Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences, Peking Union Medical College, Beijing, 100193, China.
Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences, Peking Union Medical College, Beijing, 100193, China; Key Laboratory of Resources Conservation and Development of Southern Medicine of Hainan Province & Key Laboratory of State Administration of Traditional Chinese Medicine for Agarwood Sustainable Utilization, Hainan Branch of the Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences and Peking Union Medical College, Haikou, 570311, China.
Anal Chim Acta. 2024 Nov 1;1328:343125. doi: 10.1016/j.aca.2024.343125. Epub 2024 Aug 23.
TRY-NAD metabolic network includes TRY (tryptophan), 5-HT (5-hydroxytryptamine), KYN (kynurenine), and NAD (nicotinamide adenine dinucleotide) pathway, which plays a significant role in neurological diseases and ageing. It is important to monitor these metabolites for studying the pathological anatomy of disease and treatment of responses evaluation. Although previous studies have reported quantitative methods for several metabolites in the network, the bottlenecks of simultaneously quantifying the whole metabolic network are their similar structures, diverse physico-chemical properties, and instability. Standardized protocols for the whole metabolic network are still missing, which hinders the in-depth study of TRY-NAD metabolic network in laboratory research and clinical screening.
We developed a LC-MS/MS method for quantifying 28 metabolites in the TRY-NAD network simultaneously. Optimization was done for the mass spectral parameters, chromatographic conditions and sample pretreatment process. The developed method was fully validated in terms of standard curves, sensitivity, carryover, recovery, matrix effect, accuracy, precision, and stability. The pretreatment of 30 samples only takes 90 min, and the LC-MS/MS running time of one sample is only 13 min. With this method, we bring to light the chaos of global TRY-NAD metabolic network in sleep deprivation mice for the first time, including serum, clotted blood cells, hippocampus, cerebral cortex, and liver. NAD pathway levels in brain and blood decreased, whereas the opposite happened in the liver. The 5-HT pathway decreased and the concentration of KYN increased significantly in the brain. The concentration of many metabolites in KYN pathway (NAD de novo synthesis pathway) increased in the liver.
This method is the first time to determine the metabolites of KYN, 5-HT and NAD pathway at the same time, and it is found that TRY-NAD metabolic network will be disordered after sleep deprivation. This work clarifies the importance of the pH of the extraction solution, the time and temperature control in pretreatment in standardized protocols building, and overcoming the problems of inconsistent sample pretreatment, separation, matrix effect interference and potential metabolite degradation. This method exhibits great prospects in providing more information on metabolic disturbances caused by sleep deprivation as well as neurological diseases and ageing.
TRY-NAD 代谢网络包括 TRY(色氨酸)、5-HT(5-羟色胺)、KYN(犬尿氨酸)和 NAD(烟酰胺腺嘌呤二核苷酸)途径,这些途径在神经疾病和衰老中起着重要作用。监测这些代谢物对于研究疾病的病理解剖和治疗反应评估非常重要。尽管以前的研究已经报道了网络中几种代谢物的定量方法,但同时定量整个代谢网络的瓶颈是它们相似的结构、多样的物理化学性质和不稳定性。整个代谢网络的标准化方案仍然缺失,这阻碍了 TRY-NAD 代谢网络在实验室研究和临床筛选中的深入研究。
我们开发了一种 LC-MS/MS 方法,可同时定量测定 TRY-NAD 网络中的 28 种代谢物。对质谱参数、色谱条件和样品预处理过程进行了优化。从标准曲线、灵敏度、交叉污染、回收率、基质效应、准确性、精密度和稳定性等方面对所建立的方法进行了全面验证。30 个样本的预处理仅需 90 分钟,单个样本的 LC-MS/MS 运行时间仅为 13 分钟。使用该方法,我们首次揭示了睡眠剥夺小鼠中全球 TRY-NAD 代谢网络的混乱,包括血清、凝血细胞、海马、大脑皮层和肝脏。大脑和血液中的 NAD 途径水平降低,而肝脏则相反。大脑中 5-HT 途径降低,KYN 浓度显著升高。肝脏中 KYN 途径(NAD 从头合成途径)的许多代谢物浓度增加。
该方法首次同时测定 KYN、5-HT 和 NAD 途径的代谢物,发现睡眠剥夺后 TRY-NAD 代谢网络会紊乱。这项工作阐明了在标准化方案制定中提取液 pH、预处理时间和温度控制的重要性,克服了样品预处理、分离、基质效应干扰和潜在代谢物降解不一致的问题。该方法在提供更多关于睡眠剥夺引起的代谢紊乱以及神经疾病和衰老的信息方面具有广阔的前景。