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Melatonin has differential effects on age-induced stoichiometric changes in daily chronomics of serotonin metabolism in SCN of male Wistar rats

机译:褪黑素对雄性Wistar大鼠SCN中5-羟色胺代谢每日时序的年龄诱导的化学计量变化具有差异性影响

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Suprachiasmatic nucleus (SCN) controls various physiological, endocrine and behavioral functions by regulating conversion of serotonin (5-HT) to melatonin (MEL). Aging leads to alterations in the neural and temporal organization of the SCN leading to circadian dysfunction. Age-induced stoichiometric alterations in daily chronomics of various components of 5-HT metabolism were studied by constructing interactomes between parameters. The levels of tryptophan (TRP), 5-hydroxytryptophan (5-HTP), 5-hydroxytryptamine (5-HT), N-acetylserotonin (NAS), N-acetyl 5-methoxytryptamine (MEL), 5-hydroxyindoleacetic acid (5-HIAA), 5-methoxyindole acetic acid (5-MIAA), 5-hydroxytryptophol (5-HTOH), 5-methoxytryptophol (5-MTOH) and N-acetyltryptamine (NAT) were measured at (Zeitgeber time 0, 6, 12 and 18) in male rat SCN of 3, 12 and 24 months age groups. Age-induced decrease was observed in mean levels of NAS, MEL, 5-HIAA, 5-MIAA, 5-MTOH, and NAT and increase was observed in TRP, 5-HTP, 5-HT and 5-HTOH in rat SCN. Daily pulses decreased with aging significantly for TRP, 5-HT, NAS, MEL, 5-HIAA, 5-MIAA and NAT. We report here, the age-induced change in interactions between various 5-HT metabolism components by middle age (12 m) changing further by 24 m. The daily rhythms persisted with aging for NAS, MEL and 5-HTOH. Though, rhythms were abolished for TRP, 5-HTP, 5-HIAA, 5-MIAA, 5-MTOH and NAT differentially at 12 and 24 m. The MEL administration showed restoration in 5-HT ratio with 5-HTP, MEL and 5-HTOH in 24 m and NAS and 5-HIAA in 12 m SCN. Thus, MEL administration effects alterations of age-induced stoichiometry in levels and chronomics of serotonin metabolic network interactomes.
机译:视交叉上核(SCN)通过调节5-羟色胺(5-HT)向褪黑激素(MEL)的转化来控制各种生理,内分泌和行为功能。衰老会导致SCN的神经和颞部组织发生改变,从而导致昼夜节律障碍。通过建立参数之间的相互作用组研究了年龄引起的5-HT代谢各个组成部分的每日时间化学计量变化。色氨酸(TRP),5-羟基色氨酸(5-HTP),5-羟基色胺(5-HT),N-乙酰羟色胺(NAS),N-乙酰基5-甲氧基色胺(MEL),5-羟基吲哚乙酸(5- HIAA),5-甲氧基吲哚乙酸(5-MIAA),5-羟基色酚(5-HTOH),5-甲氧基色酚(5-MTOH)和N-乙酰色胺(NAT)在(Zeitgeber时间0、6、12和18)在3、12和24个月大的雄性大鼠SCN中。在大鼠SCN中观察到年龄引起的NAS,MEL,5-HIAA,5-MIAA,5-MTOH和NAT平均水平降低,而TRP,5-HTP,5-HT和5-HTOH升高。对于TRP,5-HT,NAS,MEL,5-HIAA,5-MIAA和NAT,每日脉冲随着老化而显着降低。我们在此报告,中年(12 m)年龄引起的各种5-HT代谢成分之间相互作用的变化进一步变化了24 m。 NAS,MEL和5-HTOH的每日节律随着衰老而持续。虽然如此,但在12和24 m时差异性地消除了TRP,5-HTP,5-HIAA,5-MIAA,5-MTOH和NAT的节律。 MEL给药显示5-HT比例恢复,5-HTP,MEL和5-HTOH在24 m内恢复,NAS和5-HIAA在12 m SCN中恢复。因此,MEL的使用会影响5-羟色胺代谢网络相互作用组水平和时序的年龄诱导的化学计量的变化。

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