Scinovex
reviewTop 10% cited

Nutritive metal uptake in teleost fish

Journal of Experimental Biology · 2002 · Vol. 206(1) · pp. 11–23
Nicolas R. BuryPaul WalkerChris N. Glover

Abstract

Transition metals are essential for health, forming integral components of proteins involved in all aspects of biological function. However, in excess these metals are potentially toxic, and to maintain metal homeostasis organisms must tightly coordinate metal acquisition and excretion. The diet is the main source for essential metals, but in aquatic organisms an alternative uptake route is available from the water. This review will assess physiological, pharmacological and recent molecular evidence to outline possible uptake pathways in the gills and intestine of teleost fish involved in the acquisition of three of the most abundant transition metals necessary for life; iron, copper, and zinc.

Trace Elements in HealthHeavy Metal Exposure and ToxicityMercury impact and mitigation studiesGillFish <Actinopterygii>ZincBiologyHomeostasisEnvironmental chemistryMetalAquatic ecosystemEcologyChemistry

MeSH terms

AnimalsBiological Transport, ActiveCopperDietFishesGillsHomeostasisIntestinal MucosaIronMetalsModels, BiologicalWaterZinc
Citations
517
FWCI
5.91
field-weighted impact
References
157
Percentile
97%
vs. same field & year
Citations per year
References
The Antioxidant Properties of Zinc
Journal of Nutrition · 2000 · 1,282 citations
The biochemical basis of zinc physiology
Physiological Reviews · 1993 · 2,999 citations
Bafilomycins and concanamycins as inhibitors of V-ATPases and P-ATPases
Journal of Experimental Biology · 1997 · 534 citations
Trace minerals in fish nutrition
Aquaculture · 1997 · 864 citations
Function and Mechanism of Zinc Metalloenzymes
Journal of Nutrition · 2000 · 1,117 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.