Ilinskaya Anna N, Man Sonny, Patri Anil K, Clogston Jeffrey D, Crist Rachael M, Cachau Raul E, McNeil Scott E, Dobrovolskaia Marina A
Nanotechnology Characterization Laboratory, Advanced Technology Program, SAIC-Frederick Inc., NCI-Frederick, 1050 Boyles Street, Building 469, Frederick, MD 21702, USA.
Nanomedicine (Lond). 2014 Jul;9(9):1311-26. doi: 10.2217/nnm.13.137. Epub 2013 Nov 27.
Disseminated intravascular coagulation is an increasing concern for certain types of engineered nanomaterials. Recent studies have shed some light on the nanoparticle physicochemical properties contributing to this toxicity; however, the mechanisms are poorly understood. Leukocyte procoagulant activity (PCA) is a key factor contributing to the initiation of this toxicity. We have previously reported on the exaggeration of endotoxin-induced PCA by cationic dendrimers. Herein, we report an effort to discern the mechanism.
MATERIALS & METHODS: Poly(amidoamine) dendrimers with various sizes and surface functionalities were studied in vitro by the recalcification test, flow cytometry and other relevant assays.
RESULTS & CONCLUSION: Cationic dendrimers exaggerated endotoxin-induced PCA, but their anionic or neutral counterparts did not; the cationic charge prompts this phenomenon, but different cationic surface chemistries do not influence it. Cationic dendrimers and endotoxin differentially affect the PCA complex. The inhibition of phosphoinositol 3 kinase by dendrimers contributes to the exaggeration of the endotoxin-induced PCA.
弥散性血管内凝血日益受到某些类型工程纳米材料的关注。最近的研究对导致这种毒性的纳米颗粒物理化学性质有所了解;然而,其机制仍知之甚少。白细胞促凝活性(PCA)是导致这种毒性起始的关键因素。我们之前报道过阳离子树枝状聚合物会加剧内毒素诱导的PCA。在此,我们报告一项旨在探究其机制的研究。
通过复钙试验、流式细胞术及其他相关检测方法,在体外研究了具有不同尺寸和表面功能的聚(酰胺胺)树枝状聚合物。
阳离子树枝状聚合物会加剧内毒素诱导的PCA,但其阴离子或中性类似物则不会;阳离子电荷引发了这一现象,但不同的阳离子表面化学性质对此并无影响。阳离子树枝状聚合物和内毒素对PCA复合物有不同影响。树枝状聚合物对磷酸肌醇3激酶的抑制作用导致了内毒素诱导的PCA加剧。