Intravenously infusible nanoparticles to control bleeding have shown promise in rodents, but translation into preclinical models has been challenging as many of these nanoparticle approaches have resulted in infusion responses and adverse outcomes in large animal trauma models. We developed a hemostatic nanoparticle technology that was screened to avoid one component of the infusion response: complement activation. We administered these hemostatic nanoparticles, control nanoparticles, or saline volume controls in a porcine polytrauma model. While the hemostatic nanoparticles promoted clotting as marked by a decrease in prothrombin time and both the hemostatic nanoparticles and controls did not active complement, in a subset of the animals, hard thrombi were found in uninjured tissues in both the hemostatic and control nanoparticle groups. Using data science methods that allow one to work across heterogeneous data sets, we found that the presence of these thrombi correlated with changes in IL-6, INF-alpha, lymphocytes, and neutrophils. While these findings might suggest that this formulation would not be a safe one for translation for trauma, they provide guidance for developing screening tools to make nanoparticle formulations in the complex milieux of trauma as well as for therapeutic interventions more broadly. This is important as we look to translate intravenously administered nanoparticle formulations for therapies, particularly considering the vascular changes seen in a subset of patients following COVID-19. We need to understand adverse events like thrombi more completely and screen for these events early to make nanomaterials as safe and effective as possible.
PEGylated Polyester Nanoparticles Trigger Adverse Events in a Large Animal Model of Trauma and in NaıÌve Animals: Understanding Cytokine and Cellular Correlations with These Events.
PEG化聚酯纳米颗粒在大型动物创伤模型和未接受过治疗的动物中引发不良事件:了解细胞因子和细胞与这些事件的相关性
阅读:4
作者:Maisha Nuzhat, Kulkarni Chhaya, Pandala Narendra, Zilberberg Rose, Schaub Leasha, Neidert Leslie, Glaser Jacob, Cannon Jeremy, Janeja Vandana, Lavik Erin B
| 期刊: | ACS Nano | 影响因子: | 16.000 |
| 时间: | 2022 | 起止号: | 2022 Jul 26; 16(7):10566-10580 |
| doi: | 10.1021/acsnano.2c01993 | 研究方向: | 细胞生物学 |
特别声明
1、本文转载旨在传播信息,不代表本网站观点,亦不对其内容的真实性承担责任。
2、其他媒体、网站或个人若从本网站转载使用,必须保留本网站注明的“来源”,并自行承担包括版权在内的相关法律责任。
3、如作者不希望本文被转载,或需洽谈转载稿费等事宜,请及时与本网站联系。
4、此外,如需投稿,也可通过邮箱info@biocloudy.com与我们取得联系。
