VEGF receptor 2 (KDR) protects airways from mucus metaplasia through a Sox9-dependent pathway is a research paper published in Developmental Cell (2021). On theSindex it has a DataRank of 0. It has been cited 49 times.
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National Cancer Institute
Grant: P30CA013696
Columbia University
Grant: 588020-D01907
National Institutes of Health
Grant: R01DK100342
National Institutes of Health
Grant: R01DK113144
National Institutes of Health
Grant: R01HL132991
National Institutes of Health
Grant: R01HL132996
National Institutes of Health
Grant: R01HL152293
National Institutes of Health
Grant: S10RR027050
National Institutes of Health
Grant: U01HL122700/U01HL148861
NHLBI NIH HHS
Grant: U01 HL148861
NHLBI NIH HHS
Grant: U01 HL122700
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Additional file 9 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 9 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 8 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 10 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 10 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 8 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 5 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 4 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 4 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 5 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 7 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 6 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 6 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 7 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 2 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 3 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 2 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 1 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 1 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma
Additional file 3 of Single-cell analysis reveals alterations in cellular composition and cell-cell communication associated with airway inflammation and remodeling in asthma