Department of Nuclear Medicine, Hannover Medical School, Hannover, Germany; and.
Department of Cardiology and Angiology, Hannover Medical School, Hannover, Germany.
J Nucl Med. 2020 Jul;61(7):951-961. doi: 10.2967/jnumed.119.240440. Epub 2020 Apr 17.
Radionuclide imaging of myocardial perfusion, function, and viability has been established for decades and remains a robust, evidence-based and broadly available means for clinical workup and therapeutic guidance in ischemic heart disease. Yet, powerful alternative modalities have emerged for this purpose, and their growth has resulted in increasing competition. But the potential of the tracer principle goes beyond the assessment of physiology and function, toward the interrogation of biology and molecular pathways. This is a unique selling point of radionuclide imaging, which has been underrecognized in cardiovascular medicine until recently. Now, molecular imaging methods for the detection of myocardial infiltration, device infection, and cardiovascular inflammation are successfully gaining clinical acceptance. This is further strengthened by the symbiotic quest of cardiac imaging and therapy for an increasing implementation of molecule-targeted procedures, in which specific therapeutic interventions require specific diagnostic guidance toward the most suitable candidates. This review will summarize the current advent of clinical cardiovascular molecular imaging and highlight its transformative contribution to the evolution of cardiovascular therapy beyond mechanical interventions and broad blockbuster medication, toward a future of novel, individualized molecule-targeted and molecular imaging-guided therapies.
放射性核素心肌灌注、功能和活力成像已确立数十年,仍然是缺血性心脏病临床评估和治疗指导的一种强大、基于证据和广泛可用的方法。然而,出于这一目的,出现了强大的替代方式,它们的发展导致竞争加剧。但是,示踪剂原理的潜力超出了生理学和功能的评估,朝着生物学和分子途径的探究发展。这是放射性核素成像的一个独特卖点,直到最近才在心血管医学中得到充分认识。现在,用于检测心肌浸润、器械感染和心血管炎症的分子成像方法已成功获得临床认可。心脏成像和治疗对越来越多的靶向分子程序的实施的共生探索进一步加强了这一点,在这些程序中,特定的治疗干预需要特定的诊断指导,以找到最合适的候选者。这篇综述将总结当前临床心血管分子成像的出现,并强调其对心血管治疗演变的变革性贡献,超越机械干预和广泛的重磅药物,迈向新型个体化靶向分子和分子成像引导治疗的未来。