Sequential therapy of anti-Nogo-A antibody treatment and treadmill training leads to cumulative improvements after spinal cord injury in rats

被引:46
作者
ChenKinon [1 ,3 ]
Marsh, Barnaby C. [1 ]
Cowan, Matthew [1 ]
A'Joboori, Yazi D. [1 ]
Gigout, Sylvain [1 ]
Smith, Calvin C. [1 ]
Messenger, Neil [1 ]
Gamper, Nikita [1 ]
Schwab, Martin E. [2 ]
Ichiyama, Ronaldo M. [1 ]
机构
[1] Univ Leeds, Sch Biomed Sci, Garstang G5-55a, Leeds LS2 9JT, W Yorkshire, England
[2] Univ Zurich, Brain Res Inst, CH-8057 Zurich, Switzerland
[3] Beihang Univ, Sch Biol Sci & Med Engn, Beijing 100191, Peoples R China
关键词
Locomotor training; Axonal sprouting; Corticospinal; 5-HT; Ia afferents; Exercise; c-Fos; Kinematics; CORTICOSPINAL TRACT; PRESYNAPTIC INHIBITION; SYNAPTIC-TRANSMISSION; CHONDROITINASE ABC; FICTIVE LOCOMOTION; ADULT RATS; PLASTICITY; RECOVERY; CAT; REHABILITATION;
D O I
10.1016/j.expneurol.2017.03.012
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Intense training is the most clinically successful treatment modality following incomplete spinal cord injuries (SCIs). With the advent of plasticity enhancing treatments, understanding how treatments might interact when delivered in combination becomes critical. Here, we investigated a rational approach to sequentially combine treadmill locomotor training with antibody mediated suppression of the fiber growth inhibitory protein Nogo-A. Following a large but incomplete thoracic lesion, rats were immediately treated with either anti-Nogo-A or control antibody (2 weeks) and then either left untrained or step-trained starting 3 weeks after injury for 8 weeks. It was found that sequentially combined therapy improved step consistency and reduced toe dragging and climbing errors, as seen with training and anti-Nogo-A individually. Animals with sequential therapy also adopted a more parallel paw position during bipedal walking and showed greater overall quadrupedal loco motor recovery than individual treatments. Histologically, sequential therapy induced the greatest corticospinal tract sprouting caudally into the lumbar region and increased the number of serotonergic synapses onto lumbar motoneurons. Increased primary afferent sprouting and synapse formation onto lumbar motoneurons observed with anti-Nogo-A antibody were reduced by training. Animals with sequential therapy also showed the highest reduction of lumbar interneuronal activity associated with walking (c-fos expression). No treatment effects for thermal nociception, mechanical allodynia, or lesion volume were observed. The results demonstrate that sequential administration of anti-Nogo-A antibody followed in time with intensive locomotor training leads to superior recovery of lost locomotor functions, which is probably mediated by changes in the interaction between descending sprouting and local segmental networks after SCI. (C) 2017 Elsevier Inc. All rights reserved.
引用
收藏
页码:135 / 144
页数:10
相关论文
共 48 条
[1]   Anatomical Plasticity of Adult Brain Is Titrated by Nogo Receptor 1 [J].
Akbik, Feras V. ;
Bhagat, Sarah M. ;
Patel, Pujan R. ;
Cafferty, William B. J. ;
Strittmatter, Stephen M. .
NEURON, 2013, 77 (05) :859-866
[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]   A SENSITIVE AND RELIABLE LOCOMOTOR RATING-SCALE FOR OPEN-FIELD TESTING IN RATS [J].
BASSO, DM ;
BEATTIE, MS ;
BRESNAHAN, JC .
JOURNAL OF NEUROTRAUMA, 1995, 12 (01) :1-21
[4]   Co-development of proprioceptive afferents and the corticospinal tract within the cervical spinal cord [J].
Chakrabarty, Samit ;
Martin, John H. .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2011, 34 (05) :682-694
[5]   QUANTITATIVE ASSESSMENT OF TACTILE ALLODYNIA IN THE RAT PAW [J].
CHAPLAN, SR ;
BACH, FW ;
POGREL, JW ;
CHUNG, JM ;
YAKSH, TL .
JOURNAL OF NEUROSCIENCE METHODS, 1994, 53 (01) :55-63
[6]   Transformation of nonfunctional spinal circuits into functional states after the loss of brain input [J].
Courtine, Gregoire ;
Gerasimenko, Yury ;
van den Brand, Rubia ;
Yew, Aileen ;
Musienko, Pavel ;
Zhong, Hui ;
Song, Bingbing ;
Ao, Yan ;
Ichiyama, Ronaldo M. ;
Lavrov, Igor ;
Roy, Roland R. ;
Sofroniew, Michael V. ;
Edgerton, V. Reggie .
NATURE NEUROSCIENCE, 2009, 12 (10) :1333-U167
[7]   Locomotor activity in spinal cord-injured persons [J].
Dietz, V ;
Harkema, SJ .
JOURNAL OF APPLIED PHYSIOLOGY, 2004, 96 (05) :1954-1960
[8]   NEUROTRANSMITTER PHENOTYPES OF DESCENDING SYSTEMS IN THE RAT LUMBAR SPINAL CORD [J].
Du Beau, A. ;
Shrestha, S. Shakya ;
Bannatyne, B. A. ;
Jalicy, S. M. ;
Linnen, S. ;
Maxwell, D. J. .
NEUROSCIENCE, 2012, 227 :67-79
[9]   RHYTHMIC FLUCTUATIONS OF DORSAL-ROOT POTENTIALS AND ANTIDROMIC DISCHARGES OF PRIMARY AFFERENTS DURING FICTIVE LOCOMOTION IN THE CAT [J].
DUBUC, R ;
CABELGUEN, JM ;
ROSSIGNOL, S .
JOURNAL OF NEUROPHYSIOLOGY, 1988, 60 (06) :2014-2036
[10]   PRESYNAPTIC INHIBITION OF SPINAL MONOSYNAPTIC REFLEX PATHWAY [J].
ECCLES, JC ;
WILLIS, WD ;
SCHMIDT, RF .
JOURNAL OF PHYSIOLOGY-LONDON, 1962, 161 (02) :282-&