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药物处理后肿瘤聚集区内局部细胞密度的无损评估。

Non-Destructive Evaluation of Regional Cell Density Within Tumor Aggregates Following Drug Treatment.

机构信息

Rensselaer Polytechnic Institute.

Albany Medical College.

出版信息

J Vis Exp. 2022 Jun 21(184). doi: 10.3791/64030.

Abstract

Multicellular tumor spheroid (MCTSs) models have demonstrated increasing utility for in vitro study of cancer progression and drug discovery. These relatively simple avascular constructs mimic key aspects of in vivo tumors, such as 3D structure and pathophysiological gradients. MCTSs models can provide insights into cancer cell behavior during spheroid development and in response to drugs; however, their requisite size drastically limits the tools used for non-destructive assessment. Optical Coherence Tomography structural imaging and Imaris 3D analysis software are explored for rapid, non-destructive, and label-free measurement of regional cell density within MCTSs. This approach is utilized to assess MCTSs over a 4-day maturation period and throughout an extended 5-day treatment with Trastuzumab, a clinically relevant anti-HER2 drug. Briefly, AU565 HER2+ breast cancer MCTSs were created via liquid overlay with or without the addition of Matrigel (a basement membrane matrix) to explore aggregates of different morphologies (thicker, disk-like 2.5D aggregates or flat 2D aggregates, respectively). Cell density within the outer region, transitional region, and inner core was characterized in matured MCTSs, revealing a cell-density gradient with higher cell densities in core regions compared to outer layers. The matrix addition redistributed cell density and enhanced this gradient, decreasing outer zone density and increasing cell compaction in the cores. Cell density was quantified following drug treatment (0 h, 24 h, 5 days) within progressively deeper 100 µm zones to assess potential regional differences in drug response. By the final timepoint, nearly all cell death appeared to be constrained to the outer 200 µm of each aggregate, while cells deeper in the aggregate appeared largely unaffected, illustrating regional differences in the drug response, possibly due to limitations in drug penetration. The current protocol provides a unique technique to non-destructively quantify regional cell density within dense cellular tissues and measure it longitudinally.

摘要

多细胞肿瘤球体(MCTS)模型已被证明在癌症进展和药物发现的体外研究中越来越有用。这些相对简单的无血管结构模拟了体内肿瘤的关键方面,例如 3D 结构和病理生理梯度。MCTS 模型可以深入了解肿瘤球体发育过程中以及对药物反应时癌细胞的行为;然而,它们所需的尺寸极大地限制了用于非破坏性评估的工具。本文探讨了光学相干断层扫描结构成像和 Imaris 3D 分析软件在快速、非破坏性和无标记测量 MCTS 内区域细胞密度方面的应用。该方法用于评估 4 天成熟过程中和延长 5 天曲妥珠单抗(一种临床相关的抗 HER2 药物)治疗过程中的 MCTS。简而言之,通过液体覆盖或添加 Matrigel(基底膜基质)来创建 AU565 HER2+乳腺癌 MCTS,以探索不同形态的聚集体(分别为较厚的、盘状 2.5D 聚集体或扁平 2D 聚集体)。成熟 MCTS 中,对外部区域、过渡区域和内部核心的细胞密度进行了特征描述,揭示了核心区域细胞密度较高的细胞密度梯度。基质添加重新分配了细胞密度并增强了这种梯度,降低了外层区域的密度并增加了核心区域的细胞紧凑度。在药物处理后(0 h、24 h、5 天),在逐渐更深的 100 µm 区域内定量细胞密度,以评估药物反应的潜在区域差异。在最后一个时间点,几乎所有的细胞死亡似乎都局限于每个聚集体的外部 200 µm,而聚集体更深的细胞似乎基本不受影响,这表明药物反应存在区域差异,可能是由于药物渗透的限制。本研究提供了一种独特的技术,可以非破坏性地定量致密细胞组织内的区域细胞密度并进行纵向测量。

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