首页> 外文期刊>The Journal of Nuclear Medicine >Tumor-Specific Binding of Radiolabeled PEGylated GIRLRG Peptide: A Novel Agent for Targeting Cancers
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Tumor-Specific Binding of Radiolabeled PEGylated GIRLRG Peptide: A Novel Agent for Targeting Cancers

机译:放射性标记的聚乙二醇化的GIRLRG肽的肿瘤特异性结合:靶向癌症的新型药物。

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Cancer-specific targeting sparing normal tissues would significantly enhance cancer therapy outcomes and reduce cancer-related mortality. One approach is to target receptors or molecules that are specifically expressed on cancer cells. Peptides as cancer-specific targeting agents offer advantages such as ease of synthesis, low antigenicity, and enhanced diffusion into tissues. Glucose-regulated protein 78 (GRP78) is an endoplasmic reticulum stress chaperone that regulates the unfolded protein response and is overexpressed in various cancers. In this study, we evaluated GIRLRG peptide that specifically targets GRP78 for cancer-specific binding (in vitro) and noninvasive tumor imaging (in vivo). Methods: GIRLRG peptide was modeled into the GRP78 ATPase domain using computational modeling. Surface plasmon resonance studies were performed to determine the affinity of GIRLRG peptide to GRP78 protein. GIRLRG was conjugated with PEG to prolong its circulation in mice. Tumor binding efficacy of PEG-GIRLRG peptide was evaluated in nude mice bearing heterotopic cervical (HT3), esophageal (0E33), pancreatic (BXPC3), lung (A549), and glioma (D54) tumors. Nano-SPECT/CT imaging of the mice was performed 48 and 72 h after injection with (111)ln-labeled PEG-GIRLRG or PEG-control peptide. Post-SPECT biodistribution studies were performed 96 h after injection of the radiolabeled peptides. Results: Using molecular modeling and surface plasmon resonance, we identified that GIRLRG was binding with an affinity constant of 2.16 x 10(-3) M in the ATPase domain of GRP78. GIRLRG peptide specifically bound to cervical, lung, esophageal, and glioma cells. SPECT imaging revealed that (111)ln-PEG-GIRLRG specifically bound to cervical, esophageal, pancreatic, lung, and brain tumors. Post-SPECT biodistribution data also validated the SPECT imaging results. Conclusion: GIRLRG peptide specifically binds to the ATPase domain of GRP78. Radiolabeled PEG-GIRLRG could be used to target various cancers. Further studies would be required to translate PEG-GIRLRG peptide into the clinic.
机译:癌特异性靶向保留正常组织将显着增强癌症治疗效果并降低与癌症相关的死亡率。一种方法是靶向在癌细胞上特异性表达的受体或分子。作为癌症特异性靶向剂的肽具有诸如易于合成,低抗原性和增强向组织扩散的优点。葡萄糖调节蛋白78(GRP78)是一种内质网应激伴侣,可调节未折叠的蛋白应答,并在多种癌症中过表达。在这项研究中,我们评估了特异性靶向GRP78的GIRLRG肽,用于癌症特异性结合(体外)和非侵入性肿瘤成像(体内)。方法:使用计算模型将GIRLRG肽建模到GRP78 ATPase域中。进行了表面等离振子共振研究,以确定GIRLRG肽对GRP78蛋白的亲和力。 GIRLRG与PEG偶联以延长其在小鼠中的循环。在携带异位子宫颈癌(HT3),食道癌(0E33),胰腺癌(BXPC3),肺癌(A549)和神经胶质瘤(D54)的裸鼠中评估了PEG-GIRLRG肽的肿瘤结合功效。在注射(111)In-标记的PEG-GIRLRG或PEG-对照肽后48和72小时,对小鼠进行Nano-SPECT / CT成像。 SPECT后的生物分布研究是在注射放射性标记的肽后96小时进行的。结果:使用分子建模和表面等离子体共振,我们发现GIRLRG在GRP78的ATPase域中以2.16 x 10(-3)M的亲和常数结合。 GIRLRG肽与宫颈,肺,食道和神经胶质瘤细胞特异性结合。 SPECT成像显示(111)ln-PEG-GIRLRG与宫颈,食道,胰腺,肺和脑肿瘤特异性结合。 SPECT后的生物分布数据也验证了SPECT成像结果。结论:GIRLRG肽与GRP78的ATPase结构域特异性结合。放射性标记的PEG-GIRLRG可用于靶向多种癌症。将PEG-GIRLRG肽翻译成临床需要进一步的研究。

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