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Single-cell ATAC and RNA sequencing reveal pre-existing and persistent cells  associated with prostate cancer relapse | Nature Communications
Single-cell ATAC and RNA sequencing reveal pre-existing and persistent cells associated with prostate cancer relapse | Nature Communications

Single-cell analysis reveals transcriptomic remodellings in distinct cell  types that contribute to human prostate cancer progression | Nature Cell  Biology
Single-cell analysis reveals transcriptomic remodellings in distinct cell types that contribute to human prostate cancer progression | Nature Cell Biology

Single-cell transcriptional regulation and genetic evolution of  neuroendocrine prostate cancer - ScienceDirect
Single-cell transcriptional regulation and genetic evolution of neuroendocrine prostate cancer - ScienceDirect

A single-cell atlas of the mouse and human prostate reveals heterogeneity  and conservation of epithelial progenitors | eLife
A single-cell atlas of the mouse and human prostate reveals heterogeneity and conservation of epithelial progenitors | eLife

Single-cell analysis reveals transcriptomic remodellings in distinct cell  types that contribute to human prostate cancer progression | Nature Cell  Biology
Single-cell analysis reveals transcriptomic remodellings in distinct cell types that contribute to human prostate cancer progression | Nature Cell Biology

Single cell RNA sequencing reveals that early prostate cancers can harbor  aggressive tumor cells | RNA-Seq Blog
Single cell RNA sequencing reveals that early prostate cancers can harbor aggressive tumor cells | RNA-Seq Blog

Landscape of Infiltrating T Cells in Liver Cancer Revealed by Single-Cell  Sequencing - ScienceDirect
Landscape of Infiltrating T Cells in Liver Cancer Revealed by Single-Cell Sequencing - ScienceDirect

A Cellular Anatomy of the Normal Adult Human Prostate and Prostatic Urethra
A Cellular Anatomy of the Normal Adult Human Prostate and Prostatic Urethra

Cancers | Free Full-Text | Single-Cell Analysis of Circulating Tumor Cells:  Why Heterogeneity Matters
Cancers | Free Full-Text | Single-Cell Analysis of Circulating Tumor Cells: Why Heterogeneity Matters

Identification of a distinct luminal subgroup diagnosing and stratifying  early stage prostate cancer by tissue-based single-cell RNA sequencing |  Molecular Cancer | Full Text
Identification of a distinct luminal subgroup diagnosing and stratifying early stage prostate cancer by tissue-based single-cell RNA sequencing | Molecular Cancer | Full Text

Single-cell RNA-seq reveals dynamic change in tumor microenvironment during  pancreatic ductal adenocarcinoma malignant progression - eBioMedicine
Single-cell RNA-seq reveals dynamic change in tumor microenvironment during pancreatic ductal adenocarcinoma malignant progression - eBioMedicine

Single‐Cell RNA‐seq Reveals a Developmental Hierarchy Super‐Imposed Over  Subclonal Evolution in the Cellular Ecosystem of Prostate Cancer - Ge -  2022 - Advanced Science - Wiley Online Library
Single‐Cell RNA‐seq Reveals a Developmental Hierarchy Super‐Imposed Over Subclonal Evolution in the Cellular Ecosystem of Prostate Cancer - Ge - 2022 - Advanced Science - Wiley Online Library

Prostate Cell Atlas
Prostate Cell Atlas

Single-cell RNA sequencing highlights the functional role of human  endogenous retroviruses in gallbladder cancer - eBioMedicine
Single-cell RNA sequencing highlights the functional role of human endogenous retroviruses in gallbladder cancer - eBioMedicine

Research suggests how tumors become aggressive prostate cancer | Cornell  Chronicle
Research suggests how tumors become aggressive prostate cancer | Cornell Chronicle

Cancers | Free Full-Text | Single-Cell Sequencing: Current Applications in  Precision Onco-Genomics and Cancer Therapeutics
Cancers | Free Full-Text | Single-Cell Sequencing: Current Applications in Precision Onco-Genomics and Cancer Therapeutics

Single-cell analysis supports a luminal-neuroendocrine transdifferentiation  in human prostate cancer | Communications Biology
Single-cell analysis supports a luminal-neuroendocrine transdifferentiation in human prostate cancer | Communications Biology

Single-cell analysis supports a luminal-neuroendocrine  trans-differentiation in human prostate cancer | bioRxiv
Single-cell analysis supports a luminal-neuroendocrine trans-differentiation in human prostate cancer | bioRxiv

Single-cell analysis of human primary prostate cancer reveals the  heterogeneity of tumor-associated epithelial cell states | Nature  Communications
Single-cell analysis of human primary prostate cancer reveals the heterogeneity of tumor-associated epithelial cell states | Nature Communications

Single-cell analysis of human primary prostate cancer reveals the  heterogeneity of tumor-associated epithelial cell states | Nature  Communications
Single-cell analysis of human primary prostate cancer reveals the heterogeneity of tumor-associated epithelial cell states | Nature Communications

Identification of a distinct luminal subgroup diagnosing and stratifying  early stage prostate cancer by tissue-based single-cell RNA sequencing |  Molecular Cancer | Full Text
Identification of a distinct luminal subgroup diagnosing and stratifying early stage prostate cancer by tissue-based single-cell RNA sequencing | Molecular Cancer | Full Text

Frontiers | Application of Single-Cell Multi-Omics in Dissecting Cancer Cell  Plasticity and Tumor Heterogeneity
Frontiers | Application of Single-Cell Multi-Omics in Dissecting Cancer Cell Plasticity and Tumor Heterogeneity

Dynamic prostate cancer transcriptome analysis delineates the trajectory to  disease progression | Nature Communications
Dynamic prostate cancer transcriptome analysis delineates the trajectory to disease progression | Nature Communications

Resolving the immune landscape of human prostate at a single-cell level in  health and cancer - ScienceDirect
Resolving the immune landscape of human prostate at a single-cell level in health and cancer - ScienceDirect

Single-cell RNA-seq dissects the intratumoral heterogeneity of  triple-negative breast cancer based on gene regulatory networks: Molecular  Therapy - Nucleic Acids
Single-cell RNA-seq dissects the intratumoral heterogeneity of triple-negative breast cancer based on gene regulatory networks: Molecular Therapy - Nucleic Acids