简介:
- 作者: Chunhui Huang, Xiao Zheng, Jiaxi Wu, Jiawei Li, Yingqi Lin, Yizhi Chen, Caijuan Li, Xichen Song, Wei Wang, Zhaoming Liu, Jianhao Wu, Jiale Gao, Zhuchi Tu, Zaijun Zhang, Liangxue Lai, Shihua Li, Xiao‐Jiang Li, Sen Yan
- 杂志: MedComm (2020)
- Doi: https://www.doi.org/10.1002/mco2.70330
- 出版日期: 2025/9/14
摘要
Amyotrophic lateral sclerosis (ALS) is a devastating neurodegenerative disease that lacks ideal models to comprehensively recapitulate its pathological features. TDP‐43 pathology, a hallmark of neurodegenerative diseases, plays a critical role in disease progression. Given the anatomical and physiological similarities between pig and human brains, large animal models offer a unique advantage in more accurately simulating patient‐specific disease characteristics. In this study, we rapidly established a TDP‐43‐induced neurodegenerative disease model in pigs through ear vein injection of the TDP‐43M337V virus. Disease progression was systematically evaluated using behavioral assessments and pathological analyses. This porcine model produced extremely severe motor dysfunction accompanied by significant muscle atrophy and fibrosis. Additionally, characteristic TDP‐43 pathological phenotypes were observed, including degeneration of spinal motor neurons and proliferation of glial cells in both the brain and spinal cord. Notably, TDP‐43M337V induction led to a significant upregulation of TMEM106B, SOD1, and APOE4 levels. This TDP‐43 porcine model recapitulates multiple key features of ALS and serves as a valuable complement to existing animal models, providing a robust platform for investigating TDP‐43‐related pathogenic mechanisms of TDP‐43 and developing effective therapeutics.
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凭借我们独立知识产权的π-alphaTM 293 细胞AAV高产技术平台,我们能将AAV产量提高多至10倍,每批次产量可达1×10¹⁷vg,以满足多样化的商业化和临床项目需求。此外,我们定制化的mRNA和脂质纳米颗粒(LNP)产品及服务覆盖药物和疫苗开发的各个阶段,从研发到符合GMP的生产,提供端到端的一站式解决方案。