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Featured researches published by Guobin Ren.


Pharmaceutical Development and Technology | 2017

Characterization of ibuprofen microparticle and improvement of the dissolution

Fuzheng Ren; Jianping Su; Hui Xiong; Ying Tian; Guobin Ren; Qiufang Jing

Abstract The objective of this study was to prepare ibuprofen (IBP) microparticles by pH-change method and enhance the dissolution rate in vitro. Tween80 and Cremophor RH40 were selected as stabilizers to change the microparticles morphology. The microparticles were evaluated by dissolution profiles and characterized by differential scanning calorimetry (DSC), powder X-ray diffraction (XRD), laser particle size analyzer, scanning electron microscope (SEM) and Fourier transform infrared spectroscopy (FTIR). IBP microparticle prepared with surfactants showed a significant increase in dissolution rate (more than three times within 10 min) and an obvious decrease in mean particle size. The morphology of microparticles was obviously changed. XRD and DSC results revealed that the crystalline state of the untreated IBP and the prepared IBP microparticles were similar. The crystallinity of microparticles produced might be lightly reduced by adding surfactants in preparation process. All results showed that it was useful to prepare high dispersion microparticle by adding surfactants in the preparation process for improving the dissolution.


Pharmaceutical Development and Technology | 2017

A mixed solvent system for preparation of spherically agglomerated crystals of ascorbic acid.

Fuzheng Ren; Yaru Zhou; Yan Liu; Jinping Fu; Qiufang Jing; Guobin Ren

Abstract The objective of this research was to develop a novel solvent system to prepare spherically agglomerated crystals (SAC) of ascorbic acid with improved flowability for direct compression. A spherical agglomeration method was developed by selecting the mixed solvents (n-butyl and ethyl acetate) as a poor solvent and the process was further optimized by using triangular phase diagram and particle vision measurement. Physiochemical properties of SAC were characterized and compared with original drug crystals. It showed that amount of poor solvent, ratio of solvent mixture, and drug concentration are critical for preparation of SAC with desirable properties. The solid state of SAC was same as original crystals according to DSC, XRD, and FT-IR results. There was no significant difference in solubility and dissolution rate of drug between SAC and original crystals. The flowability and packability of SAC as well as the tensile strength and elastic recovery of tablets made from SAC were all significantly improved when compared with original crystals and tablets from crystals. It is concluded that the present method was suitable to prepare SAC of ascorbic acid for direct compression.


European Journal of Pharmaceutical Sciences | 2017

Improving the physicochemical properties of bicalutamide by complex formation with bovine serum albumin

Congbin Yang; Peiwen Di; Jinping Fu; Hui Xiong; Qiufang Jing; Guobin Ren; Yun Tang; Wenyun Zheng; Guixia Liu; Fuzheng Ren

Abstract Bicalutamide‐bovine serum albumin (Bic‐BSA) complexes were prepared by anti‐solvent precipitation. Bovine serum albumin (BSA) was used as a stabilizer for particle growth. The physicochemical properties of Bic‐BSA were analyzed by scanning electron microscopy, X‐ray powder diffraction and differential scanning calorimetry. The interaction between Bic and BSA was characterized by Fourier transform infrared spectroscopy, Raman spectroscopy, fluorescence spectroscopy and molecular docking. The particle size could be easily reduced to 1–10 &mgr;m with a good lognormal distribution. The Bic‐BSA complexes exhibited nonporous spherical morphology with a uniformly plicated surface. Moreover, the crystal form and thermostability of Bic were altered in the presence of BSA. Bic was found to make hydrogen bonding and hydrophobic interactions with BSA by spectroscopic studies and molecular docking. Results from the Van’t Hoff equation and binding free energy calculations indicated that the improvement of physicochemical properties was the consequence of a variety of interactions in the Bic‐BSA system. Bic‐BSA tablets showed significantly enhanced dissolution. It was concluded that BSA plays an important role in improving the physicochemical properties of Bic due to strong multiple interactions between Bic and BSA. Graphical abstract Figure. No Caption available.


Journal of Pharmaceutical Sciences | 2018

Antisolvent Recrystallization Strategy to Screen Appropriate Carriers to Stabilize Filgotinib Amorphous Solid Dispersions

Fuzheng Ren; Hanjing Sun; Lin Cui; Yike Si; Ning Chen; Guobin Ren; Qiufang Jing

Drugs in amorphous solid dispersions (ASDs) are highly dispersed in hydrophilic polymeric carriers, which also help to restrain recrystallization and stabilize the ASDs. In this study, microscopic observation after antisolvent recrystallization was developed as a rapid screening method to select appropriate polymers for the initial design filgotinib (FTN) ASDs. Using solvent evaporation, FTN ASDs with the polymers were prepared, and accelerated experimentation validated this screening method. Fourier-transform infrared spectroscopy, Raman scattering, and nuclear magnetic resonance revealed hydrogen-bonding formation in the drug-polymer binary system, which was critical for ASDs stabilization. A Flory-Huggins interaction parameter and water sorption isotherms were applied to evaluate the strength of the interaction between FTN and the polymers. The dissolution rate was also significantly improved by ASDs formulation, and the presence of the polymers exerted solubilization effects. These results suggested the efficacy of this screening method as a preliminary tool for polymer selection in ASDs design.


Aaps Pharmscitech | 2017

The Physicochemical Investigation of 17β-Estradiol Crystalline Prepared by In Situ pH-Dependent Solubility Technique with Polyvinylpyrrolidone

Hui Xiong; Jinping Fu; Hanjing Sun; Enfu Wang; Yunhui Ding; Guobin Ren; Qiufang Jing; Fuzheng Ren

ABSTRACTMicro-particles of 17β-estradiol (ED) were prepared with polyvinylpyrrolidone (PVP) by in situ pH-dependent solubility technique. Products were characterized using multiple instruments, and molecular interactions between ED and PVP were explored. Powder X-ray diffraction and thermal analysis revealed crystalline ED in the micro-particles is hemihydrated. PVP was also present in the micro-particles. Laser particle size analysis and scanning electron microscopy revealed thin slice morphology, which might have resulted from the influence of PVP. Moreover, the results of contact angle, specific surface area, and dynamic vapor sorption showed that the surface properties of products were improved. These physicochemical properties of the micro-particles resulted in an obvious improvement in dissolution rate. Fourier transform infrared spectroscopy and 1H nuclear magnetic resonance revealed hydrogen bonding between ED and PVP. A method was established for the preparation of micro-particles through the addition of PVP during the reaction process.


Crystal Growth & Design | 2015

Estimating Thermodynamic Stability Relationship of Polymorphs of Sofosbuvir

Minghui Qi; Minghuang Hong; Yan Liu; Enfu Wang; Fuzheng Ren; Guobin Ren


Organic Process Research & Development | 2016

Influence of Temperature, Solvents, and Excipients on Crystal Transformation of Agomelatine

Yan Liu; Huiru Gao; Hao Xu; Fuzheng Ren; Guobin Ren


Journal of Chemical & Engineering Data | 2015

Solubility of Agomelatine Crystal Form I and Form II in Pure Solvents and (Isopropanol + Water) Mixtures

Yan Liu; Huiru Gao; Fuzheng Ren; Guobin Ren


Journal of Molecular Structure | 2019

Four solid forms of filgotinib hydrochloride: Insight into the crystal structures, properties, stability, and solid-state transitions

Minghui Qi; Qiao-Dan Zhang; Yang Liu; Fuzheng Ren; Guobin Ren


Powder Technology | 2018

Exploring the effect of PVP on the spherical agglomeration process and micromeritic properties of ascorbic acid

Saixu Huang; Yan Liu; Yaru Zhou; Qiang Li; Guobin Ren; Qiufang Jing; Fuzheng Ren

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Fuzheng Ren

East China University of Science and Technology

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Qiufang Jing

East China University of Science and Technology

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Hui Xiong

East China University of Science and Technology

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Jinping Fu

East China University of Science and Technology

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Yan Liu

East China University of Science and Technology

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Lin Cui

East China University of Science and Technology

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Congbin Yang

East China University of Science and Technology

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Enfu Wang

East China University of Science and Technology

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Hanjing Sun

East China University of Science and Technology

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Minghui Qi

East China University of Science and Technology

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