Moisa Stefana Maria, Burlacu Alexandru, Butnariu Lacramioara Ionela, Vasile Corina Maria, Brinza Crischentian, Spoiala Elena Lia, Maștaleru Alexandra, Leon Maria Magdalena, Rosu Solange Tamara, Vatasescu Radu, Cinteză Eliza Elena
Department of Pediatrics, Faculty of Medicine, "Grigore T. Popa" University of Medicine and Pharmacy, 700115 Iasi, Romania.
"Sfanta Maria" Clinical Emergency Hospital for Children, 700309 Iasi, Romania.
Biomedicines. 2024 Jan 15;12(1):185. doi: 10.3390/biomedicines12010185.
(1) Background: Nanomedicine, incorporating various nanoparticles and nanomaterials, offers significant potential in medical practice. Its clinical adoption, however, faces challenges like safety concerns, regulatory hurdles, and biocompatibility issues. Despite these, recent advancements have led to the approval of many nanotechnology-based products, including those for pediatric use. (2) Methods: Our approach included reviewing clinical, preclinical, and animal studies, as well as literature reviews from the past two decades and ongoing trials. (3) Results: Nanotechnology has introduced innovative solutions in cardiovascular care, particularly in managing myocardial ischemia. Key developments include drug-eluting stents, nitric oxide-releasing coatings, and the use of magnetic nanoparticles in cardiomyocyte transplantation. These advancements are pivotal for early detection and treatment. In cardiovascular imaging, nanotechnology enables noninvasive assessments. In pediatric cardiology, it holds promise in assisting the development of biological conduits, synthetic valves, and bioartificial grafts for congenital heart defects, and offers new treatments for conditions like dilated cardiomyopathy and pulmonary hypertension. (4) Conclusions: Nanomedicine presents groundbreaking solutions for cardiovascular diseases in both adults and children. It has the potential to transform cardiac care, from enhancing myocardial ischemia treatment and imaging techniques to addressing congenital heart issues. Further research and guideline development are crucial for optimizing its clinical application and revolutionizing patient care.
(1)背景:纳米医学包含各种纳米颗粒和纳米材料,在医学实践中具有巨大潜力。然而,其临床应用面临安全担忧、监管障碍和生物相容性问题等挑战。尽管如此,最近的进展已促使许多基于纳米技术的产品获得批准,包括用于儿科的产品。(2)方法:我们的方法包括回顾临床、临床前和动物研究,以及过去二十年的文献综述和正在进行的试验。(3)结果:纳米技术在心血管护理方面引入了创新解决方案,特别是在管理心肌缺血方面。关键进展包括药物洗脱支架、释放一氧化氮的涂层以及磁性纳米颗粒在心肌细胞移植中的应用。这些进展对于早期检测和治疗至关重要。在心血管成像中,纳米技术能够进行无创评估。在儿科心脏病学中,它有望协助开发用于先天性心脏病的生物导管、人工瓣膜和生物人工移植物,并为扩张型心肌病和肺动脉高压等病症提供新的治疗方法。(4)结论:纳米医学为成人和儿童的心血管疾病提供了开创性的解决方案。它有潜力改变心脏护理,从加强心肌缺血治疗和成像技术到解决先天性心脏问题。进一步的研究和指南制定对于优化其临床应用和彻底改变患者护理至关重要。