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Three-dimensional in vitro cancer spheroid models for photodynamic therapy: strengths and opportunities

机译:用于光动力疗法的三维体外癌症球体模型:优势与机遇

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Three dimensional, in vitro spheroid cultures offer considerable utility for the development and testing of anticancer photodynamic therapy regimens. More complex than monolayer cultures, three-dimensional spheroid systems replicate many of the important cell-cell and cell-matrix interactions that modulate treatment response in vivo. Simple enough to be grown by the thousands and small enough to be optically interrogated, spheroid cultures lend themselves to high-content and high-throughput imaging approaches. These advantages have enabled studies investigating photosensitizer uptake, spatiotemporal patterns of therapeutic response, alterations in oxygen diffusion and consumption during therapy, and the exploration of mechanisms that underlie therapeutic synergy. The use of quantitative imaging methods, in particular, has accelerated the pace of three-dimensional in vitro photodynamic therapy studies, enabling the rapid compilation of multiple treatment response parameters in a single experiment. Improvements in model cultures, the creation of new molecular probes of cell state and function, and innovations in imaging toolkits will be important for the advancement of spheroid culture systems for future photodynamic therapy studies.
机译:三维体外球状培养物为抗癌光动力疗法的开发和测试提供了相当大的实用性。三维球体系统比单层培养更为复杂,可复制许多重要的细胞-细胞和细胞-基质相互作用,从而调节体内的治疗反应。球形培养足够简单,可以成千上万个生长,而足够小,可以进行光学查询,因此适合于高含量,高通量的成像方法。这些优势使人们能够进行以下研究:研究光敏剂的吸收,治疗反应的时空模式,治疗过程中氧气扩散和消耗的变化以及探索治疗协同作用的机制。定量成像方法的使用尤其加快了三维体外光动力疗法研究的步伐,从而能够在单个实验中快速汇总多个治疗反应参数。模型培养的改进,细胞状态和功能的新分子探针的创建以及成像工具包的创新对于推进球状培养系统以进行未来的光动力疗法研究至关重要。

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