| Literature DB >> 34179171 |
Cuiyv Cao1,2, Yongtao Liu2,3,4, Guodong Zhang1,2, Jing Dong2,4, Ning Xu2,4, Shun Zhou2,4, Yibin Yang2,4, Qiuhong Yang2,4, Xiaohui Ai2,3,4.
Abstract
The aim of this study was to investigate the effect of different water temperatures (19, 25, and 30°C) on tissue residue depletion of tiamulin in Nile tilapia (Oreochromis niloticus) after five consecutive days of oral administration at the dose of 20 mg/kg body weight and to calculate the corresponding elimination half-life (T 1/2) and withdrawal times (WTs). After oral administration at scheduled 11 time points (1, 2, 3, 5, 7, 9, 12, 15, 20, 25, and 30 days), samples of plasma and tissues (muscle plus skin, liver, kidney, and gill) were collected. Tiamulin concentration in samples were determined by liquid chromatography coupled with tandem mass spectrometry (LC-MS/MS). T 1/2 was calculated by the equation: T 1/2 = ln2/k. WT 1.4 software was used to calculate WT. The results showed that tiamulin was widely distributed in all tissue samples with the highest concentration in liver. At three different water temperatures, the T 1/2 were calculated as 2.76, 2.13, and 1.64 days in plasma, 2.71, 1.85, and 1.31 days in muscle plus skin, 2.27, 1.70, and 1.50 days in liver, 2.84, 2.32, and 1.94 day in kidney, and 3.16, 2.42, and 1.74 days in gill, respectively. At 19°C, the order of WT is kidney (11.88 days) > liver (10.41 days) > gill (10.77 days) > plasma (8.83 days) > muscle plus skin (7.14 days). The WT for tiamulin at 25°C was in the following order: kidney (8.40 days) > liver (8.21 days) > gill (8.07 days) > plasma (7.24 days) > muscle plus skin (4.05 days). At 30°C, the WT dropped and shown as follows: gill (6.99 days) > kidney (6.51 days) > liver (6.29 days) > plasma (3.27 days) > muscle plus skin (2.92 days). The present investigations indicated that increasing the temperature from 19 to 30°C shortened T 1/2 and WT of tiamulin in tilapia. To ensure the safety of fish consumption, the longest WT of tissues is suggested for tiamulin in Nile tilapia at the corresponding water temperature; i.e., WTs were 12 days at 19°C, 9 days at 25°C, and 7 days at 30°C, respectively. Overall, we intended to provide a theoretical basis for tissue residue depletion kinetics of tiamulin in fish and improve our understanding of the influence of the temperature on tissue residue depletion kinetics of tiamulin in fish.Entities:
Keywords: LC-MS/MS; Nile tilapia; temperature; tiamulin; tissue residue
Year: 2021 PMID: 34179171 PMCID: PMC8225925 DOI: 10.3389/fvets.2021.679657
Source DB: PubMed Journal: Front Vet Sci ISSN: 2297-1769
Recovery and precision of the method for tiamulin in spiked plasma, muscle plus skin, liver, kidney and gill of Nile tilapia (n = 6).
| Plasma | 50 | 114.06 | 3.45 | 5.28 |
| 100 | 110.48 | 3.31 | 4.28 | |
| 150 | 113.09 | 2.46 | 3.67 | |
| Muscle plus skin | 50 | 102.07 | 2.88 | 4.29 |
| 100 | 98.20 | 3.11 | 5.26 | |
| 150 | 97.23 | 2.64 | 4.29 | |
| Liver | 50 | 96.33 | 3.17 | 4.68 |
| 100 | 109.73 | 3.54 | 5.11 | |
| 150 | 110.64 | 2.59 | 5.12 | |
| Kidney | 50 | 108.23 | 3.65 | 4.18 |
| 100 | 104.51 | 3.11 | 4.25 | |
| 150 | 99.26 | 2.77 | 3.55 | |
| Gill | 50 | 99.65 | 2.72 | 3.68 |
| 100 | 102.56 | 2.49 | 3.89 | |
| 150 | 100.89 | 1.99 | 5.01 | |
The linear range, regression equations, correlation coefficients (r2) and matrix effects of tiamulin in matrix-matched calibration curves.
| Plasma | 0–1,000 | 0.9991 | 90.12 | |
| Muscle plus skin | 0–1,000 | 0.9983 | 95.06 | |
| Liver | 0–1,000 | 0.9972 | 95.06 | |
| Kidney | 0–1,000 | 0.9979 | 91.36 | |
| Gill | 0–1,000 | 0.9966 | 93.10 |
The tiamulin concentrations in plasma and tissues of Nile tilapia after daily oral administration of a single dose of 20 mg/kg for 5 days at 19°C (n = 6).
| 1 | 2247.34 ± 550.08 | 1813.40 ± 140.69 | 26675.64 ± 5727.44 | 7823.07 ± 159.31 | 13263.26 ± 898.29 |
| 2 | 840.33 ± 390.15 | 603.23 ± 162.22 | 5327.68 ± 2732.93 | 1386.45 ± 184.12 | 3528.77 ± 535.39 |
| 3 | 483.60 ± 202.84 | 525.37 ± 123.85 | 4200.06 ± 2898.73 | 540.09 ± 395.61 | 2127.45 ± 438.60 |
| 5 | 97.31 ± 7.29 | 20.41 ± 6.73 | 260.36 ± 114.62 | 230.26 ± 93.04 | 89.05 ± 27.80 |
| 7 | 71.68 ± 33.48 | 6.48 ± 0.35 | 131.47 ± 22.84 | 58.96 ± 25.01 | 74.40 ± 0.00 |
| 9 | 43.38 ± 18.66 | 2.44 ± 0.43 | 58.34 ± 8.02 | 44.48 ± 17.91 | 25.93 ± 2.03 |
| 12 | 6.98 ± 4.81 | 1.42 ± 0.33 | 11.03 ± 4.05 | 15.38 ± 6.65 | 11.98 ± 1.47 |
| 15 | 3.36 ± 0.76 | 1.05 ± 0.11 | 8.13 ± 4.53 | 5.80 ± 0.02 | 12.01 ± 1.04 |
| 20 | 2.23 ± 0.14 | 0.88 ± 0.13 | 5.04 ± 3.30 | 3.40 ± 1.22 | 10.72 ± 1.96 |
| 25 | 2.27 ± 0.80 | 0.69 ± 0.11 | 3.60 ± 2.58 | 3.66 ± 0.54 | 10.25 ± 0.09 |
| 30 | 1.18 ± 0.08 | 0.62 ± 0.19 | 1.70 ± 0.69 | 3.27 ± 1.29 | 9.24 ± 0.15 |
The tiamulin concentrations in plasma and tissues of Nile tilapia after daily oral administration of a single dose of 20 mg/kg for 5 days at 30°C (n = 6).
| 1 | 117.25 ± 5.32 | 97.22 ± 20.03 | 738.50 ± 12.61 | 357.55 ± 58.91 | 330.26 ± 21.59 |
| 2 | 57.90 ± 14.60 | 25.73 ± 7.04 | 303.95 ± 5.60 | 99.53 ± 29.83 | 55.23 ± 8.91 |
| 3 | 45.99 ± 4.83 | 12.00 ± 1.41 | 81.00 ± 23.54 | 71.65 ± 1.60 | 64.00 ± 7.33 |
| 5 | 17.63 ± 7.20 | 2.79 ± 0.29 | 13.23 ± 2.65 | 12.80 ± 6.14 | 15.86 ± 2.37 |
| 7 | 5.28 ± 1.71 | 1.28 ± 0.14 | 21.38 ± 8.75 | 12.38 ± 7.28 | 11.54 ± 1.22 |
| 9 | 2.44 ± 0.86 | 1.42 ± 0.39 | 7.07 ± 2.41 | 8.27 ± 2.53 | 9.54 ± 0.44 |
| 12 | 1.34 ± 0.62 | 0.93 ± 0.19 | 3.50 ± 1.60 | 5.30 ± 1.49 | 9.30 ± 0.26 |
| 15 | 1.26 ± 0.37 | 0.58 ± 0.07 | 5.05 ± 1.55 | 5.53 ± 1.63 | 8.77 ± 0.26 |
| 20 | 0.55 ± 0.01 | 0.70 ± 0.18 | 1.67 ± 0.55 | 4.54 ± 0.65 | 8.85 ± 0.88 |
| 25 | 0.33 ± 0.02 | 0.54 ± 0.12 | 1.19 ± 0.15 | 3.49 ± 0.50 | 8.71 ± 0.16 |
| 30 | 0.15 ± 0.01 | 0.70 ± 0.41 | 0.81 ± 0.09 | 3.95 ± 1.01 | 7.82 ± 0.13 |
Figure 1Elimination curve of tiamulin in plasma (A), muscle plus skin (B), liver (C), kidney (D), and gill (E) of Nile tilapia after continuous oral administration of 20 mg/kg body weight for 5 days at three temperatures.
The equation of elimination curve, correlation coefficient (r2) and elimination half-life (T1/2) of Nile tilapia after daily oral administration of a single dose of 20 mg/kg for 5 days at 19°C.
| Plasma | 2.76 | ||
| Muscle plus skin | 2.71 | ||
| Liver | 2.27 | ||
| Kidney | 2.84 | ||
| Gill | 3.16 |
The equation of elimination curve, correlation coefficient (r2) and elimination half-life (T1/2) of Nile tilapia after daily oral administration of a single dose of 20 mg/kg for 5 days at 30°C.
| Plasma | 1.64 | ||
| Muscle plus skin | 1.31 | ||
| Liver | 1.50 | ||
| Kidney | 1.94 | ||
| Gill | 1.74 |
Figure 2The withdrawal time (WT) of tiamulin in plasma, muscle plus skin, liver, kidney, and gill at 19°C calculated by WT 1.4 software.
Figure 4The withdrawal time (WT) of tiamulin in plasma, muscle plus skin, liver, kidney, and gill at 30°C calculated by WT 1.4 software.
The tiamulin concentrations in plasma and tissues of Nile tilapia after daily oral administration of a single dose of 20 mg/kg for 5 days at 25°C (n = 6).
| 1 | 1018.59 ± 36.99 | 158.93 ± 12.56 | 4509.53 ± 159.76 | 935.29 ± 31.41 | 790.39 ± 258.38 |
| 2 | 193.26 ± 33.26 | 46.69 ± 13.14 | 281.00 ± 45.97 | 191.65 ± 3.97 | 200.39 ± 66.84 |
| 3 | 89.93 ± 9.00 | 41.15 ± 16.18 | 283.63 ± 28.42 | 234.60 ± 32.00 | 172.31 ± 41.57 |
| 5 | 78.92 ± 28.91 | 8.66 ± 6.87 | 67.22 ± 49.07 | 43.59 ± 12.51 | 90.24 ± 25.93 |
| 7 | 28.48 ± 5.25 | 3.94 ± 1.30 | 59.29 ± 33.11 | 42.46 ± 12.52 | 35.15 ± 11.00 |
| 9 | 14.63 ± 2.72 | 2.54 ± 0.18 | 16.86 ± 11.84 | 15.65 ± 1.07 | 17.83 ± 3.35 |
| 12 | 4.10 ± 0.56 | 1.36 ± 0.42 | 33.74 ± 24.87 | 11.24 ± 4.50 | 12.16 ± 1.10 |
| 15 | 2.16 ± 0.42 | 0.63 ± 0.09 | 2.41 ± 0.23 | 10.88 ± 3.82 | 12.29 ± 0.42 |
| 20 | 1.48 ± 0.00 | 0.55 ± 0.01 | 3.05 ± 0.77 | 8.33 ± 1.83 | 10.64 ± 0.92 |
| 25 | 2.92 ± 0.92 | 0.42 ± 0.03 | 1.70 ± 0.58 | 4.22 ± 0.21 | 10.30 ± 0.34 |
| 30 | 2.10 ± 0.66 | 0.30 ± 0.03 | 1.02 ± 0.53 | 6.05 ± 2.56 | 9.29 ± 0.35 |
The equation of elimination curve, correlation coefficient (r2) and elimination half-life (T1/2) of Nile tilapia after daily oral administration of a single dose of 20 mg/kg for 5 days at 25°C.
| Plasma | 2.13 | ||
| Muscle plus skin | 1.85 | ||
| Liver | 1.70 | ||
| Kidney | 2.32 | ||
| Gill | 2.42 |