Long-term live-cell imaging of mammalian preimplantation development and derivation process of pluripotent stem cells from the embryos

被引:16
作者
Yamagata, Kazuo [1 ]
Ueda, Jun [1 ]
机构
[1] Osaka Univ, Microbial Dis Res Inst, Ctr Genet Anal Biol Responses, Suita, Osaka 565, Japan
关键词
embryonic stem cell; live-cell imaging; low invasive Nipkow-disk confocal microscope; preimplantation embryo; GREEN FLUORESCENT PROTEIN; NONINVASIVE VISUALIZATION; NUCLEAR TRANSFER; MOUSE EMBRYOS; MICE; EXPRESSION; ESTABLISHMENT; MICROSCOPY; CLEAVAGE; PREDICTS;
D O I
10.1111/dgd.12048
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Mammalian fertilization is a process in which two highly specialized haploid gametes unite and endow totipotency to the resulting diploid zygote. This is followed by cell proliferation and the onset of differentiation during the brief period leading up to implantation. In these processes, a number of cellular components and structures are regulated spatially and temporally, as seen in repeated cell division, cell cycle progression, and epigenetic reprogramming. In mammals, the numbers of oocytes and embryos that can be collected are very limited. Therefore, analyses of molecular mechanisms are hampered because of difficulties in conducting biochemical analyses on such limited material. Furthermore, immunostaining methods require cell fixation and are insufficient for understanding ontogeny, because the processes observed in fertilization and early embryonic development progress in time-dependent manners and each phenomenon is connected with others by cause-and-effect relationships. Consequently, it is important to develop an experimental system that enables molecular imaging without affecting embryonic development. To achieve the above advantages, especially retrospective and prospective analyses, we have established a live-cell imaging system that enables observations under minimally invasive conditions. Using this approach, we have succeeded in visualizing and predicting the developmental potential of embryos after various perturbations. We also succeeded in imaging embryonic stem (ES) cell derivation in natural conditions. In this review, we describe a brief history of embryonic imaging and detailed protocols. We also discuss promising aspects of imaging in the fields of developmental and stem cell biology.
引用
收藏
页码:378 / 389
页数:12
相关论文
共 53 条
[21]   Embryo manipulation via assisted reproductive technology and epigenetic asymmetry in mammalian early development [J].
Kohda, Takashi ;
Ishino, Fumitoshi .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2013, 368 (1609)
[22]   Blastocyst axis is specified independently of early cell lineage but aligns with the ZP shape [J].
Kurotaki, Yoko ;
Hatta, Kohei ;
Nakao, Kazuki ;
Nabeshima, Yo-ichi ;
Fujimori, Toshihiko .
SCIENCE, 2007, 316 (5825) :719-723
[23]   Abnormal chromosome segregation at early cleavage is a major cause of the full-term developmental failure of mouse clones [J].
Mizutani, Eiji ;
Yamagata, Kazuo ;
Ono, Tetsuo ;
Akagi, Satoshi ;
Geshi, Masaya ;
Wakayama, Teruhiko .
DEVELOPMENTAL BIOLOGY, 2012, 364 (01) :56-65
[24]   Spinning-disk confocal microscopy - A cutting-edge tool for imaging of membrane traffic [J].
Nakano, A .
CELL STRUCTURE AND FUNCTION, 2002, 27 (05) :349-355
[25]   Suppression of Erk signalling promotes ground state pluripotency in the mouse embryo [J].
Nichols, Jennifer ;
Silva, Jose ;
Roode, Mila ;
Smith, Austin .
DEVELOPMENT, 2009, 136 (19) :3215-3222
[26]   Recent advancements in cloning by somatic cell nuclear transfer [J].
Ogura, Atsuo ;
Inoue, Kimiko ;
Wakayama, Teruhiko .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2013, 368 (1609)
[27]   Identification and characterization of stem cells in prepubertal spermatogenesis in mice [J].
Ohbo, K ;
Yoshida, S ;
Ohmura, M ;
Ohneda, O ;
Ogawa, T ;
Tsuchiya, H ;
Kuwana, T ;
Kehler, J ;
Abe, K ;
Schöler, HR ;
Suda, T .
DEVELOPMENTAL BIOLOGY, 2003, 258 (01) :209-225
[28]   A comprehensive, non-invasive visualization of primordial germ cell development in mice by the Prdm1-mVenus and Dppa3-ECFP double transgenic reporter [J].
Ohinata, Yasuhide ;
Sano, Mitsue ;
Shigeta, Mayo ;
Yamanaka, Kaori ;
Saitou, Mitinori .
REPRODUCTION, 2008, 136 (04) :503-514
[29]   'Green mice' as a source of ubiquitous green cells [J].
Okabe, M ;
Ikawa, M ;
Kominami, K ;
Nakanishi, T ;
Nishimune, Y .
FEBS LETTERS, 1997, 407 (03) :313-319
[30]   The first cleavage of the mouse zygote predicts the blastocyst axis [J].
Plusa, B ;
Hadjantonakis, AK ;
Gray, D ;
Piotrowska-Nitsche, K ;
Jedrusik, A ;
Papaioannou, VE ;
Glover, DM ;
Zernicka-Goetz, M .
NATURE, 2005, 434 (7031) :391-395