Exploring research trend and hotspots on oxidative stress in ischemic stroke (2001-2022): insights from bibliometric

Author:

Jiang Nan1,Yang Ting1,Han Hongxia2,Shui Jing1,Hou Miaomiao1,Wei Wenyue3,Kumar Gajendra4,Song Lijuan5,Ma Cungen5,Li Xinyi1,Ding Zhibin1ORCID

Affiliation:

1. Third Hospital of Shanxi Medical University: Shanxi Bethune Hospital

2. Shanxi Medical University

3. Shanxi Datong University

4. City University of Hong Kong

5. Shanxi University of Traditional Chinese Medicine

Abstract

Abstract Oxidative stress is widely involved in the pathological process of ischemic stroke and ischemia-reperfusion. Several research have demonstrated that eliminating or reducing oxidative stress can alleviate the pathological changes of ischemic stroke. However, current clinical antioxidant treatment did not always perform as expected. This bibliometric research aims to identify research trends, topics, hotspots and evolution on oxidative stress in the field of ischemic stroke, and to find potentially antioxidant strategies in future clinical treatment. Relevant publications were searched from the Web of Science (WOS) Core Collection databases (2001–2022). VOSviewer was used to visualize and analyze the development trends and hotspots. In the field of oxidative stress and ischemic stroke, the number of publications increased significantly from 2001 to 2022. China and the USA were the leading countries for publication output. The most prolific institutions were Stanford University. Journal of Cerebral Blood Flow and Metabolism and Stroke were the most cited journals. The research topics in this field include inflammation with oxidative stress, mitochondrial damage with oxidative stress, oxidative stress in reperfusion injury, oxidative stress in cognitive impairment and basic research and clinical translation of oxidative stress. Moreover, "NLRP3 inflammasome", "autophagy", "mitophagy", "miRNA", "ferroptosis" and "signaling pathway" are the emerging research hotspots in recent years. At present, multi-target regulation focusing on multi-mechanism crosstalk has progressed across this period, while challenges come from the transformation of basic research to clinical application. New detection technology and new nanomaterials are expected to integrate oxidative stress into the clinical treatment of ischemic stroke better.

Publisher

Research Square Platform LLC

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