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Featured researches published by Xiaofeng Qin.
Journal of Radioanalytical and Nuclear Chemistry | 2011
Yanyan Kong; Xingqin Zhou; Guoxian Cao; Xijie Xu; Meifen Zou; Xiaofeng Qin; Rongjun Zhang
Pyrroloquinoline quinone (PQQ), an essential nutrient, antioxidant, redox modulator and nerve growth factor found in a class of enzymes called quinoproteins, was labeled with 99mTc by using stannous fluoride (SnF2) method. Radiolabeling qualification, quality control and characterization of 99mTc-PQQ and its biodistribution studies in mice were performed and discussed. Effects of pH values, temperature, time and reducing agents concentration on the radiolabeling yield were investigated. The quality control procedure of 99mTc-PQQ was determined by thin layer chromatography (TLC), radio high-performance liquid chromatography (RHPLC) and paper electrophoresis methods. The average radiolabeling yield was 94xa0±xa01% under optimum conditions of 0.99xa0mg of PQQ, 30xa0μg of SnF2, 0.5xa0mg of ethylenediaminetetraacetic acid disodium salt (EDTA-2Na) and 18.5xa0MBq of Na99mTcO4 at pH 6 and 25xa0°C with a response volume of 1xa0±xa00.1xa0mL. 99mTc-PQQ was stable and anionic. Lipid–water partition coefficient of 99mTc-PQQ was −1.49xa0±xa00.16. The pharmacokinetics parameters of 99mTc-PQQ were t1/2αxa0=xa018.16xa0min, t1/2βxa0=xa0100.45xa0min, K12xa0=xa00.013xa0min−1, K21xa0=xa00.017xa0min−1, Kexa0=xa00.016xa0min−1, AUC (area under the curve)xa0=xa01040.78xa0ID%xa0g−1xa0min and CL (plasma clearance)xa0=xa00.096xa0mLxa0min−1. The dual-exponential equation was Yxa0=xa010.88e−0.038txa0+xa05.21e−0.0069t. The biodistribution of 99mTc-PQQ was studied in ICR (Institute for Cancer Research 7701 Burhelme Are., Fox Chase, Philadelphia, PA 1911 USA) mice. In vitro autoradiographic studies clearly showed that the 99mTc-PQQ radioactivity accumulated predominantly in the hippocampus and cortex, which had a high density of N-methyl-d-aspartate Receptor (NMDAR). The enrichment can be blocked by NMDAR redox modulatory site antagonists-ebselen (EB) and 99mTc-PQQ is therefore a promising candidate for the molecular imaging of NMDAR. To date, however, there have been no studies characterizing 99mTc-PQQ.
Behavioural Brain Research | 2016
Xingqin Zhou; Dong Liu; Rongjun Zhang; Ying Peng; Xiaofeng Qin; Shishi Mao
The aim of study was to investigate the effects of pyrroloquinoline quinone (PQQ) combined with d-serine on the modulation of glycine sites in the brain of rats using social recognition test. Rats were divided into seven groups (n=10) and given repeated intraperitoneal (ip) injections of saline, MK-801 (0.5mg/kg), clozapine (1mg/kg), haloperidol (0.1mg/kg), d-serine (0.8g/kg), PQQ (2.0μg/kg), or d-serine (0.4g/kg) combined with PQQ (1.0μg/kg) for seven days. A social recognition test, including assessment of time-dependent memory impairment, was performed. A non-competitive NMDA receptor antagonist, MK-801, significantly impaired social memory, and this impairment was significantly repaired with an atypical antipsychotic (clozapine) but not with a typical antipsychotic (haloperidol). Likewise, d-serine combined with PQQ significantly improved MK-801-disrupted cognition in naïve rats, whereas haloperidol was ineffective. The present results show that the co-agonist NMDA receptor treated with PQQ and d-serine enhances social memory and may be an effective approach for treating the cognitive dysfunction observed in schizophrenic patients. PQQ stimulates glycine modulatory sites by which it may antagonize indirectly by removing glycine from the synaptic cleft or by binding the unsaturated site with d-serine in the brain, providing the insights into future research of central nervous system and drug discovery.
Scientific Reports | 2018
Xingqin Zhou; Zhi-wen Yao; Ying Peng; Shishi Mao; Dong Xu; Xiaofeng Qin; Rongjun Zhang
Oxidative stress is known to be associated with various age-related diseases. D-galactose (D-gal) has been considered a senescent model which induces oxidative stress response resulting in memory dysfunction. Pyrroloquinoline quinone (PQQ) is a redox cofactor which is found in various foods. In our previous study, we found that PQQ may be converted into a derivative by binding with amino acid, which is beneficial to several pathological processes. In this study, we found a beneficial glutamate mixture which may diminish neurotoxicity by oxidative stress in D-gal induced mouse. Our results showed that PQQ may influence the generation of proinflammatory mediators, including cytokines and prostaglandins during aging process. D-gal-induced mouse showed increased MDA and ROS levels, and decreased T-AOC activities in the hippocampus, these changes were reversed by PQQ supplementation. Furthermore, PQQ statistically enhanced Superoxide Dismutase SOD2 mRNA expression. PQQ could ameliorate the memory deficits and neurotoxicity induced by D-gal via binding with excess glutamate, which provide a link between glutamate-mediated neurotoxicity, inflammation and oxidative stress. In addition, PQQ reduced the up-regulated expression of p-Akt by D-gal and maintained the activity of GSK-3β, resulting in a down-regulation of p-Tau level in hippocampus. PQQ modulated memory ability partly via Akt/GSK-3β pathway.
Archive | 2011
Xingqin Zhou; Jiankang Zhang; Xiaofeng Qin; Yanyan Kong; Guoxian Cao
Archive | 2008
Xingqin Zhou; Jiankang Zhang; Xijie Xu; Meifen Zou; Xiaofeng Qin; Rongjun Zhang; Guoxian Cao; Shineng Luo
Archive | 2008
Jiankang Zhang; Xingqin Zhou; Xijie Xu; Xiaofeng Qin; Meifen Zou; Guoxian Cao; Shineng Luo
Archive | 2011
Jiankang Zhang; Xingqin Zhou; Xiaofeng Qin; Xijie Xu; Meifen Zou
Archive | 2011
Xingqin Zhou; Xijie Xu; Meifen Zou; Jiankang Zhang; Chenglong Yan; Xiaofeng Qin; Guoxian Cao
Archive | 2012
Xingqin Zhou; Gangming Cai; Xiaofeng Qin; Meifen Zou; Xijie Xu; Jiankang Zhang; Guoxian Cao
Archive | 2010
Jiankang Zhang; Xingqin Zhou; Xijie Xu; Xiaofeng Qin; Meifen Zou; Guoxian Cao; Shineng Luo