Unit of Nutritional Physiology, Department of Biomedical Sciences, University of Veterinary Medicine Vienna, 1210 Vienna, Austria.
Christian-Doppler Laboratory for Innovative Gut Health Concepts of Livestock, University of Veterinary Medicine Vienna, 1210 Vienna, Austria.
Nutrients. 2022 Jun 17;14(12):2524. doi: 10.3390/nu14122524.
Postnatally, short-chain fatty acids (SCFA) are important energetic and signaling agents, being involved in host nutrition, gut imprinting and immune and barrier function. Whether SCFA exert similar effects during the late fetal phase has been insufficiently elucidated. This study aimed to evaluate whether the fetal jejunum senses SCFA and whether SCFA modify the muscle tension and epithelial permeability and related signaling in jejunal tissue from the porcine fetus in late gestation. Exposure of fetal jejunal tissue to a mix of SCFA (70 µmol/mL) in an organ bath for 20 min lowered the muscle tension. Moreover, SCFA decreased the transepithelial conductance while increasing the short-circuit current in the Ussing chamber, indicating reduced permeability and increased SCFA absorption. Gene expression in the tissues harvested from the Ussing chamber after 30 min indicated downregulation of the expression of receptors (i.e., and ), and tight-junction and adherens proteins, which may be a negative feedback response to the applied high SCFA concentration compared with the micromolar concentration detected in fetal gastric fluid. Taken together, our data demonstrate that the fetal jejunum senses SCFA, which trigger electrophysiological, muscle contraction and related gene transcription responses. Hence, SCFA may play a role in prenatal gut nutrition and imprinting.
出生后,短链脂肪酸 (SCFA) 是重要的能量和信号物质,参与宿主营养、肠道印迹和免疫及屏障功能。SCFA 在胎儿晚期是否具有类似的作用尚未得到充分阐明。本研究旨在评估胎儿空肠是否能感知 SCFA,以及 SCFA 是否能改变妊娠晚期猪胎儿空肠组织的肌肉张力和上皮通透性及相关信号。将 SCFA(70 μmol/mL)混合物暴露于器官浴中的胎儿空肠组织 20 分钟,降低了肌肉张力。此外,SCFA 降低了跨上皮电导,同时增加了 Ussing 室中的短路电流,表明通透性降低和 SCFA 吸收增加。Ussing 室中组织采集 30 分钟后的基因表达表明,受体(即、和)、紧密连接和黏附蛋白的表达下调,这可能是对应用的高 SCFA 浓度的负反馈反应,与胎儿胃液中检测到的微摩尔浓度相比。总之,我们的数据表明,胎儿空肠能感知 SCFA,SCFA 触发了电生理、肌肉收缩和相关基因转录反应。因此,SCFA 可能在产前肠道营养和印迹中发挥作用。