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细胞凋亡在脊髓损伤中的作用:1994年至2023年的文献计量分析

The role of apoptosis in spinal cord injury: a bibliometric analysis from 1994 to 2023.

作者信息

Wang Siqiao, Cheng Liming

机构信息

Division of Spine, Department of Orthopedics, Tongji Hospital Affiliated to Tongji University School of Medicine, Shanghai, China.

Key Laboratory of Spine and Spinal Cord Injury Repair and Regeneration (Tongji University), Ministry of Education, Shanghai, China.

出版信息

Front Cell Neurosci. 2024 Jan 16;17:1334092. doi: 10.3389/fncel.2023.1334092. eCollection 2023.

Abstract

BACKGROUND

Apoptosis after spinal cord injury (SCI) plays a pivotal role in the secondary injury mechanisms, which cause the ultimate neurologic insults. A better understanding of the molecular and cellular basis of apoptosis in SCI allows for improved glial and neuronal survival via the administrations of anti-apoptotic biomarkers. The knowledge structure, development trends, and research hotspots of apoptosis and SCI have not yet been systematically investigated.

METHODS

Articles and reviews on apoptosis and SCI, published from 1st January 1994 to 1st Oct 2023, were retrieved from the Web of Science™. Bibliometrix in R was used to evaluate annual publications, countries, affiliations, authors, sources, documents, key words, and hot topics.

RESULTS

A total of 3,359 publications in accordance with the criterions were obtained, which exhibited an ascending trend in annual publications. The most productive countries were the USA and China. was the most impactive journal; Wenzhou Medical University was the most prolific affiliation; Cuzzocrea S was the most productive and influential author. "Apoptosis," "spinal-cord-injury," "expression," "activation," and "functional recovery" were the most frequent key words. Additionally, "transplantation," "mesenchymal stemness-cells," "therapies," "activation," "regeneration," "repair," "autophagy," "exosomes," "nlrp3 inflammasome," "neuroinflammation," and "knockdown" were the latest emerging key words, which may inform the hottest themes.

CONCLUSIONS

Apoptosis after SCI may cause the ultimate neurological damages. Development of novel treatments for secondary SCI mainly depends on a better understanding of apoptosis-related mechanisms in molecular and cellular levels. Such therapeutic interventions involve the application of anti-apoptotic agents, free radical scavengers, as well as anti-inflammatory drugs, which can be targeted to inhibit core events in cellular and molecular injury cascades pathway.

摘要

背景

脊髓损伤(SCI)后的细胞凋亡在继发性损伤机制中起关键作用,继发性损伤机制会导致最终的神经损伤。更好地理解SCI中细胞凋亡的分子和细胞基础,有助于通过施用抗凋亡生物标志物来提高神经胶质细胞和神经元的存活率。细胞凋亡与SCI的知识结构、发展趋势和研究热点尚未得到系统研究。

方法

检索1994年1月1日至2023年10月1日发表在《科学网》上有关细胞凋亡与SCI的文章和综述。使用R语言中的Bibliometrix来评估年度出版物、国家、机构、作者、来源、文献、关键词和热点话题。

结果

共获得3359篇符合标准的出版物,年度出版物呈上升趋势。发文量最多的国家是美国和中国。 是最具影响力的期刊;温州医科大学是发文量最多的机构;Cuzzocrea S是发文量最多且最具影响力的作者。“细胞凋亡”“脊髓损伤”“表达”“激活”和“功能恢复”是最常见的关键词。此外,“移植”“间充质干细胞”“治疗”“激活”“再生”“修复”“自噬”“外泌体”“nlrp3炎性小体”“神经炎症”和“敲低”是最新出现的关键词,可能反映了最热门的主题。

结论

SCI后的细胞凋亡可能导致最终的神经损伤。继发性SCI新疗法的开发主要依赖于在分子和细胞水平上更好地理解细胞凋亡相关机制。此类治疗干预措施包括应用抗凋亡药物、自由基清除剂以及抗炎药物,这些药物可靶向抑制细胞和分子损伤级联途径中的核心事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0693/10825042/e31365738416/fncel-17-1334092-g001.jpg

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