Lu Mingzi, Zhao Caiyan, Wang Quan, You Guoxing, Wang Ying, Deng Hongzhang, Chen Gan, Xia Sha, Zhao Jingxiang, Wang Bo, Li Xianlei, Shao Leihou, Wu Yan, Zhao Lian, Zhou Hong
Institute of Transfusion Medicine, Academy of Military Medical Sciences, Beijing 100850, China.
National Center for Nanoscience and Technology, Beijing 100190, China.
Colloids Surf B Biointerfaces. 2016 Mar 1;139:171-9. doi: 10.1016/j.colsurfb.2015.12.012. Epub 2015 Dec 9.
Although many attempts have been made to design advanced hemoglobin-based oxygen carriers (HBOCs), no clinically viable product has been widely approved, because they do not perform normal blood functions, such as coagulation, hematologic reactions and stability. Additionally, the in vivo oxygenation of hemoglobin-loaded nanoparticles (HbPs) encapsulated with polymers has seldom been proved. Herein, HbPs of approximately 200nm with good stability were successfully fabricated and exhibited oxygen-carrying capacity. The HbPs preserve the biological and structure features of hemoglobin according to UV-vis spectrophotometry, Fourier transform infrared (FTIR) spectroscopy and circular dichroism (CD) spectral analysis. In vitro, the HbPs showed a viscosity comparable to that of blood with no obvious effects on red blood cell aggregation. At the same time, blood compatibility was characterized in terms of platelet function, clot strength, speed of clot formation, degree of fibrin cross-linking and hemolysis rate. After intravenous administration of HbPs to mice with controlled hemorrhages, blood flow recovery and maintenance of systemic oxygenation were observed.
尽管人们已多次尝试设计先进的基于血红蛋白的氧载体(HBOCs),但尚无临床上可行的产品得到广泛批准,因为它们无法执行正常的血液功能,如凝血、血液学反应和稳定性。此外,聚合物包裹的负载血红蛋白纳米颗粒(HbPs)的体内氧合作用鲜有证据。在此,成功制备了具有良好稳定性的约200nm的HbPs,并展示出携氧能力。根据紫外可见分光光度法、傅里叶变换红外(FTIR)光谱和圆二色(CD)光谱分析,HbPs保留了血红蛋白的生物学和结构特征。在体外,HbPs显示出与血液相当的粘度,对红细胞聚集无明显影响。同时,从血小板功能、血凝强度、血凝形成速度、纤维蛋白交联程度和溶血率等方面对血液相容性进行了表征。对控制性出血的小鼠静脉注射HbPs后,观察到血流恢复和全身氧合维持情况。