| Literature DB >> 23264941 |
Sasmita Kumari Acharjya1, Subrat Kumar Bhattamisra, Bhanoji Rao E Muddana, Ravikumar V V Bera, Pinakini Panda, Bibhu Prasad Panda, Gitanjali Mishra.
Abstract
A fast, sensitive, and specific reversed-phase high-performance liquid chromatographic (RP-HPLC) method for the determination of letrozole in Wistar rat serum was developed. In this method, liquid-liquid extraction of letrozole was achieved using diethyl ether as the extracting solvent. The analysis was carried out on a reversed-phase C18 (250 mm × 4.6 mm, 5 μm) column with an isocratic mobile phase of methanol-water (70:30,v/v), at a flow rate of 1.0 mL min(-1). Detection was carried out at 239 nm with a UV-visible spectrophoto-metric detector. The method was shown to be selective and linear over the concentration range of 0.15-100 μg mL(-1). The intra-day and inter-day precision studies showed good reproducibility with coefficients of variation less than 11% for the analyte. The relative errors of intra- and inter-day accuracy were within -11.52 to -2.26%. The limit of quantification was evaluated to be 0.15 μg mL(-1). The method was successfully applied for the pharmacokinetic study of letrozole after oral administration of 10 mg kg(-1) of letrozole in six healthy Wistar rats.Entities:
Keywords: Letrozole; Pharmacokinetic study; RP-HPLC; Rat serum
Year: 2012 PMID: 23264941 PMCID: PMC3528055 DOI: 10.3797/scipharm.1206-06
Source DB: PubMed Journal: Sci Pharm ISSN: 0036-8709
Fig. 1.(A) Chemical structure of letrozole (CAS number 112809-51-5)
(B) UV absorption spectrum of letrozole between 200 and 350 nm
(C) IR spectrum of letrozole
Fig. 2.Representative HPLC chromatograms of (A) blank rat serum, (B) serum spiked with 10 μg mL−1 letrozole, and (C) serum samples at 2 h after an oral administration of letrozole at a dose of 10 mgkg −1 body weight.
Recovery of Letrozole from rat serum
| 0.5 | 0.49 ± 0.01 | 96.76 ± 2.01 | 2.08 |
| 20 | 19.52 ± 0.76 | 97.61 ± 3.78 | 3.87 |
| 50 | 48.22 ± 1.10 | 96.44 ± 2.20 | 2.28 |
| Average | 96.94 ± 2.66 | 2.75 |
n = 5; Values were expressed as mean ± SD.
Fig. 3.Representative HPLC chromatograms of (A) unextracted letrozole and (B) extracted letrozole from rat serum.
Precision and accuracy of Letrozole in rat serum
|
| ||||||
|---|---|---|---|---|---|---|
| 0.5 | 0.45 ± 0.05 | 10.14 | –10.36 | 0.44 ± 0.05 | 10.69 | –11.52 |
| 20 | 19.22 ± 0.49 | 2.53 | –3.89 | 19.22 ± 0.53 | 2.77 | –3.89 |
| 50 | 49.07 ± 0.87 | 1.77 | –1.89 | 48.87 ± 0.82 | 1.68 | –2.26 |
Intra-day: n=5; Inter-day: n=3 days with 5 replicates per day; Values were expressed as mean ± SD.
Stability of Letrozole in rat serum
| Freeze-thaw | 0.5 | 0.46 ± 0.03 | 6.1 | –8 |
| Freeze-thaw | 20 | 19.42 ± 0.32 | 1.7 | –2.9 |
| Long-term | 0.5 | 0.44 ± 0.04 | 9.6 | –11.6 |
| Long-term | 20 | 19.37 ± 0.57 | 2.9 | –3.2 |
| Post-preparative | 0.5 | 0.45 ± 0.05 | 10.3 | –10.3 |
| Post-preparative | 20 | 19.22 ± 0.58 | 3.0 | –3.9 |
After three Freeze (−20°C) and Thaw (room temperature) cycles;
After two weeks of storing at −20°C;
After 12 h of storing at 25°C; Values are expressed as mean ± SD (n= 5).
Fig. 4.Mean serum concentration–time profile of Letrozole in Wistar Rat after oral administration (n= 6, dose = 10 mg kg−1). Values were expressed as mean ± SD.
Mean Pharmacokinetic parameters of Letrozole in Wistar Rat (n= 6) after oral administration of 10 mg Kg−1 body weight
| Cmax (μg mL−1) | 88.82 | – |
| Tmax (h) | 8.9 | – |
| K (h−1) | 0.06 | 0.06 |
| 10.76 | – | |
| AUC0–t (μg h mL−1) | 2259.95 | – |
| AUC0–∞ (μg h mL−1) | 2287.58 | – |
| Volume of distribution (L) | 0.0127 | – |
| AUMC0_t (μg h2 mL−1) | – | 41904.11 |
| AUMC0–∞ (μg h2 mL−1) | – | 44913.53 |
| MRT (h) | – | 19.6 |
Cmax= peak serum concentration; Tmax= time to reach peak concentration; K= Elimination rate constant; t1/2= Half-life; AUC0–t= area under the curve from zero to t; AUC0–∞= area under the curve from zero to infinite; L= Volume of distribution; AUMC0_t= area under the moment curve from zero to t; AUMC0–∞= area under the moment curve from zero to infinite; MRT= mean residence time.