This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a McGill University directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Bioprinted cancer-stromalin-vitromodels in a decellularized ECM-based bioink exhibit progressive remodeling and maturation.
Biomedical materials (Bristol, England) · 2023 · senior author
Hairy Nanocellulose-Based Supramolecular Architectures for Sustained Drug Release.
Biomacromolecules · 2023
Decellularized ECM hydrogels: prior use considerations, applications, and opportunities in tissue engineering and biofabrication.
Biomaterials science · 2023 · senior author
Latest funding
- $1,124,550
Tissue-Engineered Dual-3D Bioprinted Salivary Glands: An In Vitro Humanized Platform for Studying Ionizing Radiation Injury.
CIHR · 2026 · Co-investigator
- $100,000
Tissue-Engineered Dual-3D Bioprinted Salivary Glands: An In Vitro Humanized Platform for Studying Ionizing Radiation Injury.
CIHR · 2025 · Co-investigator
- $210,000
Exploring tumour-immune cell interactions using a bioprinted model of gastroesophageal cancer
CIHR · 2024 · Supervisor
3 publications.
Bioprinted cancer-stromalin-vitromodels in a decellularized ECM-based bioink exhibit progressive remodeling and maturation.
Kort-Mascort J, Shen ML, Martin E, Flores-Torres S, Pardo LA, Siegel PM, Tran SD, Kinsella J
Hairy Nanocellulose-Based Supramolecular Architectures for Sustained Drug Release.
Heidari Nia M, Ashkar S, Munguia-Lopez JG, Kinsella J, van de Ven TGM
Decellularized ECM hydrogels: prior use considerations, applications, and opportunities in tissue engineering and biofabrication.
Kort-Mascort J, Flores-Torres S, Peza-Chavez O, Jang JH, Pardo LA, Tran SD, Kinsella J
Tissue-Engineered Dual-3D Bioprinted Salivary Glands: An In Vitro Humanized Platform for Studying Ionizing Radiation Injury.
Principal investigators: Tran, Simon D
Keywords: 3d Co-Culture System; Bioprinting; Drug Screening Platform; Ecm Mimetic System; Engineered In Vitro 3d Salivary Disease Model; Irradiation Injury In Vitro Models; Organoids; Parenchymall-Stromal Mimetic Platform; Salivary Gland; Tissue Engineering
Tissue-Engineered Dual-3D Bioprinted Salivary Glands: An In Vitro Humanized Platform for Studying Ionizing Radiation Injury.
Principal investigators: Tran, Simon D
Keywords: 3d Co-Culture System; Bioprinting; Drug Screening Platform; Ecm Mimetic System; Engineered In Vitro 3d Salivary Disease Model; Irradiation Injury In Vitro Models; Organoids; Parenchymall-Stromal Mimetic Platform; Salivary Gland; Tissue Engineering
Exploring tumour-immune cell interactions using a bioprinted model of gastroesophageal cancer
Principal investigators: Pillai, Sangeeth
Keywords: 3d Culture; Bioengineered Tumours; Biomaterials; Bioprinting; Imaging Mass Cytometry; Immune Cell Therapy; Tissue Engineering; Transcriptomics
Tissue-engineered humanized model of the gastric tumor microenvironment to mechanistically evaluate the dynamics of combined tumor-infiltrating lymphocyte and RNA nanoparticle therapy
Principal investigators: Kinsella, Joseph
Keywords: Bioprinting; Imaging Mass Cytometry; In Vitro Bioengineered Cancer Model; Nanomedicine; Pharmacometrics; Rna Therapeutics; T-Cell Therapy; Tissue Engineering; Transcriptomics; Tumour-Infiltrating Lymphocytes
Developing Programmable Materials for Bioprinting
Principal investigators: Kinsella, Joseph
Imaging system for live 3D tissue engineered constructs
Principal investigators: Hoesli, Corinne
Bioengineering Facility for UV Structured Substrate Patterning
Principal investigators: Ehrlicher, Allen
Integrating Nanomaterials into 3D Printer Inks
Principal investigators: Kinsella, Joseph
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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