[ 参 考 文 献 ]
[ 1 ] ON ISH I Y, ESH ITA Y, MURASH ITA A, et al. Characteristics of DEAE2dextran2MMA graft copolymer as a nonviral gene carrier[ J ]. N anom edicine, 2007, 3 (3) : 184 - 191.
[ 2 ] JACOBSEN F, H IRSCH T, MITTLER D, et al. Polybrene improves transfection efficacy of recombinant rep lication2deficient adenovirus in cutaneous cells and burned skin [ J ]. J Gene Med,2006, 8 (2) : 138 - 146.
[ 3 ] WU GY, WU CH. Recep ter2miediated in vitro gene transformation by a soluble DNA carrier system [ J ]. J B iol Chem , 1987,262 (10) : 4429 - 4432.
[ 4 ] FUNHOFF AM, VAN NOSTRUM CF, LOKMC, et al. Cationic polymethacrylates with covalently linked membrane destabilizing peptides as gene delivery vectors[ J ]. J Control Release, 2005,101 (123) : 233 - 246.
[ 5 ] BROWN MD, SCHATZLEIN A, BROWNL IE A, et al. Preliminary characterization of novel amino acid based polymeric vesicles as gene and drug delivery agents, Bioconjug [ J ]. Chem istry,2000, 11 (6) : 880 - 891.
[ 6 ] OKUDA T, SUGIYAMA A, N IIDOME T, et al. Characters of dendritic poly (L 2lysine) analogues with the terminal lysines replaced with arginines and histidines as gene carriers in vitro[ J ].Biom aterials, 2004, 25 (3) : 537 - 544.
[ 7 ] KIM YH, GIHM SH, PARK CR, et al. Structural characteristics of size2controlled self2aggregates of deoxycholic acid2modified chitosan and their app lication as a DNA delivery carrier[ J ]. B ioconjug Chem , 2001, 12 (6) : 932 - 938.
[ 8 ] YOO HS, LEE JE, CHUNG H, et al. Self2assembled nanoparticles containing hydrophobically modified glycol chitosan for genedelivery[ J ]. J Control Release, 2005, 103 (1) : 235 - 243.
[ 9 ] GAO S, CHEN J, XU X, et al. Galactosylated low molecular weight chitosan asDNA carrier for hepatocyte2targeting[ J ]. Int JPharm , 2003, 255 (122) : 57 - 68.
[ 10 ] KIM TH, PARK IK, NAH JW, et al. Galactosylated chitosan /DNA nanoparticles p repared using water2soluble chitosan as agene carrier[ J ]. B iom aterials, 2004, 25 (17) : 3783 - 3792.
[ 11 ] ZUO A, SUN P, L IANGD, et al. Imp roved transfection efficiency of CS/DNA comp lex by co2transfected chitosanase gene [ J ].Int J Pharm , 2008: 352 (122) : 302 - 308.
[ 12 ] LUNGW ITZ U, BREUN IGM, BLUNK T, et al. Polyethyleniminebased non2viral gene delivery systems [ J ]. Eur J Pharm Biopharm , 2005, 60 (2) : 247 - 266.
[ 13 ] GODBEYWT, WU KK, MIKOS AG. Poly( ethyleneimine) mediated gene delivery affects endothelial cell function and viability[ J ]. B iom aterials, 2001, 22 (5) : 471 - 480.
[ 14 ] BRUS C, PETERSEN H, A IGNER A, et al. Efficiency of polyethylenimines and polyethylenimine2graft2poly ( ethyleneglycol )block copolymers to p rotect oligonucleotides against enzymaticdegradation[ J ]. Eur J Pharm B iopharm , 2004, 57 ( 3) : 427 -430.
[ 15 ] KIRCHEIS R, SCHULLER S, BRUNNER S, et al. Polycationbased DNA comp lexes for tumor2targeted gene delivery in vivo[ J ]. J GeneM ed, 1999, 1 (2) : 111 - 120.
[ 16 ] HAN SO, MAHATO R I, KIM SW. Water2soluble lipopolymer for gene delivery[ J ]. B ioconjug Chem , 2001, 12 ( 3 ) : 337 -345.
[ 17 ] KIM YH, PARK JH, LEEM, et al. Polyethylenimine with acidlabile linkages as a biodegradable gene carrier[ J ]. J Control Release, 2005, 103 (1) : 209 - 219.
[ 18 ] MUKHERJEE K, SEN J, CHAUDHUR IA. Common co2lip ids,in synergy, impart high gene transfer p roperties to transfection incompetent cationic lip ids [ J ]. FEBS Lett, 2005, 579 ( 5 ) :1291 - 1300.
[ 19 ] NAKAN ISH IM, UCH IDA T, SUGAWA H, et al. Efficient introduction of contents of liposomes into cell using HVJ ( Sendai virus) [ J ]. Exp Cell Res, 1985, 159 (2) : 399 - 409.
[ 20 ] TOKUNAGA M, HAZEMOTO N, YOTSUYANAGI T, et a l.Effect of oligopep tides on gene exp ression: comparison of DNA /pep tide and DNA /pep tide / liposome comp lexes [ J ]. Int J
Pharm , 2004, 269 (1) : 71 - 80.
[ 21 ] MAEDA T, FUJ IMOTO K. A reduction2triggered delivery by aliposomal carrier possessing membrane2permeable ligands and adetachable coating[ J ]. Colloids Surf B B iointerfaces, 2006, 49(1) : 15 - 21.
[ 22 ] MA ITRA A. Calcium phosphate nanoparticles: second2generation nonviral vectors in gene therapy [ J ]. Expert Rev M ol D iagn,2005, 5 (6) : 893 - 905.
[ 23 ] B ISHT S, BHAKTA G, MA ITRA S, et al. pDNA loaded calcium phosphate nanoparticles: highly efficient non2viral vector forgene delivery[ J ]. Int J Pharm , 2005, 288 (1) : 157 - 168.
[ 24 ] GOTHELF A, M IR LM, GEHL J. Electrochemotherapy: results of cancer treatment using enhanced delivery of bleomycin by electroporation[ J ]. Cancer Treat Rev, 2003, 29 (5) : 371 - 387.
[ 25 ] ANDRE F, M IR LM. DNA electrotransfer: its p rincip les and an updated review of its therapeutic app lications[ J ]. Gene Therapy,2004, 11 ( Supp l 1) : S33 - S42.
[ 26 ] DEAN DA, MACHADO2ARANDA D, BLA IR2PARKS K, et al.Electroporation as a method for high2level nonviral gene transfer to the lung[ J ]. Gene Ther, 2003, 10 (18) : 1608 - 1615.
[ 27 ] KUSUMANTO YH, MULDER NH, DAM WA, et al. Imp rovement of in vivo transfer of p lasmid DNA in muscle: comparison of electroporation versus ultrasound [ J ]. D rug Deliv, 2007, 14(5) : 273 - 277.
[ 28 ] VALERO A, POST JN, VAN N IEUWKASTEELE JW, et al.Gene transfer and p rotein dynamics in stem cells using single cell electroporation in a microfluidic device [ J ]. Lab Chip, 2008, 8(1) : 62 - 67.
[ 29 ] IONESCU2ZANETTI C, BLATZ A, KH INE M, et al. Electrophoresis2assisted single2cell electroporation for efficient intracellular delivery[ J ]. B iom edM icrodevices, 2008, 10 (1) : 113 - 116.
[ 30 ] TAN IYAMA Y, TACH IBANA K, H IRAOKA K, et al. Development of safe and efficient novel nonviral gene transfer using ultrasound: enhancement of transfection efficiency of naked p lasmid DNA in skeletal muscle [ J ]. Gene Ther, 2002, 9 ( 6 ) : 372 -380.
[ 31 ] FRENKEL PA, CHEN S, THA I T, et al. DNA2loaded albumin microbubbles enhance ultrasound2mediated transfection in vitro[ J ]. U ltrasound M ed B iol, 2002, 28 (6) : 817 - 822.
[ 32 ] YAMASH ITA Y, et al. In vivo gene transfer into muscle via electrosonoporation[ J ]. Hum Gene Ther, 2002, 13 ( 17 ) : 2079 -2084.
[ 33 ] SUZUKI R, TAKIZAWA T, NEGISH I Y, et al. Tumor specific ultrasound enhanced gene transfer in vivo with novel liposomal bubbles[ J ]. J Control Release, 2008, 125 (2) : 137 - 144.
[ 34 ] SUZUKI R, TAKIZAWA T, NEGISH I Y, et al. Effective gene delivery with novel liposomal bubbles and ultrasonic destruction technology[ J ]. Int J Pharm , 2008, 354 (122) : 49 - 55.
[ 35 ] MATSUOKA H, KOMAZAKI T, MUKA IY, et al. High throughput easymicroinjection with a single2cellmanipulation supporting robot[ J ]. J B iotechnol, 2005, 116 (2) : 185 - 194.
[ 36 ] DEROUAZIM, FLACTION R, GIRARD P, et al. Generation of recombinant Chinese hamster ovary cell lines by microinjection[ J ]. B iotechnol Lett, 2006, 28 (6) : 373 - 382.
[ 37 ] AKITA H, TAN IMOTOM, MASUDA T, et al. Evaluation of the nuclear delivery and intra2nuclear transcrip tion of p lasmid DNA condensed with micro (mu) and NLS2micro by cytop lasmic and nuclear microinjection: a comparative study with poly2L2lysine[ J ]. J GeneM ed, 2006, 8 (2) : 198 - 206.
[ 38 ] D ILEO J, MILLER J r TE, CHESNOY S, et al. Gene transfer to subdermal tissues via a new gene gun design [ J ]. Hum Gene Ther, 2003, 14 (1) : 79 - 87.
[ 39 ] L IANA WN, CHANGB CH, CHEND YJ, et al. Intracellular delivery can be achieved by bombarding cells or tissues with accelerated molecules or bacteria without the need for carrier particles[ J ]. Exp Cell Res, 2007, 313 (1) : 53 - 64.
[ 40 ] SCHERER F, ANTONM, SCH ILL INGER U, et al. Magnetofection: enhancing and targeting gene delivery by magnetic force in vitro and in vivo[ J ]. Gene Ther, 2002, 9 (2) : 102 - 109.
[ 41 ] ZEIRA E, MANEV ITCH A, KHATCHATOUR IANTS A, et al.Femtosecond infrared laser2an efficient and safe in vivo gene delivery system for p rolonged exp ression [ J ]. M ol Ther, 2003, 8(2) : 342 - 350.
来源:中国新药杂志 作者:李鹏,尚明美,宋海峰