Baruah Kartik, Norouzitallab Parisa, Phong Ho Phuong Pham Duy, Smagghe Guy, Bossier Peter
Laboratory of Aquaculture & Artemia Reference Center, Department of Animal Production, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000, Ghent, Belgium.
Laboratory of Immunology and Animal Biotechnology, Department of Animal Production, Faculty of Bioscience EngineeringGhent University, Coupure Links 653, 9000, Ghent, Belgium.
Cell Stress Chaperones. 2017 May;22(3):377-387. doi: 10.1007/s12192-017-0775-z. Epub 2017 Mar 16.
Induction of HSP72 is a natural response of stressed organisms that protects against many insults including bacterial diseases in farm (aquatic) animals. It would therefore be of great health benefit to search for natural compounds that are clinically safe yet able to induce HSP72 in animals. The phenolic compound carvacrol, an approved food component, had been shown in in vitro study to act as a co-inducer of HSP72, enhancing HSP72 production only in combination with a bona fide stress compared to the compound alone. However, in vitro model systems do not completely represent an in vivo physiology. Here, using the well-established gnotobiotic Artemia model system, we determined whether carvacrol could induce HSP72 in vivo, whether this putative effect could generate resistance in Artemia against biotic/abiotic stress and also unraveled the mechanism behind the possible HSP72-inducing effect of carvacrol. The gnotobiotic system is crucial for such studies because it avoids the interference of any extraneous factors on host-compound interaction. Here, carvacrol was shown to be a potent HSP72 inducer. Induction of HSP72 was associated with the generation of resistance in Artemia larvae against subsequent lethal heat stress or pathogenic Vibrio harveyi. Our results also provided new insight on the mode of HSP72 inducing action of carvacrol, in which the initial generation of reactive molecule HO by the compound plays a key role. Overall results add new information about the bioactivity of carvacrol and advance our knowledge of this compound as potential prophylactic agent for controlling Vibrio infection in aquaculture animals.
热休克蛋白72(HSP72)的诱导是应激生物体的一种自然反应,可抵御包括养殖(水产)动物细菌性疾病在内的多种侵害。因此,寻找临床安全且能在动物体内诱导HSP72的天然化合物将对健康大有裨益。酚类化合物香芹酚是一种已获批准的食品成分,体外研究表明它可作为HSP72的共诱导剂,与单独使用该化合物相比,只有在与真正的应激因素联合使用时才能增强HSP72的产生。然而,体外模型系统并不能完全代表体内生理学。在此,我们使用成熟的无菌卤虫模型系统,确定香芹酚是否能在体内诱导HSP72,这种假定的效应是否能使卤虫产生对生物/非生物应激的抗性,并且还揭示了香芹酚可能的HSP72诱导效应背后的机制。无菌系统对于此类研究至关重要,因为它避免了任何外部因素对宿主 - 化合物相互作用的干扰。在此,香芹酚被证明是一种有效的HSP72诱导剂。HSP72的诱导与卤虫幼虫对随后的致死性热应激或致病性哈维氏弧菌产生抗性有关。我们的结果还为香芹酚诱导HSP72作用的模式提供了新的见解,其中该化合物最初产生的活性分子HO起关键作用。总体结果增加了有关香芹酚生物活性的新信息,并推进了我们对该化合物作为控制水产养殖动物弧菌感染的潜在预防剂的认识。