In vitro development of a tissue-engineered model of peripheral nerve regeneration to study neurite growth

被引:41
作者
Gingras, M
Bergeron, J
Déry, J
Durham, HD
Berthod, F
机构
[1] Univ Laval, CHA, Hop St Sacrement, Lab Organogenese Expt, Quebec City, PQ G1S 4L8, Canada
[2] McGill Univ, Montreal Neurol Inst, Montreal, PQ H3A 2B4, Canada
关键词
axon guidance; biomaterial; peripheral nervous system; keratinocytes; NGF;
D O I
10.1096/fj.02-1180fje
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
A unique tissue-engineered model of peripheral nerve regeneration was developed in vitro to study neurite outgrowth. Mouse dorsal root ganglia neurons were seeded on a collagen sponge populated with human endothelial cells and/or human fibroblasts. Addition of nerve growth factor (NGF; 10 ng/ml) was not required for sensory neurons survival but was necessary to promote neurite outgrowth, as assessed by immunostaining of the 150 kDa neurofilament. A vigorous neurite elongation was detected inside the reconstructed tissue after 14 and 31 days of neurons culture, reaching up to 770 mum from day 14. Axons were often observed closely associated with the capillary-like tubes reconstructed in the model, in a similar pattern as in the human dermis. The presence of endothelial cells induced a significant increase of the neurite elongation after 14 days of culture. The addition of human keratinocytes totally avoided the twofold decrease in the amount of neurites observed between 14 and 31 days in controls. Besides the addition of NGF, axonal growth did not necessitate B27 supplement or glial cell coculture to be promoted and stabilized for long-term culture. Thus, this model might be a valuable tool to study the effect of various cells and/or attractive or repulsive molecules on neurite outgrowth in vitro.
引用
收藏
页码:2124 / +
页数:16
相关论文
共 58 条
[31]   AXONAL GROWTH AND GLIAL MIGRATION FROM COCULTURED HIPPOCAMPAL AND SEPTAL SLICES INTO FIBRIN-FIBRONECTIN-CONTAINING MATRIX OF PERIPHERAL REGENERATION CHAMBERS - A LIGHT AND ELECTRON-MICROSCOPE STUDY [J].
KNOOPS, B ;
HUBERT, I ;
HAUW, JJ ;
DEAGUILAR, PV .
BRAIN RESEARCH, 1991, 540 (1-2) :183-194
[32]   aFGF promotes axonal growth in rat spinal cord organotypic slice co-cultures [J].
Lee, YS ;
Baratta, J ;
Yu, J ;
Lin, VW ;
Robertson, RT .
JOURNAL OF NEUROTRAUMA, 2002, 19 (03) :357-367
[33]   Long-term culture of mouse cortical neurons as a model for neuronal development, aging, and death [J].
Lesuisse, C ;
Martin, LJ .
JOURNAL OF NEUROBIOLOGY, 2002, 51 (01) :9-23
[34]   Rat tooth pulp cells elicit neurite growth from trigeminal neurones and express mRNAs for neurotrophic factors in vitro [J].
Lillesaar, C ;
Eriksson, C ;
Fried, K .
NEUROSCIENCE LETTERS, 2001, 308 (03) :161-164
[35]   Comparative neurotoxicity of oxaliplatin, ormaplatin, and their biotransformation products utilizing a rat dorsal root ganglia in vitro explant culture model [J].
Luo, FR ;
Wyrick, SD ;
Chaney, SG .
CANCER CHEMOTHERAPY AND PHARMACOLOGY, 1999, 44 (01) :29-38
[36]   Calcitonin gene-related peptide, substance P and protein gene product 9.5 immunoreactive axonal fibers in the rat footpad skin following partial sciatic nerve injuries [J].
Ma, MY ;
Bisby, MA .
JOURNAL OF NEUROCYTOLOGY, 2000, 29 (04) :249-262
[37]   Micropatterned Schwann cell-seeded biodegradable polymer substrates significantly enhance neurite alignment and outgrowth [J].
Miller, C ;
Jeftinija, S ;
Mallapragada, S .
TISSUE ENGINEERING, 2001, 7 (06) :705-715
[38]   Sensory nerves determine the pattern of arterial differentiation and blood vessel branching in the skin [J].
Mukouyama, Y ;
Shin, D ;
Britsch, S ;
Taniguchi, M ;
Anderson, DJ .
CELL, 2002, 109 (06) :693-705
[39]   Vascular endothelial cells synthesize and secrete brain-derived neurotrophic factor [J].
Nakahashi, T ;
Fujimura, H ;
Altar, CA ;
Li, J ;
Kambayashi, J ;
Tandon, NN ;
Sun, B .
FEBS LETTERS, 2000, 470 (02) :113-117
[40]  
Padilla F, 1999, J NEUROSCI RES, V58, P270