Biblio

Author Title [ Type(Desc)] Year
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Journal Article
Yazawa T, Sato T, Nemoto T, Nagata S, Imamichi Y, Kitano T, Sekiguchi T, Uwada J, Islam MSayful, Mikami D, et al. 11-Ketotestosterone is a Major Androgen Produced in Porcine Adrenal Glands and Testes. J Steroid Biochem Mol Biol. 2021:105847.
Takeuchi M, Higashino A, Takeuchi K, Hori Y, Koshiba-Takeuchi K, Makino H, Monobe Y, Kishida M, Adachi J, Takeuchi J, et al. Correction: Transcriptional Dynamics of Immortalized Human Mesenchymal Stem Cells during Transformation. PLoS One. 2015;10(6):e0131383.
Fukuda A, Hazelbaker DZ, Motosugi N, Hao J, Limone F, Beccard A, Mazzucato P, Messana A, Okada C, San Juan IGuerra, et al. De novo DNA methyltransferases DNMT3A and DNMT3B are essential for XIST silencing for erosion of dosage compensation in pluripotent stem cells. Stem Cell Reports. 2021.
Motosugi N, Okada C, Sugiyama A, Kawasaki T, Kimura M, Shiina T, Umezawa A, Akutsu H, Fukuda A. Deletion of lncRNA XACT does not change expression dosage of X-linked genes, but affects differentiation potential in hPSCs. Cell Rep. 2021;35(10):109222.
Sung T-C, Yang J-S, Yeh C-C, Liu Y-C, Jiang Y-P, Lu M-W, Ling Q-D, S Kumar S, Chang Y, Umezawa A, et al. The design of a thermoresponsive surface for the continuous culture of human pluripotent stem cells. Biomaterials. 2019;221:119411.
Yazawa T, Imamichi Y, Miyamoto K, Umezawa A, Taniguchi T. Differentiation of mesenchymal stem cells into gonad and adrenal steroidogenic cells. World J Stem Cells. 2014;6(2):203-212.
Tone H, Yoshioka S, Akiyama H, Nishimura A, Ichimura M, Nakatani M, Kiyono T, Toyoda M, Watanabe M, Umezawa A. Embryoid Body-Explant Outgrowth Cultivation from Induced Pluripotent Stem Cells in an Automated Closed Platform. Biomed Res Int. 2016;2016:7098987.
Fujino A, Fuchimoto Y, Mori T, Kano M, Yamada Y, Ohno M, Baba Y, Isogawa N, Arai K, Yoshioka T, et al. Evaluation of safety and efficacy of autologous oral mucosa-derived epithelial cell sheet transplantation for prevention of anastomotic restenosis in congenital esophageal atresia and congenital esophageal stenosis. Stem Cell Res Ther. 2023;14(1):86.
Yazawa T, Imamichi Y, Kitano T, Islam MSayful, Khan MRafiqul Is, Takahashi S, Sekiguchi T, Suzuki N, Umezawa A, Uwada J. Expression of Chrna9 is regulated by Tbx3 in undifferentiated pluripotent stem cells. Sci Rep. 2023;13(1):1611.
Kobori C, Takagi R, Yokomizo R, Yoshihara S, Mori M, Takahashi H, Javaregowda PKanive, Akiyama T, Ko MSH, Kishi K, et al. Functional and long-lived melanocytes from human pluripotent stem cells with transient ectopic expression of JMJD3. Stem Cell Res Ther. 2023;14(1):242.
Nakatake Y, Ko SBH, Sharov AA, Wakabayashi S, Murakami M, Sakota M, Chikazawa N, Ookura C, Sato S, Ito N, et al. Generation and Profiling of 2,135 Human ESC Lines for the Systematic Analyses of Cell States Perturbed by Inducing Single Transcription Factors. Cell Rep. 2020;31(7):107655.
Matsumura T, Imamichi Y, Mizutani T, Ju Y, Yazawa T, Kawabe S, Kanno M, Ayabe T, Katsumata N, Fukami M, et al. Human glutathione S-transferase A (GSTA) family genes are regulated by steroidogenic factor 1 (SF-1) and are involved in steroidogenesis. FASEB J. 2013.
Chen JL, Horiuchi S, Kuramochi S, Kawasaki T, Kawasumi H, Akiyama S, Arai T, Morinaga K, Kimura T, Kiyono T, et al. Human intestinal organoid-derived PDGFRα + mesenchymal stroma enables proliferation and maintenance of LGR4 + epithelial stem cells. Stem Cell Res Ther. 2024;15(1):16.
Mizutani T, Kawabe S, Ishikane S, Imamichi Y, Umezawa A, Miyamoto K. Identification Of novel steroidogenic factor 1 (SF-1)-target genes and components of the SF-1 nuclear complex. Mol Cell Endocrinol. 2014.
Fukuda A, Mitani A, Miyashita T, Sado T, Umezawa A, Akutsu H. Maintenance of Xist Imprinting Depends on Chromatin Condensation State and Rnf12 Dosage in Mice. PLoS Genet. 2016;12(10):e1006375.
Fukuda A, Umezawa A, Akutsu H. Manipulation of Xist Imprinting in Mouse Preimplantation Embryos. Methods Mol Biol. 2018;1861:47-53.
Yugawa T, Nishino K, Ohno S-I, Nakahara T, Fujita M, Goshima N, Umezawa A, Kiyono T. Non-canonical NOTCH signaling limits self-renewal of human epithelial and iPS cells through ROCK activation. Mol Cell Biol. 2013.
Tano K, Yasuda S, Kuroda T, Saito H, Umezawa A, Sato Y. A Novel In Vitro Method for Detecting Undifferentiated Human Pluripotent Stem Cells as Impurities in Cell Therapy Products Using a Highly Efficient Culture System. PLoS One. 2014;9(10):e110496.
Hosoya S, Yokomizo R, Kishigami H, Fujiki Y, Kaneko E, Amita M, Saito T, Kishi H, Sago H, Okamoto A, et al. Novel therapeutic strategies for injured endometrium: intrauterine transplantation of menstrual blood‑derived cells from infertile patients. Stem Cell Res Ther. 2023;14(1):297.
Santostefano KE, Hamazaki T, Biel NM, Jin S, Umezawa A, Terada N. A practical guide to induced pluripotent stem cell research using patient samples. Lab Invest. 2014.
Miura T, Kouno T, Takano M, Kuroda T, Yamamoto Y, Kusakawa S, Morioka MSuimye, Sugawara T, Hirai T, Yasuda S, et al. Single-Cell RNA-Seq Reveals LRRC75A-Expressing Cell Population Involved in VEGF Secretion of Multipotent Mesenchymal Stromal/Stem Cells Under Ischemia. Stem Cells Transl Med. 2023.
Yamazoe T, Shiraki N, Toyoda M, Kiyokawa N, Okita H, Miyagawa Y, Akutsu H, Umezawa A, Sasaki Y, Kume K, et al. A synthetic nanofibrillar matrix promotes in vitro hepatic differentiation of embryonic stem cells and induced pluripotent stem cells. J Cell Sci. 2013.
Takeuchi M, Higashino A, Takeuchi K, Hori Y, Koshiba-Takeuchi K, Makino H, Monobe Y, Kishida M, Adachi J, Takeuchi J, et al. Transcriptional Dynamics of Immortalized Human Mesenchymal Stem Cells during Transformation. PLoS One. 2015;10(5):e0126562.
Isono W, Kawasaki T, Ichida JK, Nagasaka K, Hiraike O, Umezawa A, Akutsu H. Transcriptomic analysis of feeder-free culture system for maintaining naïve-state pluripotency in human pluripotent stem cells. Stem Cell Investig. 2023;10:10.
Tsuchida N, Kojima J, Fukuda A, Oda M, Kawasaki T, Ito H, Kuji N, Isaka K, Nishi H, Umezawa A, et al. Transcriptomic features of trophoblast lineage cells derived from human induced pluripotent stem cells treated with BMP 4. Placenta. 2019;89:20-32.

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