Proteomics in orthopedic research: Recent studies and their translational implications

Author:

Li George1ORCID,Stampas Argyrios23,Komatsu Yoshihiro45,Gao Xueqin6,Huard Johnny6,Pan Sheng578ORCID

Affiliation:

1. School of Medicine Texas A&M University Bryan Texas USA

2. Department of Physical Medicine and Rehabilitation McGovern Medical School, The University of Texas Health Science Center at Houston Houston Texas USA

3. Department of Physical Medicine and Rehabilitation TIRR Memorial Hermann Hospital Houston Texas USA

4. Department of Pediatrics McGovern Medical School, The University of Texas Health Science Center at Houston Houston Texas USA

5. Graduate Program in Genetics & Epigenetics The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences Houston Texas USA

6. Linda and Mitch Hart Center for Regenerative and Personalized Medicine Steadman Philippon Research Institute Vail Colorado USA

7. The Brown Foundation Institute of Molecular Medicine The University of Texas Health Science Center at Houston Houston Texas USA

8. Department of Integrative Biology and Pharmacology University of Texas Health Science Center at Houston Houston Texas USA

Abstract

AbstractProteomics is a growing field that offers insights into various aspects of disease processes and therapy responses. Within the field of orthopedics, there are a variety of diseases that have a poor prognosis due to a lack of targeted curative therapy or disease modifying therapy. Other diseases have been difficult to manage in part due to lack of clinical biomarkers that offer meaningful insight into disease progression or severity. As an emerging technology, proteomics has been increasingly applied in studying bone biology and an assortment of orthopedics related diseases, such as osteoarthritis, osteosarcoma and bone tumors, osteoporosis, traumatic bone injury, spinal cord injury, hip and knee arthroplasty, and fragile healing. These efforts range from mechanistic studies for elucidating novel insights in tissue activity and metabolism to identification of candidate biomarkers for diagnosis, prognosis, and targeted treatment. The knowledge gained from these proteomic and functional studies has provided unique perspectives in studying orthopedic diseases. In this review, we seek to report on the current state of the proteomic study in the field of orthopedics, overview the advances in clinically applicable discoveries, and discuss the opportunities that may guide us for future research.

Publisher

Wiley

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