Ocean School, Yantai University, Yantai, PR China.
Research and Development Center for Efficient Utilization of Coastal Bioresources, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai, PR China.
Fish Shellfish Immunol. 2019 Jan;84:434-440. doi: 10.1016/j.fsi.2018.10.022. Epub 2018 Oct 9.
The global abuse and misuse of antibiotics in the treatment and prevention of bacterial infections has resulted in the ubiquitous existence of these drugs in aquatic environments, which causes frequent antimicrobial resistance and pollution in ecosystems. However, the chronic effects of antimicrobial agents on aquatic animal growth and health have not been fully evaluated. In the present study, three typical antibiotics (tetracycline, erythromycin, and norfloxacin) were administered orally to juvenile sea cucumbers Apostichopus japonicus for 45 days, to mimic the long-term use of antibiotics. As a result, tetracycline and erythromycin promoted the growth and digestive activity of lipase, pepsin, and trypsin, but norfloxacin did not show significant prompting effect on digestive activity and even retarded the weight gain of the sea cucumbers. The mortality was higher in antibiotic treated groups between the 2nd and 4th days after challenge with Vibrio splendidus. At the same time, lower immune-related parameters were found in antibiotic feeding juveniles, suggesting that the use of antibiotics might weaken the immune defense system of sea cucumbers. This study revealed that antibiotic administration could facilitate the growth of sea cucumbers to varying degrees yet coupled with high risks of impaired immune function and compromised disease resistance.
全球范围内,抗生素在细菌感染的治疗和预防方面被滥用和误用,导致这些药物在水生环境中无处不在,这造成了生态系统中频繁出现的抗药性和污染。然而,抗生素对水生动物生长和健康的慢性影响尚未得到充分评估。在本研究中,三种典型的抗生素(四环素、红霉素和诺氟沙星)通过口服给药给幼年海参(Apostichopus japonicus)45 天,以模拟抗生素的长期使用。结果表明,四环素和红霉素促进了脂肪酶、胃蛋白酶和胰蛋白酶的生长和消化活性,但诺氟沙星对消化活性没有显著的促进作用,甚至阻碍了海参的体重增加。在受到灿烂弧菌挑战后的第 2 天到第 4 天,抗生素处理组的死亡率更高。同时,在抗生素喂养的幼体中发现了较低的免疫相关参数,这表明抗生素的使用可能会削弱海参的免疫防御系统。本研究表明,抗生素的使用在一定程度上可以促进海参的生长,但同时也伴随着免疫功能受损和疾病抵抗力下降的高风险。