Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans

Brinke M, Heininger P, Traunspurger W (2013)
Ecotoxicology 22(1): 148-155.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Brinke, M.; Heininger, P.; Traunspurger, WalterUniBi
Erscheinungsjahr
2013
Zeitschriftentitel
Ecotoxicology
Band
22
Ausgabe
1
Seite(n)
148-155
ISSN
0963-9292
eISSN
1573-3017
Page URI
https://pub.uni-bielefeld.de/record/2533793

Zitieren

Brinke M, Heininger P, Traunspurger W. Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans. Ecotoxicology. 2013;22(1):148-155.
Brinke, M., Heininger, P., & Traunspurger, W. (2013). Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans. Ecotoxicology, 22(1), 148-155. doi:10.1007/s10646-012-1011-3
Brinke, M., Heininger, P., and Traunspurger, Walter. 2013. “Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans”. Ecotoxicology 22 (1): 148-155.
Brinke, M., Heininger, P., and Traunspurger, W. (2013). Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans. Ecotoxicology 22, 148-155.
Brinke, M., Heininger, P., & Traunspurger, W., 2013. Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans. Ecotoxicology, 22(1), p 148-155.
M. Brinke, P. Heininger, and W. Traunspurger, “Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans”, Ecotoxicology, vol. 22, 2013, pp. 148-155.
Brinke, M., Heininger, P., Traunspurger, W.: Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans. Ecotoxicology. 22, 148-155 (2013).
Brinke, M., Heininger, P., and Traunspurger, Walter. “Effects of a bioassay-derived ivermectin lowest observed effect concentration on life-cycle traits of the nematode Caenorhabditis elegans”. Ecotoxicology 22.1 (2013): 148-155.

6 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Structural model, functional modulation by ivermectin and tissue localization of Haemonchus contortus P-glycoprotein-13.
David M, Lebrun C, Duguet T, Talmont F, Beech R, Orlowski S, André F, Prichard RK, Lespine A., Int J Parasitol Drugs Drug Resist 8(1), 2018
PMID: 29571165
Antioxidant enzymes and their role in phoxim and carbaryl stress in Caenorhabditis elegans.
Han Y, Song S, Wu H, Zhang J, Ma E., Pestic Biochem Physiol 138(), 2017
PMID: 28456303
ace-3 plays an important role in phoxim resistance in Caenorhabditis elegans.
Han Y, Song S, Guo Y, Zhang J, Ma E., Ecotoxicology 25(4), 2016
PMID: 26947509
Effects of Ag nanomaterials (NM300K) and Ag salt (AgNO3) can be discriminated in a full life cycle long term test with Enchytraeus crypticus.
Bicho RC, Ribeiro T, Rodrigues NP, Scott-Fordsmand JJ, Amorim MJB., J Hazard Mater 318(), 2016
PMID: 27474850
Experimental studies with nematodes in ecotoxicology: an overview.
Hägerbäumer A, Höss S, Heininger P, Traunspurger W., J Nematol 47(1), 2015
PMID: 25861113

45 References

Daten bereitgestellt von Europe PubMed Central.


OA, Funct Ecol 19(), 2005
Physiological modes of action of toxic chemicals in the nematode Acrobeloides nanus.
Alvarez OA, Jager T, Redondo EM, Kammenga JE., Environ. Toxicol. Chem. 25(12), 2006
PMID: 17220093
A comparison of the effects of ivermectin and moxidectin on the nematode Caenorhabditis elegans.
Ardelli BF, Stitt LE, Tompkins JB, Prichard RK., Vet. Parasitol. 165(1-2), 2009
PMID: 19631471

U, Fundam Appl Nematol 21(), 1998
Nematode community structure as a bioindicator in environmental monitoring.
Bongers T, Ferris H., Trends Ecol. Evol. (Amst.) 14(6), 1999
PMID: 10354624
The genetics of Caenorhabditis elegans.
Brenner S., Genetics 77(1), 1974
PMID: 4366476
Assessing effects of the pharmaceutical ivermectin on meiobenthic communities using freshwater microcosms.
Brinke M, Hoss S, Fink G, Ternes TA, Heininger P, Traunspurger W., Aquat. Toxicol. 99(2), 2010
PMID: 20451263
A semi-fluid gellan gum medium improves nematode toxicity testing.
Brinke M, Heininger P, Traunspurger W., Ecotoxicol. Environ. Saf. 74(7), 2011
PMID: 21784524

P, Environ Toxicol Chem 16(), 1997
Ivermectin: a potent new antiparasitic agent.
Campbell WC, Fisher MH, Stapley EO, Albers-Schonberg G, Jacob TA., Science 221(4613), 1983
PMID: 6308762

B, 1994
Effects of sublethal abiotic stressors on population growth and genetic diversity of Pellioditis marina (Nematoda) from the Westerschelde estuary.
Derycke S, Hendrickx F, Backeljau T, D'Hondt S, Camphijn L, Vincx M, Moens T., Aquat. Toxicol. 82(2), 2007
PMID: 17350695
Actions of dihydroavermectin B1a on insect muscle.
Duce IR, Scott RH., Br. J. Pharmacol. 85(2), 1985
PMID: 2411323

CA, Rev Environ Contam Toxicol 171(), 2001

S, Water Air Soil Pollut 90(), 1996

VE, Environ Toxicol Chem 18(), 1999
Are current species extrapolation models a good basis for ecological risk assessment?
Forbes VE, Calow P, Sibly RM., Environ. Toxicol. Chem. 20(2), 2001
PMID: 11351446
The extrapolation problem and how population modeling can help.
Forbes VE, Calow P, Sibly RM., Environ. Toxicol. Chem. 27(10), 2008
PMID: 19108041
Environmentally sensitive life-cycle traits have low elasticity: implications for theory and practice.
Forbes VE, Olsen M, Palmqvist A, Calow P., Ecol Appl 20(5), 2010
PMID: 20666260
Haemonchus contortus: ivermectin-induced paralysis of the pharynx.
Geary TG, Sims SM, Thomas EM, Vanover L, Davis JP, Winterrowd CA, Klein RD, Ho NF, Thompson DP., Exp. Parasitol. 77(1), 1993
PMID: 8344410

AUTHOR UNKNOWN, 0
Extrapolating toxic effects on individuals to the population level: the role of dynamic energy budgets.
Jager T, Klok C., Philos. Trans. R. Soc. Lond., B, Biol. Sci. 365(1557), 2010
PMID: 20921051

JE, Environ Toxicol Chem 15(), 1996

JE, Funct Ecol 10(), 1996

JE, Ecol Appl 7(), 1997
Development of an analytical method to determine avermectins in water, sediments and soils using liquid chromatography-tandem mass spectrometry.
Krogh KA, Bjorklund E, Loeffler D, Fink G, Halling-Sorensen B, Ternes TA., J Chromatogr A 1211(1-2), 2008
PMID: 18929364
Environmental risk assessment of ivermectin: A case study.
Liebig M, Fernandez AA, Blubaum-Gronau E, Boxall A, Brinke M, Carbonell G, Egeler P, Fenner K, Fernandez C, Fink G, Garric J, Halling-Sorensen B, Knacker T, Krogh KA, Kuster A, Loffler D, Cots MA, Pope L, Prasse C, Rombke J, Ronnefahrt I, Schneider MK, Schweitzer N, Tarazona JV, Ternes TA, Traunspurger W, Wehrhan A, Duis K., Integr Environ Assess Manag 6 Suppl(), 2010
PMID: 20821718
Effects of barium and cadmium on the population development of the marine nematode Rhabditis (Pellioditis) marina.
Lira VF, Santos GA, Derycke S, Larrazabal ME, Fonseca-Genevois VG, Moens T., Mar. Environ. Res. 72(4), 2011
PMID: 21855994

JS, Ecology 67(), 1986
Life cycle and population growth rate of Caenorhabditis elegans studied by a new method.
Muschiol D, Schroeder F, Traunspurger W., BMC Ecol. 9(), 2009
PMID: 19445697
Ivermectin: 25 years and still going strong.
Omura S., Int. J. Antimicrob. Agents 31(2), 2007
PMID: 18037274
Environmental fate of the anthelmintic ivermectin in an aerobic sediment/water system.
Prasse C, Loffler D, Ternes TA., Chemosphere 77(10), 2009
PMID: 19846198

RM, 1996

W, 2006
The use of cohorts and populations in chronic toxicity studies with Daphnia magna: a cadmium example.
van Leeuwen CJ, Luttmer WJ, Griffioen PS., Ecotoxicol. Environ. Saf. 9(1), 1985
PMID: 3987588

G, Nematologica 29(), 1983

G, Mar Pollut Bull 17(), 1986

WK, Environ Toxicol Chem 16(), 1997
Feeding habits in soil nematode families and genera-an outline for soil ecologists.
Yeates GW, Bongers T, De Goede RG, Freckman DW, Georgieva SS., J. Nematol. 25(3), 1993
PMID: 19279775

GW, Acta Agric Scand A: Anim Sci 53(), 2003

GW, Acta Agric Scand B: Soil Plant 57(), 2007
Impact on soil fauna of sheep faeces containing a range of parasite control agents
Yeates GW, Skipp RA, Gray RAJ, Chen LY, Waghorn TS., Agric., Ecosyst. Environ., Appl. Soil Ecol. 35(2), 2007
PMID: IND43864681
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Web of Science

Dieser Datensatz im Web of Science®
Quellen

PMID: 23161368
PubMed | Europe PMC

Suchen in

Google Scholar