641. [Strategy for application of human iPS cells into clinical regenerative].642. [Regeneration of the kidney from pluripotent stem cells].
作者: Yoichi Murakami.;Atsuhiro Taguchi.;Ryuichi Nishinakamura.
来源: Nihon Rinsho. 2015年73 Suppl 5卷175-8页 643. [iPS cells and kidney diseases].644. [Generation of pancreatic tissue from iPS cells].645. [Current status of differentiation studies from pluripotent stem cells (ES/iPS cells) to hematopoietic cells].646. [Induction of cardiovascular cells from iPS cells].647. [Generation of cerebral cortex - like structure from human pluripotent stem cells].648. [Neural differentiation of iPS cells].649. [Direct reprogramming of somatic cells into neural cell lineages].650. [Induction of neural crest cells from iPS cells].651. [Endoderm differentiation of iPS cells].652. [Induction of germ cell lineage from pluripotent stem cells].653. [Generation of induced - pluripotent stem cells and differentiation into pancreatic].654. [Transcription factor network governing pluripotency].655. [Variation of human pluripotent stem cells in differentiation propensities].656. [Feeder - free culture system for human iPS cells].657. [Clinical applications of human embryonic stem cell].658. [iPS cell generation - associated point mutations].
作者: Ryoko Araki.;Mayumi Sugiura.;Yasuji Kasama.;Masumi Abe.
来源: Nihon Rinsho. 2015年73 Suppl 5卷55-61页 659. [Regenerative medicine and stem cells].660. [Frontiers in Live Bone Imaging Researches. In vivo imaging of bone marrow microenvironment].
The function of hematopoietic stem cells and leukemia stem cells depends on their interaction with complex microenvironment within the bone marrow. Conventional methods could not observe the dynamic cell movement in living bone marrow. Recently rapid development of live imaging techniques enables us to understand the cellular interaction. Intravital two-photon imaging is the ideal method to understand the nature of bone marrow because of visualizing the cellular dynamics in vivo and observing the bone marrow long time. Here we show the latest reports about bone marrow microenvironment by intravital imaging, and also discuss its further application.
|