Queensland Micro- and Nanotechnology, Griffith University, Nathan, Queensland 4111, Australia.
Australian Institute for Bioengineering and Nanotechnology, University of Queensland, St Lucia, Queensland 4072, Australia.
Biomater Sci. 2021 Dec 21;10(1):10-50. doi: 10.1039/d1bm01351c.
Maintenance of a delicate haemostatic balance or a balance between clotting and bleeding is critical to human health. Irrespective of administration route, nanoparticles can reach the bloodstream and might interrupt the haemostatic balance by interfering with one or more components of the coagulation, anticoagulation, and fibrinolytic systems, which potentially lead to thrombosis or haemorrhage. However, inadequate understanding of their effects on the haemostatic balance, along with the fact that most studies mainly focus on the functionality of nanoparticles while forgetting or leaving behind their risk to the body's haemostatic balance, is a major concern. Hence, our review aims to provide a comprehensive depiction of nanoparticle-haemostatic balance interactions, which has not yet been covered. The synergistic roles of cells and plasma factors participating in haemostatic balance are presented. Possible interactions and interference of each type of nanoparticle with the haemostatic balance are comprehensively discussed, particularly focusing on the underlying mechanisms. Interactions of nanoparticles with innate immunity potentially linked to haemostasis are mentioned. Various physicochemical characteristics that influence the nanoparticle-haemostatic balance are detailed. Challenges and future directions are also proposed. This insight would be valuable for the establishment of nanoparticles that can either avoid unintended interference with the haemostatic balance or purposely downregulate/upregulate its key components in a controlled manner.
维持精细的止血平衡或凝血与出血之间的平衡对人类健康至关重要。无论给药途径如何,纳米颗粒都可以到达血液,并通过干扰凝血、抗凝和纤维蛋白溶解系统的一个或多个成分来干扰止血平衡,从而导致血栓形成或出血。然而,人们对其对止血平衡的影响认识不足,而且大多数研究主要关注纳米颗粒的功能,而忽略或忽视了它们对身体止血平衡的风险,这是一个主要关注点。因此,我们的综述旨在全面描述尚未涵盖的纳米颗粒-止血平衡相互作用。呈现了参与止血平衡的细胞和血浆因子的协同作用。全面讨论了每种类型的纳米颗粒与止血平衡的可能相互作用和干扰,特别侧重于潜在机制。提到了与止血相关的纳米颗粒与先天免疫的相互作用。详细介绍了影响纳米颗粒-止血平衡的各种物理化学特性。还提出了挑战和未来方向。这一见解对于建立既可以避免对止血平衡产生意外干扰,又可以以可控方式下调/上调其关键成分的纳米颗粒将非常有价值。