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一锅法合成具有抗炎症多酶模拟活性的铁/氮掺杂中空碳纳米球

One-Pot Synthesis of Fe/N-Doped Hollow Carbon Nanospheres with Multienzyme Mimic Activities against Inflammation.

作者信息

Fan Lei, Sun Peizheng, Huang Yaling, Xu Zhilong, Lu Ximing, Xi Juqun, Han Jie, Guo Rong

机构信息

School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, 225002, China.

Institute of Translational Medicine, Department of Pharmacology, School of Medicine, Yangzhou University, Yangzhou, 225002, China.

出版信息

ACS Appl Bio Mater. 2020 Feb 17;3(2):1147-1157. doi: 10.1021/acsabm.9b01079. Epub 2020 Jan 24.

Abstract

Inflammation, including infectious and noninfectious inflammation, are a growing threat to public health worldwide. For different types of inflammation, more specific and intensified therapy is needed. Nanozymes are able to regulate levels of radical reactive oxygen species (ROS) to suppress inflammation, becoming potential anti-inflammatory agents. Herein, hollow porous carbon spheres codoped with nitrogen and iron (Fe/N-HCNs) are synthesized through a one-pot strategy, which exerted multienzyme mimicking activities, including peroxidase (POD)-, oxidase (OXD)-, catalase (CAT)-, and superoxide dismutase (SOD)-like activities. Moreover, these activities were promoted by the removal of iron oxides produced in the synthesis process. Based on the study of multienzyme activities, we designed two kinds of animal inflammatory models, bacteria-infected wound and inflammatory bowel disease, to evaluate the anti-inflammation ability of Fe/N-HCNs. The results indicated that Fe/N-HCNs could increase ROS levels through performing their POD-like activity in a weak acid environment to catalyze HO against bacteria-infected wound healing, whereas Fe/N-HCNs with the capability of scavenging ROS in a neutral environment could also be unitized to treat noninfectious inflammatory bowel disease. Together, our study provided evidence that the prominent multienzyme activities of Fe/N-HCNs could be used as an anti-inflammatory alternative for both infectious and noninfectious inflammation.

摘要

炎症,包括感染性和非感染性炎症,正日益威胁着全球公众健康。对于不同类型的炎症,需要更具针对性和强化的治疗方法。纳米酶能够调节活性氧自由基(ROS)水平以抑制炎症,成为潜在的抗炎剂。在此,通过一锅法合成了氮铁共掺杂的中空多孔碳球(Fe/N-HCNs),其具有多种酶模拟活性,包括过氧化物酶(POD)、氧化酶(OXD)、过氧化氢酶(CAT)和超氧化物歧化酶(SOD)样活性。此外,通过去除合成过程中产生的氧化铁,这些活性得到了增强。基于对多种酶活性的研究,我们设计了两种动物炎症模型,即细菌感染伤口和炎症性肠病,以评估Fe/N-HCNs的抗炎能力。结果表明,Fe/N-HCNs可在弱酸环境中通过发挥其类POD活性来提高ROS水平,从而催化HO促进细菌感染伤口愈合,而在中性环境中具有清除ROS能力的Fe/N-HCNs也可用于治疗非感染性炎症性肠病。总之,我们的研究证明,Fe/N-HCNs突出的多种酶活性可作为治疗感染性和非感染性炎症的抗炎替代物。

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