State Key Laboratory of Pharmaceutical Biotechnology, Department of Sports Medicine and Adult Reconstructive Surgery, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, 321 Zhongshan Road, Nanjing 210008, Jiangsu, People's Republic of China.
National and Local Joint Engineering Research Center of Biomedical Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, China.
ACS Nano. 2021 Aug 24;15(8):13339-13350. doi: 10.1021/acsnano.1c03177. Epub 2021 Jul 29.
The microneedle (MN) provides a promising strategy for transdermal delivery of exosomes (EXO), in which the therapeutic effects and clinical applications are greatly reduced by the fact that EXO can only partially reach the injury site by passive diffusion. Here, we designed a detachable MN array to deliver EXO modified by a nitric oxide nanomotor (EXO/MBA) for Achilles tendinopathy (AT) healing. With the releasing of EXO/MBA, l-arginine was converted to nitric oxide by NOS or ROS as the driving force. Benefiting from the motion ability and the property of MPC tending to lower pH, EXO could accumulate at the injury site more efficiently. This work demonstrated that EXO/MBA-loaded MN notably suppressed the inflammation of AT, facilitated the proliferation of tendon cells, increased the expression of Col1a, and prevented extracellular matrix degradation, indicating its potential value in enthesiopathy healing and other related biomedical fields.
微针(MN)为外泌体(EXO)的经皮递药提供了一种有前景的策略,但 EXO 只能通过被动扩散部分到达损伤部位,这大大降低了其治疗效果和临床应用。在这里,我们设计了一种可拆卸的 MN 阵列,用于递送经一氧化氮纳米马达(NOX)修饰的 EXO(EXO/MBA)以治疗跟腱病(AT)。随着 EXO/MBA 的释放,NOS 或 ROS 将 l-精氨酸转化为一氧化氮作为驱动力。得益于运动能力和 MPC 倾向于降低 pH 值的特性,EXO 能够更有效地在损伤部位聚集。这项工作表明,负载 EXO/MBA 的 MN 显著抑制了 AT 的炎症,促进了腱细胞的增殖,增加了 Col1a 的表达,并防止了细胞外基质的降解,表明其在腱病愈合和其他相关生物医学领域具有潜在价值。