Global Knowledge Map and Emerging Research Trends in Induced Pluripotent Stem Cells and Hereditary Diseases: A CiteSpace-based Visualization and Analysis.

IF 4.5 3区 医学 Q2 CELL & TISSUE ENGINEERING Stem Cell Reviews and Reports Pub Date : 2024-10-08 DOI:10.1007/s12015-024-10799-z
Jiajun Xu, Weiwei Gong, Chune Mo, Xianliang Hou, Minglin Ou
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Abstract

The rise of induced pluripotent stem cells (iPSCs) technology has ushered in a landmark shift in the study of hereditary diseases. However, there is a scarcity of reports that offer a comprehensive and objective overview of the current state of research at the intersection of iPSCs and hereditary diseases. Therefore, this study endeavors to categorize and synthesize the publications in this field over the past decade through bibliometric methods and visual knowledge mapping, aiming to visually analyze their research focus and clinical trends. The English language literature on iPSCs and hereditary diseases, published from 2014 to 2023 in the Web of Science Core Collection (WoSCC), was examined. The CiteSpace (version 6.3.R1) software was utilized to visualize and analyze country/region, institution, scholar, co-cited authors, and co-cited journals. Additionally, the co-occurrence, clustering, and bursting of co-cited references were displayed. Analysis of 347 articles that met the inclusion criteria revealed a steady increase in the number of published articles and citation frequency in the field over the past decade. With regard to the countries/regions, institutions, scholars, and journals where the articles were published, the highest numbers were found in the USA, the University of California System, Suren M. Zakian, and Stem Cell Research, respectively. The current research is focused on the construction of disease models, both before and after correction, as well as drug target testing for single-gene hereditary diseases. Chromosome transplantation genomic therapy for hereditary diseases with abnormal chromosome structures may emerge as a future research hotspot in this field.

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诱导多能干细胞和遗传性疾病的全球知识地图和新兴研究趋势:基于 CiteSpace 的可视化和分析。
诱导多能干细胞(iPSCs)技术的兴起为遗传性疾病研究带来了里程碑式的转变。然而,能够全面客观地概述 iPSCs 与遗传疾病交叉研究现状的报告却十分稀少。因此,本研究试图通过文献计量学方法和可视化知识图谱对过去十年该领域的出版物进行分类和综合,旨在直观地分析其研究重点和临床趋势。本文研究了2014年至2023年发表在《科学网核心文库》(Web of Science Core Collection,WoSCC)中有关iPSCs和遗传性疾病的英文文献。利用CiteSpace(6.3.R1版)软件对国家/地区、机构、学者、共被引作者和共被引期刊进行可视化分析。此外,还显示了共引参考文献的共现、聚类和突发性。对符合纳入标准的 347 篇文章进行分析后发现,在过去十年中,该领域发表的文章数量和引用频率稳步增长。在发表文章的国家/地区、机构、学者和期刊方面,数量最多的分别是美国、加利福尼亚大学系统、Suren M. Zakian 和《干细胞研究》。目前的研究主要集中在疾病模型的构建(包括矫正前和矫正后),以及单基因遗传疾病的药物靶点测试。针对染色体结构异常的遗传性疾病的染色体移植基因组疗法可能会成为该领域未来的研究热点。
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来源期刊
Stem Cell Reviews and Reports
Stem Cell Reviews and Reports 医学-细胞生物学
CiteScore
9.30
自引率
4.20%
发文量
0
审稿时长
3 months
期刊介绍: The purpose of Stem Cell Reviews and Reports is to cover contemporary and emerging areas in stem cell research and regenerative medicine. The journal will consider for publication: i) solicited or unsolicited reviews of topical areas of stem cell biology that highlight, critique and synthesize recent important findings in the field. ii) full length and short reports presenting original experimental work. iii) translational stem cell studies describing results of clinical trials using stem cells as therapeutics. iv) papers focused on diseases of stem cells. v) hypothesis and commentary articles as opinion-based pieces in which authors can propose a new theory, interpretation of a controversial area in stem cell biology, or a stem cell biology question or paradigm. These articles contain more speculation than reviews, but they should be based on solid rationale. vi) protocols as peer-reviewed procedures that provide step-by-step descriptions, outlined in sufficient detail, so that both experts and novices can apply them to their own research. vii) letters to the editor and correspondence. In order to facilitate this exchange of scientific information and exciting novel ideas, the journal has created five thematic sections, focusing on: i) the role of adult stem cells in tissue regeneration; ii) progress in research on induced pluripotent stem cells, embryonic stem cells and mechanism governing embryogenesis and tissue development; iii) the role of microenvironment and extracellular microvesicles in directing the fate of stem cells; iv) mechanisms of stem cell trafficking, stem cell mobilization and homing with special emphasis on hematopoiesis; v) the role of stem cells in aging processes and cancerogenesis.
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