Suppr超能文献

神经节苷脂G(M1)和促红细胞生成素对大鼠脊髓损伤的影响:功能和组织学评估

Effects of ganglioside G(M1) and erythropoietin on spinal cord lesions in rats: functional and histological evaluations.

作者信息

Marcon Raphael Martus, Cristante Alexandre Fogaça, de Barros Tarcísio Eloy Pessoa, Ferreira Ricardo, Dos Santos Gustavo Bispo

机构信息

Instituto de Ortopedia e Traumatologia, Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo (IOT-HCFMUSP), Divisão de Cirurgia de Coluna Vertebral, Laboratório de Investigação Médica (LIM 41), São Paulo/SP, Brazil.

出版信息

Clinics (Sao Paulo). 2016 Jul;71(6):351-60. doi: 10.6061/clinics/2016(06)11.

Abstract

OBJECTIVE

To evaluate the functional and histological effects of ganglioside G(M1) and erythropoietin after experimental spinal cord contusion injury.

METHODS

Fifty male Wistar rats underwent experimental spinal cord lesioning using an NYU-Impactor device and were randomly divided into the following groups, which received treatment intraperitoneally. The G(M1) group received ganglioside G(M1) (30 mg/kg); the erythropoietin group received erythropoietin (1000 IU/kg); the combined group received both drugs; and the saline group received saline (0.9%) as a control. A fifth group was the laminectomy group, in which the animals were subjected to laminectomy alone, without spinal lesioning or treatment. The animals were evaluated according to the Basso, Beattie and Bresnahan (BBB) scale, motor evoked potential recordings and, after euthanasia, histological analysis of spinal cord tissue.

RESULTS

The erythropoietin group had higher BBB scores than the G(M1) group. The combined group had the highest BBB scores, and the saline group had the lowest BBB scores. No significant difference in latency was observed between the three groups that underwent spinal cord lesioning and intervention. However, the combined group showed a significantly higher signal amplitude than the other treatment groups or the saline group (p<0.01). Histological tissue analysis showed no significant difference between the groups. Axonal index was significantly enhanced in the combined group than any other intervention (p<0.01).

CONCLUSION

G(M1) and erythropoietin exert therapeutic effects on axonal regeneration and electrophysiological and motor functions in rats subjected to experimental spinal cord lesioning and administering these two substances in combination potentiates their effects.

摘要

目的

评估神经节苷脂G(M1)和促红细胞生成素在实验性脊髓挫伤损伤后的功能和组织学效应。

方法

50只雄性Wistar大鼠使用纽约大学冲击器进行实验性脊髓损伤,并随机分为以下几组,接受腹腔内治疗。G(M1)组接受神经节苷脂G(M1)(30mg/kg);促红细胞生成素组接受促红细胞生成素(1000IU/kg);联合组接受两种药物;生理盐水组接受生理盐水(0.9%)作为对照。第五组为椎板切除术组,其中动物仅接受椎板切除术,无脊髓损伤或治疗。根据Basso、Beattie和Bresnahan(BBB)量表、运动诱发电位记录对动物进行评估,并在安乐死后对脊髓组织进行组织学分析。

结果

促红细胞生成素组的BBB评分高于G(M1)组。联合组的BBB评分最高,生理盐水组的BBB评分最低。在接受脊髓损伤和干预的三组之间,潜伏期未观察到显著差异。然而,联合组的信号幅度明显高于其他治疗组或生理盐水组(p<0.01)。组织学组织分析显示各组之间无显著差异。联合组的轴突指数比任何其他干预组都显著增强(p<0.01)。

结论

G(M1)和促红细胞生成素对实验性脊髓损伤大鼠的轴突再生、电生理和运动功能具有治疗作用,联合使用这两种物质可增强其效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac5d/4930661/5ab1e42ac211/cln-71-06-351-g001.jpg

相似文献

2
Effects of ganglioside GM1 and erythropoietin on spinal cord injury in mice: Functional and immunohistochemical assessments.
Clinics (Sao Paulo). 2022 Feb 19;77:100006. doi: 10.1016/j.clinsp.2022.100006. eCollection 2022.
4
Evaluation of the effects of erythropoietin and interleukin-6 in rats submitted to acute spinal cord injury.
Clinics (Sao Paulo). 2019;74:e674. doi: 10.6061/clinics/2019/e674. Epub 2019 Aug 19.
5
Glutathione effect on functional and histological recovery after spinal cord injury in rats.
Clinics (Sao Paulo). 2024 Apr 23;79:100359. doi: 10.1016/j.clinsp.2024.100359. eCollection 2024.
7
Erythropoietin effect on sensorimotor recovery after contusive spinal cord injury: an electrophysiological study in rats.
Neuroscience. 2012 Sep 6;219:290-301. doi: 10.1016/j.neuroscience.2012.05.041. Epub 2012 Jun 1.
9
Galantamine improves functional recovery and reduces lesion size in a rat model of spinal cord injury.
Brain Res. 2019 Dec 1;1724:146424. doi: 10.1016/j.brainres.2019.146424. Epub 2019 Aug 28.
10
Evaluation of the effect of intrathecal GM1 in 24, 48, and 72 hours after acute spinal cord injury in rats.
Clinics (Sao Paulo). 2023 Jul 5;78:100228. doi: 10.1016/j.clinsp.2023.100228. eCollection 2023.

引用本文的文献

1
Erythropoietin to Treat Spinal Cord Injury: Evaluation of Different Doses and Magnitudes of Trauma in Rats.
Global Spine J. 2024 Dec 9:21925682241306106. doi: 10.1177/21925682241306106.
2
Sovateltide (ILR-1620) Improves Motor Function and Reduces Hyperalgesia in a Rat Model of Spinal Cord Injury.
Neurocrit Care. 2024 Oct;41(2):455-468. doi: 10.1007/s12028-024-01950-2. Epub 2024 Mar 5.
3
Neurological recovery and antioxidant effect of erythropoietin for spinal cord injury: A systematic review and meta-analysis.
Front Neurol. 2022 Jul 19;13:925696. doi: 10.3389/fneur.2022.925696. eCollection 2022.
4
Effects of ganglioside GM1 and erythropoietin on spinal cord injury in mice: Functional and immunohistochemical assessments.
Clinics (Sao Paulo). 2022 Feb 19;77:100006. doi: 10.1016/j.clinsp.2022.100006. eCollection 2022.
5
Evaluation of the effects of erythropoietin and interleukin-6 in rats submitted to acute spinal cord injury.
Clinics (Sao Paulo). 2019;74:e674. doi: 10.6061/clinics/2019/e674. Epub 2019 Aug 19.
6
Regulation of Inflammatory Cytokines for Spinal Cord Injury Repair Through Local Delivery of Therapeutic Agents.
Adv Sci (Weinh). 2018 Jul 31;5(11):1800529. doi: 10.1002/advs.201800529. eCollection 2018 Nov.

本文引用的文献

2
Designing drugs that encourage spinal cord injury healing.
Expert Opin Drug Discov. 2014 Oct;9(10):1151-65. doi: 10.1517/17460441.2014.941350. Epub 2014 Jul 25.
3
Differential cavitation, angiogenesis and wound-healing responses in injured mouse and rat spinal cords.
Neuroscience. 2014 Sep 5;275:62-80. doi: 10.1016/j.neuroscience.2014.06.003. Epub 2014 Jun 11.
4
Therapeutic Application of Electric Fields in the Injured Nervous System.
Adv Wound Care (New Rochelle). 2014 Feb 1;3(2):156-165. doi: 10.1089/wound.2013.0450.
6
Effects of antidepressant and treadmill gait training on recovery from spinal cord injury in rats.
Spinal Cord. 2013 Jun;51(6):501-7. doi: 10.1038/sc.2013.18. Epub 2013 Apr 9.
7
Spinal cord injury from electrocautery: observations in a porcine model using electromyography and motor evoked potentials.
J Clin Monit Comput. 2013 Apr;27(2):195-201. doi: 10.1007/s10877-012-9417-2. Epub 2012 Nov 23.
8
Time-related effects of general functional training in spinal cord-injured rats.
Clinics (Sao Paulo). 2012 Jul;67(7):799-804. doi: 10.6061/clinics/2012(07)16.
10
Histopathology of transitory traumatic paraplegia in the monkey.
J Neurosurg. 1971 Sep;35(3):272-6. doi: 10.3171/jns.1971.35.3.0272.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验