Intrabiliary infusion of naked DNA vectors targets periportal hepatocytes in mice.

Molecular Therapy. Methods & Clinical Development Pub Date : 2022-10-10 eCollection Date: 2022-12-08 DOI:10.1016/j.omtm.2022.10.006
Sereina Deplazes, Andrea Schlegel, Zhuolun Song, Gabriella Allegri, Nicole Rimann, Tanja Scherer, Melanie Willimann, Lennart Opitz, Sharon C Cunningham, Ian E Alexander, Anja Kipar, Johannes Häberle, Beat Thöny, Hiu Man Grisch-Chan
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引用次数: 2

Abstract

Hydrodynamic tail vein injection (HTV) is the "gold standard" for delivering naked DNA vectors to mouse liver, thereby transfecting predominately perivenous hepatocytes. While HTV corrects metabolic liver defects such as phenylketonuria or cystathionine β-synthase deficiency, correction of spf ash mice with ornithine transcarbamylase (OTC) deficiency was not possible despite overexpression in the liver, as the OTC enzyme is primarily expressed in periportal hepatocytes. To target periportal hepatocytes, we established hydrodynamic retrograde intrabiliary injection (HRII) in mice and optimized minicircle (MC) vector delivery using luciferase as a marker gene. HRII resulted in a transfection efficiency below 1%, 100-fold lower than HTV. While HRII induced minimal liver toxicity compared with HTV, overexpression of luciferase by both methods, but not of a natural liver-specific enzyme, elicited an immune response that led to the elimination of luciferase expression. Further testing of MC vectors delivered via HRII in spf ash mice did not result in sufficient therapeutic efficacy and needs further optimization and/or selection of the corrected cells. This study reveals that luciferase expression is toxic for the liver. Furthermore, physical delivery of MC vectors via the bile duct has the potential to treat defects restricted to periportal hepatocytes, which opens new doors for non-viral liver-directed gene therapy.

Abstract Image

Abstract Image

Abstract Image

胆内输注裸DNA载体靶向小鼠门静脉周围肝细胞。
水动力尾静脉注射(HTV)是将裸DNA载体传递到小鼠肝脏的“金标准”,从而主要转染静脉周围肝细胞。虽然HTV可以纠正代谢性肝脏缺陷,如苯丙酮尿症或半胱硫氨酸β-合成酶缺乏症,但由于OTC酶主要在门静脉周围肝细胞中表达,因此无法纠正患有鸟氨酸转氨基甲酰基酶(OTC)缺乏症的spf灰小鼠。为了靶向门静脉周围肝细胞,我们在小鼠体内建立了水动力逆行胆道内注射(HRII),并优化了以荧光素酶为标记基因的微环(MC)载体传递。HRII的转染效率低于1%,比HTV低100倍。虽然与HTV相比,HRII诱导的肝毒性最小,但通过两种方法过度表达荧光素酶,而不是天然的肝脏特异性酶,引起免疫反应,导致荧光素酶表达的消除。通过HRII传递的MC载体在spf灰小鼠中的进一步测试没有得到足够的治疗效果,需要进一步优化和/或选择校正后的细胞。这项研究表明,荧光素酶的表达对肝脏有毒性。此外,通过胆管物理递送MC载体有可能治疗局限于门静脉周围肝细胞的缺陷,这为非病毒性肝定向基因治疗打开了新的大门。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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