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In vivo characterisation of a therapeutically relevant self‐assembling 18F‐labelled β‐sheet forming peptide and its hydrogel using positron emission tomography

机译:使用正电子发射断层扫描技术对治疗相关的自组装18F标记的β-折叠形成肽及其水凝胶进行体内表征

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摘要

Positron emission tomography (PET) and fluorescence labelling have been used to assess the pharmacokinetics, biodistribution and eventual fate of a hydrogel‐forming nonapeptide, FEFKFEFKK (F9), in healthy mice, using 18F‐labelled and fluorescein isothiocyanate (FITC)‐labelled F9 analogues. F9 was site‐specifically radiolabelled with 2‐[18F]fluoro‐3‐pyridinecarboxaldehyde ([18F]FPCA) via oxime bond formation. [18F]FPCA‐F9 in vivo fate was evaluated both as a solution, following intravenous administration, and as a hydrogel when subcutaneously injected. The behaviour of FITC‐F9 hydrogel was assessed following subcutaneous injection. [18F]FPCA‐F9 demonstrated high plasma stability and primarily renal excretion; [18F]FPCA‐F9 when in solution and injected into the bloodstream displayed prompt bladder uptake (53.4 ± 16.6 SUV at 20 minutes postinjection) and rapid renal excretion, whereas [18F]FPCA‐F9 hydrogel, formed by co‐assembly of [18F]FPCA‐F9 monomer with unfunctionalised F9 peptide and injected subcutaneously, showed gradual bladder accumulation of hydrogel fragments (3.8 ± 0.4 SUV at 20 minutes postinjection), resulting in slower renal excretion. Gradual disaggregation of the F9 hydrogel from the site of injection was monitored using FITC‐F9 hydrogel in healthy mice (60 ± 3 over 96 hours), indicating a biological half‐life between 1 and 4 days. The in vivo characterisation of F9, both as a gel and a solution, highlights its potential as a biomaterial.
机译:正电子发射断层扫描(PET)和荧光标记已被用于评估健康小鼠中形成水凝胶的九肽FEFKFEFKK(F9)的药代动力学,生物分布和最终命运,并使用了 18 F标记的异硫氰酸荧光素(FITC)标记的F9类似物。通过肟键的形成,对F9进行了2 – [ 18 F]氟-3-吡啶碳甲醛([ 18 F] FPCA)的位点特异性放射性标记。 [ 18 F] FPCA-F9在体内的命运被评估为静脉注射后的溶液,以及皮下注射时的水凝胶。皮下注射后评估FITC-F9水凝胶的行为。 [ 18 F] FPCA-F9具有很高的血浆稳定性,主要是肾脏排泄。 [ 18 F] FPCA-F9在溶液中注入血液后显示迅速的膀胱吸收(注射后20分钟时为53.4±16.6 SUV)和快速的肾脏排泄,而[ 18 > F] FPCA-F9水凝胶是由[ 18 F] FPCA-F9单体与未官能化的F9肽共组装而成,并皮下注射形成的,显示出水凝胶碎片的逐渐蓄积(3.8±0.4 SUV在注射后20分钟),导致肾脏排泄速度变慢。在健康小鼠中,使用FITC-F9水凝胶监测了注射部位F9水凝胶的逐渐解体情况(96小时内60±3),表明1-4天之间的生物学半衰期。 F9的体内特性(无论是凝胶还是溶液)都彰显了其作为生物材料的潜力。

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