Department of Radiotherapy, Yantaishan Hospital, Shandong, China.
Department of Plastic Surgery, Shanghai East Hospital, Tongji University School of Medicine, Shanghai, China.
Skin Res Technol. 2024 Aug;30(8):e70017. doi: 10.1111/srt.70017.
BACKGROUND: Melanoma is an aggressive malignancy primarily impacting the skin, mucous membranes, and pigment epithelium. The tumor microbial microenvironment encompasses both the microorganisms inhabiting the tumor vicinity and the environmental factors influencing their interactions. Emerging evidence highlights the pivotal role of the microbial immune microenvironment in melanoma. METHODS: We conducted an extensive review of scholarly works published from 2012 to 2022, utilizing The Web of Science Core Collection. Subsequently, we employed analytical tools such as VOSviewer, CiteSpace, and the R programming language to scrutinize prevailing research patterns within this domain. RESULTS: A sum of 513 articles were pinpointed, with notable input coming from the United States and China. Harvard University stood out as the top-contributing institution, while the journal Science received the most citations. Current research within this sphere chiefly focuses on two principal domains: the gut microbiota and the PD-L1 pathway concerning melanoma treatment. CONCLUSION: The study offers an extensive analysis and overview of the worldwide research landscape concerning the immune microenvironment with a focus on microbes in melanoma. It underscores the promising prospects for harnessing the microbial immune microenvironment's potential in melanoma. These findings furnish valuable insights and guidance for advancing scientific inquiry and refining clinical approaches within this dynamic field.
背景:黑色素瘤是一种侵袭性恶性肿瘤,主要影响皮肤、粘膜和色素上皮。肿瘤微生物微环境包括栖息在肿瘤附近的微生物和影响它们相互作用的环境因素。新出现的证据强调了微生物免疫微环境在黑色素瘤中的关键作用。
方法:我们利用 Web of Science 核心合集,对 2012 年至 2022 年发表的学术著作进行了广泛的回顾。随后,我们使用了 VOSviewer、CiteSpace 和 R 编程语言等分析工具,仔细研究了该领域的现有研究模式。
结果:确定了 513 篇文章,其中美国和中国的贡献最大。哈佛大学是贡献最大的机构,而《科学》杂志的引用最多。目前该领域的研究主要集中在两个主要领域:肠道微生物群和 PD-L1 途径与黑色素瘤治疗有关。
结论:本研究对全球关于黑色素瘤免疫微环境的研究进行了广泛的分析和综述,重点关注微生物。它强调了在黑色素瘤中利用微生物免疫微环境潜力的广阔前景。这些发现为推进该领域的科学研究和完善临床方法提供了有价值的见解和指导。
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