Rat plasma

  • 文章类型: Journal Article
    黄芪(A.膜质)叶子可以用作药物和食品材料。它们的主要化学成分是黄酮类化合物和三萜皂苷。膜草叶的药代动力学在文献中很少报道。本研究的目的是研究山葵叶的五个主要生物活性成分[鼠李糖苷3-葡萄糖苷(RCG),利洛苷(TIL),鼠李糖苷3-新橙皮苷(RNH),黄启音R(HuR),和黄启音一世(胡)]。同时采用超高效液相色谱-串联质谱(UHPLC-MS/MS)法。给大鼠口服A.mampaceus叶的提取物,大鼠血浆接受了禁食,敏感,和特定的UHPLC-MS/MS方法。对羟基苯甲酸丁酯作为内标。使用异丙醇/乙酸乙酯(1:1,v/v)液-液萃取对血浆样品进行预处理。在WatersACQUITYHSST3柱(2.1mm×100mm,1.8μm),使用0.1%甲酸/水和0.1%甲酸/乙腈的流动相。在负离子模式和多反应监测模式下使用电喷雾电离离子源进行质谱检测。所有分析物的日内和日内相对标准偏差小于14.10%。准确度范围为-11.94-6.920%和-15.22-5.800%。RCG的定量下限,TIL,RNH,胡尔,HuI为10.24、10.27、10.12、5.137和5.841ng/mL,分别。稳定性达到了标准,矩阵效应,和提取回收。使用该分析方法最终获得了A.膜虫叶提取物的药代动力学参数。该研究为今后的药理研究提供了理论依据,临床应用,和从膜虫叶开发健康食品。
    Astragalus membranaceus (A. membranaceus) leaves can be used both as a medicine and food material. Their main chemical components are flavonoids and triterpenoid saponins. The pharmacokinetics of A. membranaceus leaves are rarely reported in the literature. This study aimed to investigate the pharmacokinetics of five major bioactive components of A. membranaceus leaves [rhamnocitrin 3-glucoside (RCG), tiliroside (TIL), rhamnocitrin 3-neohesperidoside (RNH), huangqiyenin R (HuR), and huangqiyenin I (HuI)]. Simultaneously using ultra-high-performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS) method. The extract of A. membranaceus leaves was administered orally to rats, and the rat plasma was subjected to a fast, sensitive, and specific UHPLC-MS/MS method. Butylparaben served as the internal standard. The plasma samples were pretreated using isopropanol/ethyl acetate (1:1, v/v) liquid-liquid extraction. Chromatographic separations were performed at a flow rate of 0.3 mL/min on a Waters ACQUITY HSS T3 Column (2.1 mm × 100 mm, 1.8 μm) using mobile phases of 0.1 % formic acid/water and 0.1 % formic acid/acetonitrile. Mass spectrometry detection was performed using an electrospray ionization ion source in the negative-ion mode and the multiple reaction monitoring mode. All analytes had an intraday and interday relative standard deviation of less than 14.10 %. The range of accuracy was -11.94-6.920 % and -15.22-5.800 %. The lower limits of quantification for RCG, TIL, RNH, HuR, HuI was 10.24, 10.27, 10.12, 5.137, and 5.841 ng/mL, respectively. The criteria were met by stability, matrix effects, and extraction recovery. The pharmacokinetic parameters of A. membranaceus leaf extract were ultimately obtained using this analytical method. The study provides a theoretical basis for future pharmacological research, clinical application, and development of healthy food from A. membranaceus leaves.
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    目的:开发并验证了一种简单快速的HPLC技术,可同时估算大鼠血浆中恩杂鲁胺(ENZ)和瑞格列奈(REP)。方法:使用DDinter和DDI-Pred进行计算机预测,表明ENZ和REP之间可能存在药物-药物相互作用。使用中央复合设计来确定影响药物分离的因素。通过51个实验研究了色谱参数之间的相互作用,然后用三维响应面图进行说明。两种药物分离的四个优化因素是柱温(A),%有机强度(B),pH(C)和柱型(D)。结果:平板计数(R1),在PhenomenexC18LC色谱柱(250×4.6mm,5μm)。该方法用于使用简单的蛋白质沉淀步骤估算大鼠血浆中的药物,发现该方法是线性的,ENZ和REP在0.5-16和5-50μg/ml范围内的准确和精确,分别。结论:优化的方法可用于未来的生物分析工作流程,用于药物定量和药物-药物相容性研究。
    [方框:见正文]。
    Aim: A simple and rapid HPLC technique was developed and validated to simultaneously estimate enzalutamide (ENZ) and repaglinide (REP) in rat plasma. Methods: In silico predictions using DDinter and DDI-Pred indicated possible drug-drug interactions between ENZ and REP. A central composite design was used to identify factors influencing the separation of the drugs. Interactions between chromatographic parameters were studied through 51 experiments, followed by illustration with three-dimensional response surface plots. The four factors optimized for the separation of the two drugs are column temperature (A), % organic strength (B), pH (C) and column type (D). Results: Plate count(R1), tailing factor (R2) and resolution (R3) responses in the experimental design were analyzed with the favorable chromatographic conditions predicted to be 0.1% formic acid and acetonitrile as mobile phases on a Phenomenex C18 LC column (250 × 4.6 mm, 5 μm). The method was applied to estimate the drugs in rat plasma using a simple protein-precipitation step and found to be linear, accurate and precise within the ranges of 0.5-16 and 5-50 μg/ml for ENZ and REP, respectively. Conclusion: The optimized method can be used in future bioanalytical workflow for drug quantification and drug-drug compatible studies.
    [Box: see text].
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    陈皮(CRP)被用作常见的保健食品和中药(TCM),发挥药理作用,如抗心血管,抗肿瘤,抗氧化剂,抗炎,抗病毒,保肝,血压降低和神经保护。在这项研究中,可靠,建立了灵敏的超高效液相色谱/串联质谱(UPLC-MS/MS)和气相色谱-质谱(GC-MS)方法,并验证了口服给药后大鼠血浆中11种活性成分的含量。CRP提取物。该方法的结果表明,该方法的特异性,线性度(r>0.999),精度和准确度(变异系数(CV)<11.5%),回收率(52.9-107.9%),基体效应(63.8-107.5%),和稳定性(CV<10.8%)满足血浆样品定量的所有要求。药代动力学结果表明,黄酮苷的Tmax小于0.7h,多甲氧基黄酮和挥发性成分在1-7小时内。同时,橙皮苷的曲线下面积(AUC)和最大浓度(Cmax),景天苷,橘皮素,D-柠檬烯的含量高于其他组分,提示CRP中这些成分的血浆暴露水平较高。本研究为阐明CRP的治疗物质基础奠定了基础,为CRP的进一步科学研究和临床应用提供了参考。
    Citri Reticulatae Pericarpium (CRP) is used as common health-care food and traditional Chinese medicine (TCM), which exerts pharmacological effects, such as anti-cardiovascular, anti-tumor, anti-oxidant, anti-inflammatory, anti-virus, hepatoprotective, blood pressure-lowering and neuroprotective. In this study, reliable, and sensitive ultra-high performance liquid chromatography/tandem mass spectrometry (UPLC-MS/MS) and gas chromatography-mass spectrometry (GC-MS) methods were developed and validated for the determination of eleven active components in rat plasma after oral administration of the CRP extract. The results of this method exhibited that the specificity, linearity (r > 0.999), precision and accuracy (the coefficient of variation (CV) < 11.5 %), recovery (52.9-107.9 %), matrix effects (63.8-107.5 %), and stability (CV < 10.8 %) met all requirements for the quantitation of plasma samples. The pharmacokinetic results showed that the Tmax of flavone glycosides was less than 0.7 h, and that of polymethoxyflavones and volatile components were within 1-7 h. Meanwhile, the area-under-the-curve (AUC) and concentration maximum (Cmax) of hesperidin, nobiletin, tangeretin, and D-limonene were higher than those of the other components, suggesting that the plasma exposure levels of these constituents were higher in CRP. The present research lays a foundation for elucidating the therapeutic material basis and provides a reference for further scientific research and clinical application of CRP.
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  • 文章类型: Journal Article
    α-没药醇(α-BIS)是洋甘菊精油中存在的倍半萜醇[Chamomillarecutita(L.)劳谢特]。尽管它有许多药理作用,其药代动力学仍未得到充分研究。能够定量血浆中α-BIS的分析方法对于进行药代动力学分析至关重要。目前,只有一项研究使用质谱对其进行了量化。施用α-BIS需要用于静脉注射的纳米乳剂。本研究旨在开发和验证一种使用高效液相色谱和紫外检测器定量大鼠血浆中α-BIS的生物分析方法。方法以乙腈和超纯水(80:20,v/v)为流动相,流速为1ml/min,浓度范围为465至29.625μg/ml。所有美国食品和药物管理局指定的检测都是成功的,指示方法的精度,准确度,测定大鼠血浆中α-BIS的灵敏度和线性。开发的纳米乳液,通过动态光散射分析进行评估,粒子的集合集合和多分散指数评价,经证实静脉给药安全有效。药代动力学参数,如分布体积,清除率和半衰期表明α-BIS倾向于在体内持续存在。本研究为进一步探索α-BIS的潜在药物应用奠定了基础。
    α-Bisabolol (α-BIS) is a sesquiterpene alcohol present in chamomile essential oil [Chamomilla recutita (L.) Rauschert]. Despite its numerous pharmacological effects, its pharmacokinetics remain understudied. An analytical method capable of quantifying α-BIS in plasma is crucial to enable pharmacokinetic analysis. Presently, only one study has quantified it using mass spectrometry. Administering α-BIS requires a nanoemulsion for intravenous injection. This study aimed to develop and validate a bioanalytical method using high-performance liquid chromatography with an ultraviolet detector to quantify α-BIS in rat plasma. The method employed acetonitrile and ultrapure water (80:20, v/v) as the mobile phase, with a flow rate of 1 ml/min and concentrations ranging from 465 to 29.625 μg/ml. All US Food and Drug Administration-designated assays were successful, indicating the method\'s precision, accuracy, sensitivity and linearity in determining α-BIS in rat plasma. The developed nanoemulsion, assessed through dynamic light scattering analysis, the ensemble collection of particles and polydispersity index evaluation, proved safe and effective for intravenous administration. The pharmacokinetic parameters such as volume of distribution, clearance and half-life indicated that α-BIS tends to persist in the body. This study provides a foundation for further research to explore α-BIS\'s potential pharmaceutical applications in the future.
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  • 文章类型: Journal Article
    Pogostemoncablin(PC)是一种传统的中药(TCM)和食品,也是中国重要的精油植物。PC精油发挥药理作用,如抗炎,抗氧化剂,抗血小板,抗血栓,和抗抑郁药。本研究建立了一种可靠、灵敏的气相色谱-质谱(GC-MS)同时测定广藿香醇,β-榄香烯,β-石竹烯,石竹烯氧化物,口服PC精油提取物后,大鼠血浆中的法尼醇。用乙酸乙酯制备血浆样品,和p-薄荷酮用作内标(IS)。使用HP5-MS色谱柱(0.25μm×0.25mm×30m)进行色谱分离,在选择离子监测(SIM)模式下进行检测。所有分析物的日内和日内的准确度显示范围为-6.7%-9.2%,精度低于12.5%。分析物的提取回收率为74.0%至106.4%,基体效应为92.4%至106.9%。稳定性结果表明,分析物的相对标准偏差(RSD)低于12.1%。因此,建立的GC-MS方法成功地评估了大鼠口服PC精油提取物中5种挥发性成分的药代动力学。
    Pogostemon cablin (PC) is a traditional Chinese medicine (TCM) and food as well as an important essential oil plant in China. PC essential oil exerts pharmacological effects such as anti-inflammatory, anti-oxidant, anti-platelet, anti-thrombotic, and anti-depressant. This study established a reliable and sensitive gas chromatography-mass spectrometry (GC-MS) method for the simultaneous determination of the pharmacokinetics of patchouli alcohol, β-elemene, β-caryophyllene, caryophyllene oxide, and farnesol in the plasma of rats after oral administration of PC essential oil extract. Using ethyl acetate to prepare the plasma samples, and p-menthone was used as the internal standard (IS). An HP5-MS column (0.25 μm × 0.25 mm × 30 m) was used for chromatographic separation, and detection was performed in selected ion monitoring (SIM) mode. The accuracies of intra-day and inter-day for all analytes displayed a range of -6.7 %-9.2 %, with precision below 12.5 %. Extraction recoveries for analytes ranged from 74.0 to 106.4 % and matrix effects ranged from 92.4 to 106.9 %. Stability results have demonstrated that the relative standard deviations (RSD) of analytes were below 12.1 %. Therefore, the developed GC-MS method successfully evaluated the pharmacokinetics of five volatile components in PC essential oil extract administered orally to rats.
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  • 文章类型: Journal Article
    夏枯草口服液(XKCOL)在中国已被广泛用于治疗乳腺增生和甲状腺肿。然而,迄今为止,其药代动力学数据一直缺失。为了进行药代动力学研究,我们建立了同时测定大鼠血浆中8种XKCOL相关化合物的LC-串联质谱方法。采样过程使用液-液萃取。色谱分离是在现象LunaC18柱上进行的,流动相为甲醇和2mM乙酸铵,使用梯度洗脱,流速为0.8mL/min。使用具有优化的MS参数的负电喷雾电离(ESI-)以多反应监测模式进行检测。内源性物质和残留不会干扰分析物的检测。校准曲线在线性范围内显示出良好的线性关系。批内和批间准确度和精密度分别为94.8%-110.0%和≤11.2%,分别。没有明显的基体效应,回收率是可重复的。样品的稀释不影响准确度和精密度。溶液和血浆样品在各种测试条件下是稳定的。XKCOL吸收到血液中的主要成分是丹参酸A和迷迭香酸。他们证明了在本研究中使用的剂量范围内的线性动力学。
    Xiakucao Oral Liquid (XKCOL) has been widely used for treating mammary gland hyperplasia and goiter in China. However, its pharmacokinetic data have been missing to date. To conduct its pharmacokinetic study, we established an LC-tandem mass spectrometry method for the simultaneous determination of eight XKCOL-related compounds in rat plasma. Liquid-liquid extraction was used for the sampling process. Chromatographic separation was performed on a Phenomenon Luna C18 column with a mobile phase of methanol and 2 mM ammonium acetate, using gradient elution at a flow rate of 0.8 mL/min. Detection was performed in the multiple reaction monitoring mode using negative electrospray ionization (ESI-) with optimized MS parameters. Endogenous substances and carryover did not interfere in the detection of analytes. The calibration curves showed a good linear relationship within the linear ranges. The intra- and inter-batch accuracy and precision were 94.8%-110.0% and ≤11.2%, respectively. There was no significant matrix effect and the recovery was reproducible. The dilution of samples did not affect the accuracy and precision. The solution and plasma samples were stable under the various test conditions. The major components of XKCOL absorbed into the blood were salvianic acid A and rosmarinic acid. They demonstrated linear kinetics over the dose range used in this study.
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    简介:Pogostemoncablin(PC)用于中药和食品,因为它发挥药理作用,比如免疫调节,抗菌,抗氧化剂,抗肿瘤,和抗病毒。目前,PC的药代动力学(PK)研究主要集中在单个成分上。然而,对这些单独成分的研究不能反映PC给药后的实际PK特性。因此,本研究采用UPLC-MS/MS同时测定大鼠血浆中多种成分,为PC的临床应用提供参考价值。方法:在本研究中,建立了一种可靠而灵敏的超高效液相色谱/串联质谱(UPLC-MS/MS)方法,并对其同时测定15种原型成分(香草酸,vitexin,Verbascoside,异麦角苷,金丝桃苷,宇宙素,芹菜素,β-鼠李糖苷,acacetin,ombuin,pogestone,pachypodol,vicenin-2retusin,口服PC提取物后,大鼠血浆中的薯蛋白-7-O-β-D-吡喃葡萄糖苷)。血浆样品通过使用乙腈的蛋白质沉淀来制备,并使用淫羊藿苷作为内标(IS)。结果:日内和日间准确度范围为-12.0至14.3%,分析物的精密度小于11.3%。分析物的提取回收率为70.6-104.5%,基质效应在67.4-104.8%之间。稳定性研究证明,分析物在测试条件下是稳定的,相对标准偏差低于14.1%。结论:所建立的方法可用于UPLC-MS/MS评估大鼠口服PC提取物中15种原型成分的PK。为开发和临床安全提供有价值的信息,有效,合理使用PC。
    Introduction: Pogostemon cablin (PC) is used in traditional Chinese medicine and food, as it exerts pharmacological effects, such as immune-modulatory, antibacterial, antioxidant, antitumor, and antiviral. Currently, the pharmacokinetics (PK) studies of PC mainly focus on individual components. However, research on these individual components cannot reflect the actual PK characteristics of PC after administration. Therefore, the simultaneous determination of multiple components in rat plasma using UPLC-MS/MS was used for the pharmacokinetic study after oral administration of PC extract in this study, providing reference value for the clinical application of PC. Methods: In the present study, a reliable and sensitive ultra-high performance liquid chromatography/tandem mass spectrometry (UPLC-MS/MS) method was developed and validated for the simultaneous determination of 15 prototype components (vanillic acid, vitexin, verbascoside, isoacteoside, hyperoside, cosmosiin, apigenin, β-rhamnocitrin, acacetin, ombuin, pogostone, pachypodol, vicenin-2, retusin, and diosmetin-7-O-β-D-glucopyranoside) in rat plasma after oral administration of the PC extract. Plasma samples were prepared via protein precipitation using acetonitrile, and icariin was used as the internal standard (IS). Results: The intra-day and inter-day accuracies ranged from -12.0 to 14.3%, and the precision of the analytes was less than 11.3%. The extraction recovery rate of the analytes ranged from 70.6-104.5%, and the matrix effects ranged from 67.4-104.8%. Stability studies proved that the analytes were stable under the tested conditions, with a relative standard deviation lower than 14.1%. Conclusion: The developed method can be applied to evaluate the PK of 15 prototype components in PC extracts of rats after oral administration using UPLC-MS/MS, providing valuable information for the development and clinical safe, effective, and rational use of PC.
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  • 文章类型: Journal Article
    Lumateperone是FDA批准的用于治疗成人精神分裂症的新型药物。为了阐明lumateperone生物转化的物种差异及其在大鼠体内的药代动力学(PK)特征,lumateperone的代谢物鉴定在大鼠中进行,狗和人类肝微粒体,口服后的大鼠血浆使用UPLC-QExactiveOrbitrap高分辨率质谱HRMS。更进一步,在静脉和口服给药后,使用经过验证的LC-MS/MS方法研究了大鼠血浆中lumateperone及其N-去甲基化代谢物(M3)的PK特征。在肝微粒体中发现了14种I相代谢物,在大鼠血浆中观察到了10种。N-去甲基化,羰基化,脱氢,哌嗪环裂解是洛美哌酮的主要代谢途径。在人肝微粒体中未形成独特的代谢物。在大鼠中快速吸收后,lumateperone被迅速代谢并消除,生物利用度低于5%.在大鼠血浆中,M3的暴露水平比lumateperone高约1.5倍。Lumatperone经历了广泛的代谢,并在大鼠中迅速吸收。代谢物M3的暴露水平与lumateperone相当或稍高。本研究提供了必要的PK信息,以促进lumateperone的进一步药效学研究。
    Lumateperone is a novel agent approved by FDA for treatment of schizophrenia in adults. To elucidate the species differences in the of biotransformation of lumateperone and its pharmacokinetic (PK) characteristics in rats, the metabolite identification of lumateperone was carried out in rat, dog and human liver microsomes, and rat plasma after oral administration using UPLC-Q Exactive Orbitrap high-resolution mass spectrometry HRMS. Furtherly, the PK characteristics of lumateperone and its N-demethylated metabolite (M3) in rat plasma were investigated using a validated LC-MS/MS method following intravenous and oral administration. Fourteen phase I metabolites were found in liver microsomes and ten of them were observed in rat plasma. N-demethylation, carbonylation, dehydrogenation, and piperazine ring cleavage were main metabolic pathway of lumateperone. No unique metabolites were formed in human liver microsomes. After rapid absorption in rats, lumateperone was quickly metabolized and eliminated with bioavailability of less than 5%. The exposure level of M3 was about 1.5-fold higher than that of lumateperone in rat plasma. Lumatperone underwent extensive metabolism and was absorbed rapidly in rats. Metabolite M3 had equivalent or slightly higher exposure levels than lumateperone. This study provides essential PK information to facilitate further pharmacodynamic researches of lumateperone.
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  • 文章类型: Journal Article
    一个精确的,敏感,准确,并采用生物分析方法进行了验证的反相高效液相色谱(RP-HPLC)方法来分析大鼠血浆中的卡巴他赛(CBZ)。对传统液液萃取(LLE)和合成氧化石墨烯(GO)磁性固相萃取(GO@MSPE)的萃取回收率进行了比较研究。使用氧化铁和GO的组合来合成超顺磁性杂化纳米吸附剂,并且随后用于通过(HPLC-PDA)分析从血浆中提取和生物分析定量CBZ。傅里叶变换红外光谱(FT-IR),颗粒大小,扫描电子显微镜(SEM),采用X-射线衍射(XRD)分析对合成的GO@MSPE纳米吸附剂进行了表征。使用垫片包C18柱(150mm×4.6mm,5µm),具有由甲酸:乙腈:水(0.1:75:25,v/v/v)组成的二元梯度流动相,流速为0.8mL/min,和229nm的λmax。LLE和SPE技术的检测限(LOD)和定量限(LOQ)已确定为50和100ng/mL。该方法的线性范围涵盖100至5000ng/mL,并且发现对于CBZ是线性的(测定系数>0.99)。所提出的方法显示,合成的GO@MSPE的提取回收率为76.8-88.4%,LLE的提取回收率为69.3-77.4%,这表明所提出的生物分析方法是稳健的,并且在可接受的标准内符合所有验证参数。此外,在提出的RP-HPLC方法的帮助下,开发的杂化GO@MSPE纳米吸附剂,显示了在生物分析中提取CBZ的显着潜力。
    A precise, sensitive, accurate, and validated reverse-phase high-performance liquid chromatography (RP-HPLC) method with a bioanalytical approach was utilized to analyze Cabazitaxel (CBZ) in rat plasma. Comparative research on extraction recoveries was performed between traditional liquid-liquid extraction (LLE) and synthesized graphene oxide (GO) based magnetic solid phase extraction (GO@MSPE). The superparamagnetic hybrid nanosorbent was synthesized using the combination of iron oxide and GO and subsequently applied for extraction and bioanalytical quantification of CBZ from plasma by (HPLC-PDA) analysis. Fourier- transform infrared spectroscopy (FT-IR), particle size, scanning electron microscopy (SEM), and x-ray diffraction (XRD) analysis were employed in the characterization of synthesized GO@MSPE nanosorbent. The investigation was accomplished using a shim pack C18 column (150 mm×4.6 mm, 5 µm) with a binary gradient mobile phase consisting of formic acid: acetonitrile: water (0.1:75:25, v/v/v) at a 0.8 mL/min flow rate, and a λmax of 229 nm. The limits of detection (LOD) and quantitation (LOQ) have been determined to be 50 and 100 ng/mL for both LLE and SPE techniques. The linearity range of the approach encompassed from 100 to 5000 ng/mL and was found to be linear (coefficient of determination > 0.99) for CBZ. The proposed method showed extraction recovery of 76.8-88.4% for the synthesized GO@MSPE and 69.3-77.4% for LLE, suggesting that the proposed bioanalytical approach was robust and qualified for all validation parameters within the acceptable criteria. Furthermore, the developed hybrid GO@MSPE nanosorbent with the help of the proposed RP-HPLC method, showed a significant potential for the extraction of CBZ in bioanalysis.
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  • 文章类型: Journal Article
    叶酸(FA)很容易光降解,产生6-甲酰蝶呤和蝶呤-6-羧酸,可产生活性氧并导致形成氧化的鸟嘌呤衍生物,如8-羟基-2'-脱氧鸟苷和8-羟基-鸟苷。在这项研究中,我们开发了一个简单的,快速,和灵敏的液相色谱-串联质谱策略,用于同时测定血浆样品中的FA光解产物和氧化的鸟嘌呤衍生物。色谱分离在WatersHSST3柱(2.1×100mm,5.0μm),以0.25mL/min的流速进行梯度洗脱。血浆样品首先用1%甲酸预处理,然后用甲醇沉淀蛋白质。所开发的方法在1和2000ng/mL之间显示出良好的线性关系(r2>0.99)。日内和日间精确度范围从2.6%到7.5%,从2.5%到6.5%,分别。分析物的回收率在75.4%和112.4%之间,相对标准偏差<9.1%。最后,该方法用于在光照和非光照条件下定量大鼠的FA光解产物和氧化的鸟嘌呤衍生物。
    Folic acid (FA) is easily photodegraded to yield 6-formylpterin and pterin-6-carboxylic acid, which can generate reactive oxygen species and result in the formation of oxidized guanine derivatives such as 8-hydroxy-2\'-deoxyguanosine and 8-hydroxy-guanosine. In this study, we developed a simple, rapid, and sensitive liquid chromatography-tandem mass spectrometry strategy for the simultaneous determination of FA photolysis products and oxidized guanine derivatives in plasma samples. Chromatographic separation was performed on a Waters HSS T3 column (2.1 × 100 mm, 5.0 μm) with gradient elution at a flow rate of 0.25 mL/min. Plasma samples were first pretreated with 1% formic acid, followed by protein precipitation with methanol. The developed method showed good linear relationships between 1 and 2000 ng/mL (r2 > 0.99). The intra- and inter-day precisions ranged from 2.6% to 7.5% and from 2.5% to 6.5%, respectively. Recoveries of the analytes were between 75.4% and 112.4% with the relative standard deviation < 9.1%. Finally, the method was applied to quantify FA photolysis products and oxidized guanine derivatives in rats with light and non-light conditions.
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