Byrnes Colman K, Malone Robert W, Akhter Nabeel, Nass Petra H, Wetterwald Antoinette, Cecchini Marco G, Duncan Mark D, Harmon John W
Section of Surgical Sciences, Johns Hopkins Medical Institutions, Johns Hopkins Bayview Medical Center, 4940 Eastern Avenue, Baltimore, MD 21224, USA.
Wound Repair Regen. 2004 Jul-Aug;12(4):397-403. doi: 10.1111/j.1067-1927.2004.012409.x.
Transfection of wounds with DNA-encoding growth factors has the potential to improve healing, but current means of nonviral gene delivery are inefficient. Repeated high doses of DNA, necessary to achieve reliable gene expression, are detrimental to healing. We assessed the ability of in vivo electroporation to enhance gene expression. Full-thickness cutaneous excisional wounds were created on the dorsum of female mice. A luciferase- encoding plasmid driven by a CMV promoter was injected at the wound border. Following plasmid administration, electroporative pulses were applied to injection sites. Pulse parameters were varied over a range of voltage, duration, and number. Animals were euthanized at intervals after transfection and the luciferase activity measured. Application of electric pulses consistently increased luciferase expression. The electroporative effect was most marked at a plasmid dose of 50 micro g, where an approximate tenfold increase was seen. Six 100- micro s-duration pulses of 1750 V/cm were found to be the most effective in increasing luciferase activity. High numbers of pulses tended to be less effective than smaller numbers. This optimal electroporation regimen had no detrimental effect on wound healing. We conclude that electroporation increases the efficiency of transgene expression and may have a role in gene therapy to enhance wound healing.
用编码生长因子的DNA转染伤口有改善愈合的潜力,但目前非病毒基因递送方法效率低下。为实现可靠的基因表达而反复使用高剂量DNA对愈合有害。我们评估了体内电穿孔增强基因表达的能力。在雌性小鼠背部制造全层皮肤切除伤口。将由巨细胞病毒(CMV)启动子驱动的编码荧光素酶的质粒注射到伤口边缘。质粒给药后,对注射部位施加电穿孔脉冲。脉冲参数在电压、持续时间和数量范围内变化。转染后每隔一段时间对动物实施安乐死并测量荧光素酶活性。施加电脉冲可持续增加荧光素酶表达。在质粒剂量为50微克时电穿孔效果最为显著,荧光素酶表达约增加了十倍。发现六个持续时间为100微秒、电压为1750伏/厘米的脉冲在增加荧光素酶活性方面最有效。高脉冲数往往不如低脉冲数有效。这种最佳电穿孔方案对伤口愈合没有不利影响。我们得出结论,电穿孔可提高转基因表达效率,可能在增强伤口愈合的基因治疗中发挥作用。