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  • Endo R, Sugimoto S, Shirosaki K, Kato H, Wada M, Kanai T, Sato T. Clinical challenges of short bowel syndrome and the path forward for organoid-based regenerative medicine. Regen Ther. 2023 Jun 9;24:64-73. [PMID: 37868721]
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    Curr Opin Genet Dev. 2022 Oct;76:101977. Epub 2022 Sep 1. [PMID: 36058061]
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    Organoid screening reveals epigenetic vulnerabilities in human colorectal cancer. Nat Chem Biol. 2022 Mar 10. [PMID: 35273398]
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    Organoid Medicine for Inflammatory Bowel Disease. Stem Cells. 2022 Mar 16;40(2):123-132. [PMID: 35258629]
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    Epithelium Replacement Contributes to Field Expansion of Squamous Epithelium and Ulcerative Colitis-Associated Neoplasia. Gastroenterology. 2022 Jan;162(1):334-337.e5. doi: 10.1053/j.gastro.2021.09.051. Epub 2021 Sep 29. [PMID: 34597671]
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    Organoid vs In Vivo Mouse Model: Which is Better Research Tool to Understand the Biologic Mechanisms of Intestinal Epithelium? Cell Mol Gastroenterol Hepatol. 2021 Oct 10; 2022;13(1):195-197. [PMID: 34644539]
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    Direct derivation of human alveolospheres for SARS-CoV-2 infection modeling and drug screening. Cell Rep. 2021 May 19;109218. [PMID: 34038715]
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  • Sugimoto S, Kobayashi E, Fujii M, Ohta Y, Arai K, Matano M, Ishikawa K, Miyamoto K, Toshimitsu K, Takahashi S, Nanki K, Hakamata Y, Kanai T, Sato T.
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  • Togasaki K, Sugimoto S, Ohta Y, Nanki K, Matano M, Takahashi S, Fujii M, Kanai T, Sato T.
    Wnt Signaling Shapes the Histological Variation in Diffuse Gastric Cancer. Gastroenterology. 2020 Nov 17;S0016-5085(20)35404-4. [PMID: 33217450]
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    An Organoid Biobank of Neuroendocrine Neoplasms Enables Genotype-Phenotype Mapping. Cell. 2020 Oct 30;S0092-8674(20)31387-8. [PMID: 33159857]
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    Development of a Scalable Co-Culture System for Gut Anaerobes and Human Colon Epithelium. Gastroenterology. 2020 Mar 18;S0016-5085(20)30363-2. [PMID: 32199883]
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    Somatic Inflammatory Gene Mutations in Human Ulcerative Colitis Epithelium. Nature. 2020 Jan;577(7789):254-259. [PMID: 31853059]
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  • Kawasaki K, Fujii M, Sugimoto S, Ishikawa K, Matano M, Ohta Y, Toshimitsu K, Takahashi S, Hosoe N, Sekine S, Kanai T, Sato T.
    Chromosome Engineering of Human Colon-Derived Organoids to Develop a Model of Traditional Serrated Adenoma. Gastroenterology. 2020 Feb;158(3):638-651. [PMID: 31622618]
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    Gut pathobionts underlie intestinal barrier dysfunction and liver T helper 17 cell immune response in primary sclerosing cholangitis. Nat Microbiol. 2019 Mar;4(3):492-503. [PMID: 30643240]
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    Modeling Human Digestive Diseases With CRISPR-Cas9-Modified Organoids. Gastroenterology. 2019 Feb;156(3):562-576. [PMID: 30476497]
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    Human Intestinal Organoids Maintain Self-Renewal Capacity and Cellular Diversity in Niche-Inspired  Culture Condition. Cell Stem Cell. 2018 Dec 6;23(6):787-793. [PMID: 30526881]
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    Divergent Routes toward Wnt and R-spondin Niche Independency during Human Gastric Carcinogenesis. Cell. 2018 Aug 9;174(4):856-869. [PMID: 30096312]
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    Human Pancreatic Tumor Organoids Reveal Loss of Stem Cell Niche Factor Dependence during Disease Progression. Cell Stem Cell. 2018 Mar 1;22(3):454-467. [PMID: 29337182]
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    Visualization and targeting of LGR5+ human colon cancer stem cells. Nature. 2017 May 11;545(7653):187-192. [PMID: 28355176]
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    Efficient enetic engineering of human intestinal organoids using electroporation. Nat Protoc. 2015 Oct;10(10):1474-85. [PMID: 26334867]
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    Modeling colorectal cancer using CRISPR-Cas9-mediated engineering of human intestinal organoids. Nat Med. 2015 Mar;21(3):256-62. [PMID: 25706875]
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