首页> 外文期刊>The journal of clinical investigation >Systemic combinatorial peptide selection yields a non-canonical iron-mimicry mechanism for targeting tumors in a mouse model of human glioblastoma
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Systemic combinatorial peptide selection yields a non-canonical iron-mimicry mechanism for targeting tumors in a mouse model of human glioblastoma

机译:系统性组合肽选择产生了针对人胶质母细胞瘤小鼠模型中肿瘤的非经典铁模拟机制

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The management of CNS tumors is limited by the blood-brain barrier (BBB), a vascular interface that restricts the passage of most molecules from the blood into the brain. Here we show that phage particles targeted with certain ligand motifs selected in vivo from a combinatorial peptide library can cross the BBB under normal and pathological conditions. Specifically, we demonstrated that phage clones displaying an iron-mimic peptide were able to target a protein complex of transferrin and transferrin receptor (TfR) through a non-canonical allosteric binding mechanism and that this functional protein complex mediated transport of the corresponding viral particles into the normal mouse brain. We also showed that, in an orthotopic mouse model of human glioblastoma, a combination of TfR overexpression plus extended vascular permeability and ligand retention resulted in remarkable brain tumor targeting of chimeric adeno-associated virus/phage particles displaying the iron-mimic peptide and carrying a gene of interest. As a proof of concept, we delivered the HSV thymidine kinase gene for molecular-genetic imaging and targeted therapy of intracranial xenografted tumors. Finally, we established that these experimental findings might be clinically relevant by determining through human tissue microarrays that many primary astrocytic tumors strongly express TfR. Together, our combinatorial selection system and results may provide a translational avenue for the targeted detection and treatment of brain tumors.
机译:中枢神经系统肿瘤的治疗受到血脑屏障(BBB)的限制,血脑屏障是一种血管界面,可限制大多数分子从血液进入大脑。在这里,我们显示了从体内选自组合肽库的某些配体基序靶向的噬菌体颗粒可以在正常和病理条件下穿过血脑屏障。具体而言,我们证明了展示铁模拟肽的噬菌体克隆能够通过非规范的变构结合机制靶向转铁蛋白和转铁蛋白受体(TfR)的蛋白质复合物,并且该功能性蛋白质复合物介导了相应病毒颗粒向其中的转运正常的老鼠的大脑。我们还显示,在人胶质母细胞瘤的原位小鼠模型中,TfR的过表达加上延长的血管通透性和配体保留的组合导致了对嵌合腺相关病毒/噬菌体颗粒的显着脑肿瘤靶向,显示了铁模拟肽并携带了感兴趣的基因。作为概念证明,我们提供了HSV胸苷激酶基因用于颅内异种移植肿瘤的分子遗传成像和靶向治疗。最后,我们通过确定通过许多人原发性星形细胞肿瘤强烈表达TfR的人体组织微阵列,确定了这些实验结果可能与临床相关。总之,我们的组合选择系统和结果可能会为脑肿瘤的靶向检测和治疗提供一个翻译途径。

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