类似全身给药的卵巢癌三维流体动力学模型用于疗效测定。

IF 5.8
ALTEX Pub Date : 2021-01-01 Epub Date: 2020-08-03 DOI:10.14573/altex.2003131
Alessandra Marrella, Gabriele Varani, Maurizio Aiello, Ivan Vaccari, Chiara Vitale, Martin Mojzisek, Cristina Degrassi, Silvia Scaglione
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引用次数: 16

摘要

最近,3D体外肿瘤模型已经成为动物实验的重要替代方案,用于建立抗癌治疗的疗效。在这项工作中,建立了3D SKOV-3细胞海藻酸盐水凝胶作为卵巢肿瘤模型,并在流体动力学生物反应器(MIVO®)装置中培养,该装置能够模拟为肿瘤提供的毛细血管流动动力学。顺铂功效测试在装置内进行一段时间,并与(i)静态条件下的体外培养和(ii) SKOV-3细胞的异种移植小鼠模型进行比较,分别监测和测量细胞增殖或肿瘤消退。10 μM顺铂处理1周后,静态培养的3D水凝胶内细胞活力保持在80%以上。相比之下,在动态MIVO®中培养的3D水凝胶中的细胞活力下降了50%,并且通过免疫染色观察到很少有增殖的ki67阳性细胞。药物扩散分析经计算分析证实,说明这些结果是由于两种培养条件下顺铂扩散机制不同所致。有趣的是,在异种移植物模型中,药物疗效试验的结果是5周后肿瘤消退约为44%,这与在MIVO®设备中进行的流体动力学体外试验在更短的时间内预测的结果一致。这些结果表明,与静态体外模型相比,MIVO®装置提供的体内样动态环境可以更好地模拟3D肿瘤环境并预测体内药物疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D fluid-dynamic ovarian cancer model resembling systemic drug administration for efficacy assay.

Recently, 3D in vitro cancer models have become important alternatives to animal tests for establishing the efficacy of anticancer treatments. In this work, 3D SKOV-3 cell-laden alginate hydrogels were established as ovarian tumor models and cultured within a fluid-dynamic bioreactor (MIVO®) device able to mimic the capillary flow dynamics feeding the tumor. Cisplatin efficacy tests were performed within the device over time and compared with (i) the in vitro culture under static conditions and (ii) a xenograft mouse model with SKOV-3 cells, by monitoring and measuring cell proliferation or tumor regression, respectively, over time. After one week of treatment with 10 μM cisplatin, viability of cells within the 3D hydrogels cultured under static conditions remained above 80%. In contrast, the viability of cells within the 3D hydrogels cultured within dynamic MIVO® decreased by up to 50%, and very few proliferating Ki67-positive cells were observed through immunostaining. Analysis of drug diffusion, confirmed by computational analysis, explained that these results are due to different cisplatin diffusion mechanisms in the two culture conditions. Interestingly, the outcome of the drug efficacy test in the xenograft model was about 44% of tumor regression after 5 weeks, as predicted in a shorter time in the fluid-dynamic in vitro tests carried out in the MIVO® device. These results indicate that the in vivo-like dynamic environment provided by the MIVO® device allows to better model the 3D tumor environment and predict in vivo drug efficacy than a static in vitro model.

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