Promotion of axonal outgrowth and regeneration in cortical neurons by Rho inhibition
M Nadal Muñoz - 2020 - riunet.upv.es
[ES] El accidente cerebrovascular es una patología caracterizada por la restricción de la
disponibilidad de oxígeno y nutrientes debido a un flujo sanguíneo deficiente. Dependiendo …
disponibilidad de oxígeno y nutrientes debido a un flujo sanguíneo deficiente. Dependiendo …
Activated RHOA and peripheral axon regeneration
C Cheng, CA Webber, J Wang, Y Xu, JA Martinez… - Experimental …, 2008 - Elsevier
The regeneration of adult peripheral neurons after transection is slow, incomplete and
encumbered by severe barriers to proper regrowth. The role of RHOA GTPase has not been …
encumbered by severe barriers to proper regrowth. The role of RHOA GTPase has not been …
Signaling mechanisms of axon growth inhibition.
K Hata, T Kubo, A Yamaguchi… - Drug News & …, 2006 - europepmc.org
Generally, the axons in the adult mammalian central nervous system (CNS) do not
regenerate after injuries. This lack of regeneration results in partial disability or complete …
regenerate after injuries. This lack of regeneration results in partial disability or complete …
Rho‐kinase inhibition enhances axonal regeneration after peripheral nerve injury
A Hiraga, S Kuwabara, H Doya, K Kanai… - Journal of the …, 2006 - Wiley Online Library
In injured adult neurons, the process of axonal regrowth and reestablishment of the
neuronal function have to be activated. We assessed in this study whether RhoA, a key …
neuronal function have to be activated. We assessed in this study whether RhoA, a key …
Effect of focal cerebral infarctions on lesional RhoA and RhoB expression
C Brabeck, M Mittelbronn, K Bekure… - Archives of …, 2003 - jamanetwork.com
Background Blockade of the small GTPase Rho (ras homology protein) or of its downstream
target Rho-associated kinase has been shown to promote axon regeneration in vitro and in …
target Rho-associated kinase has been shown to promote axon regeneration in vitro and in …
Delayed treatment with Rho-kinase inhibitor does not enhance axonal regeneration or functional recovery after spinal cord injury in rats
Y Nishio, M Koda, K Kitajo, M Seto, K Hata… - Experimental …, 2006 - Elsevier
Axonal regeneration in the central nervous system is blocked by many different growth
inhibitory factors. Some of these inhibitors act on neurons by activating RhoA and Rho …
inhibitory factors. Some of these inhibitors act on neurons by activating RhoA and Rho …
Inactivation of intracellular Rho to stimulate axon growth and regeneration
B Ellezam, C Dubreuil, M Winton, L Loy… - Progress in brain …, 2002 - Elsevier
Publisher Summary This chapter discusses the inactivation of intracellular Rho to stimulate
axon growth and regeneration. In tissue culture, inactivation of the Rho signaling pathway is …
axon growth and regeneration. In tissue culture, inactivation of the Rho signaling pathway is …
Inhibition of Rho-kinase differentially affects axon regeneration of peripheral motor and sensory nerves
AR Joshi, I Bobylev, G Zhang, KA Sheikh… - Experimental …, 2015 - Elsevier
Abstract The small GTPase RhoA and its down-stream effector Rho-kinase (ROCK) are
important effector molecules of the neuronal cytoskeleton. Modulation of the RhoA/ROCK …
important effector molecules of the neuronal cytoskeleton. Modulation of the RhoA/ROCK …
[HTML][HTML] The role of Rho/Rho-kinase pathway and the neuroprotective effects of fasudil in chronic cerebral ischemia
Y Yan, X Wang, Y Jiang, H Chen, J He… - Neural Regeneration …, 2015 - journals.lww.com
Abstract The Rho/Rho-kinase signaling pathway plays an important role in cerebral
ischemia/reperfusion injury. However, very few studies have examined in detail the changes …
ischemia/reperfusion injury. However, very few studies have examined in detail the changes …
[HTML][HTML] Rho kinase: A new target for treatment of cerebral ischemia/reperfusion injury★
Q Cui, Y Zhang, H Chen, J Li - Neural Regeneration Research, 2013 - journals.lww.com
Rho kinase inhibitor fasudil hydrochloride has been shown to reduce cerebral vasospasm,
to inhibit inflammation and apoptosis and to promote the recovery of neurological function …
to inhibit inflammation and apoptosis and to promote the recovery of neurological function …
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