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Featured researches published by Qilong Wang.


Drug Development Research | 2015

Self-nanoemulsifying drug delivery system of trans-cinnamic acid: formulation development and pharmacodynamic evaluation in alloxan-induced type 2 diabetic rat model.

Houyong Wang; Qiang Li; Wenwen Deng; Emmanuel Omari-Siaw; Qilong Wang; Shicheng Wang; Shengli Wang; Xia Cao; Ximing Xu; Jiangnan Yu

Preclinical Research


International Journal of Pharmaceutics | 2016

Tissue distribution and enhanced in vivo anti-hyperlipidemic-antioxidant effects of perillaldehyde-loaded liposomal nanoformulation against Poloxamer 407-induced hyperlipidemia.

Emmanuel Omari-Siaw; Qilong Wang; Congyong Sun; Zengquan Gu; Yuan Zhu; Xia Cao; Caleb Kesse Firempong; Rita Agyare; Ximing Xu; Jiangnan Yu

An optimized perillaldehyde-loaded liposomal nanoformulation (PAH-LNF) was successfully applied to improve the pharmacological effect of perillaldehyde (PAH) in poloxamer 407-induced hyperlipidemia. Oral administration of PAH-LNF (240mg/kg per body weight) in rats significantly enhanced solubility and relative bioavailability (270.7%) compared to the free PAH with about 2.7-, 1.5-, 1.3-, 1.3- and 1.5-fold increase in AUC, T1/2, MRT, Cmax and Tmax, respectively. Tissue distribution study also revealed the accumulation of PAH in the liver, lungs, spleen, kidney, brain and heart in order of decreasing affinity. Moreover, a significant decrease in serum total cholesterol (TC), triglyceride (TG) and low-density lipoprotein cholesterol (LDL-C) with simultaneous increase in high-density lipoprotein cholesterol (HDL-C) level was observed in the chemically-induced hyperlipidemic mice which further confirmed PAHs anti-hyperlipidemic properties. Additionally, PAH-LNF also significantly increased the activities of superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) with a concurrent decrease in malondialdehyde (MDA) to affirm the antioxidant and hepatoprotective effects of PAH. Thus, liposomal nanoformulation promises to be a useful drug delivery system for the development of PAH.


International Journal of Pharmaceutics | 2018

A novel formulation of [6]-gingerol: Proliposomes with enhanced oral bioavailability and antitumor effect

Qilong Wang; Qiuyu Wei; Qiuxuan Yang; Xia Cao; Qiang Li; Feng Shi; Shan Shan Tong; Chunlai Feng; Qingtong Yu; Jiangnan Yu; Ximing Xu

[6]-Gingerol, one of the components of the rhizome of Ginger, has a variety of biological activities such as anticoagulant, antioxidative, antitumor, anti-inflammatory, antihypertensive, and so forth. However, as one of the homologous phenolic ketones, [6]-gingerol is insoluble in water which limits its applications. Herein, we prepared [6]-gingerol proliposomes through modified thin-film dispersion method, which was spherical or oval, and physicochemically stable with narrow size distribution. Surprisingly, in vitro release of [6]-gingerol loaded proliposome compared with the free [6]-gingerol was significantly higher and its oral bioavailability increased 5-fold in vivo. Intriguingly, its antitumor effect was enhanced in the liposome formulation. Thus, our prepared [6]-gingerol proliposome proved to be a novel formulation for [6]-gingerol, which significantly improved its antitumor effect.


Scientific Reports | 2018

Photoluminescent Cationic Carbon Dots as efficient Non-Viral Delivery of Plasmid SOX9 and Chondrogenesis of Fibroblasts

Xia Cao; Jianping Wang; Wenwen Deng; Jingjing Chen; Yan Wang; Jie Zhou; Pan Du; Wenqian Xu; Qiang Wang; Qilong Wang; Qingtong Yu; Myron Spector; Jiangnan Yu; Ximing Xu

With the increasing demand for higher gene carrier performance, a multifunctional vector could immensely simplify gene delivery for disease treatment; nevertheless, the current non- viral vectors lack self-tracking ability. Here, a type of novel, dual-functional cationic carbon dots (CDs), produced through one-step, microwave-assisted pyrolysis of arginine and glucose, have been utilized as both a self-imaging agent and a non-viral gene vector for chondrogenesis from fibroblasts. The cationic CDs could condense the model gene plasmid SOX9 (pSOX9) to form ultra-small (10–30 nm) nanoparticles which possessed several favorable properties, including high solubility, tunable fluorescence, high yield, low cytotoxicity and outstanding biocompatibility. The MTT assay indicated that CDs/pSOX9 nanoparticles had little cytotoxicity against mouse embryonic fibroblasts (MEFs) compared to Lipofectamine2000 and PEI (25 kDa). Importantly, the CDs/pSOX9 nanoparticles with tunable fluorescence not only enabled the intracellular tracking of the nanoparticles, but also could successfully deliver the pSOX9 into MEFs with significantly high efficiency. Furthermore, the CDs/pSOX9 nanoparticles-mediated transfection of MEFs showed obvious chondrogenic differentiation. Altogether, these findings demonstrated that the CDs prepared in this study could serve as a paradigmatic example of the dual-functional reagent for both self-imaging and effective non-viral gene delivery.


International Journal of Pharmaceutics | 2018

Enhanced oral bioavailability and anti-gout activity of [6]-shogaol-loaded solid lipid nanoparticles

Qilong Wang; Qiuxuan Yang; Xia Cao; Qiuyu Wei; Caleb Kesse Firempong; Min Guo; Feng Shi; Ximing Xu; Wenwen Deng; Jiangnan Yu

Graphical abstract Figure. No Caption available. Abstract [6]‐Shogaol, an alkylphenol compound purified from the root and stem of ginger (Zingiber officinale), has attracted considerable interest due to its potential anticancer, antioxidative and antirheumatic properties. However, the oral bioavailability of [6]‐shogaol has been severely limited because of its poor solubility. In this study, a significant quantity of high‐purity [6]‐shogaol (yield: 3.6%; purity: 98.65%) was extracted and encapsulated in solid lipid nanoparticles (SLNs) via high‐pressure homogenization (encapsulation efficiency: 87.67%) to improve its solubility and oral bioavailability. The resulting [6]‐shogaol‐loaded solid lipid nanoparticles (SSLNs) were stable, homogeneous and well‐dispersed. Its mean particle size and zeta potential were 73.56 ± 5.62 nm and −15.2 ± 1.3 mV, respectively. Importantly, the in vitro release profile and in vivo oral bioavailability of SSLNs were significantly improved compared with the free drug. Furthermore, the SSLNs could remarkably lower the uric acid level via inhibiting the activity of xanthine oxidase and reduce the production of interleukin‐1&bgr; (IL‐1&bgr;) and tumor necrosis factor (TNF‐&agr;) in the hyperuricemia/gouty arthritis rat model, when compared to the free [6]‐shogaol. Collectively, SLNs could serve as a promising drug delivery system to improve the oral bioavailability of [6]‐shogaol for effective treatment of gouty arthritis.


Archives of Pharmacal Research | 2015

Improved oral bioavailability of capsaicin via liposomal nanoformulation: preparation, in vitro drug release and pharmacokinetics in rats

Yuan Zhu; Miaomiao Wang; Jiajia Zhang; Wei Peng; Caleb Kesse Firempong; Wenwen Deng; Qilong Wang; Shicheng Wang; Feng Shi; Jiangnan Yu; Ximing Xu; Weiming Zhang


Journal of Functional Foods | 2016

Enhanced oral bioavailability of [6]-Gingerol-SMEDDS: Preparation, in vitro and in vivo evaluation

Yang Xu; Qilong Wang; Yingshu Feng; Caleb Kesse Firempong; Yuan Zhu; Emmanuel Omari-Siaw; Yuanyuan Zheng; Zunqin Pu; Ximing Xu; Jiangnan Yu


Journal of Drug Delivery Science and Technology | 2018

Galangin-loaded, liver targeting liposomes: Optimization and hepatoprotective efficacy

Jing Zhu; Qilong Wang; Huihua Li; Huiyun Zhang; Yuan Zhu; Emmanuel Omari-Siaw; Congyong Sun; Qiuyu Wei; Wenwen Deng; Jiangnan Yu; Ximing Xu


International Journal of Food Science and Technology | 2018

Chemical characterisation and hypolipidaemic effects of two purified Pleurotus eryngii polysaccharides

Xing Jin; Qilong Wang; Xia Yang; Min Guo; Wenjing Li; Jixiang Shi; Michael Adu-Frimpong; Ximing Xu; Wenwen Deng; Jiangnan Yu


Aaps Pharmscitech | 2018

Formulation, Characterization, and Pharmacokinetic Studies of 6-Gingerol-Loaded Nanostructured Lipid Carriers

Qiuyu Wei; Qiuxuan Yang; Qilong Wang; Congyong Sun; Yuan Zhu; Ya Niu; Jiangnan Yu; Ximing Xu

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