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Biogerontology|April 20, 2011
Hormetins, antioxidants and prooxidants: defining quercetin-, caffeic acid- and rosmarinic acid-mediated life extension in C. elegansKerstin Pietsch, Nadine Saul, Shumon Chakrabarti, et al.Environmental Science and Pollution Research International|July 24, 2014
Contrasting cellular stress responses of Baikalian and Palearctic amphipods upon exposure to humic substances: environmental implicationsMarina V Protopopova, Vasiliy V Pavlichenko, Ralph Menzel, et al.Environmental Science and Pollution Research International|July 24, 2009
Different natural organic matter isolates cause similar stress response patterns in the freshwater amphipod, Gammarus pulexDarya S Bedulina, Maxim A Timofeyev, Martin Zimmer, et al.Journal of Molecular Biology|May 15, 2007
Cytochrome P450s and short-chain dehydrogenases mediate the toxicogenomic response of PCB52 in the nematode Caenorhabditis elegansRalph Menzel, Hui Ling Yeo, Stefanie Rienau, et al.Frontiers in Genetics|April 12, 2012
Meta-Analysis of Global Transcriptomics Suggests that Conserved Genetic Pathways are Responsible for Quercetin and Tannic Acid Mediated Longevity in C. elegansKerstin Pietsch, Nadine Saul, Suresh C Swain, et al.Chemosphere|November 3, 2005
Environmental signals: synthetic humic substances act as xeno-estrogen and affect the thyroid system of Xenopus laevisIlka Lutz, Zhang Jie, Robert Opitz, et al.Chemosphere|February 4, 2012
Does quinone or phenol enrichment of humic substances alter the primary compound from a non-algicidal to an algicidal preparation?Hanno Bährs, Ralph Menzel, Georg Kubsch, et al.Science (New York, N.Y.)|July 2, 2013
Cytochrome P450 drives a HIF-regulated behavioral response to reoxygenation by C. elegansDengke K Ma, Michael Rothe, Shu Zheng, et al.Iscience|April 6, 2023
Mitochondria hormesis delays aging and associated diseases in Caenorhabditis elegans impacting on key ferroptosis playersAlfonso Schiavi, Eva Salveridou, Vanessa Brinkmann, et al.BMC Genomics|August 14, 2016
Transcriptome analysis in oak uncovers a strong impact of endogenous rhythmic growth on the interaction with plant-parasitic nematodesHazel R Maboreke, Lasse Feldhahn, Markus Bönn, et al.Pageof 6