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南京医科大学学报(自然科学版)                                  第41卷第6期
               ·838 ·                     Journal of Nanjing Medical University(Natural Sciences)   2021年6月


             ·基础医学·

              金纳米颗粒⁃微气泡复合材料及其体外成像和光热性能研究



              岳远斌,赵 婵,刘          昊,纪晓然,段 磊        *
              南京医科大学生物医学工程系,江苏 南京                211166






             [摘    要] 目的:构建两种结构的金纳米颗粒⁃微气泡复合材料,既能作为超声成像造影剂,又可以利用金纳米颗粒的表面等
              离激元效应进行光热转换。方法:一种是将金纳米颗粒包裹在微气泡气体内核中的包金微气泡(gold encapsulated microbub⁃
              ble,AuMB),另一种是通过共价键结合的方式将金纳米颗粒装载到微气泡表面的载金微气泡(polyethyleneimine⁃gold loaded mi⁃
              crobubble,PEI⁃AuMB),对这两类金纳米颗粒⁃微气泡复合材料进行理化性质的表征,通过体外超声成像评估其超声造影能力,
              通过体外光热实验评估其光热转换能力。结果:两种复合结构的微气泡均显示出比空白微气泡(microbubble,MB)更好的超声
              造影能力,其中PEI⁃AuMB在超声造影增强的持续时间上有更好的表现;两种复合结构的微气泡也显示出比单纯金纳米颗粒更优
              异的光热转换能力,AuMB有更好的光热治疗潜力。结论:金纳米颗粒⁃微气泡复合材料是具有潜力的诊疗一体化载体系统。
             [关键词] 微气泡;金纳米颗粒;造影剂;超声成像;光热治疗

             [中图分类号] R318                    [文献标志码] A                         [文章编号] 1007⁃4368(2021)06⁃838⁃09
              doi:10.7655/NYDXBNS20210608



              Controlled assembly of gold nanoparticles on microbubbles for ultrasound imaging and
              photothermal therapy in vitro

                                                                 *
              YUE Yuanbin,ZHAO Chan,LIU Hao,JI Xiaoran,DUAN Lei
              Department of Biomedical Engineering,Nanjing Medical University,Nanjing 211166,China


             [Abstract] Objective:Two gold nanoparticle⁃microbubble composites with different structures were constructed,which can be used
              as ultrasound imaging contrast agents and for photothermal conversion using the surface plasmonic excitonic effect of gold
              nanoparticles. Methods:One is gold encapsulated microbubble(AuMB)with gold nanoparticles encapsulated in a microbubble gas
              core,and the other is polyethyleneimine⁃gold loaded microbubble(PEI⁃AuMB)with gold nanoparticles loaded onto the microbubble
              surface by covalent bonding. These gold nanoparticle⁃microbubble composites were characterized for their physicochemical properties,

              and their ultrasound contrast capabilities were evaluated by in vitro ultrasound imaging. Their photothermal conversion ability was
              evaluated by in vitro photothermal experiments. Results:Both composite microbubbles showed better ultrasonography ability than
              blank microbubble(MB),among which PEI⁃AuMB showed better performance in the duration of ultrasonography enhancement;both
              composite microbubbles also showed superior photothermal conversion ability than gold nanoparticles alone,and AuMB had better
              photothermal therapeutic potential. Conclusion:All these results demonstrates that gold nanoparticle ⁃ microbubble composites are
              promising carrier systems for therapeutic integration.
             [Key words] microbubbles;gold nanoparticles;contrast agents;ultrasound imaging;photothermal therapy
                                                                            [J Nanjing Med Univ,2021,41(06):838⁃846]





                                                                     金纳米颗粒(gold nanoparticl,AuNP)作为一种
                                                                等离激元纳米颗粒,具有良好的光热转换特性,可
             [基金项目] 国家自然科学基金(81701833);国家重点研发
              计划(2019YFA0210104)                                以高效吸收特定波长的光,通过表面等离激元共振
                                                                                                         [1]
              ∗                                                 作用实现光热转换,是一种优异的光热治疗剂 ,同
              通信作者(Corresponding author),E⁃mail: duanlei@njmu.edu.cn
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