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人血红蛋白衍生物的制备、性质及血浆滞留情况:未交联羧甲基化血红蛋白与交联四聚体血红蛋白的比较

Preparation, properties, and plasma retention of human hemoglobin derivatives: comparison of uncrosslinked carboxymethylated hemoglobin with crosslinked tetrameric hemoglobin.

作者信息

Manning L R, Morgan S, Beavis R C, Chait B T, Manning J M, Hess J R, Cross M, Currell D L, Marini M A, Winslow R M

机构信息

Rockefeller University, New York, NY 10021.

出版信息

Proc Natl Acad Sci U S A. 1991 Apr 15;88(8):3329-33. doi: 10.1073/pnas.88.8.3329.

Abstract

Human hemoglobin A has been crosslinked by diisothiocyanatobenzenesulfonate to give a limited number of products in a yield of approximately 70%. The predominant product was crosslinked between subunits within a tetramer and had a Mr of 64,000; no higher Mr species were formed. This product had one crosslink per tetramer located between the NH2 termini of its alpha chains, as established by HPLC analysis, amino acid analysis, Edman degradation, and mass spectrometry. This crosslinked derivative had a slightly increased oxygen affinity [P50 = 9 mmHg (1 mmHg = 133 Pa); P50 for unmodified hemoglobin = 11 mmHg], and the retention time of this derivative in the circulation of rats was 2.9 and 3.3 hr at two hemoglobin concentrations (7 g/dl and 14 g/dl, respectively). The half-life of an uncrosslinked carboxymethylated derivative, which has a low oxygen affinity (P50 = 28 mmHg), was 0.6 and 0.7 hr under the same conditions. Therefore, prolongation of the plasma-retention time of infused hemoglobin is dependent on the crosslinking of the tetramer but independent of the oxygen affinity of the derivative.

摘要

人血红蛋白A已被二异硫氰酸苯磺酸盐交联,以约70%的产率得到数量有限的产物。主要产物是四聚体内亚基之间交联的,相对分子质量为64,000;未形成更高相对分子质量的物种。通过高效液相色谱分析、氨基酸分析、埃德曼降解和质谱分析确定,该产物每个四聚体在其α链的NH2末端之间有一个交联。这种交联衍生物的氧亲和力略有增加[P50 = 9 mmHg(1 mmHg = 133 Pa);未修饰血红蛋白的P50 = 11 mmHg],在两种血红蛋白浓度(分别为7 g/dl和14 g/dl)下,该衍生物在大鼠循环中的保留时间分别为2.9小时和3.3小时。一种氧亲和力低(P50 = 28 mmHg)的未交联羧甲基化衍生物在相同条件下的半衰期为0.6小时和0.7小时。因此,输注血红蛋白的血浆保留时间延长取决于四聚体的交联,但与衍生物的氧亲和力无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d12/51440/68f352405665/pnas01058-0373-a.jpg

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