Intra-Articular Hyaluronic Acid in Osteoarthritis and Tendinopathies: Molecular and Clinical Approaches

Author:

Costa Fabio Ramos1,Costa Marques Mariana Ramos1,Costa Vinicius Calumby1,Santos Gabriel Silva2ORCID,Martins Rubens Andrade3ORCID,Santos Marcia da Silva4,Santana Maria Helena Andrade5ORCID,Nallakumarasamy Arulkumar6ORCID,Jeyaraman Madhan78ORCID,Lana João Vitor Bizinotto9,Lana José Fábio Santos Duarte2

Affiliation:

1. Department of Orthopaedics, FC Sports Traumatology Clinic, Salvador 40296-210, Brazil

2. Department of Orthopaedics, Brazilian Institute of Regenerative Medicine, Indaiatuba 13334-170, Brazil

3. Medical School, Tiradentes University Center, Maceió 57038-800, Brazil

4. Department of Nutritional Sciences, Metropolitan Union of Education and Culture, Salvador 42700-000, Brazil

5. School of Chemical Engineering, The University of Campinas, Campinas 13083-852, Brazil

6. Department of Orthopaedics, All India Institute of Medical Sciences, Bhubaneswar 751019, Odisha, India

7. Department of Orthopaedics, ACS Medical College and Hospital, Dr MGR Educational and Research Institute, Chennai 600056, Tamil Nadu, India

8. Department of Biotechnology, School of Engineering and Technology, Sharda University, Greater Noida 201310, Uttar Pradesh, India

9. Medical School, Max Planck University Center, Indaiatuba 13343-060, Brazil

Abstract

Musculoskeletal diseases continue to rise on a global scale, causing significant socioeconomic impact and decreased quality of life. The most common disorders affecting musculoskeletal structures are osteoarthritis and tendinopathies, complicated orthopedic conditions responsible for major pain and debilitation. Intra-articular hyaluronic acid (HA) has been a safe, effective, and minimally invasive therapeutic tool for treating these diseases. Several studies from bedside to clinical practice reveal the multiple benefits of HA such as lubrication, anti-inflammation, and stimulation of cellular activity associated with proliferation, differentiation, migration, and secretion of additional molecules. Collectively, these effects have demonstrated positive outcomes that assist in the regeneration of chondral and tendinous tissues which are otherwise destroyed by the predominant catabolic and inflammatory conditions seen in tissue injury. The literature describes the physicochemical, mechanical, and biological properties of HA, their commercial product types, and clinical applications individually, while their interfaces are seldom reported. Our review addresses the frontiers of basic sciences, products, and clinical approaches. It provides physicians with a better understanding of the boundaries between the processes that lead to diseases, the molecular mechanisms that contribute to tissue repair, and the benefits of the HA types for a conscientious choice. In addition, it points out the current needs for the treatments.

Publisher

MDPI AG

Subject

General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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