Department of Biomedical Sciences & Pathobiology, Virginia-Maryland College of Veterinary Medicine, Blacksburg, VA, USA.
Virginia Tech Carilion School of Medicine, Virginia Tech, Blacksburg, VA, USA.
Biol Reprod. 2024 Mar 13;110(3):569-582. doi: 10.1093/biolre/ioad167.
Placental angiogenesis is critical for normal development. Angiogenic factors and their receptors are key regulators of this process. Dysregulated placental vascular development is associated with pregnancy complications. Despite their importance, vascular growth factor expression has not been thoroughly correlated with placental morphologic development across gestation in cats. We postulate that changes in placental vessel morphology can be appreciated as consequences of dynamic expression of angiogenic signaling agents. Here, we characterized changes in placental morphology alongside expression analysis of angiogenic factor splice variants and receptors throughout pregnancy in domestic shorthair cats. We observed increased vascular and lamellar density in the lamellar zone during mid-pregnancy. Immunohistochemical analysis localized the vascular endothelial growth factor A (VEGF-A) receptor KDR to endothelial cells of the maternal and fetal microvasculatures. PlGF and its principal receptor Flt-1 were localized to the trophoblasts and fetal vasculature. VEGF-A was found in trophoblast cells and associated with endothelial cells. We detected expression of two Plgf splice variants and four Vegf-a variants. Quantitative real-time polymerase chain reaction analysis showed upregulation of mRNAs encoding pan Vegf-a and all Vegf-a splice forms at gestational days 30-35. Vegf-A showed a marked relative increase in expression during mid-pregnancy, consistent with the pro-angiogenic changes seen in the lamellar zone at days 30-35. Flt-1 was upregulated during late pregnancy. Plgf variants showed stable expression during the first two-thirds of pregnancy, followed by a marked increase toward term. These findings revealed specific spatiotemporal expression patterns of VEGF-A family members consistent with pivotal roles during normal placental development.
胎盘血管生成对于正常发育至关重要。血管生成因子及其受体是这一过程的关键调节剂。胎盘血管发育失调与妊娠并发症有关。尽管它们很重要,但在猫的整个妊娠期内,血管生长因子的表达与胎盘形态发育之间并没有得到彻底的关联。我们假设,胎盘血管形态的变化可以被认为是血管生成信号剂动态表达的结果。在这里,我们描述了在短毛家猫的整个妊娠期内,胎盘形态的变化以及血管生成因子剪接变体和受体的表达分析。我们观察到在妊娠中期,板层区的血管和板层密度增加。免疫组织化学分析将血管内皮生长因子 A (VEGF-A) 受体 KDR 定位到母体和胎儿微血管的内皮细胞上。PlGF 和其主要受体 Flt-1 定位于滋养层和胎儿血管。VEGF-A 存在于滋养层细胞中,并与内皮细胞相关。我们检测到两种 Plgf 剪接变体和四种 Vegf-a 变体的表达。定量实时聚合酶链反应分析显示,编码 pan Vegf-a 和所有 Vegf-a 剪接形式的 mRNA 在妊娠第 30-35 天上调。VEGF-A 在妊娠中期的表达明显增加,与第 30-35 天板层区的促血管生成变化一致。Flt-1 在妊娠晚期上调。Plgf 变体在妊娠前 2/3 期间表达稳定,随后在接近足月时明显增加。这些发现揭示了 VEGF-A 家族成员的特定时空表达模式,与正常胎盘发育中的关键作用一致。