Department of Pharmacy, University of Naples Federico II, Via Mezzocannone 16, 80134, Naples, Italy.
Centro Interuniversitario di Ricerca sui Peptidi Bioattivi, University of Naples 'Federico II', Via Mezzocannone 16, 80134, Naples, Italy; Institute of Biostructures and Bioimaging (IBB), CNR, via Mezzocannone 16, 80134, Naples, Italy.
Aquat Toxicol. 2018 May;198:158-164. doi: 10.1016/j.aquatox.2018.03.001. Epub 2018 Mar 8.
This study evaluated the effect of QDs functionalized with the antimicrobial peptide indolicidin on oxidative stress and metabolomics profiles of Daphnia magna across three generations (F0, F1, and F2). Exposing D. magna to sub-lethal concentrations of the complex QDs-indolicidin, a normal survival of daphnids was observed from F0 to F2, but a delay of first brood, fewer broods per female, a decrease of length of about 50% compared to control. In addition, QDs-indolicidin induced a significantly higher production of reactive oxygen species (ROS) gradually in each generation and an impairment of enzymes response to oxidative stress such as superoxide dismutase (SOD), catalase (CAT) and glutathione transferase (GST). Effects were confirmed by metabolomics profiles that pointed out a gradual decrease of metabolomics content over the three generations and a toxic effect of QDs-indolicidin likely related to the higher accumulation of ROS and decreased antioxidant capacity in F1 and F2 generations. Results highlighted the capability of metabolomics to reveal an early metabolic response to stress induced by environmental QDs-indolicidin complex.
本研究评估了经抗菌肽吲哚杀菌素功能化的量子点对大型溞(Daphnia magna)三代(F0、F1 和 F2)的氧化应激和代谢组学特征的影响。暴露于亚致死浓度的复杂量子点-吲哚杀菌素复合物中,F0 到 F2 期间观察到溞类的正常存活,但第一窝出现延迟,每只雌性的窝数减少,长度比对照组减少约 50%。此外,量子点-吲哚杀菌素在每一代中逐渐诱导更高水平的活性氧(ROS)产生,并损害对氧化应激的酶反应,如超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽转移酶(GST)。代谢组学特征证实了这些影响,表明三代中代谢组学含量逐渐下降,量子点-吲哚杀菌素的毒性作用可能与 ROS 更高的积累和 F1 和 F2 代抗氧化能力下降有关。研究结果突出了代谢组学揭示环境量子点-吲哚杀菌素复合物诱导的应激早期代谢反应的能力。