期刊文献+

Targeting Therapy of Choroidal Neovascularization by Use of Polypeptide-and PEDF-loaded Immunoliposomes under Ultrasound Exposure 被引量:4

Targeting Therapy of Choroidal Neovascularization by Use of Polypeptide-and PEDF-loaded Immunoliposomes under Ultrasound Exposure
在线阅读 下载PDF
导出
摘要 Pigment epithelium derived factor (PEDF) has been proven to be an effective drug for the treatment of choroidal neovascularization (CNV).However,the lack of ideal administration route is the biggest bottleneck preventing PEDF from wider clinical use.In this study,we developed a novel PEDF-carrying system which employed immuno-nano-liposomes (INLs) under ultrasound exposure.PEDF-loaded INLs were prepared by conjugating nanoliposomes to the peptide ATWLPPR specifically targeting the receptor-2 for vascular endothelial growth factor (VEGFR-2) and reversely encapsuling PEDF.RF/6A cells were incubated with PEDF-loaded INLs.CNV models of BN rats were injected with PEDF-loaded INLs.MTT assay was used to evaluate the cytotoxicity of the INLs on RF/6A cells.Flow cytometry was conducted to detect the apoptotic rate of cells.Laser scanning confocal microscopy was employed to observe the binding and transmitting process of PEDF-loaded INLs and to calculate the area of CNV in the rat model.The results showed that the PEDF-loaded INLs could exclusively bind to CNV but not to the normal choroidal vessels.The CNV area was significantly decreased in PEDF treatment groups in comparison with control group (P【0.05).Moreover,PEDF-loaded INLs exposed under ultrasound were more efficient in reducing the CNV area (P【0.05).It was concluded that INLs in combination with ultrasonic exposure can transmit PEDF into cytoplasma with high specificity and efficiency,which strengthens the inhibitory effects of PEDF on CNV and reduces its side effects.PEDF-loaded INLs possibly represent a new treatment paradigm for patients with ocular neovascularization. Pigment epithelium derived factor (PEDF) has been proven to be an effective drug for the treatment of choroidal neovascularization (CNV).However,the lack of ideal administration route is the biggest bottleneck preventing PEDF from wider clinical use.In this study,we developed a novel PEDF-carrying system which employed immuno-nano-liposomes (INLs) under ultrasound exposure.PEDF-loaded INLs were prepared by conjugating nanoliposomes to the peptide ATWLPPR specifically targeting the receptor-2 for vascular endothelial growth factor (VEGFR-2) and reversely encapsuling PEDF.RF/6A cells were incubated with PEDF-loaded INLs.CNV models of BN rats were injected with PEDF-loaded INLs.MTT assay was used to evaluate the cytotoxicity of the INLs on RF/6A cells.Flow cytometry was conducted to detect the apoptotic rate of cells.Laser scanning confocal microscopy was employed to observe the binding and transmitting process of PEDF-loaded INLs and to calculate the area of CNV in the rat model.The results showed that the PEDF-loaded INLs could exclusively bind to CNV but not to the normal choroidal vessels.The CNV area was significantly decreased in PEDF treatment groups in comparison with control group (P<0.05).Moreover,PEDF-loaded INLs exposed under ultrasound were more efficient in reducing the CNV area (P<0.05).It was concluded that INLs in combination with ultrasonic exposure can transmit PEDF into cytoplasma with high specificity and efficiency,which strengthens the inhibitory effects of PEDF on CNV and reduces its side effects.PEDF-loaded INLs possibly represent a new treatment paradigm for patients with ocular neovascularization.
出处 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2010年第6期798-803,共6页 华中科技大学学报(医学英德文版)
基金 supported by a grant from National Natural Sciences Foundation of China(No.30600691,30811260207)
关键词 choroidal neovascularization pigment epithelium derived factor ULTRASOUND NANOMETER IMMUNOLIPOSOME choroidal neovascularization pigment epithelium derived factor ultrasound nanometer immunoliposome
  • 相关文献

参考文献2

二级参考文献10

  • 1Yang T, Choi MK, Cui FD, et al. Preparation and evaluation of paclitaxel-loaded PEGylated immunoliposome[J]. J Control Re lease,2007,120(3) : 169- 77.
  • 2Gulati M, Bajad S, Singh S, et al. Development of liposomal amphotericin B formulation[J]. J Microencapsul, 1998,15(2) :137-51.
  • 3Loraine Tirand, Celine Frochot, Regis Vanderesse, et al. A peptide competing with VEGF165 binding on neuropilin-1 mediates targeting of a chlorin-type photosensitizer and potentiates its photodynamic activity in human endothelial cells[J]. Journal of Controlled Release, 2006,111 ( 1 2 ) : 153-164.
  • 4Tatsuhiro Ishida, Debbie LI, Theresa MA. A combinatorial approach to producing sterically stabilized(Stealth) immunoliposomal drugs[J]. Federation of European Biochemical Societies Letters, 1999,46(1(1 ) : 129-133.
  • 5Shehata T, Ogawara K, Higaki K, et al. Prolongation of residence time of liposome by surface-modification with mixture of hydrophilic polymers[J],Int J Pharm,2008,359(1-2):272-279.
  • 6Ceh B, Lasie DD. A Rigorous Theory of Remote Loading of Drugs into Liposomes: Transmembrane Potential and Induced pH-Gradi ent Loading and Leakage of Liposomes[J]. Journal of Colloid and Interface Science, 1997,185( 1 ) :9-18.
  • 7Chakrabarti AC, Clark Lewis I, Harrigan PR, et al. Uptake of basic amino acids and peptides into liposomes in response to trans membrane pH gradiems[J]. Biophysical Journal , 1992,61: 228-234.
  • 8Chakrabarti AC, Clark-Lewis I, Cullis PR. Influence of charge, charge distribution, and hydrophobicity on the transport of short model peptides into liposomes in response to transmembrane pH gradients[J]. Biochemistry, 1994,33(28) :8479-8485.
  • 9Sung HH,Yoshie Maitani,Xian-Rong Qi, et al. Remote loading of dielofenae, insulin and fluoreseein isothioeyanate labeled insulin into liposomes by pH and aeetate gradient methods[J]. International Journal of Pharmaceutics, 1999,179: 85-95.
  • 10S. Patricia Becerra Focus on Molecules:Pigment epithelium-derived factor(PEDF) [J]. Experiment Eye Research, 2006,82 :739-740.

共引文献4

同被引文献6

引证文献4

二级引证文献10

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