M2 macrophage-derived exosome-encapsulated microneedles with mild photothermal therapy for accelerated diabetic wound healing

被引:61
作者
Zeng, Junkai [1 ]
Sun, Zhenyu [2 ]
Zeng, Feihui [3 ]
Gu, Changjiang [1 ]
Chen, Xiongsheng [1 ,4 ]
机构
[1] Second Mil Med Univ, Naval Med Univ, Changzheng Hosp, Spine Ctr,Dept Orthopaed, Shanghai 200003, Peoples R China
[2] Shanghai Jiao Tong Univ, Shanghai Peoples Hosp 6, Sch Med, Dept Orthopaed, Shanghai 200233, Peoples R China
[3] Fujian Med Univ, Union Hosp, Dept Endocrinol, Fuzhou 350001, Peoples R China
[4] Shanghai Jiao Tong Univ, Shanghai Gen Hosp, Sch Med, Dept Orthopaed, Shanghai, Peoples R China
基金
中国国家自然科学基金;
关键词
Polydopamine; Exosomes; M2; macrophages; Hydrogel microneedle; Wound healing; ACTIVATION; RECOVERY; REPAIR;
D O I
10.1016/j.mtbio.2023.100649
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Due to local overactive inflammatory response and impaired angiogenesis, current treatments for diabetic wounds remain unsatisfactory. M2 macrophage-derived exosomes (MEs) have shown considerable potential in biomedical applications, especially since they have anti-inflammatory properties that modulate macrophage phenotypes. However, exosome-based strategies still have limitations, such as short half-lives and instability. Herein, we develop a double-layer microneedle-based wound dressing system (MEs@PMN) by encapsulating MEs in the needle tips and polydopamine (PDA) nanoparticles in backing layer to simultaneously suppress inflammation and improve angiogenesis at the wound site. In vitro, released MEs increased macrophage polarization towards the M2 phenotype. In addition, mild heat (40 degrees C) generated by the photosensitive PMN backing layer contributed to improved angiogenesis. More importantly, MEs@PMN also showed promising effects in diabetic rats. The un-controlled inflammatory response at the wound site was inhibited by MEs@PMN during a 14-day period; in addition, MEs and the photothermal effects produced by PMN provided a combined proangiogenic effect by improving the expression of CD31 and vWF. Collectively, this study provides a simple and efficient cell-free strategy for suppressing inflammation and promoting vascular regeneration to treat diabetic wounds.
引用
收藏
页数:12
相关论文
共 45 条
[1]   Biomaterials Functionalized with MSC Secreted Extracellular Vesicles and Soluble Factors for Tissue Regeneration [J].
Brennan, Meadhbh A. ;
Layrolle, Pierre ;
Mooney, David J. .
ADVANCED FUNCTIONAL MATERIALS, 2020, 30 (37)
[2]   Microneedle-based technology for cell therapy: current status and future directions [J].
Chen, Bo Zhi ;
Zhao, Ze Qiang ;
Shahbazi, Mohammad-Ali ;
Guo, Xin Dong .
NANOSCALE HORIZONS, 2022, 7 (07) :715-728
[3]  
Chen C.Y., THERANOSTICS, V8, P2018
[4]   Polydopamine antibacterial materials [J].
Fu, Yu ;
Yang, Lei ;
Zhang, Jianhua ;
Hu, Junfei ;
Duan, Gaigai ;
Liu, Xianhu ;
Li, Yiwen ;
Gu, Zhipeng .
MATERIALS HORIZONS, 2021, 8 (06) :1618-1633
[5]  
Fu Z., 2022, ENG REGEN, V3, P163, DOI [10.1016/j.engreg.2022.04.003, DOI 10.1016/J.ENGREG.2022.04.003]
[6]   Bacterial infection microenvironment-responsive porous microspheres by microfluidics for promoting anti-infective therapy [J].
Gao, Yang ;
Ma, Qingming .
SMART MEDICINE, 2022, 1 (01)
[7]   Macrophage activation and its role in repair and pathology after spinal cord injury [J].
Gensel, John C. ;
Zhang, Bei .
BRAIN RESEARCH, 2015, 1619 :1-11
[8]   Recent advances in engineered polymeric materials for efficient photodynamic inactivation of bacterial pathogens [J].
Gnanasekar, Sathishkumar ;
Kasi, Gopinath ;
He, Xiaodong ;
Zhang, Kai ;
Xu, Liqun ;
Kang, En-Tang .
BIOACTIVE MATERIALS, 2023, 21 :157-174
[9]   Antibacterial approaches in tissue engineering using metal ions and nanoparticles: From mechanisms to applications [J].
Godoy-Gallardo, Maria ;
Eckhard, Ulrich ;
Delgado, Luis M. ;
de Roo Puente, Yolanda J. D. ;
Hoyos-Nogues, Mireia ;
Javier Gil, F. ;
Perez, Roman A. .
BIOACTIVE MATERIALS, 2021, 6 (12) :4470-4490
[10]   Whole-body hyperthermia induces up-regulation of vascular endothelial growth factor accompanied by neovascularization in cardiac tissue [J].
Gong, Bin ;
Asimakis, Gregory K. ;
Chen, Zhenping ;
Albrecht, Thomas B. ;
Boor, Paul J. ;
Pappas, Todd C. ;
Bell, Brent ;
Motamedi, Massoud .
LIFE SCIENCES, 2006, 79 (19) :1781-1788