Keyword search (4,163 papers available)

"Côté M" Authored Publications:

Title Authors PubMed ID
1 Exploring correlates of weight bias among university students in diverse programs Jeanningros A; Côté M; Forouhar V; Aimé A; Lavallière M; Blackburn P; Maïano C; Alberga AS; Baillot A; 41718586
SOH
2 Psychosocial Outcomes Reported in Randomized Behavioral Intervention Trials for Children and Adolescents with Overweight and Obesity: A Scoping Review Sacco S; Booij L; Kwok C; Carrière K; Hall K; Baluyot TC; Forouhar V; Côté M; Pietrasik M; Jebeile H; Ball GDC; Johnston BC; Alberga AS; 41601261
HKAP
3 Online gambling during the COVID-19 pandemic: do living conditions matter? Côté M; Kairouz S; Savard AC; Brodeur M; 41387820
CONCORDIA
4 Results of the 2024 International Weight Bias Summit: Establishing future research directions in the field Côté M; Forouhar V; Sacco S; González-González M; Baillot A; Himmelstein M; Hussey B; Incollingo Rodriguez AC; Nagpal TS; Nutter S; Patton I; Puhl RM; Ramos Salas X; Russell-Mayhew S; Alberga AS; 41350605
HKAP
5 Weight bias, stigma and discrimination: a call for greater conceptual clarity Côté M; Forouhar V; Sacco S; Baillot A; Himmelstein M; Hussey B; Incollingo Rodriguez AC; Nagpal TS; Nutter S; Patton I; Pearl RL; Puhl RM; Ramos Salas X; Russell-Mayhew S; Alberga AS; 41280193
HKAP
6 The Unintended Psychosocial Consequences of GLP-1 Receptor Agonists for Children and Adolescents: A Call for More Research Côté M; Carrière K; Alberga AS; 39239749
HKAP
7 Weight bias among Canadians: Associations with sociodemographics, BMI and body image constructs Côté M; Forouhar V; Edache IY; Alberga AS; 38964079
HKAP
8 Understanding the Retention of Vaping Additives in the Lungs: Model Lung Surfactant Membrane Perturbation by Vitamin E and Vitamin E Acetate Taktikakis P; Côté M; Subramaniam N; Kroeger K; Youssef H; Badia A; DeWolf C; 38437623
CHEMBIOCHEM
9 Integrative couple treatment for pathological gamblers with an emphasis on forgiveness processes: A case study with three couples Côté M; Dufour M; Tremblay J; 35698442
CONCORDIA
10 Do the Consequences Experienced by the People in the Life of a Problem Gambler Differ Based on the Nature of Their Relationship with the Gambler? Ferland F; Blanchette-Martin N; Côté M; Tremblay J; Kairouz S; Nadeau L; Savard AC; L' Espérance N; Dufour M; 34286413
CONCORDIA

 

Title:Understanding the Retention of Vaping Additives in the Lungs: Model Lung Surfactant Membrane Perturbation by Vitamin E and Vitamin E Acetate
Authors:Taktikakis PCôté MSubramaniam NKroeger KYoussef HBadia ADeWolf C
Link:https://pubmed.ncbi.nlm.nih.gov/38437623/
DOI:10.1021/acs.langmuir.3c02952
Publication:Langmuir : the ACS journal of surfaces and colloids
Keywords:
PMID:38437623 Category: Date Added:2024-03-04
Dept Affiliation: CHEMBIOCHEM
1 Department of Chemistry and Biochemistry and Centre for NanoScience Research, Concordia University, 7141 Sherbrooke St. W., Montréal, Quebec H4B 1R6, Canada.
2 FRQNT Quebec Centre for Advanced Materials, 2101, rue Jeanne-Mance, Montréal, Quebec H2X 2J6, Canada.
3 Département de chimie and Institut Courtois, Université de Montréal, Complexe des sciences, C.P. 6128, succursale Centre-ville, Montréal, Quebec H3C 3J7, Canada.

Description:

Deviations from the normal physicochemical and functional properties of pulmonary surfactants are associated with the incidence of lung injury and other respiratory disorders. This study aims to evaluate the alteration of the 2D molecular organization and morphology of pulmonary surfactant model membranes by the electronic cigarette additives a-tocopherol (vitamin E) and a-tocopherol acetate (vitamin E acetate), which have been associated with lung injury, termed e-cigarette or vaping-use-associated lung injury (EVALI). The model membranes used contained a 7:3 molar ratio of DPPC (1,2-dipalmitoyl-sn-glycero-3-phosphocholine) and POPG (1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoglycerol) to which a-tocopherol and a-tocopherol acetate were added to form mixtures of up to 20 mol % additive. The properties of the neat tocopherol additives and DPPC/POPG (7:3) mixtures with increasing molar proportions of additive were evaluated by surface pressure-area isotherms, excess area calculations, Brewster angle microscopy, grazing incidence X-ray diffraction, X-ray reflectivity, and atomic force microscopy. The addition of either additive alters the essential phase balance of the model pulmonary surfactant membrane by generating a greater proportion of the fluid phase. Despite this net fluidization, both tocopherol additives have space-filling effects on the liquid-expanded and condensed phases, yielding negative excess areas in the liquid-expanded phase and reduced tilt angles in the condensed phase. Both tocopherol additives alter the stability of the fluid phase, pushing the eventual collapse of this phase to higher surface pressures than the model membrane in the absence of an additive.





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