealed three distinct functional profiles: lubricant-oriented with low to moderate structural organization (Hyalgan Bio®, Suplasyn®, TrHLINE 1%®); balanced viscoelastic with sustained structural persistence (TrHLINE 2%®, Hyalubrix®, Arthrum H 2%®); and high initial rigidity with reduced dynamic persistence (Biolevox™ HA ONE 2.5%, Pronolis® HD 2.5%). These findings demonstrate that multi-parametric rheological benchmarking effectively discriminates functional differences among HA viscosupplements and supports indication-oriented product selection based on OA severity and patient mechanical demand.

GelsVol. 12(10)
Reduced inequalities, Peace, Justice and strong institutions
Openalex Percentile: Top 10%
Osteoarthritis Treatment and Mechanisms
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