Human adenovirus type 5 (HAdV-5)-based oncolytic viruses hold significant promise for anti-cancer therapy. However, poor tumor-targeting and off-target organ transduction after systemic administration limit their therapeutic efficacy. In addition, the strong liver tropism of HAdV-5-based vectors poses the risk of hepatotoxicity. By genetic modification of the major capsid protein hexon we generated a HAdV-5-based oncolytic vector (HAdV-5-HexPos3) with reduced negative surface charge. Coxsackie and adenovirus receptor (CAR) binding-ablated (ÎCAR) HAdV-5-HexPos3_ÎCAR exhibited superior and CAR-independent transduction of various cancer cell lines in vitro, further enhanced in the presence of HAdV-5 naive murine plasma. Upon intravenous administration into tumor-bearing immunodeficient NSG mice, replication-deficient HAdV-5-HexPos3_ÎCAR vector particles showed significantly reduced off-target organ tropism in all tissues analyzed, including the liver. Moreover, we detected a significantly increased intratumoral vector load for HAdV-5-HexPos3_ÎCAR, leading to a 29-fold elevated tumor-to-liver ratio compared with a control vector with unmodified hexon. Intravenous injection of a conditionally replicating hexon-unmodified control vector induced severe hepatotoxicity in tumor-bearing NSG mice, while a conditionally replicating HAdV-5-HexPos3_ÎCAR vector was well tolerated and resulted in intratumoral vector presence for up to 56 days. HAdV-5-HexPos3_ÎCAR represents a promising vector platform for the generation of HAdV-5-based oncolytic viruses with reduced systemic toxicity and improved therapeutic efficacy.
An oncolytic HAdV-5 with reduced surface charge combines diminished toxicity and improved tumor targeting.
表面电荷降低的溶瘤性 HAdV-5 兼具毒性降低和肿瘤靶向性增强的优点
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作者:Wienen Frederik, Nilson Robin, Allmendinger Ellen, Peters Sarah, Barth Thomas F E, Kochanek Stefan, Krutzke Lea
| 期刊: | Molecular Therapy Oncology | 影响因子: | 5.300 |
| 时间: | 2024 | 起止号: | 2024 Nov 23; 32(4):200909 |
| doi: | 10.1016/j.omton.2024.200909 | 研究方向: | 肿瘤 |
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