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2,2′-Dihydroxy-4,4′-dimethoxybenzophenone (UV-D) is one of the benzophenones, which is widely used as UV filter to protect industrial and commercial products from light. This compound is suspected as a kind of endocrine-disrupting chemical, which might interfere with hormonal signaling pathways, and have potential adverse effects on human health. Thus, toxicity and metabolism of it could be important to know its biological effect. As little is known about the toxicokinetics and metabolism of UV-D, herein, the related study was performed on rats by orally administrating with UV-D. UV-D was found to be promptly metabolized to five main metabolites, which were further identified by high-performance liquid chromatography–quadrupole time-of-flight mass spectrometry. Demethylation, hydroxylation, sulfonation, and glucuronidation were the main metabolic pathways for UV-D.  相似文献   
2.
《Electrophoresis》2018,39(12):1478-1481
Glucuronidation catalyzed by uridine‐5′‐diphospho‐glucuronosyl‐transferases (UGTs) is the most important reaction in phase II metabolism of drugs and other compounds. O‐glucuronidation is more common than N‐glucuronidation. The anesthetic, analgesic and antidepressive drug ketamine is metabolized in phase I by cytochrome P450 enzymes to norketamine, hydroxynorketamine (HNK) diastereomers and dehydronorketamine (DHNK). Equine urine samples collected two hours after ketamine injection were treated with β‐glucuronidase and analyzed with three enantioselective capillary electrophoresis assays. Concentrations of HNK diastereomers and norketamine were significantly higher in comparison to untreated urine and an increase of ketamine and DHNK levels was found in selected but not all samples. This suggests that O‐glucuronides of HNK and N‐glucuronides of the other compounds are formed in equines. N‐glucuronidation of norketamine was studied in vitro with liver microsomes of different species and the single human enzyme UGT1A4. With equine liver microsomes (ELM) a stereoselective N‐glucuronidation of norketamine was found that compares well to the results obtained with urines collected after ketamine administration. No reaction was observed with canine liver microsomes, human liver microsomes and UGT1A4. Incubation of ketamine and DHNK with ELM did not reveal any glucuronidation. Enantioselective CE is suitable to provide insight into the phase II metabolism of ketamine and its metabolites.  相似文献   
3.
Lorazepam (LOR) is a 3-hydroxy-1,4-benzodiazepine that is chiral and undergoes enantiomerization at room temperature. In humans, about 75% of the administered dose of LOR is excreted in the urine as its 30-glucuronide. CE-MS with negative ESI was used to confirm the presence of LOR-30-glucuronide in urines that stemmed from a healthy individual who ingested 1 or 2 mg LOR, whereas free LOR could be detected in extracts prepared from enzymatically hydrolyzed urines. As the 30-glucuronidation reaction occurs at the chiral center of the molecule, two diastereoisomers can theoretically be formed, molecules that can no longer interconvert. The stereoselective formation of LOR glucuronides in humans and in vitro was investigated. MEKC analysis of extracts of the nonhydrolyzed urines suggested the presence of the two different LOR glucuronides in the urine. The formation of the same two diastereoisomers was also observed in vitro employing incubations of LOR with human liver microsomes in the presence of uridine 5'-diphospho-glucuronic acid as coenzyme. The absence of other coenzymes excluded the formation of phase I or other phase II metabolites of LOR. Both results revealed a stereoselectivity, one diastereoisomer being formed in a higher amount than the other. After enzymatic hydrolysis using beta-glucuronidase, these peaks could not be detected any more. Instead, LOR was monitored. Analysis of the extracts prepared from enzymatically hydrolyzed urines by MEKC in the presence of 2-hydroxypropyl-beta-CD revealed the enantiomerization process of LOR (observation of two peaks of equal magnitude connected with a plateau zone). The data presented provide for the first time the evidence of the stereoselectivity of the LOR glucuronidation in humans.  相似文献   
4.
Herb extracts were shown to inhibit the activity of UDP-glucuronosyltransferases (UGTs) in vitro. However, the actual in vivo effect of the inhibitory ability on oral bioavailability is yet verified. In this study, resveratrol (RES) was used as a model drug to study the effect of three Chinese herb extracts, Ganoderma, Rhodiola and grape seed, on the in vitro and in vivo inhibition of glucuronidation and the in vivo bioavailability of RES. Overall, although herb extracts might show inhibition on glucuronidation of RES in vitro and in vivo, the inhibition of glucuronidation did not necessarily mean to improve the in vivo bioavailability of RES.  相似文献   
5.
栾连军  曾苏  刘志强 《色谱》1997,15(2):94-98
 采用体外孵有生物合成方法,获得葡萄糖醛酸耷类代谢物,并建立了其保留指数预测方法,在实验条件下,误差小于12%。  相似文献   
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该文研究了大豆苷元苯磺酸酯衍生物D1~D3在人主动脉血管平滑肌细胞中的代谢途径。利用高效液相色谱-质谱(HPLC-MS)检测了大豆苷元苯磺酸酯衍生物的细胞代谢产物,初步推断出苯磺酸酯衍生物的体外代谢途径。研究发现,大豆苷元苯磺酸酯衍生物D1~D3水解代谢产物的进一步葡萄糖醛酸苷化和硫酸化是其主要代谢途径,二者存在竞争关系,衍生物均可以代谢成先导物大豆苷元(DD)。其中化合物D2是先发生苯磺酸酯基的水解,然后甲基醚水解生成DD的代谢途径,表明在细胞内水解酶的作用下苯磺酸酯键比甲基醚键更易发生水解。而化合物D1、D3则存在两种可能的代谢途径,表明在细胞内水解酶的作用下,乙酰基、乙基和苯磺酸酯基可以同时发生水解。该体外代谢途径的研究可为化合物D1~D3的整体实验提供可靠的理论依据。  相似文献   
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