首页> 美国卫生研究院文献>Frontiers in Endocrinology >Quantifying Biochemical Alterations in Brown and Subcutaneous White Adipose Tissues of Mice Using Fourier Transform Infrared Widefield Imaging
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Quantifying Biochemical Alterations in Brown and Subcutaneous White Adipose Tissues of Mice Using Fourier Transform Infrared Widefield Imaging

机译:使用傅立叶变换红外宽场成像定量分析小鼠棕色和皮下白色脂肪组织中的生化变化

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摘要

Stimulating increased thermogenic activity in adipose tissue is an important biological target for obesity treatment, and label-free imaging techniques with the potential to quantify stimulation-associated biochemical changes to the adipose tissue are highly sought after. In this study, we used spatially resolved Fourier transform infrared (FTIR) imaging to quantify biochemical changes caused by cold exposure in the brown and subcutaneous white adipose tissues (BAT and s-WAT) of 6 week-old C57BL6 mice exposed to 30°C (N = 5), 24°C (N = 5), and 10°C (N = 5) conditions for 10 days. Fat exposed to colder temperatures demonstrated greater thermogenic activity as indicated by increased messenger RNA expression levels of a panel of thermogenic marker genes including uncoupling protein 1 (UCP-1) and Dio2. Protein to lipid ratio, calculated from the ratio of the integrated area from 1,600 to 1,700 cm−1 (amide I) to the integrated area from 2,830 to 2,980 cm−1 (saturated lipids), was elevated in 10°C BAT and s-WAT compared to 24°C (p = 0.004 and p < 0.0001) and 30°C (p = 0.0033 and p < 0.0001). Greater protein to lipid ratio was associated with greater UCP-1 expression level in the BAT (p = 0.021) and s-WAT (p = 0.032) and greater Dio2 expression in s-WAT (p = 0.033). The degree of unsaturation, calculated from the ratio of the integrated area from 2,992 to 3,020 cm−1 (unsaturated lipids) to the integrated area from 2,830 to 2,980 cm−1 (saturated lipids), showed stepwise decreases going from colder-exposed to warmer-exposed BAT. Complementary 1H NMR measurements confirmed the findings from this ratio in BAT. Principal component analysis applied to FTIR spectra revealed pronounced differences in overall spectral characteristics between 30, 24, and 10°C BAT and s-WAT. Spatially resolved FTIR imaging is a promising technique to quantify cold-induced biochemical changes in BAT and s-WAT in a label-free manner.
机译:刺激脂肪组织中增加的产热活性是肥胖症治疗的重要生物学目标,因此,人们迫切需要无标签成像技术,该技术具有量化与脂肪组织相关的刺激相关生化变化的潜力。在这项研究中,我们使用了空间分辨傅立叶变换红外(FTIR)成像技术来量化由暴露于30°C的6周龄C57BL6小鼠的棕色和皮下白色脂肪组织(BAT和s-WAT)中的冷暴露引起的生化变化。 (N = 5),24°C(N = 5)和10°C(N = 5)条件持续10 d天。暴露于较低温度的脂肪表现出更大的产热活性,这是由一组包括解偶联蛋白1(UCP-1)和Dio2的产热标记基因的信使RNA表达水平提高所表明的。蛋白质与脂质的比率,由1600至1,700 cm -1 (酰胺I)的积分面积与2,830至2,980 cm -1 的积分面积之比(与24°C(p = 0.004和p <0.0001)和30°C(p = 0.0033和p <0.0001)相比,在10°C BAT和s-WAT中的饱和脂质升高。较高的蛋白脂质比率与BAT中的UCP-1表达水平较高(p = 0.021)和s-WAT(p = 0.032)和s-WAT中的Dio2表达较高(p = 0.033)相关。根据从2,992到3,020 cm -1 (不饱和脂质)的积分面积与从2,830到2,980 cm -1 的积分面积之比计算出的不饱和度(饱和脂质)显示逐渐降低,从低温暴露的BAT到温暖暴露的BAT。互补的 1 H NMR测量证实了该比例在BAT中的发现。应用于FTIR光谱的主成分分析显示,在30、24和10°C的BAT和s-WAT之间,总体光谱特性存在明显差异。空间分辨FTIR成像是一种有前途的技术,可以以无标记的方式量化BAT和s-WAT中冷诱导的生化变化。

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