Late gestation heat stress alters O2 regulation in placenta and neonatal heifers

IF 3 2区 医学 Q2 DEVELOPMENTAL BIOLOGY Placenta Pub Date : 2025-01-01 DOI:10.1016/j.placenta.2024.12.009
Leticia T. Casarotto , Helen N. Jones , Pascale Chavatte-Palmer , Geoffrey E. Dahl
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Abstract

Introduction

Maternal hyperthermia (i.e. heat stress) can adversely affect placental development and function, with severity varying based on pregnancy stage. During the last half of pregnancy, cow uterine blood flow increases 4.5-fold, and decreased maternal blood circulation can reduce placental diffusion capacity, impacting fetal growth.

Material and methods

Milk removal was discontinued (i.e. dried off) in multiparous pregnant Holstein cows 54 ± 5 days before expected calving and assigned to cooling (CLD) or heat stress (HT) treatments. Oxygen measurements were taken within ±3 h after birth (n = 7 per group) using the Rad-G Pulse Oximeter. RNA sequencing of cotyledonary tissue examined pathways and genes related to gas and oxygen transport.

Results

Heifers exposed to late gestation in utero hypoxia (HT) had significantly lower oxygen saturation at birth compared with those from dams with normal (CLD) oxygen levels (83.4 % vs. 90.7 %, p = 0.03). The peripheral index of oxygen diffusion was also lower in HT-exposed heifers (2.04 % vs. 4.84 %, p = 0.01). Gene enrichment analysis of cotyledonary tissue revealed affected pathways, including response to hypoxia, oxygen transport, and VEGF signaling. Late gestation HT potentially influenced blood circulation and nitric oxide biosynthesis pathways, with various genes showing upregulation and downregulation.

Discussion

The placenta is vital for fetal development, and late gestation hyperthermia can significantly affect its function, reducing fetal oxygen delivery and altering genes regulating placental gas and oxygen transport. These disruptions may result in fetal hypoxemia and growth restriction.
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妊娠后期热应激改变胎盘和新生母牛的氧调节。
母体热疗(即热应激)可对胎盘发育和功能产生不利影响,其严重程度因妊娠阶段而异。在妊娠后半期,奶牛子宫血流量增加4.5倍,母体血液循环减少可降低胎盘弥散能力,影响胎儿生长。材料和方法:在预期产犊前54±5天停止产乳(即晒干),并分配冷却(CLD)或热应激(HT)处理。在出生后±3小时内(每组n = 7)使用Rad-G脉搏血氧仪测量氧含量。子叶组织的RNA测序检测了与气体和氧气运输相关的途径和基因。结果:妊娠后期子宫缺氧(HT)条件下的小母牛出生时的氧饱和度明显低于正常(CLD)条件下的小母牛(83.4%比90.7%,p = 0.03)。高温暴露的小母牛外周氧扩散指数也较低(2.04%比4.84%,p = 0.01)。子叶组织的基因富集分析揭示了受影响的途径,包括对缺氧、氧转运和VEGF信号的反应。妊娠后期HT可能影响血液循环和一氧化氮生物合成途径,多种基因表现出上调和下调。讨论:胎盘对胎儿发育至关重要,妊娠后期高热可显著影响其功能,减少胎儿的氧气输送,改变调节胎盘气体和氧气运输的基因。这些破坏可能导致胎儿低氧血症和生长受限。
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来源期刊
Placenta
Placenta 医学-发育生物学
CiteScore
6.30
自引率
10.50%
发文量
391
审稿时长
78 days
期刊介绍: Placenta publishes high-quality original articles and invited topical reviews on all aspects of human and animal placentation, and the interactions between the mother, the placenta and fetal development. Topics covered include evolution, development, genetics and epigenetics, stem cells, metabolism, transport, immunology, pathology, pharmacology, cell and molecular biology, and developmental programming. The Editors welcome studies on implantation and the endometrium, comparative placentation, the uterine and umbilical circulations, the relationship between fetal and placental development, clinical aspects of altered placental development or function, the placental membranes, the influence of paternal factors on placental development or function, and the assessment of biomarkers of placental disorders.
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