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去势是节拍化疗抑制实验性去势抵抗性前列腺癌生长的前提条件。

Castration is a prerequisite for the inhibitory effect of metronomic chemotherapy on the growth of experimental castration-resistant prostate cancer.

机构信息

a Department of Oncology, Institute of Clinical Sciences , Sahlgrenska Cancer Center, Sahlgrenska Academy at University of Gothenburg , Goteborg , Sweden.

b Department of Urology, Institute of Clinical Sciences , Sahlgrenska Cancer Center, Sahlgrenska Academy at University of Gothenburg , Goteborg , Sweden.

出版信息

Acta Oncol. 2018 Jul;57(7):895-901. doi: 10.1080/0284186X.2017.1423178. Epub 2018 Jan 4.

Abstract

BACKGROUND

Low-dose metronomic chemotherapy (LDMC) is an alternative for treatment of patients with late-stage prostate cancer (PC) not susceptible to regular chemotherapy due to its severe side effects. The exact working mechanisms of LDMC have not been established, although anti-angiogenic effects have been identified. In PC, several studies show clinical effects from LDMC but the mode of action and the role of androgen signaling for its effect are not known. In this study, we used a xenograft model to evaluate the effect of LDMC on PC growth in relation to androgen deprivation.

MATERIAL AND METHODS

Subcutaneous human castration-resistant PC xenografts were treated with LDMC using cyclophosphamide (CPA). Treatment effect was compared to treatment with maximum tolerated dose (MTD) and also between intact and castrated mice. Microvessel density (MVD), and factors important for angiogenesis were analyzed with immunohistochemistry and real-time-PCR.

RESULTS

Tumors treated with LDMC were 50% smaller than untreated controls. Tumors in non-castrated mice were not affected by LDMC, but in an androgen receptor (AR) negative tumor model, tumor inhibiting effect were seen in both intact and castrated animals, indicating mechanism via AR. MTD resulted in similar growth inhibition as LDMC in castrated mice, but resulted in severe weight loss. Despite that LDMC induced TSP1 mRNA expression, and the hypoxic area in the tumors was slightly increased, no decrease in MVD was detected.

CONCLUSIONS

This study shows that a low-dose metronomic scheduling of CPA was as efficient as MTD treatment, and resulted in fewer side effects. It also demonstrates that a functional androgen signaling axis inhibits this effect despite the castration-resistance of the tumor cells. The anti-angiogenic nature of the effect of LDMC could not be confirmed and further studies to elucidate the working mechanism for treatment response are needed.

摘要

背景

低剂量节拍化疗(LDMC)是一种替代治疗方法,适用于因严重副作用而不能接受常规化疗的晚期前列腺癌(PC)患者。尽管已经确定了抗血管生成作用,但 LDMC 的确切作用机制尚未确定。在 PC 中,几项研究显示 LDMC 具有临床效果,但作用方式和雄激素信号对其效果的作用尚不清楚。在这项研究中,我们使用异种移植模型来评估 LDMC 对去势抵抗性前列腺癌生长的影响与去势的关系。

材料和方法

用人源去势抵抗性 PC 异种移植皮下接种,用环磷酰胺(CPA)进行 LDMC 治疗。将治疗效果与最大耐受剂量(MTD)进行比较,同时在完整和去势的小鼠之间进行比较。用免疫组织化学和实时 PCR 分析微血管密度(MVD)和血管生成的重要因素。

结果

用 LDMC 治疗的肿瘤比未治疗的对照组小 50%。未去势的小鼠的肿瘤不受 LDMC 影响,但在雄激素受体(AR)阴性肿瘤模型中,完整和去势的动物均可见肿瘤抑制作用,表明其作用机制通过 AR。MTD 在去势小鼠中也能产生与 LDMC 相似的生长抑制作用,但会导致严重的体重减轻。尽管 LDMC 诱导了 TSP1 mRNA 的表达,肿瘤中的缺氧区略有增加,但 MVD 没有减少。

结论

这项研究表明,CPA 的低剂量节拍方案与 MTD 治疗一样有效,且副作用较少。它还表明,功能性雄激素信号轴抑制了这种作用,尽管肿瘤细胞具有去势抵抗性。LDMC 的抗血管生成作用不能被证实,需要进一步的研究来阐明治疗反应的作用机制。

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