van der Wegen Pascal, Louwen Rogier, Imam Ali M, Buijs-Offerman Ruvalic M, Sinaasappel Maarten, Grosveld Frank, Scholte Bob J
Department of Cell Biology and Genetics, Erasmus Medical Center, Rotterdam, The Netherlands.
Mol Ther. 2006 Feb;13(2):374-81. doi: 10.1016/j.ymthe.2005.09.022. Epub 2005 Dec 5.
Treatment of congenital and acquired liver disease is one of the main issues in the field of gene therapy. Self-inactivating lentiviral vectors have several potential advantages over alternative systems. We have constructed a self-inactivating lentiviral vector (LV-ALBUGT) that expresses the human bilirubin UDP-glucuronosyltransferase (UGT1A1) from a liver-specific promoter. UGT1A1 is involved in the clearance of heme metabolites in the liver. This enzyme is deficient in Crigler-Najjar disease, a recessive inherited disorder in humans characterized by chronic severe jaundice, i.e., high plasma bilirubin levels. Gunn rats suffer from the same defect and are used as an animal model of this disease. We have treated juvenile Gunn rats by single intravenous injection with the LV-ALBUGT vector. Over 1 year after treatment with the highest dose (5 x 10(8) transducing units), we observed a stable reduction of bilirubin levels to near normal levels and normal secretion of bilirubin conjugates in the bile, in contrast to untreated animals. In situ hybridization showed expression of the therapeutic gene in more than 30% of liver parenchymal cells. Thus, we demonstrate stable and complete clinical remission of a congenital metabolic liver disease in an animal model, after systemic administration of a therapeutic lentiviral vector.
先天性和获得性肝病的治疗是基因治疗领域的主要问题之一。自失活慢病毒载体相对于其他系统具有若干潜在优势。我们构建了一种自失活慢病毒载体(LV-ALBUGT),它从肝脏特异性启动子表达人胆红素UDP-葡萄糖醛酸基转移酶(UGT1A1)。UGT1A1参与肝脏中血红素代谢产物的清除。这种酶在克里格勒-纳贾尔病中缺乏,该病是人类的一种隐性遗传性疾病,其特征为慢性严重黄疸,即血浆胆红素水平升高。冈恩大鼠也存在同样的缺陷,并被用作这种疾病的动物模型。我们通过单次静脉注射LV-ALBUGT载体对幼年冈恩大鼠进行了治疗。在使用最高剂量(5×10⁸转导单位)治疗1年多后,与未治疗的动物相比,我们观察到胆红素水平稳定降低至接近正常水平,且胆汁中胆红素结合物分泌正常。原位杂交显示治疗基因在超过30%的肝实质细胞中表达。因此,我们证明了在动物模型中,经全身给予治疗性慢病毒载体后,一种先天性代谢性肝病实现了稳定且完全的临床缓解。