Faculty profile
Maurice Ringuette
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Research
Latest papers
Sporicidal efficacy of thermal-sprayed copper alloy coating.
Canadian journal of microbiology · 2017 · senior author
In silico hybridization enables transcriptomic illumination of the nature and evolution of Myxozoa.
BMC genomics · 2015
Molecular evolution of SPARC: absence of the acidic module and expression in the endoderm of the starlet sea anemone, Nematostella vectensis.
Development genes and evolution · 2009 · senior author
Latest funding
- $192,000
Regulation of Drosophila larval fat body development and function by tissue-specific SPARC variants
NSERC · 2020 · Principal investigator
- $50,000
Copper embedded fabrics and facemasks for rapid, irreversible destruction of Covid-19
NSERC · 2020 · Co-investigator
- $150,000
SPARC as an essential regulator of fat body development and maintenance critical for Drosophila melanogaster larval progression
NSERC · 2015 · Principal investigator
5 publications.
Sporicidal efficacy of thermal-sprayed copper alloy coating.
Shafaghi R, Mostaghimi J, Pershin V, Ringuette M
In silico hybridization enables transcriptomic illumination of the nature and evolution of Myxozoa.
Foox J, Ringuette M, Desser SS, Siddall ME
Molecular evolution of SPARC: absence of the acidic module and expression in the endoderm of the starlet sea anemone, Nematostella vectensis.
Koehler A, Desser S, Chang B, MacDonald J, Tepass U, Ringuette M
Recombinant mouse SPARC promotes parietal endoderm differentiation and cardiomyogenesis in embryoid bodies.
Hrabchak C, Ringuette M, Woodhouse K
Haemocyte-derived SPARC is required for collagen-IV-dependent stability of basal laminae in Drosophila embryos.
Martinek N, Shahab J, Saathoff M, Ringuette M
Regulation of Drosophila larval fat body development and function by tissue-specific SPARC variants
Principal investigators: Ringuette, Maurice
Keywords: drosophila development; extracellular matrix biology; basement membranes; larval fat body; sparc; collagen iv; cell and molecular molecular genetics; immunofluorescent technology; molecular cloning; cell biology
Copper embedded fabrics and facemasks for rapid, irreversible destruction of Covid-19
Principal investigators: Mostaghimi, Javad
SPARC as an essential regulator of fat body development and maintenance critical for Drosophila melanogaster larval progression
Principal investigators: Ringuette, Maurice
Evaluation of the biocidal efficacy of titanium dioxide coatings for water purification
Principal investigators: Ringuette, Maurice
Impact of VEPH1 on cancer associated signaling pathways in the promotion of ovarian cancer
Principal investigators: Brown, Theodore J
Keywords: Angiogenesis; Foxo Signaling; Molecular And Cell Biology; Ovarian Cancer; Reactive Oxygen Species; Tgf-Beta Signaling; Veph1
Development and analysis of the biocidal activity of cooper-based alloys coating on organic substrates
Principal investigators: Ringuette, Maurice
Laser replacements and upgrades for a multi-user spinning disk confocal microscope
Principal investigators: Harris, Tony
Development of SPARC mimetic peptides for targeting peritoneal metastasis of epithelial ovarian cancer
Principal investigators: Ringuette, Maurice
Fluorescence stereomicroscope for molecular embryology research
Principal investigators: Tropepe, Vincent
The morphogenetic contributions of SPARC and collagen IV during drosophila embryogenesis
Principal investigators: Ringuette, Maurice
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Ulrich Tepass and Maurice Ringuette: 1 shared paper
- Ulrich Tepass and Belinda Chang: 1 shared paper
- Javad Mostaghimi and Maurice Ringuette: 1 shared paper
- Maurice Ringuette and Belinda Chang: 1 shared paper
- Cell and Systems Biology (St. George Campus)
- Ecology and Evolutionary Biology (St. George Campus)
- Department of Mechanical and Industrial Engineering
- Cell and Systems Biology
Co-authors at University of Toronto, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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