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PET, image-guided HDAC inhibition of pediatric diffuse midline glioma improves survival in murine models

机译:宠物,图像引导的HDAC抑制儿科弥漫性中线胶质瘤可提高小鼠模型的存活

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Efforts at altering the dismal prognosis of pediatric midline gliomas focus on direct delivery strategies like convection-enhanced delivery (CED), where a cannula is implanted into tumor. Successful CED treatments require confirmation of tumor coverage, dosimetry, and longitudinal in vivo pharmacokinetic monitoring. These properties would be best determined clinically with image-guided dosimetry using theranostic agents. In this study, we combine CED with novel, molecular-grade positron emission tomography (PET) imaging and show how PETobinostat, a novel PET-imageable HDAC inhibitor, is effective against DIPG models. PET data reveal that CED has significant mouse-to-mouse variability; imaging is used to modulate CED infusions to maximize tumor saturation. The use of PET-guided CED results in survival prolongation in mouse models; imaging shows the need of CED to achieve high brain concentrations. This work demonstrates how personalized image-guided drug delivery may be useful in potentiating CED-based treatment algorithms and supports a foundation for clinical translation of PETobinostat.
机译:改变儿科中线悲惨预后的努力关注直接交付策略,如对流增强的递送(CED),其中套管植入肿瘤。成功的CED治疗需要确认肿瘤覆盖,剂量测定和纵向体内药代动力学监测。这些性质最能用使用硫灭菌剂与图像引导剂量测定术临床上确定。在这项研究中,我们结合了新颖的分子级正电子发射断层扫描(PET)成像,并展示Petobinostat是一种新型的PET可成像HDAC抑制剂,对DIPG模型有效。宠物数据显示,CED具有显着的小鼠对小鼠变异性;成像用于调节CED输注以使肿瘤饱和度最大化。使用宠物引导的CED导致小鼠模型的存活延长;成像表明需要CED来实现高脑浓度。这项工作表明了个性化的图像引导的药物递送如何在增强基于CED的处理算法中是有用的,并支持Petobinostat的临床翻译基础。

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