Adachi S, Ito H, Ohta Y, Tanaka M, Ishiyama S, Nagata M, Toyozaki T, Hirata Y, Marumo F, Hiroe M
Second Department of Internal Medicine, Tokyo Medical and Dental University, Japan.
Am J Physiol. 1995 Jan;268(1 Pt 2):H162-9. doi: 10.1152/ajpheart.1995.268.1.H162.
It has been unclear whether the increases in transcript accumulation for atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) during pressure overload are caused by the direct hemodynamic stress imposed on the myocytes or mediated by systemic hormonal factors. We examined the levels and regional distributions of ANP and BNP mRNAs in the hypertrophied right ventricle produced by experimental coarctation of main pulmonary artery (PA) in rats and compared them with those of skeletal alpha-actin mRNA, which is known to be a genetic marker for cardiac hypertrophy. In this experimental model, the left ventricle was free from the influence of pressure overload. By Northern blot analysis, remarkable increases in mRNAs for ANP and BNP, as well as skeletal alpha-actin, were observed in the right ventricle at 1 day after PA banding. Changes of expression of these genes were minimal in the left ventricle. ANP mRNA levels in the right ventricle increased further at days 3 and 7, whereas BNP mRNA remained at its day 1 level through 7 days. Increased expression of ANP, BNP, and skeletal alpha-actin mRNAs occurred exclusively in the right ventricular (RV) free wall and in the junctional region between the RV free wall and the interseptal wall as determined by in situ hybridization. These data suggest that local stimuli caused by hemodynamic overload induce cardiac hypertrophy and its associated increases in ANP and BNP expression in the RV free wall.
目前尚不清楚在压力超负荷期间,心房利钠肽(ANP)和脑利钠肽(BNP)转录本积累的增加是由施加在心肌细胞上的直接血流动力学应激引起的,还是由全身激素因素介导的。我们检测了大鼠实验性主肺动脉(PA)缩窄所致肥厚右心室中ANP和BNP mRNA的水平及区域分布,并将其与已知为心脏肥大遗传标志物的骨骼肌α-肌动蛋白mRNA的水平及区域分布进行比较。在这个实验模型中,左心室不受压力超负荷的影响。通过Northern印迹分析,在PA结扎后1天,右心室中ANP、BNP以及骨骼肌α-肌动蛋白的mRNA显著增加。这些基因在左心室中的表达变化很小。右心室中ANP mRNA水平在第3天和第7天进一步升高,而BNP mRNA在7天内一直维持在第1天的水平。通过原位杂交确定,ANP、BNP和骨骼肌α-肌动蛋白mRNA的表达增加仅发生在右心室游离壁以及右心室游离壁与室间隔壁之间的交界区域。这些数据表明,血流动力学超负荷引起的局部刺激可诱导心脏肥大,并导致右心室游离壁中ANP和BNP表达增加。