Peyer's Patches Nanoimmunoresponse Using Organosilica Particles: Histochemical Study of the Size-dependent Uptake and Nanoimmunoresponse in Peyer's Patches Using Organosilica Particles - Kazunori Ishimura - Livros - LAP LAMBERT Academic Publishing - 9783659120152 - 10 de maio de 2012
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Peyer's Patches Nanoimmunoresponse Using Organosilica Particles: Histochemical Study of the Size-dependent Uptake and Nanoimmunoresponse in Peyer's Patches Using Organosilica Particles

Kazunori Ishimura

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Peyer's Patches Nanoimmunoresponse Using Organosilica Particles: Histochemical Study of the Size-dependent Uptake and Nanoimmunoresponse in Peyer's Patches Using Organosilica Particles

Peyer?s patches have a potential role not only in the mucosal but also in the systemic immune responses against pathogens. Recently, Peyer?s patches and their immune cells are important to be targeted with proteins or antigens for nanobiology and nanomedicine applications. Nanoparticles have several advantages as good models for vaccine delivery. Nanoparticles uptake by Peyer?s patches introduces the possibility of accommodate vaccines for oral immunization. Particle size is one of the most important factors in the uptake and pathway of nanoparticles into the gastrointestinal tract especially Peyer?s patches. In this work, thiol-organosilica particles have characteristics such as controllable size, surface charge (approximately -50 mV), mucoadhesive and possess surface mercaptopropyl residues containing alkyl chains and thiol residues. These factors might be optimal for studying vaccine delivery and the immunological interactions between particles size and immune cells such as M cells of Peyer?s patches and plasma cells of villi lamina propria. This work introduces important information of the peyer?s patches immune responses using different sizes of organosilica particles.

Mídia Livros     Paperback Book   (Livro de capa flexível e brochura)
Lançado 10 de maio de 2012
ISBN13 9783659120152
Editoras LAP LAMBERT Academic Publishing
Páginas 152
Dimensões 150 × 9 × 226 mm   ·   244 g
Idioma German