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Book
Concentration of Klukwan, Alaska, magnetite ore
Authors: --- ---
Year: 1953 Publisher: [Washington, D.C.] : U.S. Dept. of the Interior, Bureau of Mines,

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Keywords

Magnetite


Book
Studies of the Snettisham magnetite deposit, southeastern Alaska
Authors: --- ---
Year: 1956 Publisher: [Washington, D.C.] : United States of the Interior, Bureau of Mines,

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Magnetite


Book
Geology and magnetite deposits of the Franklin quadrangle and part of the Hamburg quadrangle, New Jersey; : a study of the rocks, structure, and magnetite deposits of an area in northern New Jersey
Authors: ---
Year: 1970 Publisher: Washington : U.S. Govt. Print. Off.,

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Keywords

Geology --- Geology --- Magnetite --- Magnetite


Book
Geology and magnetite deposits of the Franklin quadrangle and part of the Hamburg quadrangle, New Jersey : a study of the rocks, structure, and magnetite deposits of an area in northern New Jersey
Authors: ---
Year: 1970 Publisher: Washington (D.C.): US. Government printing office

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Book
Magnetite deposits at Tuxedni Bay, Alaska
Authors: ---
Year: 1956 Publisher: [Washington, D.C.] : Washington : United States Department of the Interior, Geological Survey, United States Government Printing Office.

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Magnetite --- Alaska.


Book
Drill-hole correlation as an aid in exploration of magnetite deposits of the Jersey Highlands, New York and New Jersey
Authors: --- ---
Year: 1947 Publisher: [Washington, D.C.] : Washington : United States Department of the Interior, Geological Survey, United States Government Printing Office.

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Book
Contribution à l'optimisation de nanoparticules mucoadhésives pour la vaccination orale
Authors: --- --- ---
Year: 2010 Publisher: Bruxelles: UCL. Faculté de pharmacie et des sciences biomédicales,

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La vaccination a permis d'éradiquer de nombreuses maladies infectieuses à travers le monde. La plupart des administrations de vaccins se font par voie parentérale. Cependant celle-ci présente plusieurs inconvénients tels que le risque de contamination, les coûts d'infrastructure nécessaire à l'injection, la peur de l'aiguille et d'autres qui diminuent l‘accessibilité à cette protection sauvant de nombreuses personnes chaque année.L'intérêt d'une vaccination par voie orale est facilement compréhensible, d'autant plus que cette voie d'administration a déjà fait ses preuves dans la prévention contre la poliomyéliteparalysante.La vaccination par voie orale est possible à condition que l'antigène constituant le vaccin accède intact au structures immunitaires du tube digestif, les follicules lymphoïdes. Ava nt cela, l'antigène devra passer à travers les différents pH et les enzymes du tube digestif. Ensuite il devra traverser le mucus puis l'épithélium intestinal. Ces conditions seront remplies si l'antigène est protégé dans une particule polymérique qui lui servira de vecteur . Le but de ce mémoire est de développer des particules d'une taille proche de 200nm. Celles­ ci possèdent des propriétés de bioadhésion utiles pour augmenter le temps de contact avec l'épithélium. Ces nanoparticules sont stables dans les différents types de milieux rencontrés, elles encapsulent un antigène protéique type,l'ovalbumine. Nous avons évalué le transport de ces nanoparticules par l'épithélium intestinal associé aux follicules (FAE) lymphoïde via une étude in vitro sur inserts et n'avons constaté aucune différence entre le transport par le modèle de FAE et les cellules Caco-2. Notre formulation a également été testée in vivo, nous avons évalué l'efficacité de l'immunisation via un dosage des immunoglobulines dans le sérum ainsi que grâce à la culture des splénocytes et l'étude de leur production de cytokines. Nous avons ainsi pu caractériser le type de réponse immunitaire induite par notre vaccin. Celle-ci peut se définir comme une balance entre les activités Thelper 1et Thelper2 avec une plus grande activité Thelper 2. Finalement, nous avons mis au point une formulation capable d'induire une réponse immunitaire par voie orale, cependant des études ultérieures sont nécessaires afin d'améliorer l'efficacité du vaccin oral. Vaccination eradicated many infectious diseases worldwide.Most of vaccines are injected in blood vessel or muscle. Nevertheless this route of administration has several drawbacks such as the risk of disease propagation, the direct infrastructure and additional costs due to injection and fear for the needle. These obstacles are decreasing the access of this protective shield that could save millions of people each year. The need for oral vaccination is easily understandable, especially as it has already proved itself to be efficient in prevention against paralyzing poliomyelitis oral vaccination is possible provided that the antigen component of the vaccine could reach the immune system safely. Therefore the antigen shall cross the digestive tract's pH and enzymes. Then it must pass through the mucus and intestinal epithelium. This is possible if the antigen is protected into a polymeric structure which will act as a vector. The aim of this study was to develop particles with bio adhesion characteristics and with a diameter of around 200 nm. These nanoparticles are stab le in the miscellaneous types of medium crossed and are encapsulating a mode! protein antigen, ovalbumin. We have assessed the transport of these particles by the follicle associated epithelium (FAE) via an in vitro study and we haven't noticed any difference between the FAE model and Caco-2 cells. Our formulation has also been tested in vivo and we evaluated the immunisation effectiveness v ia the assaying of the lgG in the serum and the dosing of the cytokines production by the splenocytes. We could then define the kind of response our oral vaccine can elicit. This response can be defined as a balance between the activity of Thelper land Thelper 2. lt is the Thelper 2 raction that is the strongest. Finally, we could set up a formulation able to induce an immune response when administered by oral route.Thought further studies would be useful in order to improve the oral vaccine efficacy.


Book
Magnetite biomineralization and magnetoreception in organisms : a new biomagnetism
Author:
ISBN: 0306419939 9780306419935 Year: 1985 Publisher: New York: Plenum,

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Book
Geophysical investigations of coastal magnetite sands at Meleman, Lumajang, East Java
Authors: ---
Year: 1975 Publisher: [Bandung] Direktorat Geologi, Direktorat Jenderal Pertambangan Umum, Departemen Pertambangan

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Book
Vanadium resources in titaniferous magnetite deposits
Authors: ---
Year: 1975 Publisher: Washington : Washington : United States Department of the Interior, Geological Survey, United States Government Printing Office.

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Keywords

Vanadium ores. --- Magnetite.

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