Pretorius Danielle, Serpooshan Vahid, Zhang Jianyi
Department of Biomedical Engineering, School of Medicine, University of Alabama at Birmingham, Birmingham, AL, United States.
Department of Biomedical Engineering, School of Engineering, University of Alabama at Birmingham, Birmingham, AL, United States.
Front Pharmacol. 2021 Mar 4;12:640182. doi: 10.3389/fphar.2021.640182. eCollection 2021.
Nano-medicines that include nanoparticles, nanocomposites, small molecules, and exosomes represent new viable sources for future therapies for the dysfunction of cardiovascular system, as well as the other important organ systems. Nanomaterials possess special properties ranging from their intrinsic physicochemical properties, surface energy and surface topographies which can illicit advantageous cellular responses within the cardiovascular system, making them exceptionally valuable in future clinical translation applications. The success of nano-medicines as future cardiovascular theranostic agents requires a comprehensive understanding of the intersection between nanomaterial and the biomedical fields. In this review, we highlight some of the major types of nano-medicine systems that are currently being explored in the cardiac field. This review focusses on the major differences between the systems, and how these differences affect the specific therapeutic or diagnostic applications. The important concerns relevant to cardiac nano-medicines, including cellular responses, toxicity of the different nanomaterials, as well as cardio-protective and regenerative capabilities are discussed. In this review an overview of the current development of nano-medicines specific to the cardiac field is provided, discussing the diverse nature and applications of nanomaterials as therapeutic and diagnostic agents.
包括纳米颗粒、纳米复合材料、小分子和外泌体在内的纳米药物是未来治疗心血管系统以及其他重要器官系统功能障碍的新的可行来源。纳米材料具有特殊性质,从其固有的物理化学性质、表面能和表面形貌等方面,这些性质能够在心血管系统内引发有利的细胞反应,使其在未来临床转化应用中具有极高价值。纳米药物作为未来心血管治疗诊断试剂的成功需要全面了解纳米材料与生物医学领域的交叉点。在本综述中,我们重点介绍了目前在心脏领域正在探索的一些主要类型的纳米药物系统。本综述聚焦于这些系统之间的主要差异,以及这些差异如何影响特定的治疗或诊断应用。还讨论了与心脏纳米药物相关的重要问题,包括细胞反应、不同纳米材料的毒性以及心脏保护和再生能力。在本综述中,提供了心脏领域纳米药物当前发展的概述,讨论了纳米材料作为治疗和诊断试剂的多样性质和应用。