A Neonatal Mouse Spinal Cord Injury Model for Assessing Post-Injury Adaptive Plasticity and Human Stem Cell Integration

被引:23
作者
Boulland, Jean-Luc [1 ,2 ]
Lambert, Francois M. [1 ]
Zuchner, Mark [1 ,3 ]
Strom, Susanne [1 ,2 ]
Glover, Joel C. [1 ,2 ]
机构
[1] Univ Oslo, Inst Basic Med Sci, Dept Physiol, Lab Neural Dev & Opt Recording NDEVOR,Fac Med, Oslo, Norway
[2] Oslo Univ Hosp, Dept Immunol & Transfus Med, Norwegian Ctr Stem Cell Res, Oslo, Norway
[3] Oslo Univ Hosp, Dept Neurosurg, Oslo, Norway
关键词
CENTRAL-NERVOUS-SYSTEM; MEDIATED SYNAPTIC INPUTS; FUNCTIONAL CONNECTIVITY; RETICULOSPINAL NEURONS; IN-VITRO; MOTONEURONS; RECOVERY; EXPRESSION; TRANSECTION; RATS;
D O I
10.1371/journal.pone.0071701
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
Despite limited regeneration capacity, partial injuries to the adult mammalian spinal cord can elicit variable degrees of functional recovery, mediated at least in part by reorganization of neuronal circuitry. Underlying mechanisms are believed to include synaptic plasticity and collateral sprouting of spared axons. Because plasticity is higher in young animals, we developed a spinal cord compression (SCC) injury model in the neonatal mouse to gain insight into the potential for reorganization during early life. The model provides a platform for high-throughput assessment of functional synaptic connectivity that is also suitable for testing the functional integration of human stem and progenitor cell-derived neurons being considered for clinical cell replacement strategies. SCC was generated at T9-T11 and functional recovery was assessed using an integrated approach including video kinematics, histology, tract tracing, electrophysiology, and high-throughput optical recording of descending inputs to identified spinal neurons. Dramatic degeneration of axons and synaptic contacts was evident within 24 hours of SCC, and loss of neurons in the injured segment was evident for at least a month thereafter. Initial hindlimb paralysis was paralleled by a loss of descending inputs to lumbar motoneurons. Within 4 days of SCC and progressively thereafter, hindlimb motility began to be restored and descending inputs reappeared, but with examples of atypical synaptic connections indicating a reorganization of circuitry. One to two weeks after SCC, hindlimb motility approached sham control levels, and weight-bearing locomotion was virtually indistinguishable in SCC and sham control mice. Genetically labeled human fetal neural progenitor cells injected into the injured spinal cord survived for at least a month, integrated into the host tissue and began to differentiate morphologically. This integrative neonatal mouse model provides opportunities to explore early adaptive plasticity mechanisms underlying functional recovery as well as the capacity for human stem cell-derived neurons to integrate functionally into spinal circuits.
引用
收藏
页数:19
相关论文
共 73 条
[1]   Optimization of a GCaMP Calcium Indicator for Neural Activity Imaging [J].
Akerboom, Jasper ;
Chen, Tsai-Wen ;
Wardill, Trevor J. ;
Tian, Lin ;
Marvin, Jonathan S. ;
Mutlu, Sevinc ;
Calderon, Nicole Carreras ;
Esposti, Federico ;
Borghuis, Bart G. ;
Sun, Xiaonan Richard ;
Gordus, Andrew ;
Orger, Michael B. ;
Portugues, Ruben ;
Engert, Florian ;
Macklin, John J. ;
Filosa, Alessandro ;
Aggarwal, Aman ;
Kerr, Rex A. ;
Takagi, Ryousuke ;
Kracun, Sebastian ;
Shigetomi, Eiji ;
Khakh, Baljit S. ;
Baier, Herwig ;
Lagnado, Leon ;
Wang, Samuel S. -H. ;
Bargmann, Cornelia I. ;
Kimmel, Bruce E. ;
Jayaraman, Vivek ;
Svoboda, Karel ;
Kim, Douglas S. ;
Schreiter, Eric R. ;
Looger, Loren L. .
JOURNAL OF NEUROSCIENCE, 2012, 32 (40) :13819-13840
[2]   The injured spinal cord spontaneously forms a new intraspinal circuit in adult rats [J].
Bareyre, FM ;
Kerschensteiner, M ;
Raineteau, O ;
Mettenleiter, TC ;
Weinmann, O ;
Schwab, ME .
NATURE NEUROSCIENCE, 2004, 7 (03) :269-277
[3]   Strategies to restore motor functions after spinal cord injury [J].
Boulenguez, Pascale ;
Vinay, Laurent .
CURRENT OPINION IN NEUROBIOLOGY, 2009, 19 (06) :587-600
[4]   Evaluation of Intracellular Labeling With Micron-Sized Particles of Iron Oxide (MPIOs) as a General Tool for In Vitro and In Vivo Tracking of Human Stem and Progenitor Cells [J].
Boulland, Jean-Luc ;
Leung, Doreen S. Y. ;
Thuen, Marte ;
Vik-Mo, Einar ;
Joel, Mrinal ;
Perreault, Marie-Claude ;
Langmoen, Iver A. ;
Haraldseth, Olav ;
Glover, Joel C. .
CELL TRANSPLANTATION, 2012, 21 (08) :1743-1759
[5]   Expression of the vesicular glutamate transporters during development indicates the widespread corelease of multiple neurotransmitters [J].
Boulland, JL ;
Qureshi, T ;
Seal, RP ;
Rafiki, A ;
Gundersen, V ;
Bergersen, LH ;
Fremeau, RT ;
Edwards, RH ;
Storm-Mathisen, J ;
Chaudhry, FA .
JOURNAL OF COMPARATIVE NEUROLOGY, 2004, 480 (03) :264-280
[6]   Cell-specific expression of the glutamine transporter SN1 suggests differences in dependence on the glutamine cycle [J].
Boulland, JL ;
Osen, KK ;
Levy, LM ;
Danbolt, NC ;
Edwards, RH ;
Storm-Mathisen, J ;
Chaudhry, FA .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2002, 15 (10) :1615-1631
[7]   Characterization of the time course of changes of the evoked electrical activity in a model of a chemically-induced neuronal plasticity [J].
Broccard F.D. ;
Pegoraro S. ;
Ruaro M.E. ;
Altafini C. ;
Torre V. .
BMC Research Notes, 2 (1)
[8]  
Brockmeyer D, 1998, PEDIAT SPINAL CORD S
[9]   Sensory feedback modulates quipazine-induced stepping behavior in the newborn rat [J].
Brumley, Michele R. ;
Roberto, Megan E. ;
Strain, Misty M. .
BEHAVIOURAL BRAIN RESEARCH, 2012, 229 (01) :257-264
[10]   Plasticity of functional connectivity in the adult spinal cord [J].
Cai, L. L. ;
Courtine, G. ;
Fong, A. J. ;
Burdick, J. W. ;
Roy, R. R. ;
Edgerton, V. R. .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2006, 361 (1473) :1635-1646