常染色体隐性多囊肾病啮齿动物模型中犬尿氨酸途径代谢物的时间谱

IF 2.7 Q3 NEUROSCIENCES International Journal of Tryptophan Research Pub Date : 2022-10-29 eCollection Date: 2022-01-01 DOI:10.1177/11786469221126063
Ananda Staats Pires, Shabarni Gupta, Sean A Barton, Roshana Vander Wall, Vanessa Tan, Benjamin Heng, Jacqueline K Phillips, Gilles J Guillemin
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引用次数: 3

摘要

常染色体隐性多囊肾病(ARPKD)是一种以大量肾囊肿导致终末期肾病为特征的早发遗传性疾病。我们的研究旨在确定代谢重编程和通过犬尿氨酸途径(KP)代谢色氨酸(Trp)是否是PKD的关键失调途径。使用Lewis多囊肾(LPK)大鼠PKD模型和Lewis对照,我们使用液相和气相色谱分析了6周龄和12周龄混合性动物血浆、尿液和肾脏组织中KP代谢物的时间趋势,每个队列最小n = 5。12周龄大鼠LPK组肾脏和血浆中犬尿氨酸(KYN)浓度高于同龄Lewis对照组(P < 0.05)。LPK肾脏也表现出年龄效应(P < 0.05),与LPK 6周相比,12周的KYN更大。12周龄LPK大鼠血浆代谢产物黄嘌呤酸(XA)、3-羟基尿氨酸(3-HK)和3-羟基氨基苯甲酸(3-HAA)显著高于同龄Lewis对照组(P < 0.05)。血浆XA和3-HK也显示出年龄效应(P < 0.05), 12周LPK比6周LPK更大。我们进一步描述了LPK血浆和肾脏中色氨酸水平的降低(应变效应P < 0.05)。尿中KP代谢物在队列之间没有差异。利用KP中产物和底物的比值,观察到LPK肾脏中KYN/Trp比值(色氨酸-2,3-双加氧酶[TDO]或吲哚胺-2,3-双加氧酶[IDO]活性)、犬尿氨酸- 3-单加氧酶(KMO)、KAT a(犬尿氨酸转氨酶a)、KAT B、总KAT、总KYNU(犬尿氨酸酶)、KYNU a、KYNU B和总KYNU的活性存在显著的年龄-菌株效应(P < 0.05),支持KP的活化。确认这些酶的激活将需要通过正交技术进行验证。总之,我们已经证明,在LPK大鼠模型中,KP的上调与肾脏损害的进展一致,这表明KP的激活可能是PKD病理生物学的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Temporal Profile of Kynurenine Pathway Metabolites in a Rodent Model of Autosomal Recessive Polycystic Kidney Disease.

Autosomal recessive polycystic kidney disease (ARPKD) is an early onset genetic disorder characterized by numerous renal cysts resulting in end stage renal disease. Our study aimed to determine if metabolic reprogramming and tryptophan (Trp) metabolism via the kynurenine pathway (KP) is a critical dysregulated pathway in PKD. Using the Lewis polycystic kidney (LPK) rat model of PKD and Lewis controls, we profiled temporal trends for KP metabolites in plasma, urine, and kidney tissues from 6- and 12-week-old mixed sex animals using liquid and gas chromatography, minimum n = 5 per cohort. A greater kynurenine (KYN) concentration was observed in LPK kidney and plasma of 12-week rats compared to age matched Lewis controls (P ⩽ .05). LPK kidneys also showed an age effect (P ⩽ .05) with KYN being greater in 12-week versus 6-week LPK. The metabolites xanthurenic acid (XA), 3-hydroxykynurenine (3-HK), and 3-hydroxyanthranilic acid (3-HAA) were significantly greater in the plasma of 12-week LPK rats compared to age matched Lewis controls (P ⩽ .05). Plasma XA and 3-HK also showed an age effect (P ⩽ .05) being greater in 12-week versus 6-week LPK. We further describe a decrease in Trp levels in LPK plasma and kidney (strain effect P ⩽ .05). There were no differences in KP metabolites in urine between cohorts. Using the ratio of product and substrates in the KP, a significant age-strain effect (P ⩽ .05) was observed in the activity of the KYN/Trp ratio (tryptophan-2,3-dioxygenase [TDO] or indoleamine-2,3-dioxygenase [IDO] activity), kynurenine 3-monooxygenase (KMO), KAT A (kynurenine aminotransferase A), KAT B, total KAT, total KYNU (kynureninase), KYNU A, KYNU B, and total KYNU within LPK kidneys, supporting an activated KP. Confirmation of the activation of these enzymes will require verification through orthogonal techniques. In conclusion, we have demonstrated an up-regulation of the KP in alignment with progression of renal impairment in the LPK rat model, suggesting that KP activation may be a critical contributor to the pathobiology of PKD.

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来源期刊
CiteScore
7.30
自引率
4.50%
发文量
19
审稿时长
8 weeks
期刊最新文献
Erratum to 'Dietary Hesperidin Suppresses Lipopolysaccharide-Induced Inflammation in Male Mice'. Investigations Towards Tryptophan Uptake and Transport Across an In Vitro Model of the Oral Mucosa Epithelium. The Tryptophan Metabolite Indole-3-Propionic Acid Raises Kynurenic Acid Levels in the Rat Brain In Vivo. Periconceptional Non-medical Maternal Determinants Influence the Tryptophan Metabolism: The Rotterdam Periconceptional Cohort (Predict Study). A Review of the Evidence for Tryptophan and the Kynurenine Pathway as a Regulator of Stem Cell Niches in Health and Disease.
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