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未修饰的线框DNA折纸在小鼠体内的急性毒性和生物分布评估。

Evaluation of non-modified wireframe DNA origami for acute toxicity and biodistribution in mice.

作者信息

Wamhoff Eike-Christian, Knappe Grant A, Burds Aurora A, Du Rebecca R, Neun Barry W, Difilippantonio Simone, Sanders Chelsea, Edmondson Elijah F, Matta Jennifer L, Dobrovolskaia Marina A, Bathe Mark

机构信息

Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, United States of America.

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, United States of America.

出版信息

bioRxiv. 2023 Mar 1:2023.02.25.530026. doi: 10.1101/2023.02.25.530026.

Abstract

Wireframe DNA origami can be used to fabricate virus-like particles for a range of biomedical applications, including the delivery of nucleic acid therapeutics. However, the acute toxicity and biodistribution of these wireframe nucleic acid nanoparticles (NANPs) have not previously been characterized in animal models. In the present study, we observed no indications of toxicity in BALB/c mice following therapeutically relevant dosage of unmodified DNA-based NANPs via intravenous administration, based on liver and kidney histology, liver biochemistry, and body weight. Further, the immunotoxicity of these NANPs was minimal, as indicated by blood cell counts and type-I interferon and pro-inflammatory cytokines. In an SJL/J model of autoimmunity, we observed no indications of NANP-mediated DNA-specific antibody response or immune-mediated kidney pathology following the intraperitoneal administration of NANPs. Finally, biodistribution studies revealed that these NANPs accumulate in the liver within one hour, concomitant with substantial renal clearance. Our observations support the continued development of wireframe DNA-based NANPs as next-generation nucleic acid therapeutic delivery platforms.

摘要

线框DNA折纸技术可用于制造用于一系列生物医学应用的病毒样颗粒,包括核酸治疗药物的递送。然而,这些线框核酸纳米颗粒(NANP)的急性毒性和生物分布此前尚未在动物模型中得到表征。在本研究中,基于肝脏和肾脏组织学、肝脏生物化学和体重,我们观察到通过静脉注射给予治疗相关剂量的未修饰DNA基NANP后,BALB/c小鼠没有毒性迹象。此外,血细胞计数以及I型干扰素和促炎细胞因子表明,这些NANP的免疫毒性极小。在自身免疫的SJL/J模型中,我们观察到腹腔注射NANP后没有NANP介导的DNA特异性抗体反应或免疫介导的肾脏病理迹象。最后,生物分布研究表明,这些NANP在一小时内积聚在肝脏中,同时伴有大量的肾脏清除。我们的观察结果支持将基于线框DNA的NANP继续开发为下一代核酸治疗递送平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d7c/10002694/ab8ac5d80908/nihpp-2023.02.25.530026v2-f0001.jpg

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