Yokoyama Utako, Minamisawa Susumu, Quan Hong, Ghatak Shibnath, Akaike Toru, Segi-Nishida Eri, Iwasaki Shiho, Iwamoto Mari, Misra Suniti, Tamura Kouichi, Hori Hideaki, Yokota Shumpei, Toole Bryan P, Sugimoto Yukihiko, Ishikawa Yoshihiro
Cardiovascular Research Institute, Yokohama City University, Yokohama, Japan.
J Clin Invest. 2006 Nov;116(11):3026-34. doi: 10.1172/JCI28639.
PGE, a potent vasodilator, plays a primary role in maintaining the patency of the ductus arteriosus (DA). Genetic disruption of the PGE-specific receptor EP4, however, paradoxically results in fatal patent DA (PDA) in mice. Here we demonstrate that EP4-mediated signals promote DA closure by hyaluronic acid-mediated (HA-mediated) intimal cushion formation (ICF). Chronic EP4 stimulation by ONO-AE1-329, a selective EP4 agonist, significantly enhanced migration and HA production in rat DA smooth muscle cells. When HA production was inhibited, EP4-mediated migration was negated. Activation of EP4, adenylyl cyclase, and PKA all increased HA production and the level of HA synthase 2 (HAS2) transcripts. In immature rat DA explants, ICF was promoted by EP4/PKA stimuli. Furthermore, adenovirus-mediated Has2 gene transfer was sufficient to induce ICF in EP4-disrupted DA explants in which the intimal cushion had not formed. Accordingly, signals through EP4 have 2 essential roles in DA development, namely, vascular dilation and ICF. The latter would lead to luminal narrowing, helping adhesive occlusion and permanent closure of the vascular lumen. Our results imply that HA induction serves as an alternative therapeutic strategy for the treatment of PDA to the current one, i.e., inhibition of PGE signaling by cyclooxygenase inhibitors, which might delay PGE-mediated ICF in immature infants.
前列腺素E(PGE)是一种强效血管舒张剂,在维持动脉导管(DA)通畅方面起主要作用。然而,PGE特异性受体EP4的基因破坏却反常地导致小鼠出现致命性动脉导管未闭(PDA)。在此,我们证明EP4介导的信号通过透明质酸介导的(HA介导的)内膜垫形成(ICF)促进DA闭合。选择性EP4激动剂ONO-AE1-329对EP4进行慢性刺激可显著增强大鼠DA平滑肌细胞的迁移和HA生成。当HA生成受到抑制时,EP4介导的迁移也被消除。EP4、腺苷酸环化酶和蛋白激酶A的激活均增加了HA生成以及HA合酶2(HAS2)转录本的水平。在未成熟大鼠DA外植体中,EP4/PKA刺激可促进ICF。此外,腺病毒介导的Has2基因转移足以在EP4缺陷的DA外植体中诱导ICF,而这些外植体中内膜垫尚未形成。因此,通过EP4的信号在DA发育中具有两个重要作用,即血管舒张和ICF。后者会导致管腔狭窄,有助于血管腔的粘连闭塞和永久性闭合。我们的结果表明,诱导HA作为治疗PDA的一种替代治疗策略,不同于目前的策略,即使用环氧化酶抑制剂抑制PGE信号传导,因为这可能会延迟未成熟婴儿中PGE介导的ICF。