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Kevin Nee

Showing results (1-10 of 18) with videos related to

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Frontiers in Cell and Developmental Biology|September 21, 2018
Experimental Considerations for Single-Cell RNA Sequencing ApproachesQuy H Nguyen, Nicholas Pervolarakis, Kevin Nee, et al.
Stem Cells and Development|March 10, 2015
The Aorta-Gonad-Mesonephros Organ Culture Recapitulates 5hmC Reorganization and Replication-Dependent and Independent Loss of DNA Methylation in the GermlineJoseph Hargan Calvopina, Helene Cook, John J Vincent, et al.
Annals of Surgical Oncology|July 16, 2024
Defining Colorectal Cancer Cells on a Single Cell Level Reveals LGR5+ Proliferative Stem Cell Expression in Peritoneal MetastasisKevin Nee, Linzi Hosohama, Wilson Alobuia, et al.
Breast Cancer Research : BCR|January 5, 2024
Targeting tumor-stromal interactions in triple-negative breast cancer using a human vascularized micro-tumor modelStephanie J Hachey, Christopher J Hatch, Daniela Gaebler, et al.
The EMBO Journal|December 19, 2014
The Sm protein methyltransferase PRMT5 is not required for primordial germ cell specification in miceZiwei Li, Juehua Yu, Linzi Hosohama, et al.
Stem Cell Reports|August 18, 2015
PGC Reversion to Pluripotency Involves Erasure of DNA Methylation from Imprinting Control Centers followed by Locus-Specific Re-methylationMarisabel Oliveros-Etter, Ziwei Li, Kevin Nee, et al.
Biorxiv : the Preprint Server for Biology|May 7, 2024
Colorectal Cancer Stem Cell Subtypes Orchestrate Distinct Tumor MicroenvironmentsLinzi Hosohama, Delia F Tifrea, Kevin Nee, et al.
Elife|April 8, 2015
In vivo targeting of de novo DNA methylation by histone modifications in yeast and mouseMarco Morselli, William A Pastor, Barbara Montanini, et al.
Elife|September 1, 2017
Correction: In vivo targeting of de novo DNA methylation by histone modifications in yeast and mouseMarco Morselli, William A Pastor, Barbara Montanini, et al.
Science Immunology|February 23, 2020
Defining the emergence of myeloid-derived suppressor cells in breast cancer using single-cell transcriptomicsHamad Alshetaiwi, Nicholas Pervolarakis, Laura Lynn McIntyre, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Frontiers in Cell and Developmental Biology|September 21, 2018
Experimental Considerations for Single-Cell RNA Sequencing ApproachesQuy H Nguyen, Nicholas Pervolarakis, Kevin Nee, et al.
Stem Cells and Development|March 10, 2015
The Aorta-Gonad-Mesonephros Organ Culture Recapitulates 5hmC Reorganization and Replication-Dependent and Independent Loss of DNA Methylation in the GermlineJoseph Hargan Calvopina, Helene Cook, John J Vincent, et al.
Annals of Surgical Oncology|July 16, 2024
Defining Colorectal Cancer Cells on a Single Cell Level Reveals LGR5+ Proliferative Stem Cell Expression in Peritoneal MetastasisKevin Nee, Linzi Hosohama, Wilson Alobuia, et al.
Breast Cancer Research : BCR|January 5, 2024
Targeting tumor-stromal interactions in triple-negative breast cancer using a human vascularized micro-tumor modelStephanie J Hachey, Christopher J Hatch, Daniela Gaebler, et al.
The EMBO Journal|December 19, 2014
The Sm protein methyltransferase PRMT5 is not required for primordial germ cell specification in miceZiwei Li, Juehua Yu, Linzi Hosohama, et al.
Stem Cell Reports|August 18, 2015
PGC Reversion to Pluripotency Involves Erasure of DNA Methylation from Imprinting Control Centers followed by Locus-Specific Re-methylationMarisabel Oliveros-Etter, Ziwei Li, Kevin Nee, et al.
Biorxiv : the Preprint Server for Biology|May 7, 2024
Colorectal Cancer Stem Cell Subtypes Orchestrate Distinct Tumor MicroenvironmentsLinzi Hosohama, Delia F Tifrea, Kevin Nee, et al.
Elife|April 8, 2015
In vivo targeting of de novo DNA methylation by histone modifications in yeast and mouseMarco Morselli, William A Pastor, Barbara Montanini, et al.
Elife|September 1, 2017
Correction: In vivo targeting of de novo DNA methylation by histone modifications in yeast and mouseMarco Morselli, William A Pastor, Barbara Montanini, et al.
Science Immunology|February 23, 2020
Defining the emergence of myeloid-derived suppressor cells in breast cancer using single-cell transcriptomicsHamad Alshetaiwi, Nicholas Pervolarakis, Laura Lynn McIntyre, et al.
Pageof 2