期刊文献+

载IR-780与多柔比星温敏脂质体的制备与表征 被引量:1

Preparation and characterization of thermo-sensitive liposomes loaded with IR-780 and doxorubicin
下载PDF
导出
摘要 目的制备同时包封IR-780和多柔比星(DOX)的温敏脂质体并进行表征。方法采用薄膜水化法及硫酸铵梯度法制备载IR-780和DOX温敏脂质体(DOX-IR-780thermo-sensitive liposome,DITSL)。采用Malvern激光粒度仪检测各脂质体的粒径、表面电位及多分散系数(PDI);采用激光诱导DITSL升温释药,检测各脂质体的释药特性。结果 IR-780和DOX同时被包封于温敏脂质体,成功制备得DITSL。IR-780和DOX的包封率分别为(94.47±8.57)%、(92.52±7.61)%;平均粒径(138.98±8.74)nm;略带负电位;PDI为0.32±0.02。激光0.8 W/cm2照射5min,温度最高升到54.2℃,DOX释药率达80.1%。结论 DITSL具有药物包封率较高、粒径大小适宜、光热转化效率高、温度敏感性好的优点,并可通过激光控制释药,为下一步光热-化疗联合治疗肿瘤的研究奠定了基础。 ObjectiveTo prepare and characterize a thermo sensitive liposomes co loaded with IR-780and doxorubicin(DOX).MethodsMembrane hydration method and ammonium sulfate gradient method were used to prepare IR-780/DOX thermo sensitive liposomes(DITSL).The particle size,zeta potential and polydispersity coefficient(PDI)of liposomes were measured by Malvern laser particle size analyzer,and the drug release characteristic of DITSL induced by laser was also detected.ResultsDITSL loading both IR-780and DOX was successfully prepared.The encapsulation efficiency of IR-780and DOX was(94.47±8.57)%and(92.52±7.61)%,respectively;the average particle size was(138.98±8.74)nm,with slight negative potential;the PDI was0.32±0.02.The drug release rate of DITSL was about80.1%after laser radiation(0.8W/cm2,5min)and the highest temperature of DITSL was54.2℃.ConclusionThe prepared DITSL has high drug encapsulation efficiency,appropriate particle size,high photo thermal conversion efficiency,good temperature sensitivity and laser induced thermal drug release property,which lays a foundation study for the combination treatment of tumors with photo thermal therapy and chemotherapy.
作者 李叶阔 段琬璐 唐家伟 何晶玲 严飞 郑海荣 LI Ye-kuo;DUAN Wan-lu;TANG Jia-wei;HE Jing-ling;YAN Fei;ZHENG Hai-rong(Department of Ultrasound, General Hospital of PLA Guangzhou Military Area Command, Guangzhou 510010, Guangdong, China;Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, Guangdong, China)
出处 《第二军医大学学报》 CAS CSCD 北大核心 2017年第10期1336-1339,共4页 Academic Journal of Second Military Medical University
基金 广东省自然科学基金(2016A030313611) 广东省科技计划项目(2014A020212255) 全军医学科研"十二五"计划课题(CWS12J076)~~
关键词 温敏脂质体 多柔比星 IR-780 光热疗法 药物疗法 thermo sensitive liposomes doxorubicin IR-780 photo thermal therapy drug therapy
  • 相关文献

参考文献1

二级参考文献11

  • 1Halsted CP, Benson JR, Jatoi 1. A historical aecount of breast cancer surgery: beware of local recurrence but be not radical[ J ]. Future Oncol, 2014, 10(9) : 1649-1657.
  • 2Jang B, Park JY, Tung CH, et al. Gold nanorod-photosensitizer complex for near-infrared fluorescence imaging and photodynamic/photothermal therapy in vivo[ J ]. ACS Nano, 2011, 5(2) : 1086-1094.
  • 3Wang Y, Liu T, Zhang E, el al. Preferential accumulation of the near infrared heptamethine dye IR-780 in the mitochondria of drug-resistant lung cancer cells [ J ]. Biomaterials, 2014, 35 (13) : 4116-4124.
  • 4Yu J, Javier D, Yaseen MA, et al. Self-assembly synthesis, tumor cell tmgeting, and photothermal capabilities of antibody- coated indocyanine green nanocapsules [ J ]. J Am Chem Soc, 2010, 132(6) :1929-1938.
  • 5Sun TM, Du JZ, ao YD, et al. Simultaneous delivery of siRNA and paclitaxel via a " two-in-one " micelleplex promotes synergistic tumor suppression [ J ]. ACS Nano, 2011, 5 ( 2 ) : 1483-1494.
  • 6Zheng M, Yue C, Ma Y, et al. Single-step assembly of DOX/ 1CG loaded lipid--polymer nanoparticles hr highly effective chemo-photothermal combination therapy[ J]. ACS Nano, 2013, 7(3) : 2056-2067.
  • 7Ahmad MZ, Akhter S, Rahman Z, et al. Nanometric gold in cancer nanotechnology: current status mad future prospect [ J ]. Pharm Pharmacol, 2013, 65(5): 634-651.
  • 8Zheng C, Zheng M, Gong P, et al. Indocyanine green-Ioaded bi- odegradable tumor targeting nanoprobes for in vitro and in vivo imaging[ J]. Biomateri',ds, 2012, 33(22) : 5603-5609.
  • 9Tang Y, MeGoron AJ. Combined effects of laser-lCG photother- motherapy and doxorubicin chemotherapy on ovarian cancer cells [ J ]. J Photochem Photobiol B, 2009, 97 (3) : 138-144.
  • 10Yue C, Liu P, Zheng M, et aL. 1R-780 dye Loaded tumor targeting theranostic nanoparticles for NIR imaging and photother- real therapy[ J]. Biomaterials, 2013, 34(28): 6853-6861.

同被引文献7

引证文献1

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部