Nonviral vectors in the new millennium: Delivery barriers in gene transfer

被引:495
作者
Nishikawa, M [1 ]
Huang, L [1 ]
机构
[1] Univ Pittsburgh, Sch Pharm, Ctr Pharmacogenet, Pittsburgh, PA 15213 USA
关键词
D O I
10.1089/104303401750195836
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Development of an efficient method for introducing a therapeutic gene into target cells in vivo is the key issue in treating genetic and acquired diseases by gene therapy. To this end, various nonviral vectors have been designed and developed, acid some of them are in clinical trials. The simplest approach is naked DNA injection into local tissues or systemic circulation. Physical (gene gun, electroporation) and chemical (cationic lipid or polymer) approaches have also been utilized to improve the efficiency and target cell specificity of gene transfer by plasmid DNA. After administration, however, nonviral vectors encounter many hurdles that result in diminished gene transfer in target cells. Cationic vectors sometimes attract serum proteins and blood cells when entering into blood circulation, which results in dynamic changes in their physicochemical properties. To reach target cells, nonviral vectors should pass through the capillaries, avoid recognition by mononuclear phagocytes, emerge from the blood vessels to the interstitium, and bind to the surface of the target cells. They then need to be internalized, escape from endosomes, and then find a way to the nucleus, avoiding cytoplasmic degradation. Successful clinical applications of nonviral vectors will rely on a better understanding of barriers in gene transfer and development of vectors that can overcome these barriers.
引用
收藏
页码:861 / 870
页数:10
相关论文
共 123 条
  • [1] A powerful nonviral vector for in vivo gene transfer into the adult mammalian brain: Polyethylenimine
    Abdallah, B
    Hassan, A
    Benoist, C
    Goula, D
    Behr, JP
    Demeneix, BA
    [J]. HUMAN GENE THERAPY, 1996, 7 (16) : 1947 - 1954
  • [2] Enhanced gene transfer with fusogenic liposomes containing vesicular stomatitis virus G glycoprotein
    Abe, A
    Miyanohara, A
    Friedmann, T
    [J]. JOURNAL OF VIROLOGY, 1998, 72 (07) : 6159 - 6163
  • [3] HUMAN DYSTROPHIN EXPRESSION IN MDX MICE AFTER INTRAMUSCULAR INJECTION OF DNA CONSTRUCTS
    ACSADI, G
    DICKSON, G
    LOVE, DR
    JANI, A
    WALSH, FS
    GURUSINGHE, A
    WOLFF, JA
    DAVIES, KE
    [J]. NATURE, 1991, 352 (6338) : 815 - 818
  • [4] Gene transfer into muscle by electroporation in vivo
    Aihara, H
    Miyazaki, J
    [J]. NATURE BIOTECHNOLOGY, 1998, 16 (09) : 867 - 870
  • [5] DIRECT GENE-TRANSFER INTO DONOR HEARTS AT THE TIME OF HARVEST
    ARDEHALI, A
    FYFE, A
    LAKS, H
    DRINKWATER, DC
    QIAO, JH
    LUSIS, AJ
    [J]. JOURNAL OF THORACIC AND CARDIOVASCULAR SURGERY, 1995, 109 (04) : 716 - 720
  • [6] BELEHRADEK M, 1993, CANCER-AM CANCER SOC, V72, P3694, DOI 10.1002/1097-0142(19931215)72:12<3694::AID-CNCR2820721222>3.0.CO
  • [7] 2-2
  • [8] MORPHOLOGICAL CLASSIFICATIONS OF VERTEBRATE BLOOD CAPILLARIES
    BENNETT, HS
    LUFT, JH
    HAMPTON, JC
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1959, 196 (02): : 381 - 390
  • [9] pH-sensitive cationic polymer gene delivery vehicle:: N-Ac-poly(L-histidine)-graft-poly(L-lysine) comb shaped polymer
    Benns, JM
    Choi, JS
    Mahato, RI
    Park, JS
    Kim, SW
    [J]. BIOCONJUGATE CHEMISTRY, 2000, 11 (05) : 637 - 645
  • [10] Nonviral gene delivery to the rat kidney with polyethylenimine
    Boletta, A
    Benigni, A
    Lutz, J
    Remuzzi, G
    Soria, MR
    Monaco, L
    [J]. HUMAN GENE THERAPY, 1997, 8 (10) : 1243 - 1251