Barros Alexandre Guimarães de Almeida, Liu Jason, Lemieux George A, Mullaney Brendan C, Ashrafi Kaveh
Laboratório de Neurociência, INCT de Medicina Molecular, Faculdade de Medicina da UFMG, Belo Horizonte, Minas Gerais, Bolsista CNPq, Brazil.
Methods Cell Biol. 2012;107:383-407. doi: 10.1016/B978-0-12-394620-1.00013-8.
In Caenorhabdatis elegans as in other animals, fat regulation reflects the outcome of behavioral, physiological, and metabolic processes. The amenability of C. elegans to experimentation has led to utilization of this organism for elucidating the complex homeostatic mechanisms that underlie energy balance in intact organisms. The optical advantages of C. elegans further offer the possibility of studying cell biological mechanisms of fat uptake, transport, storage, and utilization, perhaps in real time. Here, we discuss the rationale as well as advantages and potential pitfalls of methods used thus far to study metabolism and fat regulation, specifically triglyceride metabolism, in C. elegans. We provide detailed methods for visualization of fat depots in fixed animals using histochemical stains and in live animals by vital dyes. Protocols are provided and discussed for chloroform-based extraction of total lipids from C. elegans homogenates used to assess total triglyceride or phospholipid content by methods such as thin-layer chromatography or used to obtain fatty acid profiles by methods such as gas chromatography/mass spectrometry. Additionally, protocols are provided for the determination of rates of intestinal fatty acid uptake and fatty acid breakdown by β-oxidation. Finally, we discuss methods for determining rates of de novo fat synthesis and Raman scattering approaches that have recently been employed to investigate C. elegans lipids without reliance on invasive techniques. As the C. elegans fat field is relatively new, we anticipate that the indicated methods will likely be improved upon and expanded as additional researchers enter this field.
与其他动物一样,秀丽隐杆线虫的脂肪调节反映了行为、生理和代谢过程的结果。秀丽隐杆线虫易于进行实验,这使得人们利用这种生物来阐明完整生物体能量平衡背后的复杂稳态机制。秀丽隐杆线虫的光学优势进一步提供了实时研究脂肪摄取、运输、储存和利用的细胞生物学机制的可能性。在这里,我们讨论了迄今为止用于研究秀丽隐杆线虫代谢和脂肪调节,特别是甘油三酯代谢的方法的原理、优点和潜在缺陷。我们提供了详细的方法,用于使用组织化学染色在固定动物中以及通过活体染料在活体动物中可视化脂肪库。提供并讨论了从秀丽隐杆线虫匀浆中基于氯仿提取总脂质的方案,这些匀浆用于通过薄层色谱等方法评估总甘油三酯或磷脂含量,或通过气相色谱/质谱等方法获得脂肪酸谱。此外,还提供了测定肠道脂肪酸摄取率和通过β-氧化进行脂肪酸分解的方案。最后,我们讨论了确定从头脂肪合成速率的方法以及最近用于研究秀丽隐杆线虫脂质而不依赖侵入性技术的拉曼散射方法。由于秀丽隐杆线虫脂肪领域相对较新,我们预计随着更多研究人员进入该领域,所指出的方法可能会得到改进和扩展。