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Synthesis, bioconjugation and stability studies of [F-18]ethenesulfonyl fluoride

机译:[F-18]乙烯基氟乙烯的合成,生物缀合性和稳定性研究

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Fluorine-18 labelled prosthetic groups (PGs) are often necessary for radiolabelling sensitive biological molecules such as peptides and proteins. Several shortcomings, however, often diminish the final yield of radiotracer. In an attempt to provide higher yielding and operationally efficient tools for radiolabelling biological molecules, we describe herein the first radiochemical synthesis of [F-18]ethenesulfonyl fluoride ([F-18]ESF) and its Michael conjugation with amino acids and proteins. The synthesis of [F-18]ESF was optimised using a microfluidic reactor under both carrier-added (c.a.) and no-carrier-added (n.c.a.) conditions, affording, in a straightforward procedure, 30-50% radiochemical yield (RCY) for c.a. [F-18]ESF and 60-70% RCY for n.c.a. [F-18]ESF. The conjugation reactions were performed at room temperature using 10mg/mL precursor in aqueous/organic solvent mixtures for 15min. The radiochemical stability of the final conjugates was evaluated in injectable formulation and rat serum, and resulted strongly substrate dependent and generally poor in rat serum. Therefore, in this work we have optimised a straightforward synthesis of [F-18]ESF and its Michael conjugation with model compounds, without requiring chromatographic purification. However, given the general low stability of the final products, further studies will be required for improving conjugate stability, before assessing the use of this PG for PET imaging.
机译:氟-18标记的假体基团(PGS)通常需要放射性标记敏感生物分子如肽和蛋白质。然而,几种缺点通常会减少放射性机构的最终产量。试图为放射性制造生物分子提供更高的产量和操作有效的工具,我们在本文中描述了[F-18]乙烯磺酰氟([F-18] ESF)的第一种放射化学合成及其与氨基酸和蛋白质的迈克尔缀合。在两种载体添加(CA)和无载体添加(NCA)条件下使用微流体反应器进行优化[F-18] ESF的合成优化,提供了一种直接的程序,30-50%的放射化学收益率(RCY)对于加利福尼亚州[F-18] ESF和60-70%Rcy对N.C.A. [F-18] ESF。在室温下使用10mg / ml前体在室温下在含水/有机溶剂混合物中进行缀合反应15分钟。在可注射的制剂和大鼠血清中评价最终缀合物的放射化学稳定性,并导致大鼠血清中依赖于基底依赖性和普遍差。因此,在这项工作中,我们优化了与模型化合物的[F-18] ESF及其迈克尔缀合的直接合成,而不需要色谱纯化。然而,鉴于最终产品的一般低稳定性,在评估使用该PG的PET成像之前,将需要进一步的研究来改善缀合物稳定性。

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