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PMID: 27821757 已发表 · ppublish 英语

Nicotinamide benefits both mothers and pups in two contrasting mouse models of preeclampsia.

Li Feng, Fushima Tomofumi, Oyanagi Gen, Townley-Tilson H W Davin, Sato Emiko, Nakada Hironobu, Oe Yuji, Hagaman John R, Wilder Jennifer, Li Manyu, Sekimoto Akiyo, Saigusa Daisuke, Sato Hiroshi, Ito Sadayoshi, Jennette J Charles, Maeda Nobuyo, Karumanchi S Ananth, Smithies Oliver, Takahashi Nobuyuki

摘要

Preeclampsia (PE) complicates ∼5% of human pregnancies and is one of the leading causes of pregnancy-related maternal deaths. The only definitive treatment, induced delivery, invariably results in prematurity, and in severe early-onset cases may lead to fetal death. Many currently available antihypertensive drugs are teratogenic and therefore precluded from use. Nonteratogenic antihypertensives help control maternal blood pressure in PE, but results in preventing preterm delivery and correcting fetal growth restriction (FGR) that also occurs in PE have been disappointing. Here we show that dietary nicotinamide, a nonteratogenic amide of vitamin B, improves the maternal condition, prolongs pregnancies, and prevents FGR in two contrasting mouse models of PE. The first is caused by endotheliosis due to excess levels in the mothers of a soluble form of the receptor for vascular endothelial growth factor (VEGF), which binds to and inactivates VEGF. The second is caused by genetic absence of Ankiryn-repeat-and-SOCS-box-containing-protein 4, a factor that contributes to the differentiation of trophoblast stem cells into the giant trophoblast cells necessary for embryo implantation in mice; its absence leads to impaired placental development. In both models, fetal production of ATP is impaired and FGR is observed. We show here that nicotinamide decreases blood pressure and endotheliosis in the mothers, probably by inhibiting ADP ribosyl cyclase (ADPRC), and prevents FGR, probably by normalizing fetal ATP synthesis via the nucleotide salvage pathway. Because nicotinamide benefits both dams and pups, it merits evaluation for preventing or treating PE in humans.

关键词
fetal growth restriction nicotinamide placentation preeclampsia sFLT1
文献信息
期刊
Proceedings of the National Academy of Sciences of the United States of America
期刊简称
Proc Natl Acad Sci U S A
发表日期
0000-00-00
收录日期
2016-11-08
更新日期
2016-12-06
语言
英语
国家/地区
United States
NLM ID
7505876
分析服务
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