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Dive into the research topics where Yang Xinggang is active.

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Featured researches published by Yang Xinggang.


International Journal of Pharmaceutics | 2014

Study on intralymphatic-targeted hyaluronic acid-modified nanoliposome: influence of formulation factors on the lymphatic targeting.

Ye Tiantian; Zhang Wenji; Sun Mingshuang; Yang Rui; Song Shuangshuang; Mao Yuling; Yao Jianhua; Yang Xinggang; Wang Shu-jun; Pan Wei-san

In this study, hyaluronic acid-modified docetaxel-loaded liposomes were prepared to evaluate the lymphatic targeting after subcutaneous administration, and formulation factors affecting the lymphatic targeting were examined, including free hyaluronic acid, molecular weight, hyaluronic acid-density and particle diameter. The high molecular weight hyaluronic acid-modified docetaxel-loaded liposomes (HA-LPs) and low molecular weight hyaluronic acid-modified docetaxel-loaded liposomes (LMWHA-LPs) were prepared via electrostatic attraction. The physicochemical properties and in vitro drug release were evaluated. The lymphatic drainage and the lymph node uptake were investigated by pharmacokinetics and distribution recovery of docetaxel in lymph nodes, injection site and plasma. The lymphatic targeting ability of optimized Cy7-loaded LMWHA-LPs (LMWHA-LPs/Cy7) was evaluated by near-infrared fluorescence imaging technique. The result showed that HA-LPs and LMWHA-LPs with suitable and stable physicochemical properties could be used for in vivo lymphatic targeting studies. Hyaluronic acid-modified liposome significantly increased the docetaxel recovery in lymph nodes, and displayed higher AUC(0-24h) and longer retention time compared to unmodified liposomes in vivo. In contrast, the presence of free hyaluronic acid hindered the lymphatic drainage and increased the plasma-drug concentration. Importantly, LMWHA-modification improved lymphatic drainage and lymph node uptake of liposomes compared with HA-modification. And Lymph node uptake of LMWHA-LPs depended mainly on LMWHA-density instead of particle size. The results of in vivo imaging showed that LMWHA-LPs/Cy7 significantly located in the lymphatic system. And both DTX-loaded and Cy7-loaded LMWHA-LPs had similar and stable lymphatic target level. Our investigation showed that LMWHA-LPs were a highly promising lymphatic targeting carrier for chemotherapy drugs and diagnostic fluorescence agents.


Archive | 2013

Fenofibrate osmotic pump controlled release preparation and preparation method thereof

Nie Shufang; Pan Wei-san; Tang Xin; Sun Guangmei; Yang Xinggang; Guan Jin


Archive | 2013

Nanosuspension osmotic pump type sustained-release system of insoluble drugs and preparation method thereof

Pan Wei-san; Liu Dandan; Chen Fen; Li Fei; Lin Congcong; Pan Hao; Li Wei; Yang Xinggang


Archive | 2014

Bilobalide controlled release tablet and preparation method thereof

Yang Xinggang; Liang Jingge; Zhu Zhihong; Zhao Qianqian; Pan Wei-san


Zhongnan Yaoxue | 2016

Preparation of antianginal trimetazidine hydrochloride and the influence factors of drug release

Li Yuenan; Wang Yuwei; Zhu Zhihong; Luo Jinghan; Li Chang; Yang Xinggang; Pan Wei-san


Archive | 2013

Novel paliperidone progressively-increased release osmotic pump preparation and preparation method thereof

Pan Wei-san; Xu Heming; Li Zhao; Chen Fen; Pan Hao; Li Qijun; Yang Xinggang; Li Wei; Liu Dandan


RSC Advances (Web) | 2017

腫瘍標的送達のためのヒアルロン酸ベース両親媒性共重合体のin vitro‐in vivo評価:疎水性基の役割【Powered by NICT】

Zhu Zhihong; Li Dongyang; Li Yuenan; Yang Xinggang; Pan Wei-san


RSC Advances (Web) | 2017

癌治療のための新規高分子ミセルへの親水性ゲムシタビンと疎水性パクリタキセルの共送達【Powered by NICT】

Di Yan; Gao Yunyun; Gai Xiumei; Wang Dun; Wang Yingying; Yang Xiaoguang; Zhang Dan; Pan Wei-san; Yang Xinggang


Carbohydrate Polymers | 2017

点眼薬送達のためのグルタルアルデヒドで橋かけしたカルボキシメチルキトサンとポロキサマーから成る新規pH感温性ヒドロゲル【Powered by NICT】

Yu Shihui; Zhang Xiaoyu; Tan Guoxin; Tian Lei; Liu Dandan; Liu Yaxuan; Yang Xinggang; Pan Wei-san


Zhongnan Yaoxue | 2016

塩酸塩酸塩徐放錠の調製とビーグル イヌ体内薬物代謝動力学の研究【JST・京大機械翻訳】

Li Xue; Di Yan; Wang Haiying; Wang Lijie; Gao Yunyun; Chen Jianting; Pan Wei-san; Yang Xinggang

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Pan Wei-san

Shenyang Pharmaceutical University

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Sun Mingshuang

Shenyang Pharmaceutical University

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Li Wei

Shenyang Pharmaceutical University

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Liu Wei

Shenyang Pharmaceutical University

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Mao Yuling

Shenyang Pharmaceutical University

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Nie Shufang

Shenyang Pharmaceutical University

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Song Shuangshuang

Shenyang Pharmaceutical University

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Wang Shu-jun

Shenyang Pharmaceutical University

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Yang Rui

Shenyang Pharmaceutical University

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Yao Jianhua

Shenyang Pharmaceutical University

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