Murine induced pluripotent stem cells can be derived from and differentiate into natural killer T cells. 2010

Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
RIKEN Research Center for Allergy and Immunology, Yokohama, Kanagawa 230-0045, Japan.

NKT cells demonstrate antitumor activity when activated to produce Th1 cytokines by DCs loaded with alpha-galactosylceramide, the prototypic NKT cell-activating glycolipid antigen. However, most patients do not have sufficient numbers of NKT cells to induce an effective immune response in this context, indicating a need for a source of NKT cells that could be used to supplement the endogenous cell population. Induced pluripotent stem cells (iPSCs) hold tremendous potential for cell-replacement therapy, but whether it is possible to generate functionally competent NKT cells from iPSCs has not been rigorously assessed. In this study, we successfully derived iPSCs both from embryonic fibroblasts from mice harboring functional NKT cell-specific rearranged T cell receptor loci in the germline and from splenic NKT cells from WT adult mice. These iPSCs could be differentiated into NKT cells in vitro and secreted large amounts of the Th1 cytokine IFN-gamma. Importantly, iPSC-derived NKT cells recapitulated the known adjuvant effects of natural NKT cells and suppressed tumor growth in vivo. These studies demonstrate the feasibility of expanding functionally competent NKT cells via an iPSC phase, an approach that may be adapted for NKT cell-targeted therapy in humans.

UI MeSH Term Description Entries
D009369 Neoplasms New abnormal growth of tissue. Malignant neoplasms show a greater degree of anaplasia and have the properties of invasion and metastasis, compared to benign neoplasms. Benign Neoplasm,Cancer,Malignant Neoplasm,Tumor,Tumors,Benign Neoplasms,Malignancy,Malignant Neoplasms,Neoplasia,Neoplasm,Neoplasms, Benign,Cancers,Malignancies,Neoplasias,Neoplasm, Benign,Neoplasm, Malignant,Neoplasms, Malignant
D011948 Receptors, Antigen, T-Cell Molecules on the surface of T-lymphocytes that recognize and combine with antigens. The receptors are non-covalently associated with a complex of several polypeptides collectively called CD3 antigens (CD3 COMPLEX). Recognition of foreign antigen and the major histocompatibility complex is accomplished by a single heterodimeric antigen-receptor structure, composed of either alpha-beta (RECEPTORS, ANTIGEN, T-CELL, ALPHA-BETA) or gamma-delta (RECEPTORS, ANTIGEN, T-CELL, GAMMA-DELTA) chains. Antigen Receptors, T-Cell,T-Cell Receptors,Receptors, T-Cell Antigen,T-Cell Antigen Receptor,T-Cell Receptor,Antigen Receptor, T-Cell,Antigen Receptors, T Cell,Receptor, T-Cell,Receptor, T-Cell Antigen,Receptors, T Cell Antigen,Receptors, T-Cell,T Cell Antigen Receptor,T Cell Receptor,T Cell Receptors,T-Cell Antigen Receptors
D002454 Cell Differentiation Progressive restriction of the developmental potential and increasing specialization of function that leads to the formation of specialized cells, tissues, and organs. Differentiation, Cell,Cell Differentiations,Differentiations, Cell
D005699 Galactosylceramides Cerebrosides which contain as their polar head group a galactose moiety bound in glycosidic linkage to the hydroxyl group of ceramide. Their accumulation in tissue, due to a defect in beta-galactosidase, is the cause of galactosylceramide lipidosis or globoid cell leukodystrophy. Galactocerebrosides,Galactosyl Ceramide,Galactosyl Ceramides,Galactosylceramide,Ceramide, Galactosyl,Ceramides, Galactosyl
D006017 Glycolipids Any compound containing one or more monosaccharide residues bound by a glycosidic linkage to a hydrophobic moiety such as an acylglycerol (see GLYCERIDES), a sphingoid, a ceramide (CERAMIDES) (N-acylsphingoid) or a prenyl phosphate. (From IUPAC's webpage) Glycolipid
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013154 Spleen An encapsulated lymphatic organ through which venous blood filters.
D016207 Cytokines Non-antibody proteins secreted by inflammatory leukocytes and some non-leukocytic cells, that act as intercellular mediators. They differ from classical hormones in that they are produced by a number of tissue or cell types rather than by specialized glands. They generally act locally in a paracrine or autocrine rather than endocrine manner. Cytokine
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus
D055611 Natural Killer T-Cells A specialized subset of T-LYMPHOCYTES that exhibit features of INNATE IMMUNITY similar to that of NATURAL KILLER CELLS. They are reactive to glycolipids presented in the context of the major histocompatibility complex (MHC) class I-like molecule, CD1D ANTIGEN. Invariant Natural Killer T Cell,iNKT Cell,Invariant Natural Killer T-Cells,NKT Cell,NKT Cells,Natural Killer T-Cell,iNKT Cells,Cell, iNKT,Cells, iNKT,Invariant Natural Killer T Cells,Killer T-Cell, Natural,Killer T-Cells, Natural,Natural Killer T Cell,Natural Killer T Cells,T-Cell, Natural Killer,T-Cells, Natural Killer

Related Publications

Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
February 2011, Epigenomics,
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
June 1996, Blood,
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
July 2023, Trends in biotechnology,
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
January 2019, Frontiers in immunology,
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
January 2016, Stem cells (Dayton, Ohio),
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
September 2010, Translational research : the journal of laboratory and clinical medicine,
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
December 2017, Stem cell reports,
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
January 2019, Seminars in immunopathology,
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
December 1993, Journal of immunology (Baltimore, Md. : 1950),
Hiroshi Watarai, and Shin-ichiro Fujii, and Daisuke Yamada, and Andrei Rybouchkin, and Sakura Sakata, and Yuko Nagata, and Midori Iida-Kobayashi, and Etsuko Sekine-Kondo, and Kanako Shimizu, and Yohei Shozaki, and Jafar Sharif, and Masashi Matsuda, and Shinobu Mochiduki, and Takanori Hasegawa, and Genta Kitahara, and Takaho A Endo, and Tetsuro Toyoda, and Osamu Ohara, and Ken-ichi Harigaya, and Haruhiko Koseki, and Masaru Taniguchi
July 2019, Scientific reports,
Copied contents to your clipboard!