乔屹, 张纯, 马燕娥, 陈嘉玲, 沈海俊. 中空硫化铜纳米粒负载去铁胺在光热抗菌及促血管生成方面的研究J. 药学学报, 2023, 58(9): 2794-2801. DOI: 10.16438/j.0513-4870.2023-0062
引用本文: 乔屹, 张纯, 马燕娥, 陈嘉玲, 沈海俊. 中空硫化铜纳米粒负载去铁胺在光热抗菌及促血管生成方面的研究J. 药学学报, 2023, 58(9): 2794-2801. DOI: 10.16438/j.0513-4870.2023-0062
QIAO Yi, ZHANG Chun, MA Yan-e, CHEN Jia-ling, SHEN Hai-jun. Hollow copper sulfide nanoparticles loading deferoxamine for photothermal antibacterial therapy and promoting angiogenesisJ. Acta Pharmaceutica Sinica, 2023, 58(9): 2794-2801. DOI: 10.16438/j.0513-4870.2023-0062
Citation: QIAO Yi, ZHANG Chun, MA Yan-e, CHEN Jia-ling, SHEN Hai-jun. Hollow copper sulfide nanoparticles loading deferoxamine for photothermal antibacterial therapy and promoting angiogenesisJ. Acta Pharmaceutica Sinica, 2023, 58(9): 2794-2801. DOI: 10.16438/j.0513-4870.2023-0062

中空硫化铜纳米粒负载去铁胺在光热抗菌及促血管生成方面的研究

Hollow copper sulfide nanoparticles loading deferoxamine for photothermal antibacterial therapy and promoting angiogenesis

  • 摘要: 糖尿病溃疡是一种难愈合性伤口, 常伴有细菌感染、组织坏死等情况, 严重影响患者生命健康与生活质量。传统的治疗方法存在细菌耐药、二次创伤等问题, 因此急需寻找新的方法以满足治疗需求。本研究制备了一种基于中空硫化铜(copper sulfide, CuS)纳米粒负载去铁胺(deferoxamine, DFO)的给药系统(DFO@CuS纳米粒), 实现了促进血管再生与光热抗菌的协同治疗。采用透射电镜、粒径分析仪等仪器对DFO@CuS纳米粒的形态结构、粒径分布等进行了表征, 利用平板涂布法评价了DFO@CuS纳米粒的抗菌效果, 通过CCK-8(cell counting kit-8)、细胞划痕、小管形成等实验评价了DFO@CuS纳米粒对人脐静脉内皮细胞(human umbilical vein endothelial cells, HUVECs)增殖、迁移及成管能力的影响。研究结果表明: DFO@CuS纳米粒在透射电镜下呈中空球形, 平均粒径在(200.9 ±8.6) nm; DFO@CuS纳米粒在近红外光照射下可有效抑制耐甲氧西林金黄色葡萄球菌、铜绿假单胞菌的生长; DFO@CuS纳米粒具有较低的细胞毒性, 在一定浓度范围内可有效促进细胞的迁移与成管。综上所述, 制备的DFO@CuS纳米粒具有良好的光热抗菌性能与促血管生成效应, 为其用于治疗慢性糖尿病溃疡提供了研究基础。

     

    Abstract: Diabetic ulcer is recognized as a chronic nonhealing wound, often associated with bacterial infection and tissue necrosis, which seriously affect patients' health and quality of life. The traditional treatment methods exist some problems, such as bacterial resistance and secondary trauma, so it is urgent to find new methods to meet the requirements of diabetic ulcer treatment. In this study, we prepared a drug delivery system (DFO@CuS nanoparticles) based on hollow copper sulfide (CuS) nanoparticles loaded with deferoxamine (DFO), which realized the synergistic therapy of promoting angiogenesis and photothermal antibacterial. The morphological structure and particle size distribution of DFO@CuS nanoparticles were characterized by transmission electron microscopy and particle size analyzer, respectively. The antibacterial effect of DFO@CuS nanoparticles was evaluated by the plate coating method. The effects of DFO@CuS nanoparticles on the proliferation, migration, and tube formation of human umbilical vein endothelial cells (HUVECs) were evaluated by CCK-8 (cell counting kit-8) assay, cell scratch assay, and tube formation assay. The results showed that DFO@CuS nanoparticles were hollow and spherical in shape with an average particle size of (200.9 ±8.6) nm. DFO@CuS nanoparticles could effectively inhibit the growth of methicillin-resistant Staphylococcus aureus (MRSA) and Pseudomonas aeruginosa (PA) under near-infrared (NIR) light irradiation. DFO@CuS nanoparticles showed negligible cytotoxicity and effective acceleration of cell migration and tube formation in a certain concentration range. In conclusion, the prepared DFO@CuS nanoparticles exhibit good photothermal antibacterial properties and pro-angiogenic effects, providing a basis for their application in the treatment of diabetic ulcer.

     

/

返回文章
返回