Single-cell transcriptomics analysis of cellular heterogeneity and immune mechanisms in neurodegenerative diseases

EUROPEAN JOURNAL OF NEUROSCIENCE(2024)

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摘要
Single-cell transcriptomics analysis is an advanced technology that can describe the intracellular transcriptome in complex tissues. It profiles and analyses datasets by single-cell RNA sequencing. Neurodegenerative diseases are identified by the abnormal apoptosis of neurons in the brain with few or no effective therapy strategies at present, which has been a growing healthcare concern and brought a great burden to society. The transcriptome of individual cells provides deep insights into previously unforeseen cellular heterogeneity and gene expression differences in neurodegenerative disorders. It detects multiple cell subsets and functional changes during pathological progression, which deepens the understanding of the molecular underpinnings and cellular basis of neurodegenerative diseases. Furthermore, the transcriptome analysis of immune cells shows the regulation of immune response. Different subtypes of immune cells and their interaction are found to contribute to disease progression. This finding enables the discovery of novel targets and biomarkers for early diagnosis. In this review, we emphasize the principles of the technology, and its recent progress in the study of cellular heterogeneity and immune mechanisms in neurodegenerative diseases. The application of single-cell transcriptomics analysis in neurodegenerative disorders would help explore the pathogenesis of these diseases and develop novel therapeutic methods. In this review, we give an essential overview of the principles of single-cell transcriptomics analysis, and its recent progress in the study of cellular heterogeneity and immune mechanisms in neurodegenerative diseases. We present the previously unforeseen cellular heterogeneity and functional changes during neurodegenerative disorders, revealing the subtypes of immune cells and regulation of immune response.image
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关键词
cellular heterogeneity,glia,immune mechanisms,neurodegenerative diseases,single-cell transcriptomics analysis
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