Cerebral organoids derived from Sandhoff disease-induced pluripotent stem cells exhibit impaired neurodifferentiation

被引:82
|
作者
Allende, Maria L. [1 ]
Cook, Emily K. [1 ]
Larman, Bridget C. [1 ]
Nugent, Adrienne [1 ]
Brady, Jacqueline M. [2 ,3 ]
Golebiowski, Diane [4 ,5 ]
Sena-Esteves, Miguel [4 ,5 ]
Tifft, Cynthia J. [2 ,3 ]
Proia, Richard L. [1 ]
机构
[1] NIDDK, Genet Dev & Dis Branch, NIH, Bethesda, MD 20892 USA
[2] NIH, Natl Inst Hlth Undiagnosed Dis Program, Natl Inst Hlth Off Rare Dis Res, Bethesda, MD 20892 USA
[3] NIH, NHGRI, Bethesda, MD 20892 USA
[4] Univ Massachusetts, Med Sch, Dept Neurol, Worcester, MA 01605 USA
[5] Univ Massachusetts, Med Sch, Horae Gene Therapy Ctr, Worcester, MA 01605 USA
基金
美国国家卫生研究院;
关键词
storage diseases; gangliosides; Tay-Sachs disease; sphingolipids; brain lipids; Clustered Regularly Interspaced Short Palindromic Repeats/Cas9; patient-derived induced pluripotent stem cells; GM2; gangliosidosis; brain development; TAY-SACHS-DISEASE; BONE-MARROW-TRANSPLANTATION; NERVOUS-SYSTEM; G(M2) GANGLIOSIDOSIS; CORTICAL DEVELOPMENT; STORAGE-DISEASES; MOUSE MODELS; HUMAN BRAIN; MICE; DIFFERENTIATION;
D O I
10.1194/jlr.M081323
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Sandhoff disease, one of the GM2 gangliosidoses, is a lysosomal storage disorder characterized by the absence of beta-hexosaminidase A and B activity and the concomitant lysosomal accumulation of its substrate, GM2 ganglioside. It features catastrophic neurodegeneration and death in early childhood. How the lysosomal accumulation of ganglioside might affect the early development of the nervous system is not understood. Recently, cerebral organoids derived from induced pluripotent stem (iPS) cells have illuminated early developmental events altered by disease processes. To develop an early neurodevelopmental model of Sandhoff disease, we first generated iPS cells from the fibroblasts of an infantile Sandhoff disease patient, then corrected one of the mutant HEXB alleles in those iPS cells using CRISPR/Cas9 genome-editing technology, thereby creating isogenic controls. Next, we used the parental Sandhoff disease iPS cells and isogenic HEXB-corrected iPS cell clones to generate cerebral organoids that modeled the first trimester of neurodevelopment. The Sandhoff disease organoids, but not the HEXB-corrected organoids, accumulated GM2 ganglioside and exhibited increased size and cellular proliferation compared with the HEXB-corrected organoids. Wholetranscriptome analysis demonstrated that development was impaired in the Sandhoff disease organoids, suggesting that alterations in neuronal differentiation may occur during early development in the GM2 gangliosidoses.
引用
收藏
页码:550 / 563
页数:14
相关论文
共 50 条
  • [21] Application of patient-derived induced pluripotent stem cells and organoids in inherited retinal diseases
    Liang, Yuqin
    Sun, Xihao
    Duan, Chunwen
    Tang, Shibo
    Chen, Jiansu
    STEM CELL RESEARCH & THERAPY, 2023, 14 (01)
  • [22] Gaucher Disease-Induced Pluripotent Stem Cells Display Decreased Erythroid Potential and Aberrant Myelopoiesis
    Sgambato, Judi A.
    Park, Tea Soon
    Miller, Diana
    Panicker, Leelamma M.
    Sidransky, Ellen
    Lun, Yu
    Awad, Ola
    Bentzen, Soren M.
    Zambidis, Elias T.
    Feldman, Ricardo A.
    STEM CELLS TRANSLATIONAL MEDICINE, 2015, 4 (08) : 878 - 886
  • [23] Brainstem Organoids From Human Pluripotent Stem Cells
    Eura, Nobuyuki
    Matsui, Takeshi K.
    Luginbuhl, Joachim
    Matsubayashi, Masaya
    Nanaura, Hitoki
    Shiota, Tomo
    Kinugawa, Kaoru
    Iguchi, Naohiko
    Kiriyama, Takao
    Zheng, Canbin
    Kouno, Tsukasa
    Lan, Yan Jun
    Kongpracha, Pornparn
    Wiriyasermkul, Pattama
    Sakaguchi, Yoshihiko M.
    Nagata, Riko
    Komeda, Tomoya
    Morikawa, Naritaka
    Kitayoshi, Fumika
    Jong, Miyong
    Kobashigawa, Shinko
    Nakanishi, Mari
    Hasegawa, Masatoshi
    Saito, Yasuhiko
    Shiromizu, Takashi
    Nishimura, Yuhei
    Kasai, Takahiko
    Takeda, Maiko
    Kobayashi, Hiroshi
    Inagaki, Yusuke
    Tanaka, Yasuhito
    Makinodan, Manabu
    Kishimoto, Toshifumi
    Kuniyasu, Hiroki
    Nagamori, Shushi
    Muotri, Alysson R.
    Shin, Jay W.
    Sugie, Kazuma
    Mori, Eiichiro
    FRONTIERS IN NEUROSCIENCE, 2020, 14
  • [24] Spin∞: an updated miniaturized spinning bioreactor design for the generation of human cerebral organoids from pluripotent stem cells
    Romero-Morales, Alejandra, I
    O'Grady, Brian J.
    Balotin, Kylie M.
    Bellan, Leon M.
    Lippmann, Ethan S.
    Gama, Vivian
    HARDWAREX, 2019, 6
  • [25] Methods to produce induced pluripotent stem cell-derived mesenchymal stem cells: Mesenchymal stem cells from induced pluripotent stem cells
    Dupuis, Victoria
    Oltra, Elisa
    WORLD JOURNAL OF STEM CELLS, 2021, 13 (08): : 1094 - 1111
  • [26] Efficient generation of human cerebral organoids directly from adherent cultures of pluripotent stem cells
    Gonzalez-Sastre, Rosa
    Coronel, Raquel
    Bernabeu-Zornoza, Adela
    Mateos-Martinez, Patricia
    Rosca, Andreea
    Lopez-Alonso, Victoria
    Liste, Isabel
    JOURNAL OF TISSUE ENGINEERING, 2024, 15
  • [27] Generation of Retinal Organoids with Mature Rods and Cones from Urine-Derived Human Induced Pluripotent Stem Cells
    Li, Guilan
    Xie, Bingbing
    He, Liwen
    Zhou, Tiancheng
    Gao, Guanjie
    Liu, Shengxu
    Pan, Guangjin
    Ge, Jian
    Peng, Fuhua
    Zhong, Xiufeng
    STEM CELLS INTERNATIONAL, 2018, 2018
  • [28] Human induced pluripotent stem cell-derived endothelial cells exhibit functional heterogeneity
    Rufaihah, Abdul Jalil
    Huang, Ngan F.
    Kim, Jeanna
    Herold, Joerg
    Volz, Katharina S.
    Park, Tea Soon
    Lee, Jerry C.
    Zambidis, Elias T.
    Reijo-Pera, Renee
    Cooke, John P.
    AMERICAN JOURNAL OF TRANSLATIONAL RESEARCH, 2013, 5 (01): : 21 - U122
  • [29] Insights Into Human Development and Disease From Human Pluripotent Stem Cell Derived Intestinal Organoids
    Daoud, Abdelkader
    Munera, Jorge O.
    FRONTIERS IN MEDICINE, 2019, 6
  • [30] Generation of complex bone marrow organoids from human induced pluripotent stem cells
    Frenz-Wiessner, Stephanie
    Fairley, Savannah D.
    Buser, Maximilian
    Goek, Isabel
    Salewskij, Kirill
    Jonsson, Gustav
    Illig, David
    zu Putlitz, Benedicta
    Petersheim, Daniel
    Li, Yue
    Chen, Pin-Hsuan
    Kalauz, Martina
    Conca, Raffaele
    Sterr, Michael
    Geuder, Johanna
    Mizoguchi, Yoko
    Megens, Remco T. A.
    Linder, Monika I.
    Kotlarz, Daniel
    Rudelius, Martina
    Penninger, Josef M.
    Marr, Carsten
    Klein, Christoph
    NATURE METHODS, 2024, 21 (05) : 868 - 881