Enhanced axonal regeneration of ALS patient iPSC-derived motor neurons harboring SOD1A4V mutation

被引:6
|
作者
Marshall, Katherine L. [1 ]
Rajbhandari, Labchan [1 ]
Venkatesan, Arun [1 ]
Maragakis, Nicholas J. [1 ]
Farah, Mohamed H. [1 ]
机构
[1] Johns Hopkins Univ, Neuromuscular Div, John G Rangos Sr Bldg, Dept Neurol,Sch Med, Room 239,855 N Wolfe St, Baltimore, MD 21205 USA
基金
美国国家卫生研究院;
关键词
AMYOTROPHIC-LATERAL-SCLEROSIS; MODELING ALS; DEGENERATION; GROWTH;
D O I
10.1038/s41598-023-31720-7
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Amyotrophic lateral sclerosis (ALS) is a devastating neurodegenerative disease, characterized by degeneration of upper and lower motor neurons that leads to muscle weakness, paralysis, and death, but the effects of disease-causing mutations on axonal outgrowth of neurons derived from human induced pluripotent stem cells (iPSC)-derived motor neurons (hiPSC-MN) are poorly understood. The use of hiPSC-MN is a promising tool to develop more relevant models for target identification and drug development in ALS research, but questions remain concerning the effects of distinct disease-causing mutations on axon regeneration. Mutations in superoxide dismutase 1 (SOD1) were the first to be discovered in ALS patients. Here, we investigated the effect of the SOD1(A4V) mutation on axonal regeneration of hiPSC-MNs, utilizing compartmentalized microfluidic devices, which are powerful tools for studying hiPSC-MN distal axons. Surprisingly, SOD1(+/A4V) hiPSC-MNs regenerated axons more quickly following axotomy than those expressing the native form of SOD1. Though initial axon regrowth was not significantly different following axotomy, enhanced regeneration was apparent at later time points, indicating an increased rate of outgrowth. This regeneration model could be used to identify factors that enhance the rate of human axon regeneration.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] C9orf72 Hexanucleotide Expansion Mutations Alter Calcium Signalling in ALS-FTD Patient iPSC-Derived Motor Neurons
    Mutihac, Ruxandra
    Cowley, Sally
    Scaber, Jakub
    Wade-Martins, Richard
    Talbot, Kevin
    ANNALS OF NEUROLOGY, 2014, 76 : S121 - S121
  • [32] iPSC-Derived Neurons Harboring a Known Epilepsy Mutation Provide a 'Disease-in-a-Dish' Capability that Displays Established and Novel Epileptic Phenotypes
    Mangan, Kile P.
    Quraishi, Imran
    Zhang, Yalan
    McLachlan, Michael
    Meline, Benjamin
    McMahon, Chris
    Enghofer, Elisabeth
    Kannemeier, Christian
    Jones, Eugenia
    Kaczmarek, Leonard
    BIOPHYSICAL JOURNAL, 2018, 114 (03) : 487A - 487A
  • [33] Spinal Muscular Atrophy Patient iPSC-Derived Motor Neurons Display Altered Proteomes at Early Stages of Differentiation
    Varderidou-Minasian, Suzy
    Verheijen, Bert M.
    Harschnitz, Oliver
    Kling, Sandra
    Karst, Henk
    van der Pol, W. Ludo
    Pasterkamp, R. Jeroen
    Altelaar, Maarten
    ACS OMEGA, 2021, 6 (51): : 35375 - 35388
  • [34] Identification of Arfaptin-2 as a Potential Therapeutic Target for Amyotrophic Lateral Sclerosis (ALS) Using iPSC-Derived Motor Neurons and Zebrafish as Models of ALS
    Bhargava, Anushka
    Ramesh, Tennore
    Shaw, Pamela J.
    Ning, Ke
    MOLECULAR THERAPY, 2022, 30 (04) : 298 - 299
  • [35] Early nuclear phenotypes and reactive transformation in human iPSC-derived astrocytes from ALS patients with SOD1 mutations
    Soubannier, Vincent
    Chaineau, Mathilde
    Gursu, Lale
    Lepine, Sarah
    Kalaydjian, David
    Sirois, Julien
    Haghi, Ghazal
    Rouleau, Guy
    Durcan, Thomas M.
    Stifani, Stefano
    GLIA, 2024, 72 (11) : 2079 - 2094
  • [36] ALS iPSC-derived microglia and motor neurons respond to astrocyte-targeted IL-10 and CCL2 modulation
    Allison, Reilly L.
    Ebert, Allison D.
    HUMAN MOLECULAR GENETICS, 2024, 33 (06) : 530 - 542
  • [37] Targeting RNA Foci in iPSC-Derived Motor Neurons from ALS Patients with a C9ORF72 Repeat Expansion
    Sareen, Dhruv
    O'Rourke, Jacqueline G.
    Meera, Pratap
    Muhammad, A. K. M. G.
    Grant, Sharday
    Simpkinson, Megan
    Bell, Shaughn
    Carmona, Sharon
    Ornelas, Loren
    Sahabian, Anais
    Gendron, Tania
    Petrucelli, Leonard
    Baughn, Michael
    Ravits, John
    Harms, Matthew B.
    Rigo, Frank
    Bennett, C. Frank
    Otis, Thomas S.
    Svendsen, Clive N.
    Baloh, Robert H.
    SCIENCE TRANSLATIONAL MEDICINE, 2013, 5 (208)
  • [38] Heterozygous RB1 mutation enhanced ATP production in human iPSC-derived retinal organoids
    Vincent, Ambily
    Krishnakumar, Subramanian
    Parameswaran, Sowmya
    MOLECULAR BIOLOGY REPORTS, 2024, 51 (01)
  • [39] An integrated multi-omic analysis of iPSC-derived motor neurons from C9ORF72 ALS patients
    Li, Jonathan
    Lim, Ryan G.
    Kaye, Julia A.
    Dardov, Victoria
    Coyne, Alyssa N.
    Wu, Jie
    Milani, Pamela
    Cheng, Andrew
    Thompson, Terri G.
    Ornelas, Loren
    Frank, Aaron
    Adam, Miriam
    Banuelos, Maria G.
    Casale, Malcolm
    Cox, Veerle
    Escalante-Chong, Renan
    Daigle, J. Gavin
    Gomez, Emilda
    Hayes, Lindsey
    Holewenski, Ronald
    Lei, Susan
    Lenail, Alex
    Lima, Leandro
    Mandefro, Berhan
    Matlock, Andrea
    Panther, Lindsay
    Patel-Murray, Natasha Leanna
    Pham, Jacqueline
    Ramamoorthy, Divya
    Sachs, Karen
    Shelley, Brandon
    Stocksdale, Jennifer
    Trost, Hannah
    Wilhelm, Mark
    Venkatraman, Vidya
    Wassie, Brook T.
    Wyman, Stacia
    Yang, Stephanie
    Van Eyk, Jennifer E.
    Lloyd, Thomas E.
    Finkbeiner, Steven
    Fraenkel, Ernest
    Rothstein, Jeffrey D.
    Sareen, Dhruv
    Svendsen, Clive N.
    Thompson, Leslie M.
    ISCIENCE, 2021, 24 (11)
  • [40] Spinal Muscular Atrophy Patient iPSC-Derived Motor Neurons Have Reduced Expression of Proteins Important in Neuronal Development
    Fuller, Heidi R.
    Mandefro, Berhan
    Shirran, Sally L.
    Gross, Andrew R.
    Kaus, Anjoscha S.
    Botting, Catherine H.
    Morris, Glenn E.
    Sareen, Dhruv
    FRONTIERS IN CELLULAR NEUROSCIENCE, 2016, 9