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Determination of Size Distribution and Encapsulation Efficiency of Liposome-Encapsulated Hemoglobin Blood Substitutes Using Asymmetric Flow Field-Flow Fractionation Coupled with Multi-angle Static Light Scattering

机译:非对称流场-流分流与多角度静态光散射相结合测定脂质体包裹的血红蛋白血代用品的粒径分布和包裹效率

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In this study,we investigated the size distribution,encapsulation efficiency,and oxygen affinity of liposome-encapsulated tetrameric hemoglobin (LEHb)dispersions and correlated the data with the variation in extruder membrane pore size,ionic strength of the extrusion buffer,and hemoglobin (Hb)concentration.Asymmetric flow field-flow fractionation (AFFF)in series with multi-angle static light scattering (MASLS)was used to study the LEHb size distribution.We also introduced a novel method to measure the encapsulation efficiency using a differential interferometric refractive index (DIR)detector coupled to the AFFF-MASLS system.This technique was nondestructive toward the sample and easy to implement.LEHbs were prepared by extrusion using a lipid combination of dimyristoyl-phosphatidylcholine,cholesterol,and dimyristoyl-phosphatidylglycerol in a 10:9:1 molar ratio.Five initial Hb concentra-tions (50,100,150,200,and 300 mg Hb per mL of buffer)extruded through five different membrane pore diameters (400,200,100,80,and 50 nm)were studied.Phosphate buffered saline (PES)and phosphate buffer (PE)both at pH 7.3 were used as extrusion buffers.Despite the variation,extrusion through 400-nm pore diameter membranes produced LEHbs smaller than the pore size,extrusion through 200-nm membranes produced LEHbs with diameters close to the pore diameter,and extrusion through 100-,80-,and 50-nm membranes produced LEHbs larger than the pore sizes.We found that the choice of extrusion buffer had the greatest effect on the LEHb size distribution compared to either Hb concentration or extruder membrane pore size.Extrusion in PES produced larger LEHbs and more monodisperse LEHb dispersions.However,LEHbs extruded in PE generally had higher Hb encapsulation efficiencies and lower methemoglobin (metHb)levels.The choice of extrusion buffer also affected how the encapsulation efficiency correlated with Hb concentration,extruder pore size,and the metHb level.The most optimum encapsulation efficiency and amount of Hb entrapped were achieved at the highest Hb concentration and the largest pore size for both extrusion buffers (62.38% and 187.14 mg Hb/mL ofLEHb dispersion extruded in PES,and 69.98% and 209.94 mg Hb/mL of LEHb dispersion extruded in PE).All LEHbs displayed good oxygen-carrying properties as indicated by their P50 al:l;d cooperativity coefficients.LEHbs extruded in PE had an average P50 of 23.04 mmHg and an average Hill number of 2.29,and those extruded in PES had average values of27.25 mmHg and 2.49.These oxygen-binding properties indicate that LEHbs possess strong potential as artificial blood subs~tutes.In addition,the metHb levels in PE-LEHb dispersions are significantly low even in the absence of antioxidants such as N-acetyl-L-cysteine.
机译:在这项研究中,我们研究了脂质体包裹的四聚体血红蛋白(LEHb)分散体的大小分布,包裹效率和氧亲和力,并将数据与挤出机膜孔径,挤出缓冲液离子强度和血红蛋白(Hb)的变化相关联。浓度)。采用多角度静态光散射(MASLS)串联的非对称流场-流分离(AFFF)来研究LEHb尺寸分布。我们还引入了一种新的方法来利用微分干涉测量折射率来测量包封效率(DIR)检测器与AFFF-MASLS系统耦合,该技术对样品无损且易于实施.LEHb的制备是使用二豆香油基-磷脂酰胆碱,胆固醇和二豆香油基-磷脂酰甘油的脂质混合物以10:9的比例挤出制备的: 1摩尔比。通过五个不同的膜孔d挤出五个初始Hb浓度(50,100,150,200和300 mg Hb / mL缓冲液)分别研究了直径(400、200、100、80和50 nm)的磷酸盐缓冲液(PES)和磷酸盐缓冲液(PE)(pH 7.3)作为挤出缓冲液。尽管有所不同,但通过400 nm孔径的膜进行挤出产生的LEHb较小比孔径大,通过200 nm膜挤出可制得直径接近孔径的LEHb,通过100、80、50和50 nm膜挤出可制得比孔径大的LEHb。与Hb浓度或挤出机膜孔径相比,缓冲液对LEHb尺寸分布的影响最大.PES中的挤出产生更大的LEHb和更多的单分散LEHb分散体,但是,在PE中挤出的LEHb通常具有更高的Hb包封效率和较低的高铁血红蛋白(metHb挤出缓冲液的选择还影响包封效率与Hb浓度,挤出机孔径和metHb水平之间的关系。最佳的包封效率两种挤出缓冲液的最高Hb浓度和最大孔径均实现了y的捕获量和捕获的Hb量(在PES中挤出的LEHb分散体分别为62.38%和187.14 mg Hb / mL,以及挤出的LEHb分散体分别为69.98%和209.94 mg Hb / mL P50 al:l; d的协同系数表明,所有LEHb均表现出良好的载氧性能。在PE中挤出的LEHb的平均P50为23.04 mmHg,平均Hill数为2.29,而在PES中挤出的LEHb的平均H50为2.29。平均值为27.25 mmHg和2.49。这些氧结合特性表明LEHbs具有作为人造血液替代物的强大潜力。此外,即使没有N等抗氧化剂,PE-LEHb分散体中的metHb含量也很低。 -乙酰基-L-半胱氨酸。

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