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A new peptide,VD11,promotes structural and functional recovery after spinal cord injury
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作者 Shan-Shan Li bai-yu zhang +11 位作者 Sai-Ge Yin Zi-Qi Wei Nai-Xin Liu Yi-Lin Li Si-Yu Wang Yu-Heng Shi Jian Zhao Li-Juan Wang Yue zhang Jun Sun Ying Wang Xin-Wang Yang 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第10期2260-2267,共8页
The regenerative capacity of the central nervous system is very limited and few effective treatments are currently available for spinal cord injury.It is therefore a priority to develop new drugs that can promote stru... The regenerative capacity of the central nervous system is very limited and few effective treatments are currently available for spinal cord injury.It is therefore a priority to develop new drugs that can promote structural and functional recovery after spinal cord injury.Previous studies have shown that peptides can promote substantial repair and regeneration of injured tissue.While amphibians have a pronounced ability to regenerate the spinal cord,few studies have investigated the effect of amphibian spinal cord-derived peptides on spinal cord injury.Here we report for the first time the successful identification and isolation of a new polypeptide,VD11(amino acid sequence:VDELWPPWLPC),from the spinal cord of an endemic Chinese amphibian(Odorrana schmackeri).In vitro experiments showed that VD11 promoted the secretion of nerve growth factor and brain-derived neurotrophic factor in BV2 cells stimulated with lipopolysaccharide,as well as the proliferation and synaptic elongation of PC12 cells subjected to hypoxia.In vivo experiments showed that intravertebral injection of VD11 markedly promoted recovery of motor function in rats with spinal cord injury,alleviated pathological damage,and promoted axonal regeneration.Furthermore,RNA sequencing and western blotting showed that VD11 may affect spinal cord injury through activation of the AMPK and AKT signaling pathways.In summary,we discovered a novel amphibian-derived peptide that promotes structural and functional recovery after spinal cord injury. 展开更多
关键词 Akt signaling pathway amphibian-derived bioactive peptide AMPK signaling pathway axonal regeneration brain-derived neurotrophic factor ischemia/reperfusion injury motor function nerve growth factor neuroprotective effect spinal cord injury
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抗微生物肽在感染性疾病中的研究进展
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作者 郭彩芬 张白羽 申吉泓 《中国现代医学杂志》 CAS 2019年第22期33-37,共5页
在医学科学高速发展的今天,感染性疾病的发病率仍然很高。由于耐药细菌和变异病毒等不断涌现,人类寻找新型抗感染药物的脚步也从未停止。抗微生物肽是广泛存在于各种动植物中,具有免疫防御功能的阳离子多肽类,由于其抗微生物活性多样,... 在医学科学高速发展的今天,感染性疾病的发病率仍然很高。由于耐药细菌和变异病毒等不断涌现,人类寻找新型抗感染药物的脚步也从未停止。抗微生物肽是广泛存在于各种动植物中,具有免疫防御功能的阳离子多肽类,由于其抗微生物活性多样,具有免疫调节功能,是抗感染药物研发的理想分子。笔者就抗微生物肽在感染性疾病中的研究现状进行综述。 展开更多
关键词 慢病毒感染 抗感染药 抗微生物肽/肽类
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