Ieda Masaki, Kanazawa Hideaki, Kimura Kensuke, Hattori Fumiyuki, Ieda Yasuyo, Taniguchi Masahiko, Lee Jong-Kook, Matsumura Keisuke, Tomita Yuichi, Miyoshi Shunichiro, Shimoda Kouji, Makino Shinji, Sano Motoaki, Kodama Itsuo, Ogawa Satoshi, Fukuda Keiichi
Department of Regenerative Medicine and Advanced Cardiac Therapeutics, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan.
Nat Med. 2007 May;13(5):604-12. doi: 10.1038/nm1570. Epub 2007 Apr 8.
Sympathetic innervation is critical for effective cardiac function. However, the developmental and regulatory mechanisms determining the density and patterning of cardiac sympathetic innervation remain unclear, as does the role of this innervation in arrhythmogenesis. Here we show that a neural chemorepellent, Sema3a, establishes cardiac sympathetic innervation patterning. Sema3a is abundantly expressed in the trabecular layer in early-stage embryos but is restricted to Purkinje fibers after birth, forming an epicardial-to-endocardial transmural sympathetic innervation patterning. Sema3a(-/-) mice lacked a cardiac sympathetic innervation gradient and exhibited stellate ganglia malformation, which led to marked sinus bradycardia due to sympathetic dysfunction. Cardiac-specific overexpression of Sema3a in transgenic mice (SemaTG) was associated with reduced sympathetic innervation and attenuation of the epicardial-to-endocardial innervation gradient. SemaTG mice demonstrated sudden death and susceptibility to ventricular tachycardia, due to catecholamine supersensitivity and prolongation of the action potential duration. We conclude that appropriate cardiac Sema3a expression is needed for sympathetic innervation patterning and is critical for heart rate control.
交感神经支配对于有效的心脏功能至关重要。然而,决定心脏交感神经支配密度和模式的发育及调节机制仍不清楚,这种神经支配在心律失常发生中的作用也不清楚。在此我们表明,一种神经化学排斥分子Sema3a建立了心脏交感神经支配模式。Sema3a在早期胚胎的小梁层中大量表达,但出生后局限于浦肯野纤维,形成从心外膜到心内膜的跨壁交感神经支配模式。Sema3a基因敲除小鼠缺乏心脏交感神经支配梯度,并表现出星状神经节畸形,由于交感神经功能障碍导致明显的窦性心动过缓。在转基因小鼠(SemaTG)中,心脏特异性过表达Sema3a与交感神经支配减少及心外膜到心内膜的神经支配梯度减弱有关。SemaTG小鼠表现出猝死和对室性心动过速的易感性,这是由于儿茶酚胺超敏反应和动作电位时程延长所致。我们得出结论,适当的心脏Sema3a表达对于交感神经支配模式是必需的,并且对于心率控制至关重要。