Intrathecal delivery of frataxin mRNA encapsulated in lipid nanoparticles to dorsal root ganglia as a potential therapeutic for Friedreich’s ataxia

被引:0
|
作者
Joseph F. Nabhan
Kristy M. Wood
Varada P. Rao
Jeffrey Morin
Surya Bhamidipaty
Timothy P. LaBranche
Renea L. Gooch
Fazli Bozal
Christine E. Bulawa
Braydon C. Guild
机构
[1] Rare Disease Research Unit,
[2] Pfizer,undefined
[3] Global Biotherapeutics,undefined
[4] Pfizer,undefined
[5] Comparative Medicine,undefined
[6] Pfizer,undefined
[7] Drug Safety Research and Development,undefined
[8] Pfizer,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In Friedreich’s ataxia (FRDA) patients, diminished frataxin (FXN) in sensory neurons is thought to yield the predominant pathology associated with disease. In this study, we demonstrate successful usage of RNA transcript therapy (RTT) as an exogenous human FXN supplementation strategy in vitro and in vivo, specifically to dorsal root ganglia (DRG). Initially, 293 T cells were transfected with codon optimized human FXN mRNA, which was translated to yield FXN protein. Importantly, FXN was rapidly processed into the mature functional form of FXN (mFXN). Next, FXN mRNA, in the form of lipid nanoparticles (LNPs), was administered intravenously in adult mice. Examination of liver homogenates demonstrated efficient FXN LNP uptake in hepatocytes and revealed that the mitochondrial maturation machinery had efficiently processed all FXN protein to mFXN in ~24 h in vivo. Remarkably, greater than 50% mFXN protein derived from LNPs was detected seven days after intravenous administration of FXN LNPs, suggesting that the half-life of mFXN in vivo exceeds one week. Moreover, when FXN LNPs were delivered by intrathecal administration, we detected recombinant human FXN protein in DRG. These observations provide the first demonstration that RTT can be used for the delivery of therapeutic mRNA to DRG.
引用
收藏
相关论文
共 14 条
  • [1] Intrathecal delivery of frataxin mRNA encapsulated in lipid nanoparticles to dorsal root ganglia as a potential therapeutic for Friedreich's ataxia
    Nabhan, Joseph F.
    Wood, Kristy M.
    Rao, Varada P.
    Morin, Jeffrey
    Bhamidipaty, Surya
    LaBranche, Timothy P.
    Gooch, Renea L.
    Bozal, Fazli
    Bulawa, Christine E.
    Guild, Braydon C.
    SCIENTIFIC REPORTS, 2016, 6
  • [2] Friedreich's Ataxia: Iron and Zinc Redistribution in Dorsal Root Ganglia
    Koeppen, Arnulf
    Ramirez, R.
    Bjork, Sarah
    Mazurkiewicz, Joseph
    Kuntzsch, Erik
    JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2013, 72 (06): : 554 - 554
  • [3] Frataxin gene editing rescues Friedreich’s ataxia pathology in dorsal root ganglia organoid-derived sensory neurons
    Pietro Giuseppe Mazzara
    Sharon Muggeo
    Mirko Luoni
    Luca Massimino
    Mattia Zaghi
    Parisa Tajalli-Tehrani Valverde
    Simone Brusco
    Matteo Jacopo Marzi
    Cecilia Palma
    Gaia Colasante
    Angelo Iannielli
    Marianna Paulis
    Chiara Cordiglieri
    Serena Gea Giannelli
    Paola Podini
    Cinzia Gellera
    Franco Taroni
    Francesco Nicassio
    Marco Rasponi
    Vania Broccoli
    Nature Communications, 11
  • [4] Frataxin gene editing rescues Friedreich's ataxia pathology in dorsal root ganglia organoid-derived sensory neurons
    Mazzara, Pietro Giuseppe
    Muggeo, Sharon
    Luoni, Mirko
    Massimino, Luca
    Zaghi, Mattia
    Valverde, Parisa Tajalli-Tehrani
    Brusco, Simone
    Marzi, Matteo Jacopo
    Palma, Cecilia
    Colasante, Gaia
    Iannielli, Angelo
    Paulis, Marianna
    Cordiglieri, Chiara
    Giannelli, Serena Gea
    Podini, Paola
    Gellera, Cinzia
    Taroni, Franco
    Nicassio, Francesco
    Rasponi, Marco
    Broccoli, Vania
    NATURE COMMUNICATIONS, 2020, 11 (01)
  • [5] TAT Conjugated Frataxin as a Nonviral Therapeutic Delivery System for Friedreich's Ataxia
    Vyas, Piyush M.
    CIRCULATION RESEARCH, 2008, 103 (05) : E43 - E44
  • [6] Progressive GAA expansions in dorsal root ganglia of Friedreich's ataxia patients
    De Blase, Irene
    Rasmussen, Astrid
    Endres, Dan
    Al-Mahdawi, Sahar
    Monticelli, Antonella
    Cocozza, Sergio
    Pook, Mark
    Bidichandani, Sanjay I.
    ANNALS OF NEUROLOGY, 2007, 61 (01) : 55 - 60
  • [7] Frataxin Deficiency Leads to Defects in Expression of Antioxidants and Nrf2 Expression in Dorsal Root Ganglia of the Friedreich's Ataxia YG8R Mouse Model
    Shan, Yuxi
    Schoenfeld, Robert A.
    Hayashi, Genki
    Napoli, Eleonora
    Akiyama, Tasuku
    Carstens, Mirela Iodi
    Carstens, Earl E.
    Pook, Mark A.
    Cortopassi, Gino A.
    ANTIOXIDANTS & REDOX SIGNALING, 2013, 19 (13) : 1481 - 1493
  • [8] Frataxin Deficit Leads to Reduced Dynamics of Growth Cones in Dorsal Root Ganglia Neurons of Friedreich's Ataxia YG8sR Model: A Multilinear Algebra Approach
    Munoz-Lasso, Diana C.
    Molla, Belen
    Saenz-Gamboa, Jhon J.
    Insuasty, Edwin
    de la Iglesia-vaya, Maria
    Pook, Mark A.
    Pallardo, Federico V.
    Palau, Francesc
    Gonzalez-Cabo, Pilar
    FRONTIERS IN MOLECULAR NEUROSCIENCE, 2022, 15
  • [9] Stem Cells from Wildtype and Friedreich's Ataxia Mice Present Similar Neuroprotective Properties in Dorsal Root Ganglia Cells
    Jones, Jonathan
    Estirado, Alicia
    Redondo, Carolina
    Martinez, Salvador
    PLOS ONE, 2013, 8 (05):
  • [10] In Utero Delivery of CRISPR/Cas-9 via Lipid Nanoparticles for Treatment of Friedreich's Ataxia
    Mudreac, Andrew
    Carpenter, Marco D.
    Perez, Alanis D.
    Kus, Nicole J.
    Peranteau, William H.
    JOURNAL OF THE AMERICAN COLLEGE OF SURGEONS, 2024, 239 (05) : S351 - S351