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不同浓度分子印迹聚合物暴露下的麦角新碱对牛外侧隐静脉收缩反应的影响

Contractile Response of Bovine Lateral Saphenous Vein to Ergotamine Tartrate Exposed to Different Concentrations of Molecularly Imprinted Polymer.

机构信息

Department of Animal and Food Sciences, University of Kentucky, Lexington, KY 40546, USA.

Center for Animal Nutrigenomics & Applied Animal Nutrition, Alltech Inc. 3031 Catnip Hill Road, Nicholasville, KY 40356, USA.

出版信息

Toxins (Basel). 2018 Jan 30;10(2):58. doi: 10.3390/toxins10020058.

Abstract

Ergot alkaloids, in their active isomeric form, affect animal health and performance, and adsorbents are used to mitigate toxicities by reducing bioavailability. Adsorbents with high specificity (molecularly imprinted polymers: MIP) adsorb ergot alkaloids in vitro, but require evaluation for biological implications. Using ex vivo myography, synthetic polymers were evaluated for effects on the bioactivity of ergotamine tartrate (ETA). Polymers were first evaluated using isotherms. Lateral saphenous veins were collected from 17 steers for four independent studies: dose response of ETA, adsorbent dose response, validation of pre-myograph incubation conditions and MIP/ non-molecularly imprinted polymer (NIP) comparison. Norepinephrine normalized percent contractile response to increasing ETA exhibited a sigmoidal dose response (max: 88.47 and log of the effective molar concentration (EC) (-log [ETA]) of 6.66 ± 0.17 M). Although sample preparation time affected contractile response ( < 0.001), pre-myograph incubation temperature (39 vs. 21 °C, 1 h) had no effect ( > 0.05). Isothermal adsorption showed a maximum adsorption of 3.27E-008 moles·mg and affinity between 0.51 and 0.57 mg (²: 0.83-0.92) for both polymers, with no significant difference between polymers ( > 0.05). No significant differences in maximum inhibitory ( = 0.96) and IC responses ( = 0.163) between MIP and NIP were noticed. Normalized percent contraction could be predicted from the in vitro adsorption data (² = 0.87, < 0.01), for both polymers. These studies indicate that synthetic polymers are potentially effective adsorbents to mitigate ergot toxicity caused by ergot alkaloids, with little evidence of significant differences between MIP and NIP in aqueous media.

摘要

麦角生物碱,以其活性异构形式,影响动物健康和性能,而吸附剂则用于通过降低生物利用度来减轻毒性。具有高特异性的吸附剂(分子印迹聚合物:MIP)在体外吸附麦角生物碱,但需要评估其生物学意义。本研究使用离体肌描记术评估合成聚合物对麦角酸钩酸盐(ETA)生物活性的影响。首先使用等温线对聚合物进行评估。从 17 头公牛中采集了外侧隐静脉,进行了四项独立研究:ETA 的剂量反应、吸附剂剂量反应、预肌描记孵育条件的验证以及 MIP/非分子印迹聚合物(NIP)的比较。去甲肾上腺素归一化的收缩反应百分比随 ETA 浓度的增加呈 S 型剂量反应(最大:88.47,有效摩尔浓度(EC)的对数(-log [ETA])为 6.66 ± 0.17 M)。尽管样品制备时间影响收缩反应( < 0.001),但预肌描记孵育温度(39 与 21°C,1 h)没有影响( > 0.05)。等温吸附表明,两种聚合物的最大吸附量为 3.27E-008 摩尔·毫克,亲和力在 0.51 和 0.57 毫克之间(²:0.83-0.92),聚合物之间无显著差异( > 0.05)。MIP 和 NIP 之间的最大抑制( = 0.96)和 IC 反应( = 0.163)无显著差异。归一化收缩百分比可以从体外吸附数据中预测(² = 0.87, < 0.01),两种聚合物均如此。这些研究表明,合成聚合物是一种潜在有效的吸附剂,可减轻麦角生物碱引起的麦角毒性,在水介质中,MIP 和 NIP 之间几乎没有明显差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d363/5848159/c1b4c3666be8/toxins-10-00058-g001.jpg

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