Yan Nuo, Zheng Yuzhen, Yang Cheng
Second Department of Anesthesiology, The Affiliated Hospital to Logistics University of PAP, Tianjin.
Department of Anesthesiology, Tianjin Huanhu Hospital, Tianjin, China.
Drug Des Devel Ther. 2017 Oct 4;11:2931-2936. doi: 10.2147/DDDT.S143838. eCollection 2017.
Antiangiogenic therapy attenuates tumor growth by reducing vascularization. Diazepam (DZP) and midazolam (MZL) have antiangiogenic properties in human umbilical vein endothelial cells. Thus, we investigated the antiangiogenic activity of DZP and MZL in the rat 9L gliosarcoma brain tumor model. The effect on tumor vasculature was evaluated using dynamic susceptibility contrast magnetic resonance imaging with gradient-echo (GE) and spin-echo (SE) to assess perfusion parameters, including cerebral blood volume (CBV), cerebral blood flow (CBF), mean transit time (MTT), and mean vessel diameter. The GE-normalized CBF (nCBF) in the tumors of untreated controls was significantly lower than that in normal brain tissue, whereas the CBV and MTT were higher. DZP- and MZL-treated rats had higher CBF and lower CBV and MTT values than did untreated controls. The tumor size decreased significantly to 33.5% in DZP-treated rats (<0.001) and 22.5% in MZL-treated rats (<0.01) relative to controls. The SE-normalized CBV was lower in DZP-treated (32.9%) and MZL-treated (10.6%) rats compared with controls. The mean vessel diameter decreased significantly by 32.5% in DPZ-treated and by 24.9% in MZL-treated rats compared with controls (<0.01). The GE and SE nCBF values were higher in DZP-treated (49.9% and 40.1%, respectively) and MZL-treated (41.2% and 32.1%, respectively) rats than in controls. The GE- and SE-normalized MTTs were lower in DZP-treated (48.2% and 59.8%, respectively) and MZL-treated (40.5% and 51.2%, respectively) rats than in controls. Both DZP and MZL had antiangiogenic effects on tumor perfusion and vasculature; however, the antiangiogenic activity of DZP is more promising than that of MZL.
抗血管生成疗法通过减少血管生成来减缓肿瘤生长。地西泮(DZP)和咪达唑仑(MZL)在人脐静脉内皮细胞中具有抗血管生成特性。因此,我们在大鼠9L胶质肉瘤脑肿瘤模型中研究了DZP和MZL的抗血管生成活性。使用梯度回波(GE)和自旋回波(SE)的动态对比增强磁共振成像来评估对肿瘤血管系统的影响,以评估灌注参数,包括脑血容量(CBV)、脑血流量(CBF)、平均通过时间(MTT)和平均血管直径。未治疗对照组肿瘤中的GE标准化CBF(nCBF)显著低于正常脑组织,而CBV和MTT则更高。与未治疗对照组相比,DZP和MZL治疗的大鼠具有更高的CBF以及更低的CBV和MTT值。相对于对照组,DZP治疗的大鼠肿瘤大小显著减小至33.5%(<0.001),MZL治疗的大鼠肿瘤大小显著减小至22.5%(<0.01)。与对照组相比,DZP治疗(32.9%)和MZL治疗(10.6%)的大鼠中SE标准化CBV更低。与对照组相比,DPZ治疗的大鼠平均血管直径显著降低32.5%,MZL治疗的大鼠平均血管直径显著降低24.9%(<0.01)。DZP治疗(分别为49.9%和40.1%)和MZL治疗(分别为41.2%和32.1%)的大鼠中GE和SE的nCBF值高于对照组。DZP治疗(分别为48.2%和59.8%)和MZL治疗(分别为40.5%和51.2%)的大鼠中GE和SE标准化MTT低于对照组。DZP和MZL对肿瘤灌注和血管系统均具有抗血管生成作用;然而,DZP的抗血管生成活性比MZL更具前景。