Injectable Antioxidant and Oxygen-Releasing Lignin Composites to Promote Wound Healing

被引:21
作者
Balaji, Swathi [1 ,2 ]
Short, Walker D. [1 ,2 ]
Padon, Benjamin W. [1 ,2 ]
Belgodere, Jorge A. [3 ]
Jimenez, Sarah E. [3 ]
Deoli, Naresh T. [4 ]
Guidry, Anna C. [3 ]
Green, Justin C. [3 ]
Prajapati, Tanuj J. [1 ,2 ]
Farouk, Fayiz [1 ,2 ]
Kaul, Aditya [1 ,2 ]
Son, Dongwan [5 ]
Jung, Olivia S. [3 ]
Astete, Carlos E. [3 ]
Kim, Myungwoong [5 ]
Jung, Jangwook P. [3 ]
机构
[1] Texas Childrens Hosp, Dept Surg, Div Pediat Surg, Houston, TX 77030 USA
[2] Texas Childrens Hosp, Baylor Coll Med, Feigin Ctr, Houston, TX 77030 USA
[3] Louisiana State Univ, Dept Biol Engn, Baton Rouge, LA 70803 USA
[4] Univ Louisiana Lafayette, Louisiana Accelerator Ctr, Lafayette, LA 70506 USA
[5] Inha Univ, Dept Chem & Chem Engn, Incheon 22212, South Korea
基金
新加坡国家研究基金会; 美国国家科学基金会; 美国国家卫生研究院;
关键词
lignosulfonate; wound healing; reactive oxygen species; calcium peroxide; vascularization; CALCIUM PEROXIDE; HYDROGELS; TISSUE; MICROSPHERES; ACTIVATION;
D O I
10.1021/acsami.2c22982
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The application of engineered biomaterials for wound healing has been pursued since the beginning of tissue engineering. Here, we attempt to apply functionalized lignin to confer antioxidation to the extracellular microenvironments of wounds and to deliver oxygen from the dissociation of calcium peroxide for enhanced vascularization and healing responses without eliciting inflammatory responses. Elemental analysis showed 17 times higher quantity of calcium in the oxygen releasing nanoparticles. Lignin composites including the oxygen generating nanoparticles released around 700 ppm oxygen per day at least for 7 days. By modulating the concentration of the methacrylated gelatin, we were able to maintain the injectability of lignin composite precursors and the stiffness of lignin composites suitable for wound healing after photo-cross-linking. In situ formation of lignin composites with the oxygen-releasing nanoparticles enhanced the rate of tissue granulation, the formation of blood vessels, and the infiltration of alpha-smooth muscle actin+ fibroblasts into the wounds over 7 days. At 28 days after surgery, the lignin composite with oxygen-generating nanoparticles remodeled the collagen architecture, resembling the basket-weave pattern of unwounded collagen with minimal scar formation. Thus, our study shows the potential of functionalized lignin for wound-healing applications requiring balanced antioxidation and controlled release of oxygen for enhanced tissue granulation, vascularization, and maturation of collagen.
引用
收藏
页码:18639 / 18652
页数:14
相关论文
共 66 条
[1]   Oxygen-Generating Photo-Cross-Linkable Hydrogels Support Cardiac Progenitor Cell Survival by Reducing Hypoxia-Induced Necrosis [J].
Alemdar, Neslihan ;
Leijten, Jeroen ;
Camci-Unal, Gulden ;
Hjortnaes, Jesper ;
Ribas, Joao ;
Paul, Arghya ;
Mostafalu, Pooria ;
Gaharwar, Akhilesh K. ;
Qiu, Yiling ;
Sonkusale, Sameer ;
Liao, Ronglih ;
Khademhosseini, Ali .
ACS BIOMATERIALS SCIENCE & ENGINEERING, 2017, 3 (09) :1964-1971
[2]   Advances in Controlled Oxygen Generating Biomaterials for Tissue Engineering and Regenerative Therapy [J].
Asammakhi, Nureddin ;
Darabi, Mohammad Ali ;
Kehr, Nermin Seda ;
Erdem, Ahmet ;
Hu, Shu-kai ;
Dokmeci, Mehmet R. ;
Nasr, Ali S. ;
Khademhosseini, Ali .
BIOMACROMOLECULES, 2020, 21 (01) :56-72
[3]   Lignin-Graft-Poly(lactic-co-glycolic) Acid Biopolymers for Polymeric Nanoparticle Synthesis [J].
Astete, Carlos E. ;
De Mel, Judith U. ;
Gupta, Sudipta ;
Noh, YeRim ;
Bleuel, Markus ;
Schneider, Gerald J. ;
Sabliov, Cristina M. .
ACS OMEGA, 2020, 5 (17) :9892-9902
[4]   Self-assembly of a renewable lignin biopolymer in nanoparticles with multiple morphologies [J].
Bao, Dandan ;
Xie, Yuntao ;
Ma, Shenglin ;
Wu, Zhibing ;
Piao, Ji-Gang .
JOURNAL OF APPLIED POLYMER SCIENCE, 2019, 136 (21)
[5]  
Belgodere J. A., ACS BIOMATER SCI
[6]   Modulating Mechanical Properties of Collagen-Lignin Composites [J].
Belgodere, Jorge A. ;
Zamin, Syed A. ;
Kalinoski, Ryan M. ;
Astete, Carlos E. ;
Penrod, Joseph C. ;
Hamel, Katie M. ;
Lynn, Bert C. ;
Rudra, Jai S. ;
Shi, Jian ;
Jung, Jangwook P. .
ACS APPLIED BIO MATERIALS, 2019, 2 (08) :3562-3572
[7]  
Blatt SE, 2020, TISSUE ENG PART C-ME, V26, P156, DOI [10.1089/ten.tec.2019.0309, 10.1089/ten.TEC.2019.0309]
[8]   Hydrogels for cardiac tissue engineering [J].
Camci-Unal, Gulden ;
Annabi, Nasim ;
Dokmeci, Mehmet R. ;
Liao, Ronglih ;
Khademhosseini, Ali .
NPG ASIA MATERIALS, 2014, 6 :e99-e99
[9]   Anti-oxidant activity reinforced reduced graphene oxide/alginate microgels: Mesenchymal stem cell encapsulation and regeneration of infarcted hearts [J].
Choe, Goeun ;
Kim, Seon-Wook ;
Park, Junggeon ;
Park, Junha ;
Kim, Semin ;
Kim, Yong Sook ;
Ahn, Youngkeun ;
Jung, Da-Woon ;
Williams, Darren R. ;
Lee, Jae Young .
BIOMATERIALS, 2019, 225
[10]   Advanced Glycation End Products (AGES) Induce Apoptosis of Fibroblasts by Activation of NLRP3 Inflammasome via Reactive Oxygen Species (ROS) Signaling Pathway [J].
Dai, Jiezhi ;
Chen, Hua ;
Chai, Yimin .
MEDICAL SCIENCE MONITOR, 2019, 25 :7499-7508