Orit Rozenblatt-Rosen
Broad Institute
181 Papers
328 Citations
Orit Rozenblatt-Rosen is an academic researcher from Broad Institute. The author has contributed to research in topics: Biology & Medicine. The author has an hindex of 43, co-authored 120 publications. Previous affiliations of Orit Rozenblatt-Rosen include Genentech & Harvard University.
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Papers
Dissecting the multicellular ecosystem of metastatic melanoma by single-cell RNA-seq
Itay Tirosh,Benjamin Izar,Benjamin Izar,Sanjay M. Prakadan,Marc H. Wadsworth,Daniel J. Treacy,John J. Trombetta,Asaf Rotem,Asaf Rotem,Christopher Rodman,Christine G. Lian,George F. Murphy,Mohammad Fallahi-Sichani,Ken Dutton-Regester,Ken Dutton-Regester,Ken Dutton-Regester,Jia-Ren Lin,Ofir Cohen,Parin Shah,Diana Lu,Alex S. Genshaft,Travis K. Hughes,Carly G. K. Ziegler,Samuel W. Kazer,Aleth Gaillard,Kellie E. Kolb,Alexandra-Chloé Villani,Cory M. Johannessen,Aleksandr Andreev,Eliezer M. Van Allen,Eliezer M. Van Allen,Monica M. Bertagnolli,Monica M. Bertagnolli,Peter K. Sorger,Ryan J. Sullivan,Keith T. Flaherty,Dennie T. Frederick,Judit Jané-Valbuena,Charles H. Yoon,Charles H. Yoon,Orit Rozenblatt-Rosen,Alex K. Shalek,Aviv Regev,Aviv Regev,Aviv Regev,Levi A. Garraway +45 more
TL;DR: The cellular ecosystem of tumors is begin to unravel and how single-cell genomics offers insights with implications for both targeted and immune therapies is unraveled.
Dissecting the multicellular ecosystem of metastatic melanoma by single-cell RNA-seq
Itay Tirosh,Benjamin Izar,Daniel J. Treacy,John J. Trombetta,Asaf Rotem,Christopher Rodman,Christine G. Lian,George F. Murphy,Mohammad Fallahi-Sichani,Ken Dutton-Regester,Jia-Ren Lin,Ofir Cohen,Parin Shah,Diana Lu,Alexandra-Chloé Villani,Aleksandr Andreev,E.M. Van Allen,Monica M. Bertagnolli,Peter K. Sorger,Ryan J. Sullivan,Keith T. Flaherty,Dennie T. Frederick,Judit Jané-Valbuena,Orit Rozenblatt-Rosen,Sanjay M. Prakadan,Marc H. Wadsworth,Alex S. Genshaft,Travis K. Hughes,Carly G. K. Ziegler,Samuel W. Kazer,Alethe Gaillard de Saint Germain,Kellie E. Kolb,Cory M. Johannessen,Clifford H. Yoon,Alex K. Shalek,Aviv Regev,Levi A. Garraway +36 more
- 01 Apr 2016
TL;DR: Tirosh et al. as discussed by the authors applied single-cell RNA sequencing (RNA-seq) to 4645 single cells isolated from 19 patients, profiling malignant, immune, stromal, and endothelial cells.
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The Human Cell Atlas
Aviv Regev,Aviv Regev,Aviv Regev,Sarah A. Teichmann,Sarah A. Teichmann,Sarah A. Teichmann,Eric S. Lander,Eric S. Lander,Eric S. Lander,Ido Amit,Christophe Benoist,Ewan Birney,Bernd Bodenmiller,Bernd Bodenmiller,Peter J. Campbell,Peter J. Campbell,Piero Carninci,Menna R. Clatworthy,Hans Clevers,Bart Deplancke,Ian Dunham,James Eberwine,Roland Eils,Roland Eils,Wolfgang Enard,Andrew Farmer,Lars Fugger,Berthold Göttgens,Nir Hacohen,Nir Hacohen,Muzlifah Haniffa,Martin Hemberg,Seung K. Kim,Paul Klenerman,Paul Klenerman,Arnold R. Kriegstein,Ed S. Lein,Sten Linnarsson,Emma Lundberg,Emma Lundberg,Joakim Lundeberg,Partha P. Majumder,John C. Marioni,John C. Marioni,John C. Marioni,Miriam Merad,Musa M. Mhlanga,Martijn C. Nawijn,Mihai G. Netea,Garry P. Nolan,Dana Pe'er,Anthony Phillipakis,Chris P. Ponting,Stephen R. Quake,Wolf Reik,Wolf Reik,Wolf Reik,Orit Rozenblatt-Rosen,Joshua R. Sanes,Rahul Satija,Ton N. Schumacher,Alex K. Shalek,Alex K. Shalek,Alex K. Shalek,Ehud Shapiro,Padmanee Sharma,Jay W. Shin,Oliver Stegle,Michael R. Stratton,Michael J. T. Stubbington,Fabian J. Theis,Matthias Uhlen,Matthias Uhlen,Alexander van Oudenaarden,Allon Wagner,Fiona M. Watt,Jonathan S. Weissman,Barbara J. Wold,Ramnik J. Xavier,Nir Yosef,Nir Yosef,Human Cell Atlas Meeting Participants +81 more
TL;DR: An open comprehensive reference map of the molecular state of cells in healthy human tissues would propel the systematic study of physiological states, developmental trajectories, regulatory circuitry and interactions of cells, and also provide a framework for understanding cellular dysregulation in human disease.
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A Cancer Cell Program Promotes T Cell Exclusion and Resistance to Checkpoint Blockade
Livnat Jerby-Arnon,Parin Shah,Michael S. Cuoco,Christopher Rodman,Mei-Ju Su,Johannes C. Melms,Rachel Leeson,Abhay Kanodia,Shaolin Mei,Jia-Ren Lin,Shu Wang,Bokang Rabasha,David Liu,Gao Zhang,Claire Margolais,Orr Ashenberg,Patrick A. Ott,Elizabeth I. Buchbinder,Rizwan Haq,F. Stephen Hodi,Genevieve M. Boland,Ryan J. Sullivan,Dennie T. Frederick,Benchun Miao,Tabea Moll,Keith T. Flaherty,Meenhard Herlyn,Russell W. Jenkins,Rohit Thummalapalli,Monika S. Kowalczyk,Israel Cañadas,Bastian Schilling,Bastian Schilling,Adam N.R. Cartwright,Adrienne M. Luoma,Shruti Malu,Patrick Hwu,Chantale Bernatchez,Marie Andrée Forget,David A. Barbie,Alex K. Shalek,Itay Tirosh,Peter K. Sorger,Kai W. Wucherpfennig,Eliezer M. Van Allen,Dirk Schadendorf,Bruce E. Johnson,Asaf Rotem,Asaf Rotem,Orit Rozenblatt-Rosen,Levi A. Garraway,Charles H. Yoon,Charles H. Yoon,Benjamin Izar,Aviv Regev +54 more
TL;DR: A resistance program expressed by malignant cells that is associated with T cell exclusion and immune evasion is identified, and this study provides a high-resolution landscape of ICI-resistant cell states, identifies clinically predictive signatures, and suggests new therapeutic strategies to overcome immunotherapy resistance.
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Intra- and Inter-cellular Rewiring of the Human Colon during Ulcerative Colitis
Christopher Smillie,Moshe Biton,Jose Ordovas-Montanes,Keri M. Sullivan,Grace Burgin,Daniel B. Graham,Rebecca H. Herbst,Rebecca H. Herbst,Noga Rogel,Michal Slyper,Julia Waldman,Malika Sud,Elizabeth Andrews,Gabriella Velonias,Adam L. Haber,Karthik A. Jagadeesh,Sanja Vickovic,Junmei Yao,Christine Stevens,Danielle Dionne,Lan T. Nguyen,Alexandra-Chloé Villani,Matan Hofree,Elizabeth A. Creasey,Hailiang Huang,Orit Rozenblatt-Rosen,John J. Garber,Hamed Khalili,A. Nicole Desch,Mark J. Daly,Mark J. Daly,Ashwin N. Ananthakrishnan,Alex K. Shalek,Ramnik J. Xavier,Aviv Regev,Aviv Regev +35 more
TL;DR: An atlas of 366,650 cells from the colon mucosa of 18 UC patients and 12 healthy individuals is generated, revealing 51 epithelial, stromal, and immune cell subsets, including BEST4+ enterocytes, microfold-like cells, and IL13RA2+IL11+ inflammatory fibroblasts, which are associated with resistance to anti-TNF treatment.
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