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The Pediatric Cell Atlas: Defining the Growth Phase of Human Development at Single-Cell Resolution.
- Taylor, Deanne;
- Aronow, Bruce;
- Tan, Kai;
- Bernt, Kathrin;
- Salomonis, Nathan;
- Greene, Casey;
- Frolova, Alina;
- Henrickson, Sarah;
- Wells, Andrew;
- Pei, Liming;
- Jaiswal, Jyoti;
- Whitsett, Jeffrey;
- Hamilton, Kathryn;
- MacParland, Sonya;
- Kelsen, Judith;
- Heuckeroth, Robert;
- Potter, S;
- Vella, Laura;
- Terry, Natalie;
- Ghanem, Louis;
- Kennedy, Benjamin;
- Helbig, Ingo;
- Sullivan, Kathleen;
- Castelo-Soccio, Leslie;
- Kreigstein, Arnold;
- Herse, Florian;
- Nawijn, Martijn;
- Koppelman, Gerard;
- Haendel, Melissa;
- Harris, Nomi;
- Rokita, Jo;
- Zhang, Yuanchao;
- Regev, Aviv;
- Rozenblatt-Rosen, Orit;
- Rood, Jennifer;
- Tickle, Timothy;
- Vento-Tormo, Roser;
- Alimohamed, Saif;
- Lek, Monkol;
- Mar, Jessica;
- Loomes, Kathleen;
- Barrett, David;
- Uapinyoying, Prech;
- Beggs, Alan;
- Agrawal, Pankaj;
- Chen, Yi-Wen;
- Muir, Amanda;
- Garmire, Lana;
- Snapper, Scott;
- Nazarian, Javad;
- Seeholzer, Steven;
- Fazelinia, Hossein;
- Singh, Larry;
- Faryabi, Robert;
- Raman, Pichai;
- Dawany, Noor;
- Xie, Hongbo;
- Devkota, Batsal;
- Diskin, Sharon;
- Anderson, Stewart;
- Rappaport, Eric;
- Peranteau, William;
- Wikenheiser-Brokamp, Kathryn;
- Teichmann, Sarah;
- Wallace, Douglas;
- Peng, Tao;
- Ding, Yang-Yang;
- Kim, Man;
- Xing, Yi;
- Kong, Sek;
- Bönnemann, Carsten;
- Mandl, Kenneth;
- White, Peter
- et al.
Published Web Location
https://doi.org/10.1016/j.devcel.2019.03.001Abstract
Single-cell gene expression analyses of mammalian tissues have uncovered profound stage-specific molecular regulatory phenomena that have changed the understanding of unique cell types and signaling pathways critical for lineage determination, morphogenesis, and growth. We discuss here the case for a Pediatric Cell Atlas as part of the Human Cell Atlas consortium to provide single-cell profiles and spatial characterization of gene expression across human tissues and organs. Such data will complement adult and developmentally focused HCA projects to provide a rich cytogenomic framework for understanding not only pediatric health and disease but also environmental and genetic impacts across the human lifespan.
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