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Microenvironment in Oral Potentially Malignant Disorders: Multi-Dimensional Characteristics and Mechanisms of Carcinogenesis

期刊

出版社

MDPI
DOI: 10.3390/ijms23168940

关键词

cancer chemoprevention; carcinogenesis; immune-metabolic-mechanical microenvironment; oral potentially malignant disorders

资金

  1. National Natural Science Foundation of China [82071124]
  2. Sichuan Science and Technology Program [2022NSFSC1599, 2021YFS0194]
  3. Research and Develop Program, West China School of Stomatology Sichuan University [LCYJ2020-BZ-1]

向作者/读者索取更多资源

This article explores the changes and interactions of microenvironments in Oral Potentially Malignant Disorders (OPMDs) and their relationship with carcinogenesis mechanisms. The authors propose an immuno-metabolic-mechanical-neural interaction network and summarize therapeutic strategies targeting microenvironments. These studies contribute to preventing the carcinogenesis of OPMDs and provide new research directions and clinical applications.
Oral potentially malignant disorders (OPMDs) are a group of diseases involving the oral mucosa and that have a risk of carcinogenesis. The microenvironment is closely related to carcinogenesis and cancer progression by regulating the immune response, cell metabolic activities, and mechanical characteristics. Meanwhile, there are extensive interactions between the microenvironments that remodel and provide favorable conditions for cancer initiation. However, the changes, exact roles, and interactions of microenvironments during the carcinogenesis of OPMDs have not been fully elucidated. Here, we present an updated landscape of the microenvironments in OPMDs, emphasizing the changes in the immune microenvironment, metabolic microenvironment, mechanical microenvironment, and neural microenvironment during carcinogenesis and their carcinogenic mechanisms. We then propose an immuno-metabolic-mechanical-neural interaction network to describe their close relationships. Lastly, we summarize the therapeutic strategies for targeting microenvironments, and provide an outlook on future research directions and clinical applications. This review depicts a vivid microenvironment landscape and sheds light on new strategies to prevent the carcinogenesis of OPMDs.

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