Hodish Israel, Tal Reshef, Shaish Aviv, Varda-Bloom Nira, Greenberger Shoshana, Rauchwerger Ariela, Breitbart Eyal, Bangio Livnat, Ben-Shushan Dikla, Pfeffer Raphael, Feder Bela, Waitsman Ana, Barshack Iris, Goldberg Iris, Mazaki-Tovi Shaly, Peled Michael, Harats Dror
Vascular Biogenics Ltd., Or-Yehuda, Israel.
Cancer Biol Ther. 2009 Mar;8(5):424-32. doi: 10.4161/cbt.8.5.7589. Epub 2009 Mar 19.
Transcription-targeted gene delivery directed against angiogenic endothelial cells is a new approach against advanced cancer. Moreover, the herpes simplex virus-thymidine kinase (HSV-TK) gene coupled with low dose radiotherapy is an efficient and externally controlled cytotoxic system. We have previously demonstrated enhanced endothelial-specific cell expression and killing using the modified murine pre-proendothelin-1 promoter (PPE1-3x) to direct adenoviral expression of a pro-apoptotic gene. The purpose of this study was to create an externally potentiated systemic antiangiogenic gene delivery system based on an adenoviral vector expressing HSV-TK under the regulation of PPE1-3X promoter combined with radiotherapy for eradicating metastatic cancer. Ad-PPE1-3x-TK induced endothelial-specific cell killing in-vitro upon introduction of the prodrug ganciclovir (GCV). BALB/c mice bearing a primary CT-26 colon carcinoma tumor showed tumor growth suppression and diminished tumor angiogenesis when the vector was administered intravenously, activated with GCV and potentiated with a single sub-therapeutic and non-toxic radiation dose. Moreover, intravenous administration of the vector, activated with GCV and potentiated with chest aimed radiation, to C57BL/6 mice bearing Lewis lung carcinoma metastases resulted in prolongation of mice survival. PPE1-3x-regulated HSV-TK expression was detected only in lung metastases in contrast to CMV-regulated expression. This novel system may benefit patients with metastatic disease.
针对血管生成性内皮细胞的转录靶向基因递送是一种治疗晚期癌症的新方法。此外,单纯疱疹病毒胸苷激酶(HSV-TK)基因与低剂量放疗相结合是一种高效的外部可控细胞毒性系统。我们之前已经证明,使用修饰的小鼠前内皮素-1启动子(PPE1-3x)来指导促凋亡基因的腺病毒表达,可以增强内皮细胞特异性表达和杀伤作用。本研究的目的是创建一种基于腺病毒载体的外部增强型全身抗血管生成基因递送系统,该载体在PPE1-3X启动子的调控下表达HSV-TK,并结合放疗以根除转移性癌症。引入前体药物更昔洛韦(GCV)后,Ad-PPE1-3x-TK在体外诱导内皮细胞特异性杀伤。携带原发性CT-26结肠癌肿瘤的BALB/c小鼠静脉注射该载体,用GCV激活并用单次亚治疗剂量且无毒的辐射增强后,肿瘤生长受到抑制,肿瘤血管生成减少。此外,对携带Lewis肺癌转移瘤的C57BL/6小鼠静脉注射该载体,用GCV激活并用胸部靶向辐射增强后,小鼠存活期延长。与巨细胞病毒(CMV)调控的表达相比,仅在肺转移瘤中检测到PPE1-3x调控的HSV-TK表达。这种新系统可能使转移性疾病患者受益。