A61K49/1839

Antitumor composition based on hyaluronic acid and inorganic nanoparticles, method of preparation thereof and use thereof

The invention relates to an antitumor composition based on hydrophobized hyaluronan and inorganic nanoparticles stabilized by oleic acid. The hydrophobized hyaluronan in the form of an acylated hyaluronan serves in the composition as a carrier of inorganic nanoparticles. Out of the group of inorganic nanoparticles, the composition may comprise superparamagnetic nanoparticles, nanoparticles of ZnO and moreover, upconversion nanoparticles. Said composition is selectively cytotoxic with respect to both suspension and adherent tumor cell lines, especially with respect to tumor cell lines of colorectum carcinoma and adenocarcinoma, lung carcinoma, hepatocellular carcinoma and breast adenocarcinoma. The highest cytotoxic effects were observed in case of the composition based on an oleyl derivative of hyaluronan with SPIONs. The composition of acylated hyaluronan with SPIONs may also be advantageously used for an in vivo detection of accumulation of the composition in the body, preferably in a tumor or in liver. Said composition is sterilizable in the final package.

MAGNETIC ORGANIC CORE-INORGANIC SHELL MATERIAL, PROCESS FOR PRODUCING SAME AND USES THEREOF FOR THE MAGNETICALLY STIMULATED DELIVERY OF SUBSTANCES OF INTEREST

The present invention relates to a submicrometric material consisting of a silica shell encasing a core of superparamagnetic wax, to the process for producing same and to the uses thereof, in particular for the magnetically stimulated delivery of substances of interest.

TINY NANOPARTICLES FOR MAGNETIC RESONANCE IMAGING APPLICATIONS

A method of preparing a coated nanoparticle can include decomposing a compound to produce a nanoparticle, oxidizing the nanoparticle to produce an oxidized nanoparticle, and coating the oxidized nanoparticle with a zwitterionic ligand to produce the coated nanoparticle. The coated nanoparticle or the nanoparticle can be used in magnetic resonance imaging.

Method for preparing an aqueous dispersion of metal oxide particles

A method for preparing an aqueous dispersion of metal oxide particles is disclosed. The method comprises the step of performing phase transfer of a plurality of metal oxide particles capped with hydrophobic ligands on a surface there of by contacting the metal oxide particles with a combination of tertiary amine and water to form a biphasic mixture, and agitating said biphasic mixture to produce an aqueous dispersion of metal oxide particles capped with hydrophobic ligands and tertiary amine ligands on the surface thereof.

NON-PYROGENIC PREPARATION COMPRISING NANOPARTICLES SYNTHESIZED BY MAGNETOTACTIC BACTERIA FOR MEDICAL OR COSMETIC APPLICATIONS
20190328777 · 2019-10-31 · ·

A non-pyrogenic preparation containing nanoparticles synthesized by magnetotactic bacteria for medical or cosmetic applications. The nanoparticles are constituted by a crystallized mineral central part including predominantly an iron oxide, as well as a surrounding coating without material from the magnetotactic bacteria.

Non-pyrogenic preparation comprising nanoparticles synthesized by magnetotactic bacteria for medical or cosmetic applications
10391122 · 2019-08-27 · ·

A non-pyrogenic preparation containing nanoparticles synthesized by magnetotactic bacteria for medical or cosmetic applications. The nanoparticles are constituted by a crystallized mineral central part including predominantly an iron oxide, as well as a surrounding coating without material from the magnetotactic bacteria.

BIOCOMPATIBLE MAGNETIC MATERIALS

A biocompatible magnetic material containing an iron oxide nanoparticle and one or more biocompatible polymers, each having formula (I) below, covalently bonded to the iron oxide nanoparticle:

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in which each of variables R, L, x, and y is defined herein, the biocompatible magnetic material contains 4-15% Fe(II) ions relative to the total iron ions. Also disclosed in a method of preparing the biocompatible magnetic material.

ORAL ANAEROBIC GLUTATHIONE SUPPLEMENT IN LIPOSOME SUSPENSION
20190240281 · 2019-08-08 ·

The disclosure relates to compositions, methods and systems for treating cellular oxidative stress in a user. A composition of the disclosure includes an effective amount of reduced glutathione for reducing oxidative stress in the user and a deoxygenated water solvent. The composition is encapsulated in a phospholipid liposome structure and packaged and stored in an airless dispenser configured to maintain an anaerobic environment.

Oral anaerobic glutathione supplement in liposome suspension
10272130 · 2019-04-30 ·

The disclosure relates to compositions, methods and systems for treating cellular oxidative stress in a user. A composition of the disclosure includes an effective amount of reduced glutathione for reducing oxidative stress in the user and a deoxygenated water solvent. The composition is encapsulated in a phospholipid liposome structure and packaged and stored in an airless dispenser configured to maintain an anaerobic environment.