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Thick tissue diffusion model with binding to optimize topical staining in fluorescence breast cancer margin imaging

机译:具有结合力的厚组织扩散模型可优化荧光乳腺癌切缘成像中的局部染色

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Intraoperative tumor/surgical margin assessment is required to achieve higher tumor resection rate in breast-conserving surgery. Though current histology provides incomparable accuracy in margin assessment, thin tissue sectioning and the limited field of view of microscopy makes histology too time-consuming for intraoperative applications. If thick tissue, wide-field imaging can provide an acceptable assessment of tumor cells at the surface of resected tissues, an intraoperative protocol can be developed to guide the surgery and provide immediate feedback for surgeons. Topical staining of margins with cancer-targeted molecular imaging agents has the potential to provide the sensitivity needed to see microscopic cancer on a wide-field image; however, diffusion and nonspecific retention of imaging agents in thick tissue can significantly diminish tumor contrast with conventional methods. Here, we present a mathematical model to accurately simulate nonspecific retention, binding, and diffusion of imaging agents in thick tissue topical staining to guide and optimize future thick tissue staining and imaging protocol. In order to verify the accuracy and applicability of the model, diffusion profiles of cancer targeted and untargeted (control) nanoparticles at different staining times in A431 tumor xenografts were acquired for model comparison and tuning. The initial findings suggest the existence of nonspecific retention in the tissue, especially at the tissue surface. The simulator can be used to compare the effect of nonspecific retention, receptor binding and diffusion under various conditions (tissue type, imaging agent) and provides optimal staining and imaging protocols for targeted and control imaging agent.
机译:为了在保乳手术中达到更高的肿瘤切除率,需要术中评估肿瘤/手术切缘。尽管当前的组织学在切缘评估中提供了无与伦比的准确性,但是薄的组织切片和显微镜的有限视野使组织学对于术中应用而言过于耗时。如果组织较厚,则可以通过宽视野成像对切除的组织表面的肿瘤细胞进行可接受的评估,可以制定术中方案以指导手术并为外科医生提供即时反馈。以癌症为靶点的分子显像剂对边缘的局部染色具有提供在宽视野图像上看到微观癌症所需的灵敏度的潜力。然而,与常规方法相比,成像剂在厚组织中的扩散和非特异性保留会显着降低肿瘤的对比度。在这里,我们提出了一种数学模型,可以准确模拟厚组织局部染色中成像剂的非特异性保留,结合和扩散,以指导和优化未来的厚组织染色和成像方案。为了验证该模型的准确性和适用性,获取了在不同染色时间在A431肿瘤异种移植物中针对癌症和未靶向(对照)纳米粒子的扩散曲线,用于模型比较和调整。最初的发现表明在组织中,特别是在组织表面存在非特异性保留。该模拟器可用于比较各种条件(组织类型,显像剂)下非特异性保留,受体结合和扩散的效果,并为靶向显像剂和对照显像剂提供最佳染色和显像方案。

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