Department of Pediatric Cardiology, Heart Center Leipzig, University of Leipzig Germany.
Front Pharmacol. 2013 Apr 16;4:41. doi: 10.3389/fphar.2013.00041. eCollection 2013.
The circulatory system is one of the first systems that develops during embryogenesis. Angiogenesis describes the formation of blood vessels as a part of the circulatory system and is essential for organ growth in embryogenesis as well as repair in adulthood. A dysregulation of vessel growth contributes to the pathogenesis of many disorders. Thus, an imbalance between pro- and antiangiogenic factors could be observed in infantile hemangioma (IH). IH is the most common benign tumor during infancy, which appears during the first month of life. These vascular tumors are characterized by rapid proliferation and subsequently slower involution. Most IHs regress spontaneously, but in some cases they cause disfigurement and systemic complications, which requires immediate treatment. Recently, a therapeutic effect of propranolol on IH has been demonstrated. Hence, this non-selective β-blocker became the first-line therapy for IH. Over the last years, our understanding of the underlying mechanisms of IH has been improved and possible mechanisms of action of propranolol in IH have postulated. Previous studies revealed that gap junction proteins, the connexins (Cx), might also play a role in the pathogenesis of IH. Therefore, affecting gap junctional intercellular communication is suggested as a novel therapeutic target of propranolol in IH. In this review we summarize the current knowledge of the molecular processes, leading to IH and provide new insights of how Cxs might be involved in the development of these vascular tumors.
循环系统是胚胎发生过程中最早发育的系统之一。血管生成描述了作为循环系统一部分的血管形成,它对于胚胎发生中的器官生长以及成年期的修复都是必不可少的。血管生长的失调导致许多疾病的发病机制。因此,在婴儿血管瘤(IH)中可以观察到促血管生成和抗血管生成因子之间的不平衡。IH 是婴儿期最常见的良性肿瘤,在生命的第一个月出现。这些血管肿瘤的特征是快速增殖,随后是较慢的消退。大多数 IH 会自发消退,但在某些情况下,它们会导致畸形和全身并发症,需要立即治疗。最近,已经证明了普萘洛尔对 IH 的治疗效果。因此,这种非选择性β受体阻滞剂成为 IH 的一线治疗药物。在过去的几年中,我们对 IH 潜在机制的理解有所提高,并提出了普萘洛尔在 IH 中的可能作用机制。先前的研究表明,缝隙连接蛋白,即连接蛋白(Cx),也可能在 IH 的发病机制中起作用。因此,抑制缝隙连接细胞间通讯被认为是普萘洛尔治疗 IH 的一种新的治疗靶点。在这篇综述中,我们总结了导致 IH 的分子过程的最新知识,并提供了关于 Cx 如何参与这些血管肿瘤发生的新见解。