首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Targeted retrograde gene delivery into the injured cervical spinal cord using recombinant adenovirus vector.
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Targeted retrograde gene delivery into the injured cervical spinal cord using recombinant adenovirus vector.

机译:使用重组腺病毒载体将逆行基因靶向导入受损的颈脊髓。

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Direct routes of gene administration (intrathecal, intracerebroventricular or intraparenchymal infusion) have been used for effective and sustained gene delivery, but serious concerns exist about possible traumatic injury as well as neural damage that may lead to further tissue necrosis, apoptosis and cell death. We evaluated targeted retrograde gene delivery through the sternomastoid muscle (innervated by the spinal accessory nerves) into the injured cervical spinal cord using a recombinant adenovirus vector. LacZ gene expression in the cervical spinal cord was noted from 3 days to 4 weeks after the injection of vector into the sternomastoid muscles of the rats. Recombinant adenovirus vector was transferred via a retrograde mechanism into the injured cervical spinal cord with high transduction efficacy (80.6--98.9%) over certain adenoviral titer and dosage. Transduction was less efficient when the vector was injected 1 and 2 weeks after spinal cord injury (44.2--56.8%). Our results indicate retrogradedelivery of recombinant adenovirus vector is possible immediately after spinal cord injury, and that this method is promising for gene delivery because it is effective, selective, less invasive to the injured spinal cord, has long-lasting gene expression, and is potentially feasible treatment choice for spinal cord injury.
机译:基因给药的直接途径(鞘内,脑室内或实质内输注)已被用于有效和持续的基因传递,但是人们对可能的创伤性损伤以及可能导致进一步的组织坏死,细胞凋亡和细胞死亡的神经损伤存在严重的担忧。我们使用重组腺病毒载体评估了通过胸锁乳突肌(由脊髓副神经支配)靶向逆行基因传递到受伤的颈脊髓中的过程。在将载体注射到大鼠的乳突肌中后的3天至4周,注意到LacZ基因在颈脊髓中的表达。重组腺病毒载体通过逆行机制转移到受伤的颈脊髓中,在一定的腺病毒滴度和剂量下具有很高的转导效率(80.6--98.9%)。当在脊髓损伤后1和2周注射载体时,转导效率较低(44.2--56.8%)。我们的结果表明,重组腺病毒载体可在脊髓损伤后立即逆行递送,并且该方法有望用于基因递送,因为该方法有效,选择性强,对受损脊髓的侵袭性小,基因表达持久并且具有潜在的发展潜力。脊髓损伤的可行治疗选择。

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