Reactive glial cells: increased stiffness correlates with increased intermediate filament expression

被引:129
作者
Lu, Yun-Bi [1 ,2 ,4 ]
Iandiev, Ianors [3 ]
Hollborn, Margrit [3 ]
Koerber, Nicole [1 ,5 ]
Ulbricht, Elke [1 ]
Hirrlinger, Petra G. [1 ]
Pannicke, Thomas [1 ]
Wei, Er-Qing [4 ]
Bringmann, Andreas [3 ]
Wolburg, Hartwig [6 ]
Wilhelmsson, Ulrika [7 ]
Pekny, Milos [7 ]
Wiedemann, Peter [3 ]
Reichenbach, Andreas [1 ]
Kaes, Josef A. [2 ]
机构
[1] Univ Leipzig, Paul Flechsig Inst Brain Res, D-04109 Leipzig, Germany
[2] Univ Leipzig, Div Soft Matter Phys, Dept Phys, D-04109 Leipzig, Germany
[3] Univ Leipzig, Dept Ophthalmol, D-04109 Leipzig, Germany
[4] Zhejiang Univ, Sch Med, Dept Pharmacol, Hangzhou 310003, Zhejiang, Peoples R China
[5] Translat Ctr Regenerat Med, Leipzig, Germany
[6] Univ Tubingen, Inst Pathol, D-7400 Tubingen, Germany
[7] Univ Gothenburg, Ctr Brain Repair & Rehabil, Dept Clin Neurosci & Rehabil, Inst Neurosci & Physiol,Sahlgrenska Acad, Gothenburg, Sweden
基金
英国医学研究理事会; 中国国家自然科学基金;
关键词
biomechanics; elasticity; viscosity; retina; reactive gliosis; FIBRILLARY ACIDIC PROTEIN; MULLER CELLS; VISCOELASTIC PROPERTIES; RAT RETINA; INJURY; MICE; ASTROCYTES; VIMENTIN; BRAIN; REGENERATION;
D O I
10.1096/fj.10-163790
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
Increased stiffness of reactive glial cells may impede neurite growth and contribute to the poor regenerative capabilities of the mammalian central nervous system. We induced reactive gliosis in rodent retina by ischemia-reperfusion and assessed intermediate filament (IF) expression and the viscoelastic properties of dissociated single glial cells in wild-type mice, mice lacking glial fibrillary acidic protein and vimentin (GFAP(-/-)Vim(-/-)) in which glial cells are consequently devoid of IFs, and normal Long-Evans rats. In response to ischemia-reperfusion, glial cells stiffened significantly in wild-type mice and rats but were unchanged in GFAP(-/-)Vim(-/-) mice. Cell stiffness (elastic modulus) correlated with the density of IFs. These results support the hypothesis that rigid glial scars impair nerve regeneration and that IFs are important determinants of cellular viscoelasticity in reactive glia. Thus, therapeutic suppression of IF up-regulation in reactive glial cells may facilitate neuroregeneration.-Lu, Y.-B., Iandiev, I., Hollborn, M., Korber, N., Ulbricht, E., Hirrlinger, P. G., Pannicke, T., Wei, E.-Q., Bringmann, A., Wolburg, H., Wilhelmsson, U., Pekny, M., Wiedemann, P., Reichenbach, A., Kas, J. A. Reactive glial cells: increased stiffness correlates with increased intermediate filament expression. FASEB J. 25, 624-631 (2011). www.fasebj.org
引用
收藏
页码:624 / 631
页数:8
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