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首页> 外文期刊>Journal of Medicinal Chemistry >Selective Neuropeptide Y Conjugates with Maximized Carborane Loading as Promising Boron Delivery Agents for Boron Neutron Capture Therapy
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Selective Neuropeptide Y Conjugates with Maximized Carborane Loading as Promising Boron Delivery Agents for Boron Neutron Capture Therapy

机译:选择性神经肽Y缀合物,具有最大化的碳硼烷负载作为硼中子捕获治疗的承诺硼递送剂

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摘要

G-protein-coupled receptors like the human Y-1 receptor (hY(1)R) are promising targets in cancer therapy due to their high overexpression on cancer cells and their ability to internalize together with the bound ligand. This mechanism was exploited to shuttle boron atoms into cancer cells for the application of boron neutron capture therapy (BNCT), a noninvasive approach to eliminate cancer cells. A maximized number of carboranes was introduced to the hY(1)R-preferring ligand [F-7,P-34]-NPY by solid phase peptide synthesis. Branched conjugates loaded with up to 80 boron atoms per peptide molecule exhibited a maintained receptor activation profile, and the selective uptake into hY(1)R-expressing cells was demonstrated by internalization studies. In order to ensure appropriate solubility in aqueous solution, we proved the need for eight hydroxyl groups per carborane. Thus, we suggest the utilization of bis-deoxygalactosyl-carborane building blocks in solid phase peptide synthesis to produce selective boron delivery agents for BNCT.
机译:如人Y-1受体(HY(1)R)这样的G蛋白偶联受体是由于它们对癌细胞的高过表达和与结合配体内化的能力为导致的癌症治疗的靶标。这种机制被利用将硼原子从癌细胞中往癌细胞,以应用硼中子捕获治疗(BNCT),一种消除癌细胞的非侵入性方法。通过固相肽合成将最大数量的碳硼烷基引入HY(1)R-偏振配体[F-7,P-34] - 氮。每个肽分子负载高达80个硼原子的支链缀合物表现出保持的受体激活曲线,并通过内化研究证明了对Hy(1)表达细胞的选择性摄取。为了确保在水溶液中适当的溶解性,我们证明了每种碳硼烷的八个羟基。因此,我们建议在固相肽合成中利用双脱氧糖基 - 碳硼烷基组块,以产生BNCT的选择性硼递送剂。

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