Journal: Stem cell research
Article Title: Generation and characterization of POMC-tdTomato reporter human pluripotent stem cell lines
doi: 10.1016/j.scr.2026.103905
Figure Lengend Snippet: (A) Schematic of CRISPR/Cas9-mediated knock-in strategy for insertion of a tdTomato reporter into the endogenous POMC locus. Primer sets 1–3 are positioned outside the RHA or LHA and within tdTomato where appropriate, as indicated. (B) Transfection of WA09 parental line followed by expansion, single-cell sorting and clonal expansion yielded five independent clonal lines (1G, 1B2, 2A, 8A, and 10E). (C) PCR genotyping using three primer sets confirmed locus-specific insertion and distinguished homozygous (1G, 1B2) from heterozygous (10E) knock-in clones. (D) RT-qPCR analysis of pluripotency markers OCT4, SOX2, and NANOG in validated clones, normalized to the parental WA09 line and compared against ectoderm-differentiated WA09 as a negative control. (E) Immunocytochemistry confirming OCT4, SOX2, and NANOG protein expression in homozygous (1G) clone. (F) Sanger sequencing verifying precise tdTomato reporter integration at the POMC locus. (G) Immunostaining of directly differentiated cultures of clone 1G into three germ layers showing expression of lineage-specific markers: PAX6 (ectoderm), TBXT (mesoderm), and SOX17 (endoderm). (H) Live-cell imaging (Incucyte) of 1G POMC-tdTomato clone at day 21 of hypothalamic neuronal differentiation showing robust tdTomato fluorescence. (I) Representative spontaneous action potential firing of POMC-tdTommato (W09 1G clone)-expressing hypothalamic neuron at −50 mV.
Article Snippet: Cell Source , WA09 (H9) (WiCell Research Institute, Inc.).
Techniques: CRISPR, Knock-In, Transfection, Single Cell, Clone Assay, Quantitative RT-PCR, Negative Control, Immunocytochemistry, Expressing, Sequencing, Immunostaining, Live Cell Imaging, Fluorescence