The application prospect of metal/metal oxide nanoparticles in the treatment of osteoarthritis

Author:

Luo Junchao,Zhang Yin,Zhu Senbo,Tong Yu,Ji Lichen,Zhang Wei,Zhang Qiong,Bi Qing

Abstract

AbstractThe current understanding of osteoarthritis is developing from a mechanical disease caused by cartilage wear to a complex biological response involving inflammation, oxidative stress and other aspects. Nanoparticles are widely used in drug delivery due to its good stability in vivo and cell uptake efficiency. In addition to the above advantages, metal/metal oxide NPs, such as cerium oxide and manganese dioxide, can also simulate the activity of antioxidant enzymes and catalyze the degradation of superoxide anions and hydrogen peroxide. Degrading of metal/metal oxide nanoparticles releases metal ions, which may slow down the progression of osteoarthritis by inhibiting inflammation, promoting cartilage repair and inhibiting cartilage ossification. In present review, we focused on recent research works concerning osteoarthritis treating with metal/metal oxide nanoparticles, and introduced some potential nanoparticles that may have therapeutic effects.

Funder

Medical Health Science and Technology Project of Zhejiang Provincial Health Commission

Publisher

Springer Science and Business Media LLC

Subject

Pharmacology,General Medicine

Reference98 articles.

1. Abelha TF, Neumann PR, Holthof J, Dreiss CA, Alexander C, Green M, Dailey LA (2019) Low molecular weight PEG-PLGA polymers provide a superior matrix for conjugated polymer nanoparticles in terms of physicochemical properties, biocompatibility and optical/photoacoustic performance. J Mater Chem B 7(33):5115–5124. https://doi.org/10.1039/c9tb00937j ([Journal Article; Research Support, Non-U.S. Gov’t])

2. Abramoff B, Caldera FE (2020) Osteoarthritis: pathology, diagnosis, and treatment options. Med Clin North Am 104(2):293–311. https://doi.org/10.1016/j.mcna.2019.10.007 ([Journal Article; Review])

3. Adebayo OA, Akinloye O, Adaramoye OA (2020) Cerium oxide nanoparticles attenuate oxidative stress and inflammation in the liver of diethylnitrosamine-treated mice. Biol Trace Elem Res 193(1):214–225. https://doi.org/10.1007/s12011-019-01696-5 ([Journal Article])

4. Agarwal H, Nakara A, Shanmugam VK (2019) Anti-inflammatory mechanism of various metal and metal oxide nanoparticles synthesized using plant extracts: a review. Biomed Pharmacother 109:2561–2572. https://doi.org/10.1016/j.biopha.2018.11.116 ([Journal Article; Review])

5. Ahn EY, Lee YJ, Choi SY, Im AR, Kim YS, Park Y (2018) Highly stable gold nanoparticles green-synthesized by upcycling cartilage waste extract from yellow-nose skate (Dipturus chilensis) and evaluation of its cytotoxicity, haemocompatibility and antioxidant activity. Artif Cells Nanomed Biotechnol 46(sup2):1108–1119. https://doi.org/10.1080/21691401.2018.1479710 ([Journal Article])

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