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首页> 外文期刊>Current Alzheimer research >Mapping Exchangeable Protons to Monitor Protein Alterations in the Brain of an Alzheimer’s Disease Mouse Model by Using MRI
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Mapping Exchangeable Protons to Monitor Protein Alterations in the Brain of an Alzheimer’s Disease Mouse Model by Using MRI

机译:通过使用MRI测绘可更换的质子以监测阿尔茨海默病小鼠模型的大脑中的蛋白质改变

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摘要

Objective: The study aimed to investigate exchangeable proton signals of Aβ proteins of thebrains of Alzheimer’s disease (AD) model mice by using a chemical exchange-sensitive spin-lock(CESL) MR imaging technique.Method: Eight non-transgenic (Tg) mice (5 young and 3 old) and twelve Tg-APPswe/PSdE9 mice (5young and 7 old) were used in this study. CESL Z-spectra were obtained by using two saturation powers,which were ω1 = 25 Hz with TSL = 3.0 s and ω1 = 500 Hz with TSL = 150 ms, at 71 offsets with unevenintervals between the offset frequencies at Ω = ±7.0 ppm at a 9.4-T animal MRI system. For Zspectrumanalyses, regions of interest (ROIs) were drawn in the cortex, hippocampus, and thalamus ofboth hemispheres. Magnetization transfer ratio asymmetry (MTRasym) curves were obtained from the Zspectra.The Mann-Whitney test was used to compare the MTRasym values between the Tg and non-Tgmice for each offset frequency and for each ROI.Results: The water saturation width of the full Z-spectrum was narrow with the 25-Hz saturation power,but relatively broad with the 500-Hz saturation power. With the 25-Hz CESL saturation power, most ofthe MTRasym values were negative for 3.5-, 3.0-, 2.0-, and 0.9-ppm offset frequencies and the MTRasymvalues were significantly different between the control and Tg groups only in the left thalamus region at3.5 ppm offset (p=0.0487). The MTRasym values were -6% to -7% for both 3.5 and 3.0 ppm, but less than-2% for both 2.0 and 0.9 ppm. With 500-Hz CESL saturation power, all the MTRasym values were positivefor the 3.5-, 3.0-, 2.0-, and 0.9-ppm offset frequencies and the MTRasym values were not significantlydifferent between the control and Tg groups at all ROIs and at all offset frequencies. However, atrend towards a significant difference was observed between the control and Tg groups in the right cortexat 3.5 ppm (p=0.0578). The MTRasym values were 6% to 9% for 3.5, 3.0, and 2.0 ppm, but less than2% for 0.9 ppm.Conclusion: In an in-vivo AD model experiment, MTRasym values increased with the high saturationpower than with the low saturation power. The MTRasym values were not significantly different, exceptin the left thalamus region at 3.5 ppm offset. The CESL technique should be further developed to enableits application in the brain of patients with neurodegenerative diseases.
机译:目的:通过使用化学交换敏感的旋转锁(CESL)MR成像技术来研究Alzheimer疾病(AD)模型小鼠的伯格的Aβ蛋白的可交换质子信号。方法:八个非转基因(Tg)小鼠(5名年轻和3次旧的)和12个TG-Appswe / PSDE9小鼠(5 young和7次老)在本研究中使用。通过使用两个饱和功率获得CES1 Z光谱,其具有TSL = 3.0S的ω1= 25Hz,具有TSL = 150ms,在71偏移处,在ω=±7.0ppm的偏移频率之间的偏移之间的偏移处一个9.4-T动物MRI系统。对于Zspectrumananyses,感兴趣的区域(rois)被绘制在皮质,海马和丘脑半球上。从Zspectra获得磁化传递比不对称性(MTRASYM)曲线。使用曼诺 - 惠特尼试验将TG和非TGMICE之间的MTRASYM值与每个偏移频率进行比较,并且每个ROI.Results:水饱和度宽度全Z光谱窄,具有25赫兹饱和功率,但相对宽的500 Hz饱和功率。利用25-Hz CESL饱和功率,大部分Mtrasym值对于3.5-,3.0-,2.0-和0.9-ppm偏移频率为阴性,并且在左丘脑区域AT3的控制和TG组之间,MTRASYMVALUES显着差异.5 ppm偏移(p = 0.0487)。对于3.5和3.0ppm,MTRASYM值为-6%至-7%,但为2.0和0.9ppm的3.0%,低于-2%。具有500-Hz CESL饱和功率,所有MTRASYM值都是正为3.5-,3.0,2.0-和0.9ppm的偏移频率,并且在所有ROI的控制和TG组之间没有显着增加,并且在所有偏移频率。然而,在右皮质3.5ppm的对照和Tg组之间观察到朝向显着差异(p = 0.0578)。 3.5,3.0和2.0ppm的马达拉斯ym值为6%至9%,但少于0.9 ppm的2%:结论:在体内广告模型实验中,MTRASYM值随高饱和功率的高饱和度增加。除了3.5ppm偏移的左丘脑区域外,MTRASYM值没有显着差异。 CESL技术应进一步开发,以实现神经变性疾病患者的大脑中的应用。

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