ABSTRACT: Cell cycle and nuclear state imaging readouts for MCF7 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for MCF7 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for MCF7 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for PC3 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for YAPC cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for PC3 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for PC3 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for YAPC cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for YAPC cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for PC3 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.
Project description:Cell cycle and nuclear state imaging readouts for PC3 cells treated with ligand and ECMp combinations to explore the role of microenvironmental signals in cancer growth.