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冷冻保存和机械刺激对马自体浓缩血浆(ACP®)的影响。

Influence of cryopreservation and mechanical stimulation on equine Autologous Conditioned Plasma (ACP®).

作者信息

Mageed M, Ionita C, Kissich C, Brehm W, Winter K, Ionita J-C

机构信息

Jean-Claude Ionita, Chirurgische Tierklinik der Universität Leipzig, An den Tierkliniken 21, 04103 Leipzig, Germany, Email:

出版信息

Tierarztl Prax Ausg G Grosstiere Nutztiere. 2015;43(2):97-104. doi: 10.15653/TPG-130904. Epub 2015 Mar 18.

Abstract

OBJECTIVE

To determine the influence of cryopreservation at two different temperatures on platelet concentration, growth factor (GF) levels and platelet activation parameters in equine ACP®; moreover, to determine if adding mechanical ACP® stimulation to freeze-thaw activation amplifies GF release from platelets.

MATERIAL AND METHODS

Firstly, blood from five horses was used to prepare ACP®. Platelet, platelet derived growth factor BB (PDGF-BB) and transforming growth factor β1 (TGF-β1) concentrations as well as mean platelet volume (MPV) and mean platelet component (MPC) were determined in fresh and corresponding ACP® samples after 2 months cryopreservation at -20 °C and -80 °C, respectively. Secondly, ACP® was prepared from blood of nine horses. Half of ACP® was activated using one freeze-thaw-cycle at -20 °C, whereas the rest was first vortexed. Their PDGF-BB and TGF-β1 concentrations were subsequently determined.

RESULTS

Platelet concentration significantly decreased after -80 °C cryopreservation. PDGF-BB level augmented significantly after both storage methods, whereas TGF-β1 concentration was not significantly altered. MPV significantly increased after -20 °C cryopreservation. Both storage regimens induced a significant MPC decrease. No significant differences in GF concentrations between the vortexed and non-vortexed samples were detected.

DISCUSSION

Both cryopreservation methods induced platelet activation, but storage at -80 °C apparently harmed the platelets without generating higher GF release than -20 °C. The mechanical stimulation process could not enhance GF release in subsequently frozen-thawed ACP®.

CONCLUSION AND CLINICAL RELEVANCE

Storage of ACP® at -20 °C could be useful in equine practice, but, before this procedure can be recommended, further qualitative tests are needed. The mechanical stimulation technique should be adjusted in order to increase platelet activation.

摘要

目的

确定两种不同温度下的冷冻保存对马用ACP®中血小板浓度、生长因子(GF)水平及血小板活化参数的影响;此外,确定在冻融激活中加入机械性ACP®刺激是否会增强血小板释放GF。

材料与方法

首先,采集五匹马的血液制备ACP®。分别在新鲜的以及在-20℃和-80℃冷冻保存2个月后的相应ACP®样本中测定血小板、血小板衍生生长因子BB(PDGF-BB)和转化生长因子β1(TGF-β1)的浓度,以及平均血小板体积(MPV)和平均血小板成分(MPC)。其次,采集九匹马的血液制备ACP®。一半的ACP®在-20℃下通过一个冻融循环进行激活,而其余的先进行涡旋处理。随后测定它们的PDGF-BB和TGF-β1浓度。

结果

-80℃冷冻保存后血小板浓度显著降低。两种保存方法后PDGF-BB水平均显著升高,而TGF-β1浓度无显著变化。-20℃冷冻保存后MPV显著增加。两种保存方案均导致MPC显著降低。在涡旋处理和未涡旋处理的样本之间未检测到GF浓度的显著差异。

讨论

两种冷冻保存方法均诱导血小板活化,但在-80℃保存明显损害了血小板,且未产生比-20℃更高的GF释放。机械刺激过程不能增强随后冻融的ACP®中GF的释放。

结论及临床意义

在马的实践中,将ACP®保存在-20℃可能有用,但在推荐此方法之前,需要进一步的定性测试。应调整机械刺激技术以增加血小板活化。

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