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951.
Na'il Saleh Mohammed A. Meetani Leena Al-Kaabi Indrajit Ghosh 《Supramolecular chemistry》2013,25(9):650-656
The supramolecular interactions of the ocular drug tropicamide (TR) with cucurbit[7]uril (CB7) and cucurbit[8]uril (CB8) were investigated in aqueous solutions by using 1H NMR, ESI-MS and UV–vis spectroscopic techniques. The results indicate a 1:1 binding stoichiometry of TR with CB7 and CB8. The binding constants of TR in its protonated form were higher (e.g. K = 4 × 106 M? 1 with CB8) than in its neutral form (e.g. K = 1.4 × 104 M? 1 with CB8), which led to a complexation-induced increase in its pK a value of ca. 0.5 and 2 units with CB7 and CB8, respectively. In the presence of about 1% (w/v) CB8, the ionisation degree of 0.1% (w/v) TR was increased from 2% to 62% at neutral pH. The increase in the pK a value and thus stabilisation of the protonated TR species at neutral pH is discussed in the context of supramolecular drug delivery of ophthalmologic drugs. 相似文献
952.
About the Structure and Reactivity of Diammonium Hexafluoromanganate(IV) Electrolytic oxidation of an aqueous suspension of MnF2 containing NH4F, and subsequent crystallization in 40% HF yields yellow crystals of (NH4)2MnF6. It crystallizes in the hexagonal K2MnF6 type structure with the space group P63mc and a = 5.903; c = 9.565 Å; Z = 2. With in situ powder diffraction studies it is shown, that (NH4)2MnF6 is gradually reduced in a NH3 atmosphere between 30 and 230 °C to afford (NH4)3MnF6, (NH4)2MnF5, and finally NH4MnF3. (NH4)3MnF6, thereby, forms a hitherto unknown cubic (a = 9.082 Å) high temperature modification with the cryolite type structure. Under N2 the thermal decomposition of (NH4)2MnF6 proceeds via NH4MnF4 to yield MnF2. 相似文献
953.
Isoproterenol (ISO) is a synthetic catecholamine with a powerful cardiac stimulate, bronchial smooth and skeletal muscle relaxation, coronary artery and peripheral vasodilator effects. In this study, a simple, rapid, and selective liquid chromatography–tandem mass spectrometry has been developed for the determination of ISO in rat plasma. Proteins were precipitated in plasma samples with 0.1?g?mL?1 trichloroacetic acid and the ISO/internal standard (IS) were separated on a C8 column. The ISO was detected by a triple-quadrupole mass spectrometer with electrospray ionization source. The transitions of m/z 212.1?→?193.9 for ISO and m/z 285.2?→?193.2 for IS were conducted through multiple reaction monitoring mode. This method was linear over the range of 2–500?n?g?mL?1. The intra- and inter-day assay precision were observed between 3 and 10%. The accuracy was within ±11%. Stability study results demonstrated that ISO was stable in the autosampler at 4°C for 24?hr, and for 8?hr at room temperature. Only one freeze–thaw cycle at ?80°C for 24?hr was found to be stable. The validated method was successfully applied to a pharmacokinetic study of ISO in rats following subcutaneous administration. 相似文献
954.
In this second part of the series of investigations involving the postpolymerization modification of a hydroxy monolith (OHM) capillary column, the surface hydroxyl groups were reacted with epoxy biphenyl thus yielding the so‐called Biphenyl OHM capillary column. The modification involved the epoxy ring opening of the 2‐biphenylyl glycidyl ether catalyzed by BF3 and its subsequent reaction with the hydroxyl groups on the OHM precursor surface. The Biphenyl OHM capillary column thus obtained exhibited the typical reversed phase behavior by primarily hydrophobic interactions vis‐à‐vis the homologous series of alkyl benzenes and in addition by π–π interactions toward nitroalkane homologous series via their π‐electron rich nitro groups. This dual retention mechanism was very distinctly observed with a set of PAH solutes in the sense that the k values of the PAH solutes were comparable to those obtained on a more non polar stationary phase, namely the Epoxy OHM C‐16 reported in the preceding article. Other aromatic solutes showed the dual retention mechanism on the Biphenyl OHM capillary including phenols, anilines derivatives, and phenoxy acid herbicides. The Biphenyl OHM capillary exhibited good reproducibility from run‐to‐run, day‐to‐day, and column‐to‐column. 相似文献
955.
Swetha Parsha Y. Ravindra Kumar M. Ravichander L. Prakash B. Sudharani 《液相色谱法及相关技术杂志》2016,39(4):178-194
A rapid, precise, and reliable liquid chromatography tandem mass spectrometry (LC–MS/MS) method has been developed for the characterization of stressed degradation products of mirabegron. It is used in the treatment of overactive bladder and administered to treat urinary symptoms such as urgency or frequency and incontinence. It also works by relaxing the muscles around bladder.Mirabegron was subjected to hydrolysis (acidic, alkaline, and neutral) and peroxidation, as per ICH-specified conditions. The drug showed degradation under stress conditions. However, it was stable to neutral conditions. A total of seven degradation products were observed and the chromatographic separation of the drug and its degradation products was achieved on X-TerraRP-8 (250 mm × 4.6 mm, i.d., 5 µm) column using 0.01 M ammonium acetate as mobile phase-A and 60:40 ratio of acetonitrile (ACN):water as mobile phase-B. The degradation products were characterized by LC–MS/MS and its fragmentation pathways were proposed. Probable possible structures were drawn based on parent and daughter molecular ions. One peroxide degradant impurity was isolated using preparative LC and characterized using liquid chromatography–mass spectrometry and NMR data. 相似文献
956.
Tapentadol, a centrally acting analgesic was subjected to hydrolysis (acidic, alkaline, and neutral), oxidation, photolysis, humidity, and thermal stress conditions as per International Conference on Harmonization prescribed guidelines. Tapentadol was found susceptible to oxidative stress that produced two major degradation products DP-I and DP-II. However, it was stable to hydrolysis, photolysis, and thermal stress conditions. A simple, sensitive, and accurate high-performance liquid chromatography stability-indicating assay method (liquid chromatography–mass spectrometer compatible) was developed and validated for identification and characterization of stressed degradation products of Tapentadol. The chromatographic separation of the drug and its degradation products were achieved on Inertsil ODS, C18 (250 × 4.6 mm, i.d., 5 µm) column using a 12.5 mM aqueous ammonium acetate buffer (with 0.2% triethyl amine and final pH of buffer was adjusted to 3.60 with glacial acetic acid): acetonitrile (75:25, v/v) as a mobile phase. The degradation products were characterized by liquid chromatography mass spectrometry and subsequently its fragmentation pathway as well as plausible mechanism for generation of degradation products was also proposed. The stability indicating high-performance liquid chromatographic method was validated with respect to linearity, precision, and accuracy. 相似文献
957.
Minxia Huang Beiyang Yao Manhua Jiang Fuzhou Sun Jinsong You Fangfang Huang Yanping Zhao Shuming Wu Xinqian He Xuezhi Song 《Journal of mass spectrometry : JMS》2022,57(4):e4821
Two unknown solution degradants were found during the dissolution testing in 0.1-M HCl for olmesartan medoxomil (OLM) tablets. The structure of the degradants was identified and characterized by liquid chromatography–ultraviolet (LC–UV), liquid chromatography with tandem mass spectrometry (LC–MS/MS), and nuclear magnetic resonance (NMR) and demonstrated to be cyclization of tetrazole and benzene in the olmesartan (OL) and OLM structures. A series of studies including stress studies, simulation studies, and mechanism-based studies were performed to reveal the potential mechanisms that lead to the formation of the unknown degradants. The study results demonstrated that the degradation was catalyzed with radicals that originated from the metal ions leached from the inner surface of high-performance liquid chromatography (HPLC) glass vials with dissolved oxygen under acidic condition. Prerinsing the glass vials with acidic solution dissolved with EDTA can effectively avoid the generation of such oxidative impurities. The present work provides new insights into the understanding of degradation pathways of OLM, which might support the development of OLM tablets. 相似文献
958.
利用多巴胺氧化自聚合性质改性超高分子量聚乙烯(UHMWPE)粉末惰性表面,制备得到改性粉末,并添加于环氧树脂中制备成耐磨环氧涂层,同时与添加未改性UHMWPE粉末的环氧涂层对比.采用扫描电镜(SEM)、X射线光电子能谱(XPS)和红外光谱(IR)表征改性粉末表面形貌和化学元素状态,利用摩擦磨损试验机测试环氧涂层表面的摩擦系数和磨损率.结果表明:改性粉末表面黏附1层含极性基团的聚多巴胺,能够与环氧树脂发生反应而固化在涂层中,相容性增强.改性粉末表面O,C元素相对含量比较O/C和N/C值随改性时间延长而增大,在5 h时趋于稳定.当改性粉末添加量从6.7%增至20%时,环氧涂层的抗冲击性能增强,摩擦系数和磨损率随之降低,改善了涂层的摩擦学性能,而且效果优于添加未改性粉末的涂层. 相似文献
959.
利用高效液相色谱(HPLC)对喹啉黄各组分进行分离并定量,通过液相色谱–串联质谱(LC–MS/MS)对各组分进行定性。以0.01 mol/L乙酸铵溶液和甲醇为流动相进行梯度洗脱,利用Agilent XDB–C18色谱柱对喹啉黄各组分进行分离,峰面积归一化法定量。质谱采用电喷雾负离子(ESI–)模式电离,多反应监测(MRM)模式检测,对喹啉黄各组分进行定性。结果表明,喹啉黄主要成分为喹啉黄一钠盐和喹啉黄二钠盐,分别各有两种同分异构体,各组分质量浓度在5.0~100.0μg/m L范围内与峰面积呈良好的线性关系。加标回收率为98.2%~99.1%,测定结果的相对标准偏差为0.90%~1.58%(n=6)。该方法具有良好的精密度和准确度,可用于喹啉黄中各组分的测定。 相似文献
960.
The chemo- and regioselectivity of the reduction, oxidation and Wittig reaction of polyfunctional pyrroles, containing a variety of reactive centres was investigated. The reaction of 3,5-dichloropyrrole-2,4-dicarboxaldehydes with potassium permanganate leads to regioselective oxidation of the 2-formyl group, while the Wittig reaction with 1 equiv of a triphenylphosphorane produced the 2-alkenyl substituted pyrroles. 相似文献