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用于药物研究的冷冻保存猪主动脉的功能评估。

Functional assessment of cryopreserved pig aortas for pharmaceutical research.

作者信息

Rendal Vázquez Maria Esther, Rodríguez Cabarcos M, Martinez Santos M V, Fernández Mallo R O, Sánchez Ibáñez J, Segura Iglesias R, Matheu Capó G, Filgueira Fernández P, Pértega Díaz S, Bermúdez González T, Andión Núñez C

机构信息

Cryobiology Unit, Complejo Hospitalario Juan Canalejo, La Coruña, Spain.

出版信息

Cell Tissue Bank. 2004;5(2):111-8. doi: 10.1023/B:CATB.0000034086.89929.56.

Abstract

Several in vitro studies have demonstrated diminished post-thaw functional activity. Therefore, the aim of this study was to investigate the consequences of thawing and storage method used on the post-thaw functional activity of cryopreserved pig aortas with the aim of adjusting the freezing and thawing protocol so that the vascular segments are preserved in the best possible state, maintaining structure and functionality so that they can later be transplanted with success. In vitro responses of frozen, thawed pig aortas were used to investigate the functional activity after thawing at 15 degrees C and 100 degrees C/min and after storage in gas or liquid phase of liquid nitrogen. Cryopreservation was performed in RPMI 1640 medium + 10% dimethylsulfoxide and the rate of cooling was -1 degrees C/min, until -150 degrees C was reached. After thawing the maximal contractile responses to all the contracting agonists tested (KCl, noradrenaline) were in the ranges of 13-27% compared with the responses in unfrozen pig aortas. Contractile responses were slightly better when thawing was performed at 15 degrees C/min compared with 100 degrees C/min. The endothelium independent relaxant responses to sodium nitroprusside were reduced ( P < 0.05). Cryostorage of pig arteries also resulted in a loss of the endothelium-dependent relaxant response to acetylcholine. The cryopreservation method used provided a limited preservation of pig aorta contractibility, a reduction of the endothelium independent relaxant responses, and no apparent preservation of the endothelium-dependent relaxation. It is possible that further refinements of the cryopreservation protocol might allow better post-thaw functional recovery of pig aortas.

摘要

多项体外研究已证明冻融后功能活性降低。因此,本研究的目的是调查解冻和储存方法对冷冻保存的猪主动脉冻融后功能活性的影响,旨在调整冷冻和解冻方案,以使血管段尽可能处于最佳状态,维持结构和功能,以便随后能够成功进行移植。使用冷冻、解冻后的猪主动脉的体外反应来研究在15℃和100℃/分钟解冻后以及在液氮气相或液相中储存后的功能活性。在RPMI 1640培养基+10%二甲基亚砜中进行冷冻保存,降温速率为-1℃/分钟,直至达到-150℃。解冻后,与未冷冻的猪主动脉相比,对所有测试的收缩激动剂(氯化钾、去甲肾上腺素)的最大收缩反应在13%-27%范围内。与100℃/分钟解冻相比,以15℃/分钟解冻时收缩反应略好。对硝普钠的内皮依赖性舒张反应降低(P<0.05)。猪动脉的冷冻保存还导致对乙酰胆碱的内皮依赖性舒张反应丧失。所采用的冷冻保存方法对猪主动脉收缩性的保存有限,内皮依赖性舒张反应降低,且对内皮依赖性舒张无明显保存作用。进一步优化冷冻保存方案可能会使猪主动脉解冻后的功能恢复更好。

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