Примери за използване на Solid lipid на Английски и техните преводи на Български
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C above the melting point of the solid lipid.
TEM image of ultrasonically prepared solid lipid nanoparticles loaded with famotidine(scale bar 100nm).
In order to encapsulate the active substances into a drug carrier with a high bioavailability, solid lipid nanoparticles are used.
(2019) prepared solid lipid nanoparticles(SLNs) using the ultrasonically-assisted hot emulsification technique.
This enables you to develop a customised recipe for your proprietary solid lipid nanoparticle formulation.
The famotidine-loaded solid lipid nanoparticles had a high entrapment efficiency of 82,30± 4,39% and an increased bioavailability.
Nanostructured lipid carriers(NLCs)are lipid-based nanoparticles made of a solid lipid matrix, which is combined with liquid lipids or oil.
Since solid lipid nanoparticles consist in physiologically similar lipids found in the human body, they are considered as well tolerated.
SNLs have a spherical shape and consist of a solid lipid core stabilized by an emulsifying agent(surfactant, co-surfactants).
Solid lipid nanoparticles(SLNs) are a common form of nano-structured drug carrier, which can encapsulate bioactive or pharmaceutical compounds.
Ultrasonic nano-emulsification andencapsulation is a reliable technique to produce large quantities of high-quality nano carriers such as solid lipid nanoparticles, nano-structured lipid carriers and liposomes.
Solid-lipid nanoparticles(SLNs), also known as lipospheres or solid lipid nanospheres, are submicron particles with an average size between 50 and 100nm.
RNA vaccines use synthetic messenger RNA(mRNA)strands that encode proteins from the virus surface Those mRNA strands are encapsulated in solid lipid nanoparticles in order to provoke a response of the human immune system to the virus.
The results showed that the famotidine-loaded solid lipid nanoparticles had a mean particle size of an average 151,90± 26,05 nm and a relatively small size distribution(0,35± 0,04).
Ultrasonically prepared nano-administering forms of curcumin for medical therapy include nanoparticles, liposomes, micelles, nanoemulsions, cyclodextrin complexes, nanodisks,nanofibres, solid lipid nanoparticles, and curcumin conjugates.
The term solid-lipid-based nanoparticles(SLBNs)comprises the two types of nano-sized drug carriers, solid lipid nanoparticles(SLNs) and nanostructured lipid carriers(NLCs).
Hielscher Ultrasonics' systems are widely used in the pharmaceutical andsupplement production to formulate high-quality solid lipid nanoparticles and liposomes loaded with pharmaceutical substances, vitamins, antioxidants, peptides and other bioactive compounds.
Solid lipid nanoparticles have a solid lipid core matrix in which lipophilic molecules(active substances) can be solubilized so that the nanoparticle acts as a drug carrier.
Hielscher Ultrasonics' systems are widely used in the pharmaceutical production to synthesise high-quality molecules and to formulate solid lipid nanoparticles and liposomes loaded with pharmaceutical substances, vitamins, antioxidants, peptides and other bioactive compounds.
Solid lipid nanoparticles(SLN) and nanostructured lipid carriers(NLC) are defined as solid particles consisting of a lipid matrix in an aqueous phase stabilized by surfactants.
Hielscher Ultrasonics' powerful ultrasonic systems are used worldwide in pharmaceutical R&D andproduction to produce high-quality nano drug carriers such as solid lipid nanoparticles(SLNs), nanostructured lipid carriers(NLCs), nanoemulsions and nanocapsules.
Nanostructure lipid carriers(NLCs)contain solid lipid, liquid lipid, and surfactant in an aqueous medium, which gives them good solubility and bioavailability characteristics.
Whilst larger solid lipid nanoparticles(SLNs) can be loaded with a higher concentration of active substances, small-sized SNLs show greatly increased kinetics of absorption and lengthened circulation time in the human organism.
Nano-structured lipid carriers(NLC)are modified solid lipid nanoparticles consisting of a blend of solid and liquid lipids and offer an improved stability and loading capacity.
The preparation of high-quality liposomes, solid lipid nanoparticles, polymeric nanoparticles and cyclodextrin complexes are processes, which Hielscher ultrasonic systems are used with high reliability and superior quality output.
The ultrasonic preparation of famotidine-loaded solid lipid nanoparticles(SLNs) is a simple and efficacious technique to formulate a high-quality nano-sized drug delivery system with significantly increased bioavailability.
Liposomes and lipid-based nano carriers such as nano-emulsions,nano-suspensions, solid lipid nanoparticles(SLNs) and nanostructured lipid carriers(NLCs) are known as potent drug carrier systems, which delivery bioactive molecules and nutrients to the targeted cell site and result thereby in superior bioavailability and absorption rates.
Consumption of a solid fat rich in lauric acid results in a more favorable serum lipid profile in healthy men and women than consumption of a solid fat rich in trans-fatty acids.”.
SLNs are made from lipids that remain solid at room and body temperature.