期刊文献+

纳米运释系统脑靶向转运小分子RNA的研究及临床应用进展

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摘要 RNA干扰技术(RNAi)的发展对治疗脑部疾病展现出可观前景,而血-脑屏障在发挥保护中枢神经系统功能的同时,也阻碍各种药物运送到脑内。脑靶向运释系统研究开发实现了转运治疗性药物跨过血-脑屏障进入脑内。本文将对脑靶向运释系统的研究进展及脑靶向RNAi治疗脑部疾病的应用进行阐述,并结合靶向转运作用机制进行相关探讨,为脑靶向运释系统的设计研究和脑部疾病的治疗提供新思路。
出处 《中国微侵袭神经外科杂志》 CAS 2016年第6期280-282,共3页 Chinese Journal of Minimally Invasive Neurosurgery
基金 国家自然科学基金项目(编号:81372700)
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参考文献24

  • 1Valencia-Sanchez MA,Liu J,Hannon GJ,et al.Control of translation and m RNA degradation by mi RNAs and si RNAs[J].Genes Dev,2006,20(5):515-24.
  • 2Chen Y,Gao DY,Huang L.In vivo delivery of mi RNAs for cancer therapy:challenges and strategies[J].Adv Drug Deliv Rev,2015,81:128-141.
  • 3刘洋,蒋晨.纳米药物递释系统的脑靶向研究进展[J].药学学报,2013,48(10):1532-1543. 被引量:22
  • 4Lin Q,Chen J,Zhang Z,et al.Lipid-based nanoparticles in the systemic delivery of si RNA[J].Nanomedicine(Lond),2014,9(1):105-120.
  • 5Dominska M,Dykxhoorn DM.Breaking down the barriers:si RNA delivery and endosome escape[J].J Cell Sci,2010,123(Pt 8):1183-1189.
  • 6Scott RW,Wilson OM,Crooks RM.Synthesis,characterization,and applications of dendrimer-encapsulated nanoparticles[J].J Phys Chem B,2005,109(2):692-704.
  • 7Wu W,Li R,Bian X,et al.Covalently combining carbon nanotubes with anticancer agent:preparation and antitumor activity[J].ACS Nano,2009,3(9):2740-2750.
  • 8Zomer A,Vendrig T,Hopmans ES,et al.Exosomes:Fit to deliver small RNA[J].Commun Integr Biol,2010,3(5):447-450.
  • 9王爽,李其禄,翟光喜.脑靶向给药系统研究进展[J].中国医药工业杂志,2012,43(2):137-142. 被引量:6
  • 10Pardridge WM.BBB-Genomics:creating new openings for brain-drug targeting[J].Drug Discov Today,2001,6(8):381-383.

二级参考文献157

  • 1陈展虹.碳纳米管结构概述[J].福建教育学院学报,2003(10):76-83. 被引量:8
  • 2Rainov NG, Ren H. Gene therapy for human malignant brain tumors [J]. Cancer J, 2003, 9 ( 3 ) : 180 - 188.
  • 3Lowenstein PR, Mandel RJ, Xiong WD, et al. Immune responses to adenovirus and adeno-associated vectors used for gene therapy of brain diseases : the role of immunological synapses in understanding the cell biology of neuroimmune interactions [ J ]. Curr Gene Ther, 2007, 7(5) :347 -360.
  • 4de Lima MC, da Cruz MT, Cardoso AL, et al. Liposomal and viral vectors for gene therapy of the central nervous system [J]. Curt Drug Targets CNS Neurol Disord, 2005, 4(4) :453 -465.
  • 5Huang RQ, Qu YH, Ke WL. et al. Efficient gene delivery targeted to the brain using a transferrin-conjugated polyethyleneglycolmodified polyamidoamine dendrimer [J]. FASEB J, 2007, 21 (4): 1117-1125.
  • 6da Cruz MT, Cardoso AL, de Almeida LP, et al. Tf-lipoplexmediated NGF gene transfer to the CNS: neuronal protection and reeovery in an excitotoxic model of brain injury[J]. Gerte Ther, 2005, 12(16) :1242 -1252.
  • 7Xia CF, Boado RJ, Pardridge WM. Antibody-mediated targeting of siRNA via the human insulin receptor using avidin-biotin technology[J]. Mol Pharm, 2009, 6(3) :747 -751.
  • 8Zhang Y, Zhang YF, Bryant J, et al. Intravenous RNA interference gene therapy targeting the human epidermal growth factor receptor prolongs survival in intracranial brain cancer [ J ]. Clin Cancer Res, 2004, 10( 11 ) :3667 - 3677.
  • 9Lu W, Sun Q, Wan J, et al. Cationic albumin-conjugated pegylated nanoparticles allow gene delivery into brain tumors via intravenous administration [J]. Cancer Res, 2006, 66 (24) : 11878 - 11887.
  • 10Huang R, Yang W, Jiang C. Gene deliver)., into brain capillary endothelial cells using Antp-modified DNA-loaded nanoparticles [J]. Chem Pharm Bull (Tokyo), 2006, 54(9) :1254- 1258.

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