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Transport kinetics of four- and six-coordinate platinum compounds in the multicell layer tumour model.

机译:多细胞层肿瘤模型中四坐标和六坐标铂化合物的传输动力学。

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摘要

Four-coordinate (Pt(II)) platinum-based anticancer drugs are widely used in primary or palliative chemotherapy and produce considerable efficacy in certain clinical applications, for example testicular cancer. However, in many cancers the Pt(II) drugs are beset by poor efficacy mainly due to suboptimal pharmacokinetic properties. Consequently, the six-coordinate (Pt(IV)) class of Pt drugs were developed to improve platinum efficacy by (i) increasing stability, (ii) reducing reactivity, (iii) increasing lipophilicity, and (iv) nuclear targeting. However, comparatively little information is available on the pharmacokinetic properties of these compounds within solid tumour tissue. In the present study, the distribution and fluxes of [(14)C]-labelled [PtCl(2)(en)] (where en stands for ethane-1,2-diamine) and cis,trans-[PtCl(2)(OH)(2)(en)] drugs were determined in the multicell layer (MCL) tumour model comprising colon cancer cells. Flux data were analysed by mathematical modelling of drug diffusion and cellular uptake in the transport system. The flux of the Pt(IV) compound through the MCL was not significantly different to that of the Pt(II) drug nor were the diffusion coefficient or tissue uptake; the latter confirmed with elemental imaging analysis by synchrotron radiation induced X-ray emission. However, the flux of the Pt(IV) through the MCL was increased by hydrostatic pressure, thereby demonstrating the potential to target cancer cells further away from the vessels with six-coordinate platinum drugs.
机译:基于四坐标(Pt(II))的铂类抗癌药被广泛用于原发性或姑息性化学疗法,并在某些临床应用(例如睾丸癌)中产生可观的疗效。然而,在许多癌症中,Pt(II)药物的疗效不佳,主要是由于药代动力学特性欠佳。因此,开发了六坐标(Pt(IV))类的Pt药物,以通过(i)增加稳定性,(ii)降低反应性,(iii)增加亲脂性和(iv)核靶向来提高铂的疗效。但是,关于这些化合物在实体肿瘤组织内的药代动力学特性的信息相对较少。在本研究中,[(14)C]标记的[PtCl(2)(en)](其中en代表乙烷-1,2-二胺)和顺式,反式-[PtCl(2)的分布和通量(OH)(2)(en)]药物是在包含结肠癌细胞的多细胞层(MCL)肿瘤模型中确定的。通过药物扩散和运输系统中细胞摄取的数学模型分析了通量数据。 Pt(IV)化合物通过MCL的通量与Pt(II)药物的通量无显着差异,扩散系数或组织吸收也无明显差异。后者通过同步加速器辐射诱发的X射线发射的元素成像分析得到证实。然而,静水压力使Pt(IV)通过MCL的通量增加,从而证明了用六配位铂药物将癌细胞靶向更远离血管的潜力。

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