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MRI mediated, non-invasive tracking of intratumoral distribution of nanocarriers in rat glioma

机译:MRI介导的大鼠胶质瘤中纳米载体的肿瘤内分布的非侵入性追踪

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摘要

Nanocarrier mediated therapy of gliomas has shown promise. The success of systemic nanocarrier-based chemotherapy is critically dependent on the so-called leaky vasculature to permit drug extravasation across the blood-brain barrier. Yet, the extent of vascular permeability in individual tumors varies widely, resulting in a correspondingly wide range of responses to the therapy. However, there exist no tools currently for rationally determining whether tumor blood vessels are amenable to nanocarrier mediated therapy in an individualized, patient specific manner today. To address this need for brain tumor therapy, we have developed a multifunctional 100 nm scale liposomal agent encapsulating a gadolinium-based contrast agent for contrast-enhanced magnetic resonance imaging with prolonged blood circulation. Using a 9.4 T MRI system, we were able to track the intratumoral distribution of the gadolinium-loaded nanocarrier in a rat glioma model for a period of three days due to improved magnetic properties of the contrast agent being packaged in a nanocarrier. Such a nanocarrier provides a tool for non-invasively assessing the suitability of tumors for nanocarrier mediated therapy and then optimizing the treatment protocol for each individual tumor. Additionally, the ability to image the tumor in high resolution can potentially constitute a surgical planning tool for tumor resection.
机译:纳米载体介导的神经胶质瘤治疗已显示出希望。全身性基于纳米载体的化学疗法的成功关键取决于所谓的渗漏性脉管系统,以允许药物通过血脑屏障外渗。然而,单个肿瘤中血管通透性的程度差异很大,导致对治疗的反应范围也相应广泛。但是,目前没有工具可以合理地确定肿瘤血管是否适合以个体化,患者特定的方式接受纳米载体介导的治疗。为了满足对脑肿瘤治疗的这一需求,我们开发了一种多功能的100 nm规模的脂质体药物,该药物囊封了lin基造影剂,用于延长血液循环的造影增强磁共振成像。使用9.4 T MRI系统,由于在纳米载体中包装的造影剂的磁性能得到改善,我们能够在大鼠神经胶质瘤模型中追踪加载了lin的纳米载体在肿瘤内的分布,持续了三天。这种纳米载体提供了一种工具,用于非侵入性地评估肿瘤对纳米载体介导的治疗的适用性,然后针对每个单独的肿瘤优化治疗方案。另外,以高分辨率对肿瘤成像的能力可以潜在地构成用于肿瘤切除的外科手术计划工具。

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