Injectable and biodegradable piezoelectric hydrogel for osteoarthritis treatment

Author:

Vinikoor TraORCID,Dzidotor Godwin K.,Le Thinh T.,Liu YangORCID,Kan Ho-Man,Barui Srimanta,Chorsi Meysam T.ORCID,Curry Eli J.ORCID,Reinhardt Emily,Wang Hanzhang,Singh Parbeen,Merriman Marc A.ORCID,D’Orio EthanORCID,Park JinyoungORCID,Xiao Shuyang,Chapman James H.ORCID,Lin Feng,Truong Cao-Sang,Prasadh Somasundaram,Chuba Lisa,Killoh Shaelyn,Lee Seok-WooORCID,Wu Qian,Chidambaram Ramaswamy M.,Lo Kevin W. H.,Laurencin Cato T.ORCID,Nguyen Thanh D.ORCID

Abstract

AbstractOsteoarthritis affects millions of people worldwide but current treatments using analgesics or anti-inflammatory drugs only alleviate symptoms of this disease. Here, we present an injectable, biodegradable piezoelectric hydrogel, made of short electrospun poly-L-lactic acid nanofibers embedded inside a collagen matrix, which can be injected into the joints and self-produce localized electrical cues under ultrasound activation to drive cartilage healing. In vitro, data shows that the piezoelectric hydrogel with ultrasound can enhance cell migration and induce stem cells to secrete TGF-β1, which promotes chondrogenesis. In vivo, the rabbits with osteochondral critical-size defects receiving the ultrasound-activated piezoelectric hydrogel show increased subchondral bone formation, improved hyaline-cartilage structure, and good mechanical properties, close to healthy native cartilage. This piezoelectric hydrogel is not only useful for cartilage healing but also potentially applicable to other tissue regeneration, offering a significant impact on the field of regenerative tissue engineering.

Funder

U.S. Department of Health & Human Services | NIH | National Institute of Arthritis and Musculoskeletal and Skin Diseases

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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