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ytterbium/inflammation

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7 結果

Anti-inflammatory effects of praseodymium, gadolinium and ytterbium chlorides.

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Anti-inflammatory effects of chloride salts of praseodymium, gadolinium and ytterbium were investigated, using various experimental inflammatory models in rats. The lanthanide salts administered by oral route showed no significant effect, but when injected intraperitoneally they significantly

Bioaccumulation of ytterbium oxide nanoparticles insinuate oxidative stress, inflammatory, and pathological lesions in ICR mice

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With the rapid development in nanoscience and nanotechnology, rare earth oxide nanomaterials (REO-NMs) have been increasingly used due to their unique physical and chemical characteristics. Despite the increasing applications of REO NPs, scarce information is available on their detrimental effects.

[Diagnostic value of ytterbium 169 citrate in cancerology].

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Several radio-nuclides are used in Cancerology for their tumoral tropism and, in fact, 67 gallium citrate and 57Co bleomycin almost exclusively. But, these nuclides have some disadvantages, such as we tried to evaluate the interest to 169 ytterbium citrate; this radiolanthanide has already been
OBJECTIVE The aim of this study was to perform a histological analysis of the effect of a ytterbium-doped fiber (YDF) laser on oral buccal mucosa tissue in vivo to simulate its effect on the mucosa of the lower urinary tract. METHODS A total of 90 8-week-old Sprague-Dawley rats were anesthetized
Rare earth metals are added to corrodible magnesium-based alloys in low amounts (up to 10%) to improve their mechanical properties and to decrease the degradation rate. Cerium (Ce), neodymium (Nd), yttrium (Y), and ytterbium (Yb) are already used for degradable cardiovascular stents. Little is known

Non-ablative fractional photothermolysis in treatment of idiopathic guttate hypomelanosis.

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BACKGROUND Idiopathic guttate hypomelanosis (IGH) is a common pigmentary disorder affecting a large number of individuals. Many patients seek medical attention due to aesthetic concern. However, no standard treatment is available. OBJECTIVE To evaluate the efficacy and side-effects of non-ablative

Study on cytotoxicity, cellular uptake and elimination of rare-earth-doped upconversion nanoparticles in human hepatocellular carcinoma cells

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The growing use of rare-earth doped upconversion nanoparticles (UCNPs) has caused increasing concern about their biosafety. Here, to understand the toxicity of UCNPs and their mechanism in HepG2 cells, we systematically study the cytotoxicity, uptake and elimination behaviors of three types of UCNPs
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