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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >A novel route to radioiodinated (123I)-N-succinimidyl-3-iodobenzoate, a reagent for radioiodination of bioactive peptides.
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A novel route to radioiodinated (123I)-N-succinimidyl-3-iodobenzoate, a reagent for radioiodination of bioactive peptides.

机译:放射性碘化(123I)-N-琥珀酰亚胺基-3-碘代苯甲酸酯的新途径,一种用于生物活性肽放射性碘化的试剂。

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Radiolabeled peptides continue to emerge as potential radiopharmaceuticals for targeting several diseases such as cancer, infection and inflammation and even tissue and organ rejection. The classical method for labeling these molecules has been the electrophilic route. Evidence suggests that most molecules labeled via this route perturb their biological activity. Moreover, this method is not applicable to peptides lacking a tyrosine moiety in their structure. Hence, there is the need to develop alternate methods such as the prosthetic approach. We have optimized a solid-state radioiodination by exchange to produce [123I]-metaiodobenzylguanidine ([123I]-mIBG). The mIBG served as a precursor to obtain an activated N-succinimidyl ester for efficient coupling to amine functions in peptides, preferably the lysine group(s). The method was used to label a model chemotactic peptide and evaluated in vivo.
机译:放射性标记的肽继续作为潜在的放射性药物出现,用于靶向多种疾病,例如癌症,感染和炎症,甚至组织和器官排斥。标记这些分子的经典方法是亲电途径。有证据表明,大多数通过这种途径标记的分子会干扰其生物学活性。此外,该方法不适用于其结构中缺乏酪氨酸部分的肽。因此,需要开发替代方法,例如修复方法。我们通过交换来优化固态放射性碘化,以产生[123I]-甲氧苄基胍([123I] -mIBG)。 mIBG用作获得活化的N-琥珀酰亚胺酯的前体,以有效偶联至肽中的胺官能团,优选赖氨酸基团。该方法用于标记模型趋化肽并在体内进行评估。

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