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A pH-Sensing Optode for Mapping Spatiotemporal Gradients in 3D Paper-Based Cell Cultures

机译:用于在3D纸细胞培养物中映射时空梯度的pH传感光电极

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摘要

Paper-based cultures are an emerging platform for preparing 3D tissue-like structures. Chemical gradients can be imposed upon these cultures, generating microenvironments similar to those found in poorly vascularized tumors. There is increasing evidence that the tumor microenvironment is responsible for promoting drug resistance and increased invasiveness. Acidosis, or the acidification of the extracellular space, is particularly important in promoting these aggressive cancer phenotypes. To better understand how cells respond to acidosis there is a need for 3D culture platforms that not only model relevant disease states but also contain sensors capable of quantifying small molecules in the extracellular environment. In this work, we describe pH-sensing optodes that are capable of generating high spatial and temporal resolution maps of pH gradients in paper-based cultures. This sensor was fabricated by suspending microparticles containing pH-sensitive (fluorescein) and pH-insensitive (diphenylanthracene) dyes in a polyurethane hydrogel, which was then coated onto a transparent film. The pH-sensing films have a fast response time, are reversible, stable in long-term culture environments, have minimal photobleaching, and are not cytotoxic. These films have a pK(a) of 7.61 +/- 0.04 and are sensitive in the pH range corresponding to normal and tumorigenic tissues. With these optodes, we measured the spatiotemporal evolution of pH gradients in paper-based tumor models.
机译:纸质培养物是一种用于制备3D组织结构的新兴平台。可以施加化学梯度对这些培养物产生,产生类似于血管化肿瘤不良肿瘤中的微环境。肿瘤微环境越来越多的证据表明肿瘤微环境负责促进耐药性和增加的侵袭性。酸中毒或细胞外空间的酸化在促进这些侵略性癌症表型方面尤为重要。为了更好地了解细胞如何应对酸中毒,需要3D培养平台,不仅可以模拟相关疾病状态,还含有能够定量细胞外环境中的小分子的传感器。在这项工作中,我们描述了能够在纸培养物中产生高空间和时间分辨率的pH梯度的高空间和时间分辨率图。通过将含有pH敏感的(荧光素)和pH-不敏感(二苯基蒽)染料悬浮在聚氨酯水凝胶中的微粒,然后涂覆在透明膜上来制造该传感器。 pH传感薄膜具有快速响应时间,可逆,长期培养环境中稳定,具有最小的光博,并且不是细胞毒性。这些薄膜的PK(a)为7.61 +/- 0.04,并且在对应于正常和致瘤组织的pH范围内敏感。通过这些光学,我们测量了纸肿瘤模型中pH梯度的时空演变。

著录项

  • 来源
    《Analytical chemistry》 |2018年第3期|共8页
  • 作者单位

    Univ North Carolina Chapel Hill Dept Chem 125 South Rd Chapel Hill NC 27599 USA;

    Univ North Carolina Chapel Hill Dept Chem 125 South Rd Chapel Hill NC 27599 USA;

    Univ North Carolina Chapel Hill Dept Chem 125 South Rd Chapel Hill NC 27599 USA;

    CData Software Inc 101 Europa Dr 110 Chapel Hill NC 27517 USA;

    Univ North Carolina Chapel Hill Dept Chem 125 South Rd Chapel Hill NC 27599 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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