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首页> 外文期刊>American Journal of Pathology >Fenfluramine Disrupts the Mitral Valve Interstitial Cell Response to Serotonin
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Fenfluramine Disrupts the Mitral Valve Interstitial Cell Response to Serotonin

机译:芬氟拉明破坏了对二羟色胺的二尖瓣间质细胞反应

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摘要

Serotonin (5HT) receptor signaling and 5HT-related agents, such as the anorexogen fenfluramine (Fen), have been associated with heart valve disease. We investigated the hypothesis that Fen may disrupt mitral valve interstitial cell (MVIC) homeostasis through its effects on mitogenesis and extracellular matrix biosynthesis. Normal and myxomatous mitral valves, both human and canine, were harvested, and primary MVIC cultures were established. 5HT caused increased phosphorylation of extracellular signal-related kinase in MVIC; Fen alone did not. However, Fen combined with 5HT increased the level of MVIC extracellular signal-related kinase, when compared with 5HT alone. In addition, MVIC mitogenesis per 3H-thymidine (3HTdR) demonstrated a 5HT dose-dependent increase, with no effect of Fen alone. In contrast, Fen combined with 5HT inhibited the MVIC 3HTdR response when compared with 5HT alone. Furthermore, fluoxetine, a 5HT transporter inhibitor, while having no effect alone, suppressed Fen-5HT 3HTdR inhibition when administered with Fen plus 5HT. Finally, MVIC incorporations of 3H-proline and 3H-glucosamine, measures of extracellular matrix collagen and glycosaminoglycan respectively, were increased with 5HT alone; however, Fen did not affect MVIC glycosaminoglycan or collagen either alone or in combination with 5HT. Taken together, the ratios of 3H-proline or 3H-glycosaminoglycan to 3HTdR in MVIC, normalized to 5HT alone, demonstrated a significant imbalance of extracellular matrix production versus proliferation in MVIC cultures with Fen plus 5HT exposure. This imbalance may explain in part the pathophysiology of Fen-related mitral valve disease.
机译:血清素(5HT)受体信号转导和5HT相关药物,例如 厌食症芬氟拉明(Fen),已与 心脏瓣膜疾病相关。我们研究了Fen 可能通过其对有丝分裂作用和细胞外基质 生物合成的影响而破坏二尖瓣间质细胞(MVIC)稳态 的假说。收集人 和犬的正常和粘液性二尖瓣,并建立原发性MVIC培养。 5HT引起细胞外信号相关的 MVIC中的激酶;芬独自一人没有。但是,与单独的5HT相比,Fen与 5HT结合可增加MVIC细胞外信号相关的 激酶的水平。此外,MVIC有丝分裂 每个 3 H-胸苷( 3 HTdR)显示出5HT剂量依赖性增加, 没有芬单独的影响。相反,与单独的5HT 相比,Fen与 5HT联合抑制MVIC 3 HTdR反应。此外,氟西汀是一种5HT转运蛋白抑制剂, 单独发挥作用,但与Fen加5HT一起使用时,抑制了Fen-5HT 3 HTdR抑制作用 。最后, 3 H-脯氨酸和 3 H-葡萄糖胺的MVIC掺入 ,细胞外 基质胶原和糖胺聚糖的量度单独使用5HT分别使 增加;但是,Fen单独或与5HT联合使用均不会影响MVIC糖胺聚糖 或胶原。两者合计,中的 3 H-脯氨酸或 3 H-糖胺聚糖与 3 HTdR的比率仅对5HT进行归一化的MVIC证明,在Fen加5HT暴露的MVIC 培养物中,细胞外基质的产生与增殖之间存在显着的不平衡 。这种失衡可能部分解释 芬相关的二尖瓣疾病的病理生理。

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  • 来源
    《American Journal of Pathology》 |2009年第3期|988-997|共10页
  • 作者单位

    From the Division of Cardiology,The Children’s Hospital of Philadelphia, Philadelphia;

    From the Division of Cardiology,The Children’s Hospital of Philadelphia, Philadelphia;

    From the Division of Cardiology,The Children’s Hospital of Philadelphia, Philadelphia;

    the University of Pennsylvania School of Medicine,Philadelphia;

    the University of Pennsylvania School of Medicine,Philadelphia;

    and the University of Pennsylvania School of Veterinary Medicine,Philadelphia, Pennsylvania;

    From the Division of Cardiology,The Children’s Hospital of Philadelphia, Philadelphia;

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