首页> 美国卫生研究院文献>Journal of the Endocrine Society >Fatty Acids Modify the MicroRNA Content of Exosomes Released by Hypothalamic Astrocytes and the Response of POMC Neurons to These Exosomes
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Fatty Acids Modify the MicroRNA Content of Exosomes Released by Hypothalamic Astrocytes and the Response of POMC Neurons to These Exosomes

机译:脂肪酸通过下丘脑星形胶质细胞释放的外泌体的MicroRNA含量和POMC神经元对这些外泌体的响应

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摘要

It is now clear that hypothalamic astrocytes participate in maintaining metabolic homeostasis. Both nutrients and metabolic hormones can directly impact on these glial cells to modify their release of gliotransmitters, metabolic factors, growth factors, etc, as well as their physical interaction with neighboring neurons. Another mechanism by which astrocytes could communicate with neurons is through their release of exosomes. We have previously shown (by RNAseq analysis) that exposure to palmitic acid (PA) dramatically modifies the miRNA content of exosomes released by hypothalamic astrocytes. Here our objectives were: 1) To determine if the miRNA changes in hypothalamic astrocyte-derived exosomes in response to oleic acid (OA) differ from those seen in response to PA and 2) Analyze the response of POMC neurons to exosomes derived from astrocytes exposed to either PA or OA. Primary hypothalamic astrocyte cultures were treated with PA (0.5 mM), OA (0.5 mM) or vehicle (V) for 24 hours. Exosomes were purified from the media and used for miRNA analysis and to treat a POMC neuronal cell line (mHypoA-POMC/GFP-1). Both OA and PA modified miRNA levels in exosomes compared to those detected in V exosomes, but these modifications differed between the two fatty acids. Furthermore, the response of POMC neurons to exosomes from vehicle (E-V), OA (E-OA) and PA (E-PA) treated astrocytes for 24 hours differed significantly. The expression of POMC mRNA was significantly decreased in response to E-V and increased in response to both E-OA and E-PA, although the increase in POMC mRNA was significantly greater in E-PA treated neurons. These results suggest that hypothalamic astrocytes can directly communicate with neurons involved in metabolic control through exosomes and that the messages contained within these exosomes are modulated by the nutrient environment.
机译:现在清楚的是,下丘脑星形胶质细胞参与维持代谢稳态。营养素和代谢激素均可直接影响这些胶质细胞,以改变其释放嗜血基团,代谢因子,生长因子等,以及与邻近神经元的物理相互作用。星形胶质细胞可以与神经元通信的另一种机制是通过其释放外来体。我们以前所示(通过RNASEQ分析),暴露于棕榈酸(PA)显着地改变丘脑星形胶质细胞释放的外索体的miRNA含量。在这里,我们的目标是:1)确定催眠星形胶质细胞衍生的外索体响应于油酸(OA)的miRNA变化与响应于PA和2)的不同之处,分析POPC神经元对来自暴露的星形胶质细胞的外来肌瘤的响应对PA或OA。用Pa(0.5mM),OA(0.5mM)或载体(V)处理原发性下丘脑星形胶质细胞培养物24小时。从培养基中纯化外来物并用于miRNA分析并治疗POMC神经元细胞系(MHYPOA-POMC / GFP-1)。与在v外出体中检测到的那些相比,外来的OA和PA改性的miRNA水平,但这些修饰在两种脂肪酸之间不同。此外,POMC神经元从载体(E-V),OA(E-OA)和PA(E-PA)处理的星形胶质细胞24小时的响应显着不同。响应于E-V的POMC mRNA的表达显着降低,并且响应于E-OA和E-PA而增加,尽管在E-PA处理的神经元中POMC mRNA的增加显着更大。这些结果表明,下丘脑星形胶质细胞可以通过外泌体与所涉及代谢控制中的神经元直接通信,并且这些外来物中包含的消息被营养环境调节。

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