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Laboratory Estimation of Net Trophic Transfer Efficiencies of PCB Congeners to Lake Trout Salvelinus namaycush from Its Prey
Published on: August 29, 2014
Diet-to-egg transfer kinetics of 28 polychlorinated biphenyl (PCB) congeners in laying hens: implications for
Thanh-Thien Tran-Lam1,2, Phuong Thi Pham1, Quang Huu Tran1
1Institute of Chemistry, Vietnam Academy of Science and Technology, Hanoi, Vietnam.
Abstract:
Polychlorinated biphenyls (PCBs) can enter the food chain via contaminated poultry feed and accumulate in eggs. Feed-to-egg transfer and elimination kinetics were quantified for 28 PCB congeners in laying hens fed a control diet or PCB-spiked diets for 21 days (mean dietary concentrations: 1.3 and 4.8 ng g-1 dw), followed by depuration to Day 60 under contrasting low and high exposure scenarios. PCBs were quantified in egg yolk and hen tissues by GC-MS/MS. By Day 21, ΣPCBs in egg yolk reached 124.6 ng g-1 lipid (low) and 487.5 ng g-1 lipid (high). Congener-level elimination followed first-order kinetics; depuration rate constants were 0.026-0.089 d-1 (low) and 0.041-0.110 d-1 (high), corresponding to half-lives of 7.8-26.7 and 6.3-16.9 days. To account for yolk-formation delay and a post-cessation peak, sum-level depuration was referenced to Day 24 (C24). For PCB sums (ΣPCBs and ΣICES-6), mono-exponential and biphasic models were evaluated by Akaike's information criterion (AIC) and favoured the biphasic form (ΔAIC = 2.7-8.3; wbi = 0.79-0.98), with a breakpoint at Day 45 and distinct α/β phases (t1/2,α = 11-14 days; t1/2,β = 16-24 days). Late-stage persistence was summarised as a residual fraction (RF = C60/C24), which was lower at high exposure than low exposure for ΣICES-6 (0.173 vs 0.238). These results support evidence-based withdrawal-period setting against the EU maximum level for ΣICES-6 in eggs (40 ng g-1 fat).

