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建立 HBV 感染仓鼠模型的可行性:证据。

The feasibility of establishing a hamster model for HBV infection: evidence.

机构信息

Cancer Virology Program, UPMC Hillman Cancer Center, University of Pittsburgh, School of Medicine, Pittsburgh, Pennsylvania, USA.

Department of Microbiology and Molecular Genetics, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, USA.

出版信息

mBio. 2024 Nov 13;15(11):e0261524. doi: 10.1128/mbio.02615-24. Epub 2024 Sep 27.

Abstract

Chronic hepatitis B virus (HBV) infection remains a significant public health burden with no cure currently available. The research to cure HBV has long been hampered by the lack of immunocompetent small animal models capable of supporting HBV infection. Here, we set out to explore the feasibility of the golden Syrian hamster as an immunocompetent small rodent model for HBV infection. We first started with assessments of the HBV replication cycle in primary hamster hepatocytes (PHaHs) by adenoviral HBV (Ad-HBV) transduction. Our results demonstrated that PHaHs support HBV reverse transcription and subsequent cccDNA formation via the intracellular recycling pathway. Next, with luciferase reporter assays, we confirmed that PHaHs support the activities of all HBV major promoters. Then, we transduced PHaHs with an adenoviral vector expressing HBV receptor human Na+/taurocholate cotransporting polypeptide NTCP (Ad-huNTCP), followed by HBV inoculation. While the untransduced PHaHs did not support HBV infection, Ad-huNTCP-transduced PHaHs supported cccDNA formation, viral mRNA transcription, and expression of viral antigens. We then humanized the amino acid (aa) residues of hamster NTCP (haNTCP) critical for HBV entry, aa84-87 and aa157-165, and transfected HepG2 cells with constructs expressing wild-type haNTCP and humanized-haNTCP, H84R/P87N and H84R/P87N/G157K/M160V/M165L, respectively, followed by HBV inoculation. The results showed that the humanization of H84R/P87N alone was sufficient to support HBV infection at a level comparable to that supported by huNTCP. Taken together, the above evidence supports the future direction of humanizing haNTCP for HBV infection .IMPORTANCEOne of the biggest challenges in developing an HBV cure is the lack of immunocompetent animal models susceptible to HBV infection. Developing such models in mice has been unsuccessful due to the absence of a functional HBV receptor, human NTCP (huNTCP), and the defect in supporting viral cccDNA formation. In search of alternative models, we report herein multiple lines of evidence for developing a golden Syrian hamster model for HBV infection. We demonstrate that the primary hamster hepatocytes (PHaHs) support HBV replication, transcription, and cccDNA formation, and PHaHs are susceptible to HBV infection in the presence of huNTCP. Furthermore, expressing hamster NTCP with two humanized residues critical for HBV entry renders HepG2 cells permissive to HBV infection. Thus, our work lays a solid foundation for establishing a gene-edited hamster model that expresses humanized NTCP for HBV infection .

摘要

慢性乙型肝炎病毒(HBV)感染仍然是一个重大的公共卫生负担,目前尚无治愈方法。长期以来,HBV 的治愈研究一直受到缺乏能够支持 HBV 感染的免疫功能健全的小动物模型的阻碍。在这里,我们着手探索金黄地鼠作为支持 HBV 感染的免疫功能健全的小型啮齿动物模型的可行性。

我们首先通过腺病毒 HBV(Ad-HBV)转导评估了原发性金黄仓鼠肝细胞(PHaHs)中的 HBV 复制周期。我们的结果表明,PHaHs 通过细胞内再循环途径支持 HBV 逆转录和随后的 cccDNA 形成。接下来,通过荧光素酶报告基因检测,我们证实 PHaHs 支持所有 HBV 主要启动子的活性。然后,我们用表达 HBV 受体人 Na+/牛磺胆酸钠共转运多肽 NTCP(Ad-huNTCP)的腺病毒载体转导 PHaHs,然后接种 HBV。虽然未转导的 PHaHs 不支持 HBV 感染,但转导了 Ad-huNTCP 的 PHaHs 支持 cccDNA 形成、病毒 mRNA 转录和病毒抗原表达。

然后,我们对金黄仓鼠 NTCP(haNTCP)中对 HBV 进入至关重要的氨基酸残基(aa)84-87 和 aa157-165 进行了人源化,并用分别表达野生型 haNTCP 和人源化-haNTCP、H84R/P87N 和 H84R/P87N/G157K/M160V/M165L 的构建体转染 HepG2 细胞,然后接种 HBV。结果表明,H84R/P87N 的人源化足以支持与 huNTCP 相当的 HBV 感染水平。

综上所述,上述证据支持对 haNTCP 进行人源化以用于 HBV 感染的未来方向。

重要性

开发 HBV 治愈方法的最大挑战之一是缺乏对 HBV 感染敏感的免疫功能健全的动物模型。由于缺乏功能性 HBV 受体人 NTCP(huNTCP)和支持病毒 cccDNA 形成的缺陷,在小鼠中开发此类模型一直不成功。为了寻找替代模型,我们在此报告了多项证据,证明金黄地鼠是一种用于 HBV 感染的新型模型。我们证明了原代金黄仓鼠肝细胞(PHaHs)支持 HBV 复制、转录和 cccDNA 形成,并且在存在 huNTCP 的情况下,PHaHs 易感染 HBV。此外,表达对 HBV 进入至关重要的两个人类氨基酸残基的仓鼠 NTCP 使 HepG2 细胞能够感染 HBV。因此,我们的工作为建立表达人源化 NTCP 以用于 HBV 感染的基因编辑仓鼠模型奠定了坚实的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d19/11559161/4c2dddc692ab/mbio.02615-24.f001.jpg

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