Sparstolonin B (SsnB), a spontaneous isocoumarin compound isolated from the tuber of Scirpus yagara Ohwi. (Cyperaceae), possesses potent anti-inflammatory and antitumor activity. In the present study, a rapid and simple UHPLC/MS/MS method for determination of SsnB in rat plasma was developed and validated. Plasma samples were pretreated by liquid-liquid extraction with ethyl acetate containing rhein as an internal standard and separated on a C18 column at 35 °C, with a gradient mobile phase consisting of acetonitrile and water containing 0.2% (v/v) formic acid within 2.1 min. MS/MS detection was accomplished in multiple reaction monitoring mode with negative electrospray ionization. The precursor-product ion transitions were m/z 266.9 [M-H](-) → m/z 211.0 for SsnB and m/z 283.2 [M-H](-) → m/z 239.0 for IS. The intra- and inter-day precision (RSD) was <8.98% and the accuracy (RE) ranged from -7.40 to 4.50%. The extraction recoveries ranged from 96.28 to 97.30%. The pharmacokinetic parameters were calculated using Win Nonlin53 software. The absolute bioavailability of SsnB was estimated to be 6.98%. The proposed method was successfully applied to a pharmacokinetic study of SsnB in rats after intravenous administration with a dose of 0.5 mg/kg and oral administration at a dose of 5 mg/kg.
The tuber of Scirpus yagara Ohwi. (Cyperaceae) has long been used in traditional Chinese medicine (TCM). Several chemical constituents isolated from it possess a variety of physiologically activities such as anti-inflammatory, antitumor and antioxidant. A simultaneous high-performance liquid chromatography (HPLC) analysis was developed and validated for the determination of nine active components in tubers and aerial parts of S. yagara. The analysis was performed on a YMC-Pack ODS-A column (4.6 × 250 mm, 5 μm, 30 nm) with a multilinear gradient mobile phase of water-formic acid (100 : 0.2, v/v) and methanol. The established HPLC method was validated in terms of linearity, sensitivity, precision, accuracy, recovery and stability. All analyzed components were detected in the whole tested samples, and the contents of most components in the aerial parts were even higher than those in the tubers. Moreover, the best harvest period was discovered to be November, which is different from the traditional. The method developed was successfully applied for simultaneous qualitative and quantitative analysis of nine active components in S. yagara.
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