Suppr超能文献

脂质体包裹血红蛋白分散体的稳定性

Stability of liposome encapsulated hemoglobin dispersions.

作者信息

Arifin Dian R, Palmer Andre F

机构信息

Department of Chemical and Biomolecular Engineering, University of Notre Dame, Notre Dame, IN 46656, USA.

出版信息

Artif Cells Blood Substit Immobil Biotechnol. 2005;33(2):113-36. doi: 10.1081/bio-200055874.

Abstract

The demand for artificial blood substitutes in cases of elective surgeries, trauma, and civilian mass catastrophes increases every day. However, few studies have been done to characterize the mechanical stability of blood substitutes, especially liposome encapsulated hemoglobin (LEHb) dispersions. In this work, the stability of LEHb dispersions was investigated by fitting Jung et al.'s liposome size distribution model to experimentally measured LEHb size distributions [6] (produced via extrusion) using asymmetric flow field-flow fractionation coupled with multi-angle static light scattering. The effective bending constant (KB) and radius of curvature (R0) of each liposome dispersion were regressed from the size distribution fits. The model was found to be in agreement with the size distributions of LEHbs extruded through 400, 200 and 100 nm pore diameter membranes, but not in agreement with LEHbs extruded through 80 and 50 nm pore diameter membranes. Although the magnitude of KB fluctuated, we deduced a general trend for KB to decrease with decreasing pore diameter, and increasing initial Hb concentration. LEHbs extruded through 400nm pore diameter membranes were stabilized by the spontaneous curvature effect, while those extruded through 80 and 50 nm pore diameter membranes were mostly stabilized by thermal undulations, regardless of the initial Hb concentration. For LEHb dispersions extruded through 200 and 100 nm pore diameter membranes, there was a transition of stabilization mechanism from spontaneous curvature to thermal undulations with increasing initial Hb concentration. Taken together, these results suggest that moderate Hb encapsulation might actually impart better mechanical stability to LEHb dispersions extruded through 200 and 100 nm pore diameter membranes.

摘要

在择期手术、创伤及平民大规模灾难情况下,对人工血液替代品的需求与日俱增。然而,针对血液替代品,尤其是脂质体包裹血红蛋白(LEHb)分散体的机械稳定性开展的研究却寥寥无几。在本研究中,采用非对称流场-流分级结合多角度静态光散射技术,将 Jung 等人的脂质体尺寸分布模型拟合至实验测量的(通过挤压产生的)LEHb 尺寸分布 [6],以此研究 LEHb 分散体的稳定性。从尺寸分布拟合中回归得出各脂质体分散体的有效弯曲常数(KB)和曲率半径(R0)。结果发现该模型与通过 400、200 和 100 nm 孔径膜挤压得到的 LEHb 尺寸分布相符,但与通过 80 和 50 nm 孔径膜挤压得到的 LEHb 尺寸分布不相符。尽管 KB 的数值有所波动,但我们推断出一个总体趋势,即 KB 随孔径减小和初始血红蛋白浓度增加而降低。通过 400nm 孔径膜挤压得到的 LEHb 因自发曲率效应而稳定,而通过 80 和 50 nm 孔径膜挤压得到的 LEHb 无论初始血红蛋白浓度如何,大多因热起伏而稳定。对于通过 200 和 100 nm 孔径膜挤压得到的 LEHb 分散体,随着初始血红蛋白浓度增加,稳定机制从自发曲率转变为热起伏。综上所述,这些结果表明适度的血红蛋白包封实际上可能会使通过 200 和 100 nm 孔径膜挤压得到的 LEHb 分散体具有更好的机械稳定性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验