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  1. 2.   Cancer stem cells as the source of tumor associated myoepithelial cells in the tumor microenvironment developing ductal carcinoma in situ
  2. Afify, Said M; Hassan, Ghmkin; Zahra, Maram H; Nawara, Hend M; Abu Quora, Hagar A; Osman, Amira; Mansour, Hager; Kumon, Kazuki; Seno, Akimasa; Chen, Ling; Satoh, Ayano; Salomon,David; Seno, Masaharu
  3. Biomaterials. 2023, Jul 20; 301: 122249.
  1. 3.   GSK-3a/ß and MEK inhibitors assist the microenvironment of tumor initiation
  2. Hassan, Ghmkin; Afify, Said M; Zahra, Maram H; Nawara, Hend M; Kumon, Kazuki; Iwasaki, Yoshiaki; Salomon,David; Seno, Akimasa; Seno, Masaharu
  3. Cytotechnology. 2023, Jun; 75(3): 243-253.
  1. 4.   Anti-Cancer Activity of Verteporfin in Cholangiocarcinoma
  2. Golino, Jihye L; Wang, Xin; Bian, Jing; Ruf, Benjamin; Kelly, Michael; Karim,Baktiar; Cam, Maggie C; Xie, Changqing
  3. Cancers. 2023, Apr 25; 15(9):
  1. 5.   The fidelity of transcription in human cells
  2. Chung, Claire; Verheijen, Bert M; Zhang, Xinmin; Huang, Biao; Coakley, Aeowynn; McGann, Eric; Wade, Emily; Dinep-Schneider, Olivia; LaGosh, Jessica; Anagnostou, Maria-Eleni; Simpson, Stephen; Thomas, Kelly; Ernst, Mimi; Rattray, Allison; Lynch, Michael; Kashlev,Mikhail; Benayoun, Berenice A; Li, Zhongwei; Strathern,Jeffrey; Gout, Jean-Francois; Vermulst, Marc
  3. Proceedings of the National Academy of Sciences of the United States of America. 2023, Jan 31; 120(5): e2210038120.
  1. 6.   Craniofacial Development Is Fine-Tuned by Sox2
  2. Mandalos, Nikolaos Panagiotis; Dimou, Aikaterini; Gavala, Maria Angeliki; Lambraki, Efstathia; Remboutsika, Eumorphia
  3. Genes. 2023, Jan 31; 14(2):
  1. 7.   ID2 and HIF-1a collaborate to protect quiescent hematopoietic stem cells from activation, differentiation, and exhaustion
  2. Jakubison, Brad L; Sarkar,Tanmoy; Gudmundsson,Kristbjorn; Singh,Shweta; Sun, Lei; Morris,Holly; Klarmann,Kim; Keller,Jonathan
  3. The Journal of Clinical Investigation. 2022, Jul 01; 132(13):
  1. 8.   Aminoflavone upregulates putative tumor suppressor miR-125b-2-3p to inhibit luminal A breast cancer stem cell-like properties
  2. Mavingire, Nicole; Campbell,Petreena; Liu, Tiantian; Wooten, Jonathan; Khan, Salma; Chen, Xin; Matthews, Jason; Wang, Charles; Brantley, Eileen
  3. Precision Clinical Medicine. 2022, Jun; 5(2): pbac008.
  1. 9.   Different pancreatic cancer microenvironments convert iPSCs into cancer stem cells exhibiting distinct plasticity with altered gene expression of metabolic pathways
  2. Hassan, Ghmkin; Ohara, Toshiaki; Afify, Said M.; Kumon, Kazuki; Zahra, Maram H.; Fu, Xiaoying; Al Kadi, Mohamad; Seno, Akimasa; Salomon,David; Seno, Masaharu
  3. Journal of Experimental & Clinical Cancer Research. 2022, Jan 21; 41(1):
  1. 10.   Considerations for a Reliable In Vitro Model of Chemotherapy-Induced Peripheral Neuropathy
  2. Eldridge, Sandy; Scuteri, Arianna; Jones, Eugenia M. C.; Cavaletti, Guido; Guo, Liang; Glaze, Elizabeth
  3. Toxics. 2021, Nov 11; 9(11):
  1. 11.   Whence CRIPTO: The Reemergence of an Oncofetal Factor in 'Wounds' That Fail to Heal
  2. Freeman, David W.; Sousa, Elisa Rodrigues; Karkampouna, Sofia; Zoni, Eugenio; Gray, Peter C.; Salomon,David; Kruithof-de Julio, Marianna; Spike, Benjamin T.
  3. International journal of molecular sciences. 2021, Sep; 22(18):
  1. 12.   Gene Editing Rescues In vitro T Cell Development of RAG2-Deficient Induced Pluripotent Stem Cells in an Artificial Thymic Organoid System
  2. Gardner, Cameron L; Pavel-Dinu, Mara; Dobbs, Kerry; Bosticardo, Marita; Reardon, Paul K; Lack,Justin; DeRavin, Suk See; Le, Kent; Bello, Ezekiel; Pala, Francesca; Delmonte, Ottavia M; Malech, Harry; Montel-Hagan, Amelie; Crooks, Gay; Acuto, Oreste; Porteus, Matthew H; Notarangelo, Luigi D
  3. Journal of Clinical Immunology. 2021, Jul;
  1. 13.   Cripto-1 as a Potential Target of Cancer Stem Cells for Immunotherapy
  2. Ishii, Hiroko; Afify, Said M.; Hassan, Ghmkin; Salomon,David; Seno, Masaharu
  3. Cancers. 2021, May; 13(10):
  1. 14.   Cancer stem cells: Culprits in endocrine resistance and racial disparities in breast cancer outcomes
  2. Mavingire, Nicole; Campbell,Petreena; Wooten, Jonathan; Aja, Joyce; Davis, Melissa B.; Loaiza-Perez, Andrea; Brantley, Eileen
  3. CANCER LETTERS. 2021, Mar 1; 500: 64-74.
  1. 15.   SSSPTA is essential for serine palmitoyltransferase function during development and hematopoiesis
  2. Velayoudame,Parthibane; Lin, Jing; Acharya, Diwash; Abimannan,Thiruvaimozhi; Srideshikan, Sargur Madabushi; Klarmann,Kim; Yang,Acong; Soheilian,Ferri; Nagashima,Kunio; Fox,Stephen; Andresson,Thorkell; Tessarollo,Lino; Keller,Jonathan; Acharya,Usha; Acharya,Jairaj
  3. The Journal of biological chemistry. 2021, Mar 01; 296
  1. 16.   Prdm16 is a critical regulator of adult long-term hematopoietic stem cell quiescence
  2. Gudmundsson, Kristbjorn O; Nguyen, Nhu; Oakley, Kevin; Han, Yufen; Gudmundsdottir, Bjorg; Liu, Pentao; Tessarollo,Lino; Jenkins, Nancy A; Copeland, Neal G; Du, Yang
  3. Proceedings of the National Academy of Sciences of the United States of America. 2020, Dec 15; 117(50): 31945-31953.
  1. 17.   Induction of phenotypic changes in HER2-postive breast cancer cells in vivo and in vitro
  2. Frank-Kamenetskii, Anastasia; Mook, Julia; Reeves, Meredith; Boulanger, Corinne A; Meyer,Thomas; Ragle, Lauren; Jordan, H Caroline; Smith, Gilbert H; Booth, Brian W
  3. Oncotarget. 2020, Jul 28; 11(30): 2919-2929.
  1. 18.   Protection of hematopoietic stem cells from stress-induced exhaustion and aging
  2. Singh,Shweta; Jakubison,Brad; Keller,Jonathan
  3. Current opinion in hematology. 2020, JUL; 27(4): 225-231.
  1. 19.   Improved Retinal Organoid Differentiation by Modulating Signaling Pathways Revealed by Comparative Transcriptome Analyses with Development In Vivo
  2. Brooks, Matthew J; Chen, Holly Y; Kelley, Ryan A; Mondal, Anupam K; Nagashima,Kunio; De Val Alda,Natalia; Li, Tiansen; Chaitankar, Vijender; Swaroop, Anand
  3. Stem cell reports. 2019, Nov 12; 13(5): 891-905.
  1. 20.   Considerations for an In Vitro, Cell-Based Testing Platform for Detection of Adverse Drug-Induced Inotropic Effects in Early Drug Development. Part 1: General Considerations for Development of Novel Testing Platforms
  2. Guth, Brian D.; Engwall, Michael; Eldridge, Sandy; Foley, C. Michael; Guo,Liang; Gintant, Gary; Koerner, John; Parish, Stanley T.; Pierson, Jennifer B.; Ribeiro, Alexandre J. S.; Zabka, Tanja; Chaudhary, Khuram W.; Kanda, Yasunari; Berridge, Brian
  3. Frontiers in pharmacology. 2019, Aug 9; 10
  1. 21.   Autologous, Gene-Modified Hematopoietic Stem and Progenitor Cells Repopulate the Central Nervous System with Distinct Clonal Variants
  2. Peterson, Christopher W; Adair, Jennifer E; Wohlfahrt, Martin E; Deleage,Claire; Radtke, Stefan; Rust, Blake; Norman, Krystin K; Norgaard, Zachary K; Schefter, Lauren E; Sghia-Hughes, Gabriella M; Repetto, Andrea; Baldessari, Audrey; Murnane, Robert D; Estes,Jake; Kiem, Hans-Peter
  3. Stem cell reports. 2019, Jul 9; 13(1): 91-104.
  1. 22.   Regulation of Kit Expression in Early Mouse Embryos and ES Cells
  2. Todaro, Federica; Campolo, Federica; Barrios, Florencia; Pellegrini, Manuela; Di Cesare, Silvia; Tessarollo,Lino; Rossi, Pellegrino; Jannini, Emmanuele A.; Dolci, Susanna
  3. Stem cells (Dayton, Ohio). 2019, Mar; 37(3): 332-344.
  1. 23.   Hair-Follicle-Associated Pluripotent (HAP) Stem Cells Encapsulated on Polyvinylidene Fluoride Membranes (PFM) Promote Functional Recovery from Spinal Cord Injury
  2. Obara, Koya; Tohgi, Natsuko; Shirai, Kyoumi; Mii, Sumiyuki; Hamada, Yuko; Arakawa, Nobuko; Aki, Ryoichi; Singh,Shree Ram; Hoffman, Robert M.; Amoh, Yasuyuki
  3. Stem cell reviews. 2019, Feb; 15(1): 59-66.
  1. 24.   Exogenous Cripto-1 Suppresses Self-Renewal of Cancer Stem Cell Model
  2. Alam, Md Jahangir; Takahashi, Ryota; Afify, Said M.; Oo, Aung Ko Ko; Kumon, Kazuki; Nawara, Hend M.; Khayrani, Aprilliana Cahya; Du, Juan; Zahra, Maram H.; Seno, Akimasa; Salomon, David; Seno, Masaharu
  3. International journal of molecular sciences. 2018, NOV; 19(11):
  1. 25.   Biological scaffold-mediated delivery of myostatin inhibitor promotes a regenerative immune response in an animal model of Duchenne muscular dystrophy
  2. Estrellas, Kenneth M.; Chung, Liam; Cheug, Lindsay A.; Sadtler, Kaitlyn; Majumdar, Shoumyo; Mula,Jyothi; Wolf, Matthew T.; Elisseeff, Jennifer H.; Wagner, Kathryn R.
  3. JOURNAL OF BIOLOGICAL CHEMISTRY. 2018, OCT 5; 293(40): 15594-15605.
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