SUPT4H1-edited stem cell therapy rescues neuronal dysfunction in a mouse model for Huntington's disease (vol 7, 8, 2022)

被引:1
|
作者
Park, Hyun Jung
Han, Areum
Kim, Ji Yeon
Choi, Jiwoo
Bae, Hee Sook
Cho, Gyu-bon
Shin, Hyejung
Shin, Eun Ji
Lee, Kang-in
Kim, Seokjoong
Lee, Jae Young
Song, Jihwan
机构
[1] Department of Biomedical Science, CHA Stem Cell Institute, CHA University, 335 Pangyo-ro, Bundang-gu, Gyeonggi-do, Seongnam-si
[2] Toolgen Inc., 219 Gasan Digital 1-ro, Geumcheon-gu, Seoul
[3] iPS Bio, Inc., 3F, 16 Daewangpangyo-ro 712 Beon-gil, Bundang-gu, Gyeonggi-do, Seongnam-si
基金
新加坡国家研究基金会;
关键词
49;
D O I
10.1038/s41536-022-00219-6
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Huntington’s disease (HD) is a severe inherited neurological disorder caused by a CAG repeat expansion in the huntingtin gene (HTT), leading to the accumulation of mutant huntingtin with polyglutamine repeats. Despite its severity, there is no cure for this debilitating disease. HTT lowering strategies, including antisense oligonucleotides (ASO) showed promising results very recently. Attempts to develop stem cell-based therapeutics have shown efficacy in preclinical HD models. Using an HD patient’s autologous cells, which have genetic defects, may hamper therapeutic efficacy due to mutant HTT. Pretreating these cells to reduce mutant HTT expression and transcription may improve the transplanted cells’ therapeutic efficacy. To investigate this, we targeted the SUPT4H1 gene that selectively supports the transcription of long trinucleotide repeats. Transplanting SUPT4H1-edited HD-induced pluripotent stem cell-derived neural precursor cells (iPSC-NPCs) into the YAC128 HD transgenic mouse model improved motor function compared to unedited HD iPSC-NPCs. Immunohistochemical analysis revealed reduced mutant HTT expression without compensating wild-type HTT expression. Further, SUPT4H1 editing increased neuronal and decreased reactive astrocyte differentiation in HD iPSC-NPCs compared to the unedited HD iPSC-NPCs. This suggests that ex vivo editing of SUPT4H1 can reduce mutant HTT expression and provide a therapeutic gene editing strategy for autologous stem cell transplantation in HD. © 2022, The Author(s).
引用
收藏
页数:1
相关论文
共 14 条
  • [1] SUPT4H1-edited stem cell therapy rescues neuronal dysfunction in a mouse model for Huntington’s disease
    Hyun Jung Park
    Areum Han
    Ji Yeon Kim
    Jiwoo Choi
    Hee Sook Bae
    Gyu-bon Cho
    Hyejung Shin
    Eun ji Shin
    Kang-in Lee
    Seokjoong Kim
    Jae Young Lee
    Jihwan Song
    npj Regenerative Medicine, 7
  • [2] Stem cell therapy and cellular engineering for treatment of neuronal dysfunction in Huntington's disease
    Choi, Kyung-Ah
    Hwang, Insik
    Park, Hang-Soo
    Oh, Seung-Ick
    Kang, Seongman
    Hong, Sunghoi
    BIOTECHNOLOGY JOURNAL, 2014, 9 (07) : 882 - 894
  • [3] Retinal dysfunction, photoreceptor protein dysregulation and neuronal remodelling in the R6/1 mouse model of Huntington's disease
    Batcha, Abrez Hussain
    Greferath, Una
    Jobling, Andrew I.
    Vessey, Kirstan A.
    Ward, Michelle M.
    Nithianantharajah, Jess
    Hannan, Anthony J.
    Kalloniatis, Michael
    Fletcher, Erica L.
    NEUROBIOLOGY OF DISEASE, 2012, 45 (03) : 887 - 896
  • [4] The genetically-engineered stem cell therapy of huntington disease: spt4 knockout hd patient ipsc-npcs transplantation rescue abnormal neuronal dysfunction in the YAC128 model
    Park, H.
    Lee, J.
    Choi, J.
    Kim, S.
    Song, J.
    CYTOTHERAPY, 2020, 22 (05) : S23 - S23
  • [5] Neuronal NR4A1 deficiency drives complement-coordinated synaptic stripping by microglia in a mouse model of lupus (vol 7, 328, 2022)
    Han, Xiaojuan
    Xu, Tianshu
    Ding, Congzhu
    Wang, Dandan
    Yao, Genhong
    Chen, Hongwei
    Fang, Qijun
    Hu, Gang
    Sun, Lingyun
    SIGNAL TRANSDUCTION AND TARGETED THERAPY, 2022, 7 (01)
  • [6] Human Neural Stem Cell Transplantation Rescues Cognitive Defects in APP/PS1 Model of Alzheimer's Disease by Enhancing Neuronal Connectivity and Metabolic Activity
    Li, Xueyuan
    Zhu, Hua
    Sun, Xicai
    Zuo, Fuxing
    Lei, Jianfeng
    Wang, Zhanjing
    Bao, Xinjie
    Wang, Renzhi
    FRONTIERS IN AGING NEUROSCIENCE, 2016, 8
  • [7] The effects of neuronal cell differentiation on TRPM7, TRPM8 and TRPV1 channels in the model of Parkinson's disease
    Oz, Ahmi
    Celik, Omer
    NEUROLOGICAL RESEARCH, 2022, 44 (01) : 24 - 37
  • [8] Evaluation of efficacy and safety of AAV8-DC4ATP7B gene therapy in a mutant mouse model of Wilson's disease
    Zeng, Chunhua
    Lin, Yunting
    Lu, Xinshuo
    Chen, Shehong
    Xia, Yan
    Zhang, Kangdi
    Shao, Yongxian
    Guan, Zhihong
    Du, Rong
    Liu, Zongcai
    Zhao, Mingqi
    Jiang, Xiaoling
    Cai, Yanna
    Li, Taolin
    Su, Xueying
    Chen, Yaoyong
    Dong, Xiaoyan
    Zhang, Wen
    Liu, Li
    Zhou, Wenhao
    MOLECULAR THERAPY METHODS & CLINICAL DEVELOPMENT, 2025, 33 (01)
  • [9] Targeting the overexpressed mitochondrial protein VDAC1 in a mouse model of Alzheimer's disease protects against mitochondrial dysfunction and mitigates brain pathology (vol 11, 58, 2022)
    Verma, Ankit
    Shteinfer-Kuzmine, Anna
    Kamenetsky, Nikita
    Pittala, Srinivas
    Paul, Avijit
    Crystal, Edna Nahon
    Ouro, Alberto
    Chalifa-Caspi, Vered
    Pandey, Swaroop Kumar
    Monsonego, Alon
    Vardi, Noga
    Knafo, Shira
    Shoshan-Barmatz, Varda
    TRANSLATIONAL NEURODEGENERATION, 2023, 12 (01)
  • [10] 1H-NMR-based metabolomics to dissect the traditional Chinese medicine promotes mesenchymal stem cell homing as intervention in liver fibrosis in mouse model of Wilson's disease
    Ma, Ying
    Bao, Yuancheng
    Wang, Han
    Jiang, Huaizhou
    Zhou, Lei
    Yang, Bo
    Huang, Xiaofeng
    Yang, Wenming
    Xie, Daojun
    Zhang, Juan
    JOURNAL OF PHARMACY AND PHARMACOLOGY, 2024, 76 (06) : 656 - 671