Zobrazeno 1 - 10
of 69
pro vyhledávání: '"Robert Gauvin"'
Autor:
Mario Leclerc, Robert Gauvin
'Functional Materials textbook is not simply a review of the vast body of literature of the recent years, as it holds the focus upon various aspects of application. Moreover, it selects only a few topics in favor of a solid and thorough treatment of
Peel Test to Assess the Adhesion Strength of the Dermal-Epidermal Junction in Tissue-Engineered Skin
Autor:
Alex E Larose, Lucie Germain, Manuel Caruso, Elena Pope, Danielle Larouche, Robert Gauvin, Angela Dakiw-Piaceski, Martin A Barbier
Publikováno v:
Tissue engineering. Part C, Methods. 26(3)
Innovative therapies combining gene-corrected stem cells and the production of bioengineered tissues to treat epidermolysis bullosa are emerging. However, quantitative tests to measure the adhesion forces between two highly viscoelastic substrates su
Autor:
Hee Jeong Yoon, Jeehye Kim, Jin-Hoi Kim, Hojae Bae, Sang Hong Baek, Hyun Jin Park, Jae Min Cha, Robert Gauvin, Sang Mo Kwon
Publikováno v:
Macromolecular Research. 24:1115-1125
In this study, the suitability of gelatin methacryloyl (GelMA) nanogels for transdermal delivery of macromolecules was demonstrated. The synthesis of GelMA nanogels (GNs) and fluorescein isothiocyanate labelled bovine serum albumin (FITC-BSA) loaded
Autor:
Lucie Germain, Jean Ruel, Teodor Veres, Jean-Michel Bourget, Raymond Labbé, Véronique Laterreur, Maxime D. Guillemette, Caroline Miville-Godin, Maxence Mounier, Maxime Y. Tondreau, Catherine Tremblay, François A. Auger, Robert Gauvin
Publikováno v:
Journal of Tissue Engineering and Regenerative Medicine. 11:2479-2489
In the clinical and pharmacological fields, there is a need for the production of tissue-engineered small-diameter blood vessels. We have demonstrated previously that the extracellular matrix (ECM) produced by fibroblasts can be used as a scaffold to
Autor:
Todd Galbraith, Jean-Michel Bourget, Maxime Picard-Deland, Tamao Tsutsumi, Ashraf A. Ismail, François A. Auger, Vincent Roy, Robert Gauvin, Jean-François Morin, François Gros-Louis
Publikováno v:
Biotechnology journal. 14(1)
There is a strong clinical need to develop small-caliber tissue-engineered blood vessels for arterial bypass surgeries. Such substitutes can be engineered using the self-assembly approach in which cells produce their own extracellular matrix (ECM), c
Autor:
Lucie Germain, Maxime Y. Tondreau, François A. Auger, Catherine Tremblay, Robert Gauvin, Jean Ruel, Jean-Michel Bourget, Karine Vallières, Dan Lacroix, Véronique Laterreur
Publikováno v:
Acta Biomaterialia. 18:176-185
There is an ongoing clinical need for tissue-engineered small-diameter (
Autor:
Lucie Germain, François A. Auger, Jean Dubé, Jean-Michel Bourget, Robert Gauvin, Charles J. Roberge, Hugues Lafrance
Publikováno v:
Acta Biomaterialia. 10:3563-3570
The aortic heart valve is constantly subjected to pulsatile flow and pressure gradients which, associated with cardiovascular risk factors and abnormal hemodynamics (i.e. altered wall shear stress), can cause stenosis and calcification of the leaflet
Autor:
Nilesh Gupta, Robert Gauvin, Kamrun Nahar, Brijeshkumar Patel, Fakhrul Ahsan, Shahriar Absar, Ali Khademhosseini, Vivek Gupta
Publikováno v:
European Journal of Pharmaceutical Sciences. 49:805-818
Delivery of therapeutic agents via the pulmonary route has gained significant attention over the past few decades because this route of administration offers multiple advantages over traditional routes that include localized action, non-invasive natu
Autor:
Robert Gauvin, Jean Ruel, François A. Auger, Maxime D. Guillemette, Caroline Miville-Godin, Jean-Michel Bourget, Maxence Mounier, Lucie Germain, Teodor Veres, Véronique Laterreur
Publikováno v:
Procedia Engineering. 59:201-205
There is a lack of an optimal transplant material for small calibre blood vessels. This could be overcome by tissue engineering. The optimal construct is to be derived from autologous cells and present mechanical resistance comparable to the gold sta
Autor:
Akram Ayoub, Laurence Cantin-Warren, Danielle Larouche, Maxime Desgagné, François A. Auger, Robert Gauvin, Israël Martel, Amélie Lavoie, Véronique J. Moulin, Lucie Germain, Rina Guignard
Publikováno v:
BioResearch Open Access, Vol 5, Iss 1, Pp 320-329 (2016)
BioResearch Open Access
BioResearch Open Access
There is a clinical need for skin substitutes to replace full-thickness skin loss. Our group has developed a bilayered skin substitute produced from the patient's own fibroblasts and keratinocytes referred to as Self-Assembled Skin Substitute (SASS).