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基于锰卟啉的治疗可改善胎-胎盘发育,并防止大鼠母体甲状腺功能减退模型中的氧化损伤和 NLRP3 炎性小体激活。

Manganese porphyrin-based treatment improves fetal-placental development and protects against oxidative damage and NLRP3 inflammasome activation in a rat maternal hypothyroidism model.

机构信息

Centro de Microscopia Eletrônica, Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz, Ilhéus, Brazil.

Departamento de Química, Centro de Ciências Exatas e da Natureza, Universidade Federal da Paraíba, Joao Pessoa, Brazil.

出版信息

Redox Biol. 2024 Aug;74:103238. doi: 10.1016/j.redox.2024.103238. Epub 2024 Jun 11.

Abstract

Oxidative stress (OS) and endoplasmic reticulum stress (ERS) are at the genesis of placental disorders observed in preeclampsia, intrauterine growth restriction, and maternal hypothyroidism. In this regard, cationic manganese porphyrins (MnPs) comprise potent redox-active therapeutics of high antioxidant and anti-inflammatory potential, which have not been evaluated in metabolic gestational diseases yet. This study evaluated the therapeutic potential of two MnPs, [MnTE-2-PyP] (MnP I) and [MnT(5-Br-3-E-Py)P]5+ (MnP II), in the fetal-placental dysfunction of hypothyroid rats. Hypothyroidism was induced by administration of 6-Propyl-2-thiouracil (PTU) and treatment with MnPs I and II 0.1 mg/kg/day started on the 8th day of gestation (DG). The fetal and placental development, and protein and/or mRNA expression of antioxidant mediators (SOD1, CAT, GPx1), hypoxia (HIF1α), oxidative damage (8-OHdG, MDA), ERS (GRP78 and CHOP), immunological (TNFα, IL-6, IL-10, IL-1β, IL-18, NLRP3, Caspase1, Gasdermin D) and angiogenic (VEGF) were evaluated in the placenta and decidua on the 18th DG using immunohistochemistry and qPCR. ROS and peroxynitrite (PRX) were quantified by fluorometric assay, while enzyme activities of SOD, GST, and catalase were evaluated by colorimetric assay. MnPs I and II increased fetal body mass in hypothyroid rats, and MnP I increased fetal organ mass. MnPs restored the junctional zone morphology in hypothyroid rats and increased placental vascularization. MnPs blocked the increase of OS and ERS mediators caused by hypothyroidism, showing similar levels of expression of HIFα, 8-OHdG, MDA, Gpx1, GRP78, and Chop to the control. Moreover, MnPs I and/or II increased the protein expression of SOD1, Cat, and GPx1 and restored the expression of IL10, Nlrp3, and Caspase1 in the decidua and/or placenta. However, MnPs did not restore the low placental enzyme activity of SOD, CAT, and GST caused by hypothyroidism, while increased the decidual and placental protein expression of TNFα. The results show that treatment with MnPs improves the fetal-placental development and the placental inflammatory state of hypothyroid rats and protects against oxidative stress and reticular stress caused by hypothyroidism at the maternal-fetal interface.

摘要

氧化应激 (OS) 和内质网应激 (ERS) 是子痫前期、宫内生长受限和母体甲状腺功能减退症中观察到的胎盘紊乱的根源。在这方面,阳离子锰卟啉 (MnPs) 是具有高抗氧化和抗炎潜力的有效氧化还原活性治疗剂,但尚未在代谢妊娠疾病中进行评估。本研究评估了两种 MnPs,[MnTE-2-PyP](MnP I)和[MnT(5-Br-3-E-Py)P]5+(MnP II),在甲状腺功能减退大鼠胎儿-胎盘功能障碍中的治疗潜力。通过给予 6-丙基-2-硫代尿嘧啶 (PTU) 诱导甲状腺功能减退,并从妊娠第 8 天 (DG) 开始每天给予 0.1 mg/kg 的 MnPs I 和 II 进行治疗。在第 18 天 DG 时,使用免疫组织化学和 qPCR 评估胎儿和胎盘发育以及抗氧化介质 (SOD1、CAT、GPx1)、缺氧 (HIF1α)、氧化损伤 (8-OHdG、MDA)、ERS (GRP78 和 CHOP)、免疫 (TNFα、IL-6、IL-10、IL-1β、IL-18、NLRP3、Caspase1、Gasdermin D) 和血管生成 (VEGF) 的蛋白和/或 mRNA 表达。通过荧光测定法定量 ROS 和过氧亚硝酸盐 (PRX),而通过比色测定法评估 SOD、GST 和过氧化氢酶的酶活性。MnPs I 和 II 增加了甲状腺功能减退大鼠的胎儿体重,MnP I 增加了胎儿器官重量。MnPs 恢复了甲状腺功能减退大鼠的连接区形态并增加了胎盘血管化。MnPs 阻止了甲状腺功能减退引起的 OS 和 ERS 介质的增加,其 HIFα、8-OHdG、MDA、Gpx1、GRP78 和 Chop 的表达水平与对照组相似。此外,MnPs I 和/或 II 增加了 SOD1、Cat 和 GPx1 的蛋白表达,并恢复了蜕膜和/或胎盘中小鼠白细胞介素 10 (IL10)、Nlrp3 和 Caspase1 的表达。然而,MnPs 并没有恢复甲状腺功能减退引起的胎盘 SOD、CAT 和 GST 活性降低,反而增加了蜕膜和胎盘 TNFα 的蛋白表达。结果表明,MnPs 治疗可改善甲状腺功能减退大鼠的胎儿-胎盘发育和胎盘炎症状态,并防止母体-胎儿界面的甲状腺功能减退引起的氧化应激和网状应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eed7/11225907/e6e0beebbc17/gr1.jpg

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