Resultados da pesquisa - David A. Hess
- A mostrar 1 - 20 resultados de 25
- Go to Next Page
-
1
COX-2 Elevates Oncogenic miR-526b in Breast Cancer by EP4 Activation Por Mousumi Majumder, Erin Landman, Ling Liu, David A. Hess, Peeyush K. Lala
Publicado em 2015Artigo -
2
-
3
-
4
-
5
-
6
High Aldehyde Dehydrogenase Activity Identifies a Subset of Human Mesenchymal Stromal Cells with Vascular Regenerative Potential Por Stephen E. Sherman, Miljan Kuljanin, Tyler T. Cooper, David M. Putman, Gilles Lajoie, David A. Hess
Publicado em 2017Artigo -
7
Role of Endothelium in Doxorubicin-Induced Cardiomyopathy Por Albert Z. Luu, Biswajit Chowdhury, Mohammed Al‐Omran, Hwee Teoh, David A. Hess, Subodh Verma
Publicado em 2018Revisão -
8
-
9
-
10
-
11
High aldehyde dehydrogenase and expression of cancer stem cell markers selects for breast cancer cells with enhanced malignant and metastatic ability Por Alysha K. Croker, David Goodale, Jenny E. Chu, Carl O. Postenka, Benjamin D. Hedley, David A. Hess, Alison L. Allan
Publicado em 2008Artigo -
12
Widespread Nonhematopoietic Tissue Distribution by Transplanted Human Progenitor Cells with High Aldehyde Dehydrogenase Activity Por David A. Hess, Timothy P. Craft, Louisa Wirthlin, Sarah Hohm, Ping Zhou, William Eades, Michael H. Creer, Mark S. Sands, Jan A. Nolta
Publicado em 2007Artigo -
13
Selection based on CD133 and high aldehyde dehydrogenase activity isolates long-term reconstituting human hematopoietic stem cells Por David A. Hess, Louisa Wirthlin, Timothy P. Craft, Phillip E. Herrbrich, Sarah Hohm, Ryan Lahey, William Eades, Michael H. Creer, Jan A. Nolta
Publicado em 2005Artigo -
14
COX-2 Induces Breast Cancer Stem Cells via EP4/PI3K/AKT/NOTCH/WNT Axis Por Mousumi Majumder, Xiping Xin, Ling Liu, Elena Tutunea-Fatan, Mauricio Rodriguez-Torres, Krista M. Vincent, Lynne‐Marie Postovit, David A. Hess, Peeyush K. Lala
Publicado em 2016Artigo -
15
Human Progenitor Cells Rapidly Mobilized by AMD3100 Repopulate NOD/SCID Mice with Increased Frequency in Comparison to Cells from the Same Donor Mobilized by Granulocyte Colony Sti... Por David A. Hess, Jesper Bonde, Timothy C. Craft, Louisa Wirthlin, Sarah Hohm, Ryan Lahey, Laura Todt, John F. DiPersio, Steven M. Devine, Jan A. Nolta
Publicado em 2007Artigo -
16
The human hematopoietic stem cell compartment is heterogeneous for CXCR4 expression Por Michael Rosu‐Myles, Lisa Gallacher, Barbara Murdoch, David A. Hess, Mike Keeney, David J. Kelvin, Leanne Dale, Stephen S. G. Ferguson, Dongmei Wu, Fraser Fellows, Mickie Bhatia
Publicado em 2000Artigo -
17
Induced Mist1 Expression Promotes Remodeling of Mouse Pancreatic Acinar Cells Por Daniel DiRenzo, David A. Hess, Barbara Damsz, J. E. Hallett, Brett Marshall, Goswami Chirayu, Yunlong Liu, Tye Deering, Raymond J. MacDonald, Stephen F. Konieczny
Publicado em 2012Artigo -
18
MIST1 and PTF1 Collaborate in Feed-Forward Regulatory Loops That Maintain the Pancreatic Acinar Phenotype in Adult Mice Por Mei Jiang, Ana Clara P. Azevedo‐Pouly, Tye Deering, Chinh Q. Hoang, Daniel DiRenzo, David A. Hess, Stephen F. Konieczny, Galvin H. Swift, Raymond J. MacDonald
Publicado em 2016Artigo -
19
Embryonic Morphogen Nodal Promotes Breast Cancer Growth and Progression Por Daniela F. Quail, Guihua Zhang, Logan A. Walsh, Gabrielle M. Siegers, Dylan Z. Dieters‐Castator, Scott D. Findlay, Heather C. Broughton, David M. Putman, David A. Hess, Lynne‐Marie Postovit
Publicado em 2012Artigo -
20
MIST1 Links Secretion and Stress as both Target and Regulator of the Unfolded Protein Response Por David A. Hess, Katherine M. Strelau, Anju Karki, Mei Jiang, Ana Clara P. Azevedo‐Pouly, Ann-Hwee Lee, Tye Deering, Chinh Q. Hoang, Raymond J. MacDonald, Stephen F. Konieczny
Publicado em 2016Artigo
Ferramentas de pesquisa:
Assuntos relacionados
Biology
Cell biology
Medicine
Cancer research
Biochemistry
Internal medicine
Stem cell
Genetics
Gene
Progenitor cell
Endocrinology
Immunology
Pathology
Transplantation
CD34
Cancer
Haematopoiesis
Breast cancer
Environmental health
Population
Stromal cell
Acinar cell
Cardiology
Cell
Cell culture
Diabetes mellitus
Embryonic stem cell
Endoplasmic reticulum
Enzyme
Mesenchymal stem cell