a Institute of Transfusion Medicine , Charité - Universitätsmedizin Berlin , Berlin , Germany.
b Division of Clinical Immunology and Transfusion Sciences, School of Allied Health Sciences , University of Phayao , Phayao , Thailand.
Artif Cells Nanomed Biotechnol. 2018;46(sup3):S964-S972. doi: 10.1080/21691401.2018.1521819. Epub 2018 Nov 2.
The coprecipitation-cross-linking-dissolution (CCD) technique for protein submicron particle fabrication was improved by omitting one preparation step using the macromolecular cross-linker, periodate-oxidized dextran (Odex, M.W. of 40 and 70 kDa). The coprecipitation and cross-linking of haemoglobin (Hb) were combined in one single step since the cross-linker is incorporated into the inorganic template, MnCO, together with the protein. After removal of the MnCO templates by EDTA, the amount of entrapped Hb was 60 to 70% of the initial amount. This technique provides deformable Hb submicron particles (HbMP) with narrow size distribution between 800 and 1000 nm, uniform morphology and negative zeta-potential. More than 40% of Hb in the particles was able to carry oxygen over a storage period of 90 days. The results suggest that our new protein submicron particle fabrication technique minimizes the fabrication time and is very efficient and cost-effective.
蛋白亚微米颗粒的共沉淀-交联-溶解(CCD)技术得到了改进,省略了使用大分子交联剂(高碘酸钠氧化葡聚糖(Odex,分子量分别为 40 和 70 kDa)的一个制备步骤。由于交联剂与血红蛋白(Hb)一起被包埋在无机模板 MnCO 中,因此共沉淀和交联在一个单一的步骤中完成。通过 EDTA 去除 MnCO 模板后,包埋的 Hb 量为初始量的 60%至 70%。该技术提供了具有 800 至 1000nm 之间窄粒径分布、均匀形态和负 ζ-电位的可变形 Hb 亚微米颗粒(HbMP)。在 90 天的储存期内,超过 40%的 Hb 能够携带氧气。结果表明,我们的新型蛋白亚微米颗粒制备技术最大限度地减少了制备时间,并且非常高效和经济有效。