| Literature DB >> 23514327 |
Minhua Hu1, Hengxi Wei, Jingfeng Zhang, Yinshan Bai, Fenglei Gao, Li Li, Shouquan Zhang.
Abstract
BACKGROUND: Production of chimeric mice is a useful tool for the elucidation of gene function. After successful isolation of embryonic stem (ES) cell lines, there are many methods for producing chimeras, including co-culture with the embryos, microinjection of the ES cells into pre-implantation embryos, and use of tetraploid embryos to generate the full ES-derived transgenic mice. Here, we aimed to generate the transgenic ES cell line, compare the production efficiency of chimeric mice and its proportion to yield the male chimeric mice by microinjected ES cells into 4- to 8-cell and blastocysts embryos with the application of Piezo-Micromanipulator (PMM), and trace the fate of the injected ES cells.Entities:
Year: 2013 PMID: 23514327 PMCID: PMC3622560 DOI: 10.1186/2049-1891-4-12
Source DB: PubMed Journal: J Anim Sci Biotechnol ISSN: 1674-9782
Primers used for detection of pluripotency marker genes
| CTG AGG GCC AGG CAG GAG CAC GAG | 485 | |
| CTG TAG GGA GGG CTT CGG GCA CTT | ||
| AGG GTC TGC TAC TGA GAT GCT | 363 | |
| CAA CAC CTG GTT TTT CTG CCA CCG | ||
| GGT TAC CTC TTC CTC CCA CTC CAG | 193 | |
| TCA CAT GTG CGA CAG GGG CAG | ||
| ACG AGT GGC AGT TTC TTC TTG GGA | 287 | |
| TAT GAC TCA CTT CCA GGG GGC ACT | ||
| CCG CCA CCA GTT CGC CAT G | 778 | |
| CCG CTC GTT GCC AAT AGT GAT GAC |
Figure 1Transgenic ES cell clones and expansion culture. Two wk after selection, the positive and normal ES morphologic clones were picked under the fluorescence microscope (A). These cells were expanded and all expressed the exogenous EGFP protein (B).
Figure 2Characterization of transgenic ES cell line. Normal morphologic ES clones were visible under the phase-contrast microscope and stained positive for AP (A). Using the handing drop method, the ES cells formed the embryo-like aggregates and outgrowths after plating them onto tissue culture plates (B). Teratoma formation in immunodeficiency mice from injected ES cells. Hematoxylin and eosin staining was performed on the teratomas. The resulted teratomas contained tissues representing all three germ layers: endoderm, gut-like epithelium; mesoderm, cartilage; exoderm, epidermal tissues (C). Immunofluorescence analysis of ES cells for pluripotency markers. The clones express the embryonic markers Oct4 and Sox-2. Nuclei were stained with hoechst 33342. Underlying fibroblasts provide a negative control (D). RT-PCR analysis of ES cell marker genes Oct4, Nanog, Sox-2, and Rex-1; β-actin was used as the loading control. M: DL 2000 DNA Marker (E).
Figure 3Generation of chimeric embryos and mice using the PMM method. Four- to eight-cell and blastocyst stage embryos were injected with 10–15 ES cells with the application of Piezo (A). The in vivo development of transgenic 4- to 8-cell stage embryos injected with ES cells was observed under the fluorescence microscope (B, black arrow: ICM). Chimeras were obtained from injecting the ES cells into the embryos (C). Scale bar = 20 μm.
Efficiency in the production of chimeras from ES cells injected into 4- to 8-cell and blastocyst stage embryos
| 4- to 8- cell | 248 | 6 | 27 (10.89) | 12 (44.4) | 9 (75) |
| blastocyst | 618 | 20 | 80 (12.9) | 42 (52.5) | 28 (66.7) |