Linger Rebecca J, Belikoff Esther J, Yan Ying, Li Fang, Wantuch Holly A, Fitzsimons Helen L, Scott Maxwell J
Department of Entomology, North Carolina State University, Campus Box 7613, Raleigh, NC, 27695-7613, USA.
Institute of Fundamental Sciences, Massey University, Palmerston North, New Zealand.
BMC Biotechnol. 2016 Mar 22;16:30. doi: 10.1186/s12896-016-0263-z.
Diabetes and its concurrent complications impact a significant proportion of the population of the US and create a large financial burden on the American health care system. FDA-approved maggot debridement therapy (MDT), the application of sterile laboratory-reared Lucilia sericata (green bottle fly) larvae to wounds, is a cost-effective and successful treatment for diabetic foot ulcers and other medical conditions. Human platelet derived growth factor-BB (PDGF-BB) is a secreted dimeric peptide growth factor that binds the PDGF receptor. PDGF-BB stimulates cell proliferation and survival, promotes wound healing, and has been investigated as a possible topical treatment for non-healing wounds. Genetic engineering has allowed for expression and secretion of human growth factors and other proteins in transgenic insects. Here, we present a novel concept in MDT technology that combines the established benefits of MDT with the power of genetic engineering to promote healing. The focus of this study is to create and characterize strains of transgenic L. sericata that express and secrete PDGF-BB at detectable levels in adult hemolymph, whole larval lysate, and maggot excretions/ secretions (ES), with potential for clinical utility in wound healing.
We have engineered and confirmed transgene insertion in several strains of L. sericata that express human PDGF-BB. Using a heat-inducible promoter to control the pdgf-b gene, pdgf-b mRNA was detected via semi-quantitative PCR upon heat shock. PDGF-BB protein was also detectable in larval lysates and adult hemolymph but not larval ES. An alternative, tetracycline-repressible pdgf-b system mediated expression of pdgf-b mRNA when maggots were raised on diet that lacked tetracycline. Further, PDGF-BB protein was readily detected in whole larval lysate as well as larval ES.
Here we show robust, inducible expression and production of human PDGF-BB protein from two conditional expression systems in transgenic L. sericata larvae. The tetracycline-repressible system appears to be the most promising as PDGF-BB protein was detectable in larval ES following induction. Our system could potentially be used to deliver a variety of growth factors and anti-microbial peptides to the wound environment with the aim of enhancing wound healing, thereby improving patient outcome in a cost-effective manner.
糖尿病及其并发的并发症影响着美国相当一部分人口,并给美国医疗保健系统造成了巨大的经济负担。美国食品药品监督管理局(FDA)批准的蛆虫清创疗法(MDT),即将无菌实验室饲养的丝光绿蝇(绿头苍蝇)幼虫应用于伤口,是一种治疗糖尿病足溃疡和其他病症的经济有效且成功的疗法。人血小板衍生生长因子 - BB(PDGF - BB)是一种分泌性二聚体肽生长因子,可与PDGF受体结合。PDGF - BB刺激细胞增殖和存活,促进伤口愈合,并已作为一种可能的非愈合伤口局部治疗方法进行了研究。基因工程使得人类生长因子和其他蛋白质能够在转基因昆虫中表达和分泌。在此,我们提出了一种MDT技术的新概念,该概念将MDT已有的益处与基因工程的力量相结合以促进愈合。本研究的重点是创建并表征转基因丝光绿蝇菌株,这些菌株在成年血淋巴、幼虫全裂解物以及蛆虫排泄物/分泌物(ES)中能以可检测水平表达和分泌PDGF - BB,具有在伤口愈合中临床应用的潜力。
我们已对几种表达人PDGF - BB的丝光绿蝇菌株进行了基因工程改造并确认了转基因插入。使用热诱导启动子来控制pdgf - b基因,热休克后通过半定量PCR检测到了pdgf - b mRNA。在幼虫裂解物和成年血淋巴中也可检测到PDGF - BB蛋白,但在幼虫ES中未检测到。另一种四环素可抑制的pdgf - b系统在蛆虫饲养于不含四环素的饲料上时介导了pdgf - b mRNA的表达。此外,在幼虫全裂解物以及幼虫ES中很容易检测到PDGF - BB蛋白。
在此我们展示了在转基因丝光绿蝇幼虫中,来自两个条件表达系统的人PDGF - BB蛋白的强大、可诱导表达和产生。四环素可抑制系统似乎最具前景,因为诱导后在幼虫ES中可检测到PDGF - BB蛋白。我们的系统有可能用于将多种生长因子和抗菌肽递送至伤口环境,以增强伤口愈合,从而以经济有效的方式改善患者预后。