PON1 enzyme activity assays for serum and heparinized plasma in horses and stability evaluation of the enzyme activity over different freeze-thaw cycles and mimic transportation

IF 2.2 3区 农林科学 Q1 VETERINARY SCIENCES
Matilde Vernaccini , Valentina Meucci , Francesca Bindi , Micaela Sgorbini , Carlo Pretti , Gianfranca Monni , Lucia de Marchi
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引用次数: 0

Abstract

Consistent information and standardization procedures regarding the time of storage for frozen samples and the effects of storage time on enzyme activity are still missing in the literature. Thus, we evaluated the effects of different storage temperatures (−20 °C and − 80 °C), three repetitive freeze/thaw cycles, and 24-h mimic transportation on the activities of PON1 (paraoxonase and arylesterase), enzymes involved in the protection and detoxification processes of reactive molecules. PON1 enzymes' activity was validated on serum and heparinized plasma in horses. The results revealed that conditions and time of storage of blood samples for PON1 analyses altered the activities of both enzymes in both sample types, evidencing that these conditions can lead to protein degradation or general alteration. Specifically, paraoxonase and arylesterase activities significantly decreased among storage temperatures, with major effects detected at −20 °C. The repeated freeze/thaw cycles at −20 °C and 24-h mimic transport conditions also generated an expected degradation of the arylesterase in both serum and heparinized plasma while freeze/thaw cycles at −80 °C caused an increase of both arylesterase and paraoxonase activities on both sample types. In general, similar enzyme responses were detected between serum and heparinized plasma.

马血清和肝素化血浆中 PON1 酶活性测定,以及不同冻融循环和模拟运输过程中酶活性的稳定性评估。
关于冷冻样本的储存时间以及储存时间对酶活性的影响,文献中仍缺乏一致的信息和标准化程序。因此,我们评估了不同储存温度(-20 °C和-80 °C)、三次重复冻融循环和24小时模拟运输对参与活性分子保护和解毒过程的酶--PON1(副氧自由基酶和芳基酯酶)活性的影响。在马的血清和肝素化血浆中验证了 PON1 酶的活性。结果显示,用于 PON1 分析的血液样本的储存条件和时间会改变这两种样本中两种酶的活性,从而证明这些条件会导致蛋白质降解或总体改变。具体来说,副氧杂蒽酮酶和芳基酯酶的活性在不同的储存温度下会显著降低,在-20 °C时影响最大。在-20 °C和24小时模拟运输条件下反复冻融循环也会导致血清和肝素化血浆中的芳香族酯酶发生预期的降解,而在-80 °C下冻融循环则会导致两种样本中的芳香族酯酶和副氧杂蒽酮酶活性增加。总体而言,血清和肝素化血浆中的酶反应相似。
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来源期刊
Research in veterinary science
Research in veterinary science 农林科学-兽医学
CiteScore
4.40
自引率
4.20%
发文量
312
审稿时长
75 days
期刊介绍: Research in Veterinary Science is an International multi-disciplinary journal publishing original articles, reviews and short communications of a high scientific and ethical standard in all aspects of veterinary and biomedical research. The primary aim of the journal is to inform veterinary and biomedical scientists of significant advances in veterinary and related research through prompt publication and dissemination. Secondly, the journal aims to provide a general multi-disciplinary forum for discussion and debate of news and issues concerning veterinary science. Thirdly, to promote the dissemination of knowledge to a broader range of professions, globally. High quality papers on all species of animals are considered, particularly those considered to be of high scientific importance and originality, and with interdisciplinary interest. The journal encourages papers providing results that have clear implications for understanding disease pathogenesis and for the development of control measures or treatments, as well as those dealing with a comparative biomedical approach, which represents a substantial improvement to animal and human health. Studies without a robust scientific hypothesis or that are preliminary, or of weak originality, as well as negative results, are not appropriate for the journal. Furthermore, observational approaches, case studies or field reports lacking an advancement in general knowledge do not fall within the scope of the journal.
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