This profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a University of Saskatchewan directory, so their publications, courses and email address may be missing. Find their university profile.
Research
Latest funding
- $6,000
Function of pulmonary ionocytes and club cells in human airway and their contribution to cystic fibr
CIHR · 2026 · Supervisor
- $145,279
Enhacing microscopy infrastructure for improved live cell imaging
NSERC · 2025 · Co-investigator
- $1,292,850
Function of pulmonary ionocytes and club cells in human airway and their contribution to cystic fibrosis lung disease
CIHR · 2025 · Nominated PI
Function of pulmonary ionocytes and club cells in human airway and their contribution to cystic fibr
Principal investigators: Adeoye, Josephine
Keywords: Cystic Fibrosis; Gene Therapy; Lung Disease
Enhacing microscopy infrastructure for improved live cell imaging
Principal investigators: Collins, Michelle
Keywords: live imaging; microscopy; cells; zebrafish; heart; biosensors; physiology; advanced image analysis; cell behaviour; organ development
Function of pulmonary ionocytes and club cells in human airway and their contribution to cystic fibrosis lung disease
Principal investigators: Ianowski, Juan P; Baniak, Nick; Campanucci, Veronica A; Lands, Larry C; Tam, Julian; Yu, Darryl C
Keywords: Airway Disease,; Cellular Basis Of Cf Lung Disease; Cftr; Ciliated Cells; Club Cells; Cystic Fibrosis; Epithelial Ion Transport; Human Airway Tissue; Ionocyte
Cell culture room for 2D-3D in vitro systems
Principal investigators: Campanucci, Veronica
Cellular bases of cystic fibrosis lung disease: epithelial ionocytes transport bicarbonate and control airway surface liquid pH; while club and goblet cells control hydration and volume.
Principal investigators: Ianowski, Juan P; Campanucci, Veronica A; Montgomery, Julia B; Tam, Julian; Tyan, Chung-Chun
Keywords: Airway Disease; Cftr; Cystic Fibrosis; Epithelial Ion Transport; Ionocyte
Cellular bases of cystic fibrosis lung disease: epithelial ionocytes transport bicarbonate and control airway surface liquid pH; while club and goblet cells control hydration and volume
Principal investigators: Ianowski, Juan P; AbuArish, Asmahan; Campanucci, Veronica A; Montgomery, Julia B; Tam, Julian; Tyan, Chung-Chun
Keywords: Airway Disease; Cftr; Cystic Fibrosis; Epithelial Ion Transport; Ionocyte
Cellular and molecular mechanisms of ion transport by the insect excretory system
Principal investigators: Ianowski, Juan
Cellular and molecular mechanisms of ion transport by the insect excretory system
Principal investigators: Ianowski, Juan
Abnormal fluid and mucus secretion in response to inhaled bacteria contributes to cystic fibrosis airways disease pathogenesis.
Principal investigators: Ianowski, Juan P
Keywords: Cystic Fibrosis; Lung Disease; Synchrotron-Based Imaging
Cellular and molecular mechanisms of ion transport by the insect excretory system
Principal investigators: Ianowski, Juan
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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