Zhang Xia, Edwards Justin P, Mosser David M
Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD, USA.
Methods Mol Biol. 2009;531:123-43. doi: 10.1007/978-1-59745-396-7_9.
Over the past three decades many techniques for expressing exogenous genes in a variety of cells and cell lines have been developed. Exogenous gene expression in macrophages has lagged behind that of other nonhematopioetic cells. There are many reasons for this, but most are due to technical difficulties associated with transfecting macrophages. As professional phagocytes, macrophages are endowed with many potent degradative enzymes that can disrupt nucleic acid integrity and make gene transfer into these cells an inefficient process. This is especially true of activated macrophages which undergo a dramatic change in their physiology following exposure to immune or inflammatory stimuli. Viral transduction of these cells has been hampered because macrophages are end-stage cells that generally do not divide; therefore, some of the vectors that depend on integration into a replicative genome have met with limited success. Furthermore, macrophages are quite responsive to "danger signals," and therefore several of the original viral vectors that were used for gene transfer induced potent anti-viral responses in these cells making these vectors inappropriate for gene delivery. Many of these difficulties have been largely overcome, and relatively high efficiency gene expression in primary human or murine macrophages is becoming more routine. In the present chapter we discuss some of the gene expression techniques that have met with success and review the advantages and disadvantages of each.
在过去三十年里,已经开发出了许多在各种细胞和细胞系中表达外源基因的技术。巨噬细胞中外源基因的表达落后于其他非造血细胞。原因有很多,但大多数是由于与转染巨噬细胞相关的技术困难。作为专业吞噬细胞,巨噬细胞具有许多强大的降解酶,这些酶会破坏核酸的完整性,使基因转移到这些细胞的过程效率低下。在接触免疫或炎症刺激后生理状态会发生显著变化的活化巨噬细胞尤其如此。这些细胞的病毒转导受到阻碍,因为巨噬细胞是终末细胞,通常不分裂;因此,一些依赖整合到复制基因组中的载体取得的成功有限。此外,巨噬细胞对“危险信号”反应相当灵敏,因此,最初用于基因转移的几种病毒载体在这些细胞中引发了强烈的抗病毒反应,使得这些载体不适用于基因递送。其中许多困难已基本克服,在原代人或小鼠巨噬细胞中实现相对高效的基因表达正变得越来越常见。在本章中,我们将讨论一些已取得成功的基因表达技术,并综述每种技术的优缺点。