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首页> 外文期刊>International Journal of Radiation Oncology, Biology, Physics >In vivo near-infrared spectroscopy and magnetic resonance imaging monitoring of tumor response to combretastatin A-4-phosphate correlated with therapeutic outcome.
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In vivo near-infrared spectroscopy and magnetic resonance imaging monitoring of tumor response to combretastatin A-4-phosphate correlated with therapeutic outcome.

机译:体内近红外光谱和磁共振成像监测肿瘤对康维他汀A-4-磷酸的反应与治疗效果相关。

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PURPOSE: To develop a combination treatment consisting of combretastatin A-4-phosphate (CA4P) with radiation based on tumor oxygenation status. METHODS AND MATERIALS: In vivo near-infrared spectroscopy (NIRS) and diffusion-weighted (DW) magnetic resonance imaging (MRI) were applied to noninvasively monitor changes in tumor blood oxygenation and necrosis induced by CA4P (30 mg/kg) in rat mammary 13762NF adenocarcinoma, and the evidence was used to optimize combinations of CA4P and radiation treatment (a single dose of 5 Gy). RESULTS: NIRS showed decreasing concentrations of tumor vascular oxyhemoglobin and total hemoglobin during the first 2 h after CA4P treatment, indicating significant reductions in tumor blood oxygenation and perfusion levels (p < 0.001). Twenty-four hours later, in response to oxygen inhalation, significant recovery was observed in tumor vascular and tissue oxygenation according to NIRS and pimonidazole staining results, respectively (p < 0.05). DW MRI revealed significantly increased water diffusion in tumors measured by apparent diffusion coefficient at 24 h (p < 0.05), suggesting that CA4P-induced central necrosis. In concordance with the observed tumor oxygen dynamics, we found that treatment efficacy depended on the timing of the combined therapy. The most significant delay in tumor growth was seen in the group of tumors treated with radiation while the rats breathed oxygen 24 h after CA4P administration. CONCLUSIONS: Noninvasive evaluation of tumor oxygen dynamics allowed us to rationally enhance the response of syngeneic rat breast tumors to combined treatment of CA4P with radiation.
机译:目的:根据肿瘤的氧合状态,开发一种由康维他汀A-4-磷酸酯(CA4P)与放射治疗相结合的治疗方法。方法和材料:应用体内近红外光谱(NIRS)和扩散加权(DW)磁共振成像(MRI)来无创地监测大鼠乳腺中CA4P(30 mg / kg)诱导的肿瘤血氧和坏死的变化。 13762NF腺癌,该证据用于优化CA4P和放射治疗(5 Gy单剂量)的组合。结果:NIRS显示在CA4P治疗后的前2小时内,肿瘤血管氧合血红蛋白和总血红蛋白的浓度降低,表明肿瘤血氧合和灌注水平显着降低(p <0.001)。 24小时后,根据NIRS和pimonidazole染色结果,响应吸氧,分别在肿瘤血管和组织氧合中观察到显着恢复(p <0.05)。 DW MRI显示通过24 h的表观扩散系数可以显着增加肿瘤中的水扩散(p <0.05),表明CA4P诱导的中央坏死。与观察到的肿瘤氧动力学一致,我们发现治疗效果取决于联合治疗的时机。在给予CA4P后24 h,大鼠呼吸氧气的同时,接受放射治疗的肿瘤组中观察到了最显着的肿瘤生长延迟。结论:无创评估肿瘤氧动力学使我们能够合理地增强同源大鼠乳腺肿瘤对CA4P与放射联合治疗的反应。

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