Frontiers  Single-cell transcriptome reveals diversity of Müller cells  with different metabolic-mitochondrial signatures in normal and degenerated  macula

Frontiers Single-cell transcriptome reveals diversity of Müller cells with different metabolic-mitochondrial signatures in normal and degenerated macula

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Transcriptional diversity and bioenergetic shift in human breast cancer metastasis revealed by single-cell RNA sequencing

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Frontiers Spatially Annotated Single Cell Sequencing for Unraveling Intratumor Heterogeneity

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Single-cell transcriptomics of human embryos identifies multiple sympathoblast lineages with potential implications for neuroblastoma origin

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Single‐cell transcriptomic landscape reveals the differences in cell differentiation and immune microenvironment of papillary thyroid carcinoma between genders, Cell & Bioscience

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Dr. Toru M. Nakamura UIC Department of Biochemistry and Molecular Genetics

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Single-cell transcriptomics of human embryos identifies multiple sympathoblast lineages with potential implications for neuroblastoma origin

https://www.frontiersin.org/files/Articles/1021978/fgene-13-1021978-HTML/image_m/fgene-13-1021978-g001.jpg

Frontiers Integrated analysis of bulk and single-cell RNA-seq reveals the role of MYC signaling in lung adenocarcinoma

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Monitoring mammalian mitochondrial translation with MitoRiboSeq

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Single-cell multiomic analyses sheds light on mitochondrial mutational selection

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RTG 2408 Prof. Dr. med. Dimitrios Mougiakakos