Advances in integrating single-cell sequencing data to unravel the mechanism of ferroptosis in cancer

Author:

Du Zhaolan12,Shi Yi12,Tan Jianjun123ORCID

Affiliation:

1. Department of Biomedical Engineering , College of Chemistry and Life Science, , Beijing 100124 , China

2. Beijing University of Technology , College of Chemistry and Life Science, , Beijing 100124 , China

3. Beijing International Science and Technology Cooperation Base for Intelligent Physiological Measurement and Clinical Transformation , Department of Biomedical Engineering, College of Chemistry and Life Science, Beijing University of Technology, Beijing 100124, China

Abstract

Abstract Ferroptosis, a commonly observed type of programmed cell death caused by abnormal metabolic and biochemical mechanisms, is frequently triggered by cellular stress. The occurrence of ferroptosis is predominantly linked to pathophysiological conditions due to the substantial impact of various metabolic pathways, including fatty acid metabolism and iron regulation, on cellular reactions to lipid peroxidation and ferroptosis. This mode of cell death serves as a fundamental factor in the development of numerous diseases, thereby presenting a range of therapeutic targets. Single-cell sequencing technology provides insights into the cellular and molecular characteristics of individual cells, as opposed to bulk sequencing, which provides data in a more generalized manner. Single-cell sequencing has found extensive application in the field of cancer research. This paper reviews the progress made in ferroptosis-associated cancer research using single-cell sequencing, including ferroptosis-associated pathways, immune checkpoints, biomarkers, and the identification of cell clusters associated with ferroptosis in tumors. In general, the utilization of single-cell sequencing technology has the potential to contribute significantly to the investigation of the mechanistic regulatory pathways linked to ferroptosis. Moreover, it can shed light on the intricate connection between ferroptosis and cancer. This technology holds great promise in advancing tumor-wide diagnosis, targeted therapy, and prognosis prediction.

Funder

Beijing Natural Science Foundation

Publisher

Oxford University Press (OUP)

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