Precise control of miR-125b levels is required to create a regeneration-permissive environment after spinal cord injury: a cross-species comparison between salamander and rat
نویسندگان
چکیده
Most spinal cord injuries lead to permanent paralysis in mammals. By contrast, the remarkable regenerative abilities of salamanders enable full functional recovery even from complete spinal cord transections. The molecular differences underlying this evolutionary divergence between mammals and amphibians are poorly understood. We focused on upstream regulators of gene expression as primary entry points into this question. We identified a group of microRNAs (miRNAs) that are conserved between the Mexican axolotl salamander (Ambystoma mexicanum) and mammals but show marked cross-species differences in regulation patterns following spinal cord injury. We found that precise post-injury levels of one of these miRNAs (miR-125b) is essential for functional recovery, and guides correct regeneration of axons through the lesion site in a process involving the direct downstream target Sema4D in axolotls. Translating these results to a mammalian model, we increased miR-125b levels in the rat through mimic treatments following spinal cord transection. These treatments downregulated Sema4D and other glial-scar-related genes, and enhanced the animal's functional recovery. Our study identifies a key regulatory molecule conserved between salamander and mammal, and shows that the expression of miR-125b and Sema4D must be carefully controlled in the right cells at the correct level to promote regeneration. We also show that these molecular components of the salamander's regeneration-permissive environment can be experimentally harnessed to improve treatment outcomes for mammalian spinal cord injuries.
منابع مشابه
Induction of traumatic brain and spinal cord injury models in rat using a modified impactor device
Introduction: The use of standard rodent model, allows for the understanding of neuronal injury physiopathology and helping development of therapeutic strategies. Because of eliminating technical problems, we designed a modified impactor device with ability to induce different degrees according to kilodyne from very mild to very severe of spinal cord injury (SCI) and traumatic brain injury (TBI...
متن کاملInduction of Traumatic Spinal Cord Injury in Rat Using a Device Made in Tabriz University of Medical Sciences
Abstract Backgrond:Spinal cord injury (SCI) leads to a serious neurological condition, associating with sensory and motor dysfunctions as well as urinary infections. In the experimental situations, using a valid SCI model helps to understand pathophysiological mechanisms and better ascertainment of therapeutic interventions. Because contusion type of SCI occurs commonly in human, in the pr...
متن کاملInfluence of Sexuality in Functional Recovery after Spinal Cord Injury in rats
Background: Spinal cord injury (SCI) is a major clinical condition and research is commonly done to find suitable treatment options. However, there are some degrees of spontaneous recovery after SCI and gender is said to be a contributing factor in recovery, but this is controversial. This study was done to compare the effects of sexual dimorphism on spontaneous recovery after spinal cord inj...
متن کاملStudy of Neuroprotective Effects of Green Tea Antioxidant on Spinal Cord Injury of Rat
Purpose: Recent studies revealed the neuroprotective effects of green tea antioxidant on experimental cerebral ischemia, but these effects on spinal cord injury (SCI) has not yet been studied.Materials and Methods: Rats were randomly divided into three groups of 18 rats each as follows: sham group (laminectomy), control group (SCI) and experimental group (EGCG). Spinal cord samples were taken 2...
متن کاملMesenchymal Stem Cells as an Alternative for Schwann Cells in Rat Spinal Cord Injury
Background: Spinal cord has a limited capacity to repair therefore, medical interventions are necessary for treatment of injuries. Transplantation of Schwann cells has shown a great promising result for spinal cord injury (SCI). However, harvesting Schwann cell has been limited due to donor morbidity and limited expansion capacity. Furthermore, accessible sources such as bone marrow stem cells ...
متن کامل