Lubricating Microneedles System with Multistage Sustained Drug Delivery for the Treatment of Osteoarthritis

Author:

Chen Kexin12,Zhao Yanlong3,Zhao Weiwei4,Mao Xiaowei3,Li Dan2,Wang Yuguang1,Shang Shaomei2,Zhang Hongyu3ORCID

Affiliation:

1. Center of Digital Dentistry/Department of Prosthodontics Peking University School and Hospital of Stomatology National Center of Stomatology National Clinical Research Center for Oral Diseases National Engineering Laboratory for Digital and Material Technology of Stomatology Beijing Key Laboratory of Digital Stomatology NHC Research Center of Engineering and Technology for Computerized Dentistry Beijing 100081 China

2. School of Nursing Peaking of University Beijing 100191 China

3. State Key Laboratory of Tribology in Advanced Equipment Department of Mechanical Engineering Tsinghua University Beijing 100084 China

4. Department of Biomaterials School and Hospital of Stomatology Cheeloo College of Medicine Shandong University Shandong Provincial Key Laboratory of Oral Tissue Regeneration Shandong Provincial Engineering Laboratory for Dental Materials and Oral Tissue Regeneration Shandong Provincial Clinical Research Center for Oral Diseases Jinan 250012 China

Abstract

AbstractOsteoarthritis (OA) is a typical joint degenerative disease that is prevalent worldwide and significantly affects the normal activities of patients. Traditional treatments using diclofenac (DCF) as an anti‐inflammatory drug by oral administration and transdermal delivery have many inherent deficiencies. In this study, a lubricating microneedles (MNs) system for the treatment of osteoarthritis with multistage sustained drug delivery and great reduction in skin damage during MNs penetration is developed. The bilayer dissolvable MNs system, namely HA‐DCF@PDMPC, is prepared by designating the composite material of hyaluronic acid (HA) and covalently conjugated drug compound (HA‐DCF) as the MNs tips and then modifying the surface of MNs tips with a self‐adhesive lubricating copolymer (PDMPC). The MNs system is designed to achieve sustained drug release of DCF via ester bond hydrolysis, physical diffusion from MNs tips, and breakthrough of lubrication coating. Additionally, skin damage is reduced due to the presence of the lubrication coating on the superficial surface. Therefore, the lubricating MNs with multistage sustained drug delivery show good compliance as a transdermal patch for OA treatment, which is validated from anti‐inflammatory cell tests and therapeutic animal experiments, down‐regulating the expression levels of pro‐inflammatory factors and alleviating articular cartilage destruction.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Natural Science Foundation of Shandong Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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