Transfection of a mouse dendritic cell line by plasmid DNA-loaded PLGA microparticles in vitro

被引:26
|
作者
Jilek, S
Zurkaulen, H
Pavlovic, J
Merkle, HP
Walter, E
机构
[1] ETH, Dept Chem & Appl Biosci, Swiss Fed Inst Technol, CH-8057 Zurich, Switzerland
[2] Univ Zurich, Inst Med Virol, Zurich, Switzerland
关键词
poly(lactide-co-glycolide) (PLGA); antigen-presenting cells; transfection; microparticles; dendritic cells; DNA;
D O I
10.1016/j.ejpb.2004.03.038
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Targeting of DC for DNA vaccination may be achieved by DNA-loaded poly(lactide-co-glycolide) (PLGA) biodegradable microparticles, since DC efficiently capture these microparticles in vitro and in vivo. DNA was encapsulated in PLGA microparticles by spray-drying. Various additives were tested and process parameters adjusted in order to prevent degradation of the DNA during encapsulation. The highest degree of supercoiled DNA was maintained by adding a strong buffering agent, such as PBS or NaHCO3, whereas the cryoprotective lactose did not show a significant protective effect. DNA-containing PLGA microparticles were administered to a mouse DC line. Transfection efficacy was compared with commonly employed cationic transfectants and was visually assessed by green fluorescent protein expression. Transfection rate was very low in DC for all microparticle formulations and was comparable with commonly used cationic transfectants. It is concluded that the transfection of DC using PLGA microparticles is feasible, but efforts need to be undertaken to improve transfection efficiency in vitro, which may in addition lead to improved immune responses in vivo. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:491 / 499
页数:9
相关论文
共 50 条
  • [21] In vitro studies of tumor cell transfection with plasmid DNA in a cationic lipid vector.
    Hersh, EM
    Stopeck, AT
    Warnecke, J
    Brailey, J
    Parker, S
    Norman, J
    CANCER GENE THERAPY, 1996, 3 (06) : P28 - P28
  • [22] Spatially and temporally controlled gene transfer by electroporation into adherent cells on plasmid DNA-loaded electrodes
    Yamauchi, F
    Kato, K
    Iwata, H
    NUCLEIC ACIDS RESEARCH, 2004, 32 (22) : e187
  • [23] Studies of effective factors of plasmid DNA-loaded chitosan microspheres I.: Plasmid size, chitosan concentration and plasmid addition techniques
    Aral, C
    Özbas-Turan, S
    Kabasakal, L
    Keyer-Uysal, M
    Akbuga, J
    STP PHARMA SCIENCES, 2000, 10 (01): : 83 - 88
  • [24] Relationship between plasmid DNA topological forms and in vitro transfection
    Chancham, P
    Hughes, JA
    JOURNAL OF LIPOSOME RESEARCH, 2001, 11 (2-3) : 139 - 152
  • [25] OPTIMIZATION OF ELECTROPORATION PARAMETERS FOR TRANSFECTION OF PLASMID DNA INTO MURINE BONE MARROW-DERIVED DENDRITIC CELL
    柯山
    陈雪华
    黎皓
    李建芳
    顾琴龙
    朱正纲
    刘炳亚
    上海第二医科大学学报(外文版), 2006, (02) : 71 - 76
  • [26] BMP-2 plasmid DNA-loaded chitosan films - A new strategy for bone engineering
    Li, Juan
    Lin, Jun
    Yu, Wenke
    Song, Xiaojia
    Hu, Qiaoling
    Xu, Jing-Hong
    Wang, Huiming
    Mehl, Christian
    JOURNAL OF CRANIO-MAXILLOFACIAL SURGERY, 2017, 45 (12) : 2084 - 2091
  • [27] DNA-loaded microbubbles with crosslinked bovine serum albumin shells for ultrasound-promoted gene delivery and transfection
    Du, Jianwei
    Zhao, Xiao
    Li, Bangbang
    Mou, Yun
    Wang, Youxiang
    COLLOIDS AND SURFACES B-BIOINTERFACES, 2018, 161 : 279 - 287
  • [28] Coating of cochlear implant electrodes with bioactive DNA-loaded calcium phosphate nanoparticles for the local transfection of stimulatory proteins
    Wey, Karolin
    Schirrmann, Ronja
    Diesing, Detlef
    Lang, Stephan
    Brandau, Sven
    Hansen, Stefan
    Epple, Matthias
    BIOMATERIALS, 2021, 276
  • [29] Transfection of murine dendritic cell line (JAWS II) by a nonviral transfection reagent
    Awasthi, S
    Cox, RA
    BIOTECHNIQUES, 2003, 35 (03) : 600 - +
  • [30] SYNTHESIS, CHARACTERIZATION AND in vitro CYTOTOXICITY OF Acacia mearnsii PROANTHOCYANIDIN-LOADED PLGA MICROPARTICLES
    Grasel, Fabio dos S.
    Behrens, Michele C.
    Strassburger, Debora
    Einloft, Sandra
    Diz, Fernando M.
    Morrone, Fernanda B.
    Wolf, Carlos R.
    Ligabue, Rosane A.
    BRAZILIAN JOURNAL OF CHEMICAL ENGINEERING, 2019, 36 (01) : 239 - 250