Microbes affect gut epithelial cell composition through immune-dependent regulation of intestinal stem cell differentiation is a research paper published in Cell Reports (2022). On theSindex it has a DataRank of 0. It has been cited 91 times.
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National Institutes of Health
Grant: 1R01AI148541-02
National Institutes of Health
Grant: 5R21AG065733-02
The taste and smell of intestinal stem cells and its impact on proliferation and lifespan
National Science Foundation
Grant: IOS-1656118
National Science Foundation
Grant: IOS-2024252
NIA NIH HHS
Grant: R21 AG065733
NIAID NIH HHS
Grant: R01 AI148541
National Institutes of Health
Grant: 5R01AI148541-04
Gut microbes modulate immune pathways in intestinal stem cells to influence their lineage
National Science Foundation
Grant: 2024252
Mechanisms of viral protein trafficking in polarized insect cells
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Additional file 9 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 7 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 8 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 8 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 3 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 5 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 6 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 7 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 5 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 6 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 9 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 4 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 1 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 2 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 2 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 1 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 3 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges
Additional file 4 of The midgut epithelium of mosquitoes adjusts cell proliferation and endoreplication to respond to physiological challenges