Studies of transcriptome profiles have provided new insights into mechanisms underlying the development of hypertension. Cell type heterogeneity in tissue samples, however, has been a significant hindrance in these studies. We performed a transcriptome analysis in medullary thick ascending limbs of the loop of Henle isolated from Dahl salt-sensitive rats. Genes differentially expressed between Dahl salt-sensitive rats and salt-insensitive consomic SS.13(BN) rats on either 0.4% or 7 days of 8.0% NaCl diet (n=4) were highly enriched for genes located on chromosome 13, the chromosome substituted in the SS.13(BN) rat. A pathway involving cell proliferation and cell cycle regulation was identified as one of the most highly ranked pathways based on differentially expressed genes and by a Bayesian model analysis. Immunofluorescent analysis indicated that just 1 week of a high-salt diet resulted in a severalfold increase in proliferative medullary thick ascending limb cells in both rat strains, and that Dahl salt-sensitive rats exhibited a significantly greater proportion of medullary thick ascending limb cells in a proliferative state than in SS.13(BN) rats (15.0±1.4% versus 10.1±0.6%; n=7-9; P<0.05). The total number of cells per medullary thick ascending limb section analyzed was not different between the 2 strains. The study revealed alterations in regulatory pathways in Dahl salt-sensitive rats in tissues highly enriched for a single cell type, leading to the unexpected finding of a greater increase in the number of proliferative medullary thick ascending limb cells in Dahl salt-sensitive rats on a high-salt diet.

译文

转录组谱的研究为高血压发展的机制提供了新的见解。然而,在这些研究中,组织样本中的细胞类型异质性一直是一个重大障碍。我们对从达尔盐敏感大鼠中分离出的Henle环的髓质厚上升肢进行了转录组分析。在0.4% 或7天的8.0% NaCl饮食 (n = 4) 的Dahl盐敏感大鼠和盐不敏感的康体SS.13(BN) 大鼠之间差异表达的基因高度富集位于13号染色体上的基因,该染色体在SS.13(BN) 大鼠中被取代。基于差异表达基因和贝叶斯模型分析,涉及细胞增殖和细胞周期调控的途径被确定为排名最高的途径之一。免疫荧光分析表明,仅1周的高盐饮食就导致两种大鼠品系中增殖的髓质厚上升肢体细胞增加了几倍,并且Dahl盐敏感大鼠在增殖状态下表现出比SS.13(BN) 大鼠明显更大的髓质厚上升肢体细胞比例 (15.0 ± 1.4% 对10.1 ± 0.6%; n = 7-9; P<0.05)。分析的每个髓质厚上升肢切片的细胞总数在2个菌株之间没有差异。该研究揭示了Dahl盐敏感大鼠在单细胞类型高度富集的组织中调节途径的改变,导致意外发现Dahl盐敏感大鼠中增殖性髓质厚上升肢体细胞的数量增加高盐饮食。

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