Department of Medicine, Division of Endocrinology, Einthoven Laboratory for Experimental Vascular Medicine, Leiden University Medical Center, Leiden, the Netherlands.
Department of Diabetes/Endocrine, Lilly Research Laboratories, Lilly Corporate Center, Indianapolis, IN, USA.
Physiol Rep. 2021 Apr;9(8):e14820. doi: 10.14814/phy2.14820.
Glycerol tri[ H]oleate and [ C]cholesteryl oleate double-labeled triglyceride-rich lipoprotein (TRL)-like particles are a well-established tool to trace the effect of lipid-modulating interventions on TRL metabolism. The routine generation of these particles involves sonication of a lipid mixture and subsequent fractionation of resulting particles into populations of different average size through density gradient ultracentrifugation. Here, we describe a simplified and more time-efficient procedure for preparing TRL-like particles without the need of fractionation. The simplified procedure shortened the preparation of particles from over 4 h to less than 2 h and generated particles with a higher yield, although with a smaller average size and more heterogeneous size distribution. In C57Bl/6J mice housed at thermoneutrality (30°C), the two preparations showed highly comparable plasma clearance and organ distribution of glycerol tri[ H]oleate-derived [ H]oleate and [ C]cholesteryl oleate, as measures of lipolysis and core remnant uptake, respectively. Upon a cold challenge (14°C), plasma clearance was accelerated due to enhanced uptake of glycerol tri[ H]oleate-derived [ H]oleate by brown adipose tissue. The simplified procedure resulted in a modestly increased particle uptake by the spleen, while uptake by other organs was comparable between the two preparations. In conclusion, the simplified procedure accelerates the preparation of TRL-like particles for tracing in vivo TRL metabolism. We anticipate that this time-efficient procedure will be useful for incorporation of PET-traceable lipids to obtain more insight into human lipoprotein metabolism.
甘油三[ H]油酸酯和[ C]胆甾醇油酸酯双标记富含甘油三酯的脂蛋白(TRL)样颗粒是一种成熟的工具,可用于追踪脂质调节干预对 TRL 代谢的影响。这些颗粒的常规生成涉及脂质混合物的超声处理,以及随后通过密度梯度超速离心将产生的颗粒分离成不同平均大小的颗粒群体。在这里,我们描述了一种简化且更高效的制备 TRL 样颗粒的方法,无需进行分级。简化的程序将颗粒的制备时间从超过 4 小时缩短到不到 2 小时,并产生了更高产率的颗粒,尽管颗粒的平均粒径较小,粒径分布更为不均一。在 30°C 热中性温度下饲养的 C57Bl/6J 小鼠中,两种方法制备的颗粒在甘油三[ H]油酸酯衍生的[ H]油酸和[ C]胆甾醇油酸的血浆清除率和器官分布方面具有高度可比性,这分别作为脂肪分解和核心残粒摄取的指标。在冷应激(14°C)下,由于棕色脂肪组织对甘油三[ H]油酸酯衍生的[ H]油酸的摄取增加,血浆清除率加快。简化的方法导致脾脏对颗粒的摄取略有增加,而两种方法之间其他器官的摄取则相当。总之,简化的程序加速了 TRL 样颗粒的制备,用于追踪体内 TRL 代谢。我们预计,这种高效的方法将有助于将 PET 可追踪的脂质纳入其中,以更深入地了解人类脂蛋白代谢。