Chondrocyte Viability of Particulated Porcine Articular Cartilage Is Maintained in Tissue Storage After Cryoprotectant Exposure, Vitrification, and Tissue Warming

Author:

Crisol Mary1ORCID,Wu Kezhou12ORCID,Congdon Barry1,Skene-Arnold Tamara D.1,Laouar Leila1,Elliott Janet A.W.34ORCID,Jomha Nadr M.1

Affiliation:

1. Department of Surgery, University of Alberta, Edmonton, AB, Canada

2. Sports Medicine Centre, Department of Orthopedic Surgery, First Affiliated Hospital of Shantou University Medical College, Shantou, Guangdong, China

3. Department of Chemical and Materials Engineering, University of Alberta, Edmonton, AB, Canada

4. Department of Laboratory Medicine and Pathology, University of Alberta, Edmonton, AB, Canada

Abstract

Objective Vitrification of articular cartilage (AC) is a promising technique which may enable long-term tissue banking of AC allografts. We previously developed a 2-step, dual-temperature, multi-cryoprotectant agent (CPA) loading protocol to cryopreserve particulated AC (1 mm3 cubes). Furthermore, we also determined that the inclusion of ascorbic acid (AA) effectively mitigates CPA toxicity in cryopreserved AC. Prior to clinical translation, chondrocytes must remain viable after tissue re-warming and before transplantation. However, the effects of short-term hypothermic storage of particulated AC after vitrification and re-warming are not documented. This study evaluated the chondrocyte viability of post-vitrified particulated AC during a 7-day tissue storage period at 4 °C. We hypothesized that porcine particulated AC could be stored for up to 7 days after successful vitrification without significant loss of cell viability, and these results would be enhanced when cartilage is incubated in storage medium supplemented with clinical grade AA. Design Three experimental groups were examined at 5 time points: a fresh control (only incubated in medium), a vitrified − AA group, and a vitrified + AA group ( N = 7). Results There was a mild decline in cell viability but both treatment groups maintained a viability of greater than 80% viable cells which is acceptable for clinical translation. Conclusion We determined that particulated AC can be stored for up to 7 days after successful vitrification without a clinically significant decline in chondrocyte viability. This information can be used to guide tissue banks regarding the implementation of AC vitrification to increase cartilage allograft availability.

Funder

Division of Orthopaedic Surgery, University of Alberta

Publisher

SAGE Publications

Subject

Physical Therapy, Sports Therapy and Rehabilitation,Biomedical Engineering,Immunology and Allergy

Reference49 articles.

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