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鞣酸的抗癌功效取决于其底层基质的硬度。

Anticancer efficacy of tannic acid is dependent on the stiffness of the underlying matrix.

机构信息

a Department of Biomedical Engineering , Florida Institute of Technology , Melbourne , FL , USA.

b Department of Chemical Engineering , Florida Institute of Technology , Melbourne , FL , USA.

出版信息

J Biomater Sci Polym Ed. 2018 Mar;29(4):412-427. doi: 10.1080/09205063.2017.1421349. Epub 2018 Jan 9.

Abstract

Tannic acid (TA) has been previously shown to have anticancer potential for breast cancer but its effects on melanoma have not yet been investigated. Similarly, stiffness of the tumor microenvironment is known to have a profound effect on breast cancer metastasis, but little is known about its role on melanoma. The goal of the current study is to investigate the synergistic effects of TA and matrix stiffness on melanoma progression. A375 melanoma cells with metastatic potential were cultured on TA crosslinked uncompacted (UC; soft) and electrochemically compacted (ECC; stiff) collagen gels and the effects of TA on gel morphology, mechanical properties, and cellular response (i.e. morphology and proliferation) were evaluated. SEM results showed that TA crosslinking induced merging of collagen fibrils that resulted in decrease in pore size of both UC and ECC collagen gels. Tensile testing showed that TA crosslinking significantly (p < 0.05) improved the mechanical properties of ECC collagen gels. Results from Alamar blue assay showed that TA preferentially inhibited the proliferation of A375 melanoma cells compared to the non-cancerous NIH 3T3 fibroblasts on UC collagen gels. However, on ECC collagen gels, preferential effect of TA was not prevalent as proliferation of both cell types was inhibited to a similar extent. When comparing the two gel types, inhibition of A375 melanoma cell proliferation was more pronounced on TA crosslinked UC collagen gels compared to TA crosslinked ECC collagen gels. Overall, these results suggest that TA incorporated into UC collagen gels may more selectively inhibit the proliferation of melanoma cells, and that matrix stiffness is an important driver of tumor proliferation and progression.

摘要

鞣酸 (TA) 先前已被证明对乳腺癌具有抗癌潜力,但尚未研究其对黑色素瘤的影响。同样,肿瘤微环境的硬度已知对乳腺癌转移有深远影响,但对黑色素瘤的作用知之甚少。本研究的目的是研究 TA 和基质硬度对黑色素瘤进展的协同作用。具有转移潜力的 A375 黑色素瘤细胞在 TA 交联的未压实 (UC;软) 和电化学压实 (ECC;硬) 胶原凝胶上培养,评估 TA 对凝胶形态、力学性能和细胞反应 (即形态和增殖) 的影响。SEM 结果表明,TA 交联诱导胶原原纤维融合,导致 UC 和 ECC 胶原凝胶的孔径减小。拉伸测试表明,TA 交联显著 (p < 0.05) 改善了 ECC 胶原凝胶的力学性能。Alamar blue 测定结果表明,与非癌细胞 NIH 3T3 成纤维细胞相比,TA 优先抑制 UC 胶原凝胶上 A375 黑色素瘤细胞的增殖。然而,在 ECC 胶原凝胶上,TA 的优先作用并不普遍,因为两种细胞类型的增殖都受到类似程度的抑制。将两种凝胶类型进行比较,TA 交联的 UC 胶原凝胶上 A375 黑色素瘤细胞的增殖抑制更为明显,而 TA 交联的 ECC 胶原凝胶上则不明显。总体而言,这些结果表明,掺入 UC 胶原凝胶中的 TA 可能更选择性地抑制黑色素瘤细胞的增殖,并且基质硬度是肿瘤增殖和进展的重要驱动因素。

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