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1-20 of 27
Keywords: Progenitor cells
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Journal Articles
In collection:
Neural development
Eneritz Rueda-Alaña, Marco Grillo, Enrique Vázquez, Sergio Marco Salas, Rodrigo Senovilla-Ganzo, Laura Escobar, Ana Quintas, Alberto Benguría, Ana María Aransay, Nora Bengoa-Vergniory, Ana Dopazo, Juan Manuel Encinas, Mats Nilsson, Fernando García-Moreno
Journal:
Development
Development (2024) 151 (13): dev202429.
Published: 12 July 2024
...: BirthSeq allows the isolation and investigation of alive cells according to their birthdate, in any kind of tissue and vertebrate species. Neurogenesis Neocortex Birds Reptiles FACS sorting Single-cell RNA sequencing Progenitor cells Pallium In situ sequencing Ikerbasque, Basque...
Includes: Supplementary data
Journal Articles
Carmel Hutchings, Yarden Nuriel, Daniel Lazar, Ayelet Kohl, Elizabeth Muir, Olga Genin, Yuval Cinnamon, Hadar Benyamini, Yuval Nevo, Dalit Sela-Donenfeld
Journal:
Development
Development (2024) 151 (4): dev201934.
Published: 13 February 2024
... Neural stem cells Progenitor cells RNA-sequencing Chondroitin-sulphate proteoglycan Extracellular matrix Israel Science Foundation http://dx.doi.org/10.13039/501100003977 1515/16 3332/21 1341/21 The Hebrew University of Jerusalem http://dx.doi.org/10.13039/501100003483...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2023) 150 (8): dev200995.
Published: 21 April 2023
.... and Blackburn , C. C. ( 2002 ). Identification and characterization of thymic epithelial progenitor cells . Immunity 16 , 803 - 814 . 10.1016/S1074-7613(02)00321-7 Blackburn , C. C. , Augustine , C. L. , Li , R. , Harvey , R. P. , Malin , M. A. , Boyd , R. L...
Includes: Supplementary data
Journal Articles
Nicholas M. Negretti, Erin J. Plosa, John T. Benjamin, Bryce A. Schuler, A. Christian Habermann, Christopher S. Jetter, Peter Gulleman, Claire Bunn, Alice N. Hackett, Meaghan Ransom, Chase J. Taylor, David Nichols, Brittany K. Matlock, Susan H. Guttentag, Timothy S. Blackwell, Nicholas E. Banovich, Jonathan A. Kropski, Jennifer M. S. Sucre
Journal:
Development
Development (2021) 148 (24): dev199512.
Published: 20 December 2021
...-resident endothelial progenitor cells in endotoxin-induced lung injury . Am. J. Respir. Cell Mol. Biol. 53 , 500 - 512 . 10.1165/rcmb.2014-0185OC Kim , T. , Chen , I. R. , Lin , Y. , Wang , A. Y.-Y. , Yang , J. Y. H. and Yang , P. ( 2019 ). Impact of similarity...
Includes: Supplementary data
Journal Articles
Dominique D. Bailey, Yongchun Zhang, Benjamin J. van Soldt, Ming Jiang, Supriya Suresh, Hiroshi Nakagawa, Anil K. Rustgi, Seema S. Aceves, Wellington V. Cardoso, Jianwen Que
Journal:
Development
Development (2019) 146 (23): dev178855.
Published: 4 December 2019
... such as the esophagus. However, the molecular mechanisms regulating these progenitor activities in the esophagus remain to be elucidated. Here, we demonstrated that Yap is required for the proliferation of esophageal progenitor cells (EPCs) in the developing murine esophagus. We found that Yap deficiency reduces EPC...
Includes: Supplementary data
Journal Articles
In collection:
Neural development
Adrià Voltes, Covadonga F. Hevia, Carolyn Engel-Pizcueta, Chaitanya Dingare, Simone Calzolari, Javier Terriente, Caren Norden, Virginie Lecaudey, Cristina Pujades
Journal:
Development
Development (2019) 146 (14): dev176735.
Published: 22 July 2019
...: Rhombomeric boundary cells act as mechanosensors through Yap/Taz-TEAD activity, affecting progenitor maintenance and therefore balancing proliferation and differentiation. Boundaries Compartments Mechanical cues Progenitor cells Neurons Hindbrain Yap/Taz La Marató-TV3 345/C/2014...
Includes: Supplementary data
Journal Articles
Yap and its subcellular localization have distinct compartment-specific roles in the developing lung
Journal:
Development
Development (2019) 146 (9): dev175810.
Published: 1 May 2019
.... Yap Branching morphogenesis Airway differentiation Progenitor cells Lung development Alveolar differentiation National Institutes of Health 10.13039/100000002 R35-HL135834-01 National Key Research and Development Program of China 2017YFA0103501 The generation...
Includes: Supplementary data
Journal Articles
Jacqueline L. Norrie, Qiang Li, Swanie Co, Bau-Lin Huang, Ding Ding, Jann C. Uy, Zhicheng Ji, Susan Mackem, Mark T. Bedford, Antonella Galli, Hongkai Ji, Steven A. Vokes
Journal:
Development
Development (2016) 143 (24): 4608–4619.
Published: 15 December 2016
...Jacqueline L. Norrie; Qiang Li; Swanie Co; Bau-Lin Huang; Ding Ding; Jann C. Uy; Zhicheng Ji; Susan Mackem; Mark T. Bedford; Antonella Galli; Hongkai Ji; Steven A. Vokes During embryonic development, undifferentiated progenitor cells balance the generation of additional progenitor cells...
Includes: Supplementary data
Journal Articles
In collection:
Stem cells & regeneration
Yinan Wan, Alexandra D. Almeida, Steffen Rulands, Naima Chalour, Leila Muresan, Yunmin Wu, Benjamin D. Simons, Jie He, William A. Harris
Journal:
Development
Development (2016) 143 (7): 1099–1107.
Published: 1 April 2016
..., has not yet been achieved for continuously growing adult tissues, but is essential if we wish to understand the architecture of adult organs. The retinas of lower vertebrates grow throughout life from retinal stem cells (RSCs) and retinal progenitor cells (RPCs) at the rim of the retina, called...
Includes: Supplementary data
Journal Articles
In collection:
Stem cells & regeneration
Jelena R. Linnemann, Haruko Miura, Lisa K. Meixner, Martin Irmler, Uwe J. Kloos, Benjamin Hirschi, Harald S. Bartsch, Steffen Sass, Johannes Beckers, Fabian J. Theis, Christian Gabka, Karl Sotlar, Christina H. Scheel
Journal:
Development
Development (2015) 142 (18): 3239–3251.
Published: 15 September 2015
... to quantify the regenerative potential of human mammary cells. Mammary stem cell Primary human mammary epithelial cells Basal Luminal Progenitor cells Branching morphogenesis Organoid Regenerative potential CD10 Terminal ductal-lobular units Collagen gel The mammary gland (MG) develops...
Includes: Supplementary data
Journal Articles
In collection:
Stem cells & regeneration
Journal:
Development
Development (2015) 142 (6): 1028–1042.
Published: 15 March 2015
... of expansion and proliferation. The mammary gland thus provides an excellent model for studying the ‘stem/progenitor’ cells that allow this repeated expansion and renewal. In this Review, we provide an overview of the different cell types that constitute the mammary gland, and discuss how these cell types...
Journal Articles
In collection:
Stem cells & regeneration
Munemasa Mori, John E. Mahoney, Maria R. Stupnikov, Jesus R. Paez-Cortez, Aleksander D. Szymaniak, Xaralabos Varelas, Dan B. Herrick, James Schwob, Hong Zhang, Wellington V. Cardoso
Journal:
Development
Development (2015) 142 (2): 258–267.
Published: 15 January 2015
... for homeostasis and repair of the conducting airways. Little is known about how these progenitor cells expand and transition to differentiation to form the pseudostratified airway epithelium in the developing and adult lung. Here, we show by genetic and pharmacological approaches that endogenous activation...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2014) 141 (7): 1589–1598.
Published: 1 April 2014
.... We tested CLoNe on several tissues with a particular focus on forebrain neural progenitors and found that it provides a remarkably accurate and reliable fate-map of multiple clones originating from independent stem/progenitor cells within the same tissue volume of the same specimen. The method...
Includes: Supplementary data
Journal Articles
Michelle A. Wood, Asha Acharya, Isabella Finco, Jessica M. Swonger, Marlee J. Elston, Michelle D. Tallquist, Gary D. Hammer
Journal:
Development
Development (2013) 140 (22): 4522–4532.
Published: 15 November 2013
... of fetal cells (fetal cortex derived Gli1 -expressing cells and mesenchymal Tcf21 -expressing mesenchymal cells) participate in the establishment of the homeostatic capsular progenitor cell niche of the adult cortex. ‡ Author for correspondence ( [email protected] ) * Present address: Magee...
Includes: Supplementary data
Journal Articles
Ayumi Usui, Yujin Mochizuki, Atsumi Iida, Emako Miyauchi, Shinya Satoh, Elisabeth Sock, Hiromitsu Nakauchi, Hiroyuki Aburatani, Akira Murakami, Michael Wegner, Sumiko Watanabe
Journal:
Development
Development (2013) 140 (4): 740–750.
Published: 15 February 2013
... expressed in early retinal progenitor cells and that Sox4 expression began around birth, when expression of Sox11 subsided. To analyze the roles of Sox11 and Sox4 in retinal development, we perturbed their expression patterns in retinal explant cultures. Overexpression of Sox11 and Sox4 in retinal...
Includes: Supplementary data
Journal Articles
Hillary F. McGraw, Catherine M. Drerup, Maya D. Culbertson, Tor Linbo, David W. Raible, Alexei V. Nechiporuk
Journal:
Development
Development (2011) 138 (18): 3921–3930.
Published: 15 September 2011
... of the trunk. The NMs are deposited by a migrating pLL primordium, which is organized into polarized rosettes (proto-NMs). During migration, mature proto-NMs are deposited from the trailing part of the primordium, while progenitor cells in the leading part give rise to new proto-NMs. Wnt signaling is active...
Includes: Multimedia, Supplementary data
Journal Articles
Nick J. Van Hateren, Raman M. Das, Guillaume M. Hautbergue, Anne-Gaëlle Borycki, Marysia Placzek, Stuart A. Wilson
Journal:
Development
Development (2011) 138 (10): 1893–1902.
Published: 15 May 2011
... declare no competing financial interests. 23 2 2011 © 2011. 2011 Cadherin Neural tube Chick RNAi Screen FatJ Progenitor cells Interneurons Phenotype Hippo pathway Notch signalling Morphogen Neural progenitor cells are patterned along the dorsoventral axis...
Includes: Supplementary data
Journal Articles
Ahmed HK El-Hashash, Gianluca Turcatel, Denise Al Alam, Sue Buckley, Hiroshi Tokumitsu, Saverio Bellusci, David Warburton
Journal:
Development
Development (2011) 138 (7): 1395–1407.
Published: 1 April 2011
... progenitor cell identity at the expense of differentiated cell phenotypes, we test whether genetic activation of Notch could rescue the Eya1 −/− lung phenotype, which is characterized by loss of epithelial progenitors, increased epithelial differentiation but reduced branching. Indeed, genetic activation...
Includes: Supplementary data
Journal Articles
Courtney M. Karner, Amrita Das, Zhendong Ma, Michelle Self, Chuo Chen, Lawrence Lum, Guillermo Oliver, Thomas J. Carroll
Journal:
Development
Development (2011) 138 (7): 1247–1257.
Published: 1 April 2011
... complete organ failure to congenital hypertension. A balance between differentiation and maintenance of a mesenchymal progenitor cell population determines the final number of nephrons. How this balance is struck is poorly understood. Previous studies have suggested that Wnt9b/β-catenin signaling induced...
Includes: Supplementary data
Journal Articles
Journal:
Development
Development (2009) 136 (22): 3741–3745.
Published: 15 November 2009
... ). Is there a single self-renewing Id2 + progenitor cell type during the pseudoglandular stage? Or, are there separate bronchiolar and alveolar progenitors? To distinguish between these possibilities, we identified a dose of tmx that labeled either a single tip epithelial cell, or no cells, per lung. We exposed...
Includes: Supplementary data
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