Andrea Cavallero , Giorgia Donadel , Paola Puccini , Pier Giovanni Gervasi , Khatia Gabisonia , Vincenzo Longo , Morena Gabriele
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Inhibition studies used to assess the CESs' involvement in the hydrolysis of pNPA, 4-MUA, and FD suggested that CESs may be the enzymes primarily involved in the metabolism of ester compounds in the pig lung tissue. 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引用次数: 0
摘要
在过去的二十年中,越来越多的人认识到猪作为研究人类药物代谢的宝贵模型的潜力。本研究旨在研究猪肺组织中尚未发现的羧基酯酶(CES)的表达、酶活性、抑制敏感性和细胞定位。我们的结果表明,在猪肺组织(N = 8)的细胞质和微粒体组分中,CESs 的水解活性遵循 Michaelis-Menten 动力学,对测试底物(即 4-硝基苯乙酸酯(pNPA)、4-甲基伞形酮乙酸酯(4-MUA)和双乙酸荧光素(FD))的水解率相当。我们还测定了猪肝脏代表性样本中的 CESs 水解活性。研究结果表明,猪肺中两种成分的酶活性水平不一,个体间存在差异。用于评估 CES 参与水解 pNPA、4-MUA 和 FD 的抑制研究表明,CES 可能是猪肺组织中主要参与酯类化合物代谢的酶。总之,这项研究有助于深入了解参与底物水解的 CES 同工酶在猪肺不同细胞组分(细胞质和微粒体)中的分布和多样性。
New insight on porcine carboxylesterases expression and activity in lung tissues
Over the course of the last twenty years, there has been a growing recognition of the pig's potential as a valuable model for studying human drug metabolism. This study aimed to investigate the expression, enzymatic activity, inhibitory susceptibility, and cellular localization of carboxylesterases (CES) in porcine lung tissue not yet explored. Our results showed that CESs hydrolysis activity followed Michaelis-Menten kinetics in both cytosolic and microsomal fractions of porcine lung tissues (N = 8), with comparable hydrolysis rates for tested substrates, namely 4-nitrophenyl acetate (pNPA), 4-methylumbelliferyl acetate (4-MUA), and fluorescein diacetate (FD). We also determined the CESs hydrolysis activity in a representative sample of the porcine liver that, as expected, displayed higher activity than the lung ones. The study demonstrated variable levels of enzyme activities and interindividual variability in both porcine lung fractions. Inhibition studies used to assess the CESs' involvement in the hydrolysis of pNPA, 4-MUA, and FD suggested that CESs may be the enzymes primarily involved in the metabolism of ester compounds in the pig lung tissue. Overall, this study provides insight into the distribution and diversity of CES isoforms involved in substrate hydrolysis across different cellular fractions (cytosol and microsomes) in porcine lungs.
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.