Michael Merkhassine, Reilly W Coch, Carol E Frederick, Lucinda L Bennett, Seth A Peng, Benjamin Morse, Bethany P Cummings, John P Loftus
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Employing two constant rate glucagon infusions (CRI) - low-dose (CRI-LO: 3 ng/kg/min) and high-dose (CRI-HI: 50 ng/kg/min) on five research beagles, we monitored interstitial glucose and conducted untargeted liquid chromatography-tandem mass spectrometry (LC-MS/MS) on plasma samples and urine AA concentrations collected pre- and post-infusion. The CRI-HI induced a transient glucose peak (90-120 min), returning near baseline by infusion end, while only the CRI-LO resulted in 372 significantly altered plasma metabolites, primarily reductions (333). Similarly, CRI-HI affected 414 metabolites, with 369 reductions, evidenced by distinct clustering post-infusion via data reduction (PCA and sPLS-DA). CRI-HI notably decreased circulating AA levels, impacting various AA-related and energy-generating metabolic pathways. Urine analysis revealed increased 3-methyl-l-histidine and glutamine, and decreased alanine concentrations post-infusion. These findings demonstrate glucagon's glucose-independent modulation of the canine plasma metabolome and highlight the dog's relevance as a translational model for glucagon biology. Understanding these effects contributes to managing dysregulated glucagon conditions and informs treatments impacting glucagon homeostasis.</p>","PeriodicalId":15740,"journal":{"name":"Journal of Endocrinology","volume":" ","pages":""},"PeriodicalIF":3.4000,"publicationDate":"2024-06-27","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11301426/pdf/","citationCount":"0","resultStr":"{\"title\":\"Glucagon infusion alters the circulating metabolome and urine amino acid excretion in dogs.\",\"authors\":\"Michael Merkhassine, Reilly W Coch, Carol E Frederick, Lucinda L Bennett, Seth A Peng, Benjamin Morse, Bethany P Cummings, John P Loftus\",\"doi\":\"10.1530/JOE-24-0051\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Glucagon plays a central role in amino acid (AA) homeostasis. The dog is an established model of glucagon biology, and recently, metabolomic changes in people associated with glucagon infusions have been reported. Glucagon also has effects on the kidney; however, changes in urinary AA concentrations associated with glucagon remain under investigation. Therefore, we aimed to fill these gaps in the canine model by determining the effects of glucagon on the canine plasma metabolome and measuring urine AA concentrations. Employing two constant rate glucagon infusions (CRI) - low-dose (CRI-LO: 3 ng/kg/min) and high-dose (CRI-HI: 50 ng/kg/min) on five research beagles, we monitored interstitial glucose and conducted untargeted liquid chromatography-tandem mass spectrometry (LC-MS/MS) on plasma samples and urine AA concentrations collected pre- and post-infusion. The CRI-HI induced a transient glucose peak (90-120 min), returning near baseline by infusion end, while only the CRI-LO resulted in 372 significantly altered plasma metabolites, primarily reductions (333). Similarly, CRI-HI affected 414 metabolites, with 369 reductions, evidenced by distinct clustering post-infusion via data reduction (PCA and sPLS-DA). CRI-HI notably decreased circulating AA levels, impacting various AA-related and energy-generating metabolic pathways. Urine analysis revealed increased 3-methyl-l-histidine and glutamine, and decreased alanine concentrations post-infusion. These findings demonstrate glucagon's glucose-independent modulation of the canine plasma metabolome and highlight the dog's relevance as a translational model for glucagon biology. 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引用次数: 0
摘要
胰高血糖素在氨基酸(AA)平衡中发挥着核心作用。狗是胰高血糖素生物学的一个成熟模型,最近也有报道称输注胰高血糖素后人体内的代谢组变化。胰高血糖素对肾脏也有影响;然而,与胰高血糖素相关的尿液 AA 浓度变化仍未得到充分研究。因此,我们旨在通过确定胰高血糖素对犬血浆代谢组的影响和测量尿液 AA 浓度来填补犬模型中的这些空白。我们采用两种恒定速率胰高血糖素输注(CRI)--低剂量(CRI-LO:3 纳克/千克/分钟)和高剂量(CRI-HI:50 纳克/千克/分钟)--对五只研究用小猎犬进行了监测,并对输注前后收集的血浆样本和尿液 AA 浓度进行了非靶向液相色谱串联质谱分析(LC-MS/MS)。CRI-HI 会诱发短暂的葡萄糖峰值(90-120 分钟),到输注结束时会恢复到基线附近,而只有 CRI-LO 会导致 372 种血浆代谢物发生显著变化,主要是减少(333)。同样,CRI-HI 影响了 414 种代谢物,减少了 369 种,这在输注后通过数据还原(PCA 和 sPLS-DA)进行明显聚类得到了证明。CRI-HI显著降低了循环中的AA水平,影响了各种与AA相关的和产生能量的代谢途径。尿液分析表明,灌注后 3-甲基-L-组氨酸和谷氨酰胺浓度升高,丙氨酸浓度降低。这些发现证明了胰高血糖素对犬血浆代谢组的调节与葡萄糖无关,并突出了犬作为胰高血糖素生物学转化模型的相关性。了解这些影响有助于控制胰高血糖素失调的情况,并为影响胰高血糖素平衡的治疗提供信息。
Glucagon infusion alters the circulating metabolome and urine amino acid excretion in dogs.
Glucagon plays a central role in amino acid (AA) homeostasis. The dog is an established model of glucagon biology, and recently, metabolomic changes in people associated with glucagon infusions have been reported. Glucagon also has effects on the kidney; however, changes in urinary AA concentrations associated with glucagon remain under investigation. Therefore, we aimed to fill these gaps in the canine model by determining the effects of glucagon on the canine plasma metabolome and measuring urine AA concentrations. Employing two constant rate glucagon infusions (CRI) - low-dose (CRI-LO: 3 ng/kg/min) and high-dose (CRI-HI: 50 ng/kg/min) on five research beagles, we monitored interstitial glucose and conducted untargeted liquid chromatography-tandem mass spectrometry (LC-MS/MS) on plasma samples and urine AA concentrations collected pre- and post-infusion. The CRI-HI induced a transient glucose peak (90-120 min), returning near baseline by infusion end, while only the CRI-LO resulted in 372 significantly altered plasma metabolites, primarily reductions (333). Similarly, CRI-HI affected 414 metabolites, with 369 reductions, evidenced by distinct clustering post-infusion via data reduction (PCA and sPLS-DA). CRI-HI notably decreased circulating AA levels, impacting various AA-related and energy-generating metabolic pathways. Urine analysis revealed increased 3-methyl-l-histidine and glutamine, and decreased alanine concentrations post-infusion. These findings demonstrate glucagon's glucose-independent modulation of the canine plasma metabolome and highlight the dog's relevance as a translational model for glucagon biology. Understanding these effects contributes to managing dysregulated glucagon conditions and informs treatments impacting glucagon homeostasis.
期刊介绍:
Journal of Endocrinology is a leading global journal that publishes original research articles, reviews and science guidelines. Its focus is on endocrine physiology and metabolism, including hormone secretion; hormone action; biological effects. The journal publishes basic and translational studies at the organ, tissue and whole organism level.