首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Biocompatible inorganic nanoparticles for [~(18)F]-fluoride binding with applications in PET imaging
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Biocompatible inorganic nanoparticles for [~(18)F]-fluoride binding with applications in PET imaging

机译:用于[〜(18)F]-氟化物结合的生物相容性无机纳米粒子及其在PET成像中的应用

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摘要

A wide selection of insoluble nanoparticulate metal salts was screened for avid binding of [~(18)F]-fluoride. Hydroxyapatite and aluminium hydroxide nanoparticles showed particularly avid and stable binding of [ ~(18)F]-fluoride in various biological media. The in vivo behaviour of the [~(18)F]-labelled hydroxyapatite and aluminium hydroxide particles was determined by PET-CT imaging in mice. [~(18)F]-labelled hydroxyapatite was stable in circulation and when trapped in various tissues (lung embolisation, subcutaneous and intramuscular), but accumulation in liver via reticuloendothelial clearance was followed by gradual degradation and release of [~(18)F]-fluoride (over a period of 4 h) which accumulated in bone. [~(18)F]-labelled aluminium hydroxide was also cleared to liver and spleen but degraded slightly even without liver uptake (subcutanenous and intramuscular). Both materials have properties that are an attractive basis for the design of molecular targeted PET imaging agents labelled with ~(18)F.
机译:针对[〜(18)F]-氟化物的狂热结合,筛选了多种不溶性纳米颗粒金属盐。羟基磷灰石和氢氧化铝纳米颗粒在各种生物介质中均表现出特别强烈的[〜(18)F]-氟化物结合。 [〜(18)F]标记的羟基磷灰石和氢氧化铝颗粒的体内行为通过PET-CT成像在小鼠中确定。 [〜(18)F]标记的羟基磷灰石在循环中和被困在各种组织(肺栓塞,皮下和肌内)中时均稳定,但通过网状内皮清除后在肝脏中积累,随后逐渐降解并释放[〜(18)F氟化物(在4小时内)累积在骨骼中。 [〜(18)F]标记的氢氧化铝也被清除至肝脏和脾脏,但即使没有肝脏摄取(皮下和肌肉内),也会轻微降解。两种材料的特性均是设计〜(18)F标记的分子靶向PET显像剂的诱人基础。

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