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Porcine Platelet Lysate Intra-articular Knee Joint Injections for the Treatment of Rabbit Cartilage Lesions and Osteoarthritis

Yi-Ho Hsieh; Yi-Chieh Chu; Jui-Ting Hsiao; Yi-Ting Shu; Ming-Fa Hsieh; Hung-Maan Lee
Journal of Medical and Biological Engineering · Vol. 43, Issue 1 · pp. 102-111 · 2023

Abstract

Purpose At present, autologous platelet-derived therapies such as platelet-rich plasma is widely used in the clinic, but allogeneic and xenogeneic therapies are currently in the research stage, mainly due to their biocompatibility in vivo. Platelet lysates depleted of antigens such as blood cells are a potential solution for allogeneic or xenogeneic applications. Platelet lysates can successfully promote the growth and differentiation of xenogeneic cells in vitro, but in vivo data are not yet available. This study aims to evaluate whether porcine platelet lysate can effectively avoid inflammatory reaction in rabbit knee joint, and then treat cartilage defect and arthritis. Methods We developed porcine platelet lysates containing undetectable antigens such as blood cells and complement. For xenogeneic application, platelet lysate was injected into rabbit knee joints to observe joint responses. To examine cartilage repair, osteochondral defects were created in rabbit knee joints. Rabbits were sacrificed three months after treatment with platelet lysate to observe cartilage regeneration and arthritis. Results The tissue sections in the rabbit knee joints showed no inflammatory reaction. Furthermore, the injection of platelet lysate was found to effectively inhibit the formation of cartilage arthritis in rabbit knee joints. Conclusion Our experimental results show that xenogeneic platelet lysate is a safe and effective method in the treatment of arthritis, which can be used as a research basis for future medical applications. The use of xenogeneic platelet lysate for regenerative therapy in vivo is feasible.

Bibliographic Information

JournalJournal of Medical and Biological Engineering
PublisherSpringer
Publication Date2023-02-01
Publication Year2023
Volume43
Issue1
Pages102-111
Document TypeJournal Article
Print ISSN1609-0985
eISSN2199-4757
DOI10.1007/s40846-023-00776-1

Access Information

NARA Access Coverage2015-01-01~Current
Journal Homepagehttps://www.springer.com/journal/40846
Publisher PageOpen Publisher Page
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