Red Light Mitigates the Deteriorating Placental Extracellular Matrix in Late Onset of Preeclampsia and Improves the Trophoblast Behavior.

IF 3.2 Q1 OBSTETRICS & GYNECOLOGY Journal of Pregnancy Pub Date : 2022-01-01 DOI:10.1155/2022/3922368
Jakara Griffin, John G Krolikowski, Kenisha Kounga, Janine Struve, Agnes Keszler, Brian Lindemer, Michelle Bordas, Grant Broeckel, Nicole L Lohr, Dorothee Weihrauch
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Abstract

Preeclampsia is a serious pregnancy disorder which in extreme cases may lead to maternal and fetal injury or death. Preexisting conditions which increase oxidative stress, e.g., hypertension and diabetes, increase the mother's risk to develop preeclampsia. Previously, we established that when the extracellular matrix is exposed to oxidative stress, trophoblast function is impaired, and this may lead to improper placentation. We investigated how the oxidative ECM present in preeclampsia alters the behavior of first trimester extravillous trophoblasts. We demonstrate elevated levels of advanced glycation end products (AGE) and lipid oxidation end product 4-hydroxynonenal in preeclamptic ECM (28%, and 32% increase vs control, respectively) accompanied with 35% and 82% more 3-chlorotyrosine and 3-nitrotyrosine vs control, respectively. Furthermore, we hypothesized that 670 nm phototherapy, which has antioxidant properties, reverses the observed trophoblast dysfunction as depicted in the improved migration and reduction in apoptosis. Since NO is critical for placentation, we examined eNOS activity in preeclamptic placentas compared to healthy ones and found no differences; however, 670 nm light treatment triggered enhanced NO availability presumably by using alternative NO sources. Light exposure decreased apoptosis and restored trophoblast migration to levels in trophoblasts cultured on preeclamptic ECM. Moreover, 670 nm irradiation restored expression of Transforming Growth Factor (TGFβ) and Placental Growth Factor (PLGF) to levels observed in trophoblasts cultured on healthy placental ECM. We conclude the application of 670 nm light can successfully mitigate the damaged placental microenvironment of late onset preeclampsia as depicted by the restored trophoblast behavior.

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红光减轻晚发型子痫前期胎盘细胞外基质恶化并改善滋养细胞行为。
子痫前期是一种严重的妊娠障碍,在极端情况下可能导致母婴损伤或死亡。先前存在的增加氧化应激的疾病,如高血压和糖尿病,会增加母亲患先兆子痫的风险。先前,我们证实当细胞外基质暴露于氧化应激时,滋养细胞功能受损,这可能导致胎盘不正确。我们研究了存在于子痫前期的氧化性ECM如何改变妊娠早期上皮外滋养细胞的行为。我们发现,在子痫前期ECM中,晚期糖基化终产物(AGE)和脂质氧化终产物4-羟基壬烯醛水平升高(分别比对照组增加28%和32%),3-氯酪氨酸和3-硝基酪氨酸分别比对照组增加35%和82%。此外,我们假设具有抗氧化特性的670 nm光疗可以逆转观察到的滋养细胞功能障碍,如改善迁移和减少细胞凋亡。由于NO对胎盘至关重要,我们检测了子痫前期胎盘与健康胎盘的eNOS活性,未发现差异;然而,670 nm光处理可能通过使用替代NO源而增强了NO可用性。光照减少了子痫前期ECM培养的滋养细胞的凋亡,并使滋养细胞迁移恢复到原来的水平。此外,670 nm辐照使转化生长因子(tgf - β)和胎盘生长因子(PLGF)的表达恢复到健康胎盘ECM上培养的滋养细胞的水平。我们得出结论,通过恢复滋养细胞行为,应用670 nm光可以成功减轻晚发型子痫前期胎盘微环境的破坏。
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来源期刊
Journal of Pregnancy
Journal of Pregnancy OBSTETRICS & GYNECOLOGY-
CiteScore
6.10
自引率
0.00%
发文量
15
审稿时长
14 weeks
期刊介绍: Journal of Pregnancy is a peer-reviewed, Open Access journal that publishes original research articles, review articles, and clinical studies related to all aspects of pregnancy and childbirth. The journal welcomes submissions on breastfeeding, labor, maternal health and the biomedical aspects of pregnancy.
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