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Patrick Saulnier
Researcher at University of Angers
Publications - 235
Citations - 14753
Patrick Saulnier is an academic researcher from University of Angers. The author has contributed to research in topics: Nanocapsules & Nanocarriers. The author has an hindex of 50, co-authored 219 publications receiving 13125 citations. Previous affiliations of Patrick Saulnier include Mint.com & Institut Gustave Roussy.
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Toll-like receptor 4-dependent contribution of the immune system to anticancer chemotherapy and radiotherapy.
Lionel Apetoh,François Ghiringhelli,Antoine Tesniere,Antoine Tesniere,Antoine Tesniere,Michel Obeid,Michel Obeid,Michel Obeid,Carla Ortiz,Carla Ortiz,Carla Ortiz,Alfredo Criollo,Alfredo Criollo,Alfredo Criollo,Grégoire Mignot,Grégoire Mignot,Grégoire Mignot,M. Chiara Maiuri,Evelyn Ullrich,Evelyn Ullrich,Evelyn Ullrich,Patrick Saulnier,Huan Yang,Sebastian Amigorena,Bernard Ryffel,Franck J. Barrat,Paul Saftig,Francis Lévi,Francis Lévi,Rosette Lidereau,Catherine Noguès,Jean-Paul Mira,Agnès Chompret,Virginie Joulin,Françoise Clavel-Chapelon,Jean Bourhis,Fabrice Andre,Suzette Delaloge,T. Tursz,Guido Kroemer,Guido Kroemer,Guido Kroemer,Laurence Zitvogel +42 more
TL;DR: A previously unrecognized pathway for the activation of tumor antigen–specific T-cell immunity that involves secretion of the high-mobility-group box 1 (HMGB1) alarmin protein by dying tumor cells and the action of HMGB1 on Toll-like receptor 4 (TLR4) expressed by dendritic cells (DCs) is described.
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Design and Production of Nanoparticles Formulated From Nano-Emulsion Templates-A Review
TL;DR: A link between nano-emulsion formulation methods and nanoparticle generation is proposed, while at the same time bearing in mind the above-mentioned parameters for active molecule encapsulation.
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Parameters influencing the stealthiness of colloidal drug delivery systems.
TL;DR: In this article, the interaction of opsonins and the macrophage plasma membrane with the surface of a colloidal drug delivery system (CDDS) was investigated. And the authors focused on parameters influencing the interactions of opticins and macrophages.
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Physico-chemical stability of colloidal lipid particles.
TL;DR: This review focuses on the physico-chemical stability of dispersions in the nanometer range where the lipids are the main or the only components and on the destabilization mechanisms, techniques used to detect this destabilization and the inductors of the destabilizations.
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A novel phase inversion-based process for the preparation of lipid nanocarriers.
TL;DR: A novel and convenient process for the preparation of lipidic nanocapsules that resembles a hybrid between polymeric nanocapules and liposomes is described, showing a strong potential for drug delivery.