“O2O”模式在臨床藥師規範化培訓中的應用研究. 教改項目,2020.01-2022.12.第一負責人。
豬苓多糖與rIL-2結合物長循環脂質體及抗瘤活性研究. 省科技攻關計劃. 2003.7—2004.12,第一負責人。
複方豬苓多糖與rIL-2長循環脂質體及抗瘤活性研究. 湖北省科技攻關計劃. 2005.1—2006.12,第一負責人。
新型補鐵劑當歸多糖鐵精細結構的鑒定及方法學研究. 湖北省自然基金項目. 2007.9—2009.8,第一負責人。
當歸多糖鐵協同補血的血細胞調控分子生物學機理研究.省自然科學基金. 2007.1—2008.12,第二負責人。
當歸多糖鐵協同補血的血細胞調控分子生物學機理研究.省中醫藥中西醫結合科研課題. 2007.1—2008.12,第二負責人。
新型補鐵劑當歸多糖鐵的研制.湖北省科技攻關計劃. 2005.1—2006.12,第二負責人。
注射級香菇多糖的提取工藝研究.橫向課題. 2007.9-2008.9,第二負責人。
當歸多糖鐵口服液的研制與開發.市科技攻關計劃. 2008.1-2009.12,第二負責人。
湖北道地植物多糖及其鐵複合物開放鐵釋放通道調節鐵代謝的作用研究.省自然基金重點項目. 2008.10-2011.9,第二負責人。
當歸多糖特異性肝靶向的分子機理研究. 國家自然科學基金,2011.1-2013.12,第二負責人。
當歸多糖作為肝靶向給藥系統載體的可行性研究. 88858cc永利官网自然重點項目. 2010.10-2012.09,第二負責人。
香菇多糖藥用研究. 橫向課題, 2011.6-2013.6,第二負責人。
當歸多糖抑制hepcidin表達的分子機制研究. 國家自然科學基金,2010.1-2010.12,第二負責人。
當歸多糖作為鐵調素抑制劑參與機體鐵代謝的分子機制研究. 國家自然科學基金,2013.1-2016.12,第二負責人。
香菇多糖非免疫途徑抗腫瘤作用的分子機制研究. 武漢市科技攻關, 2013.1-2014.12, 第二負責人。
香菇多糖抗腫瘤構效關系及誘導腫瘤細胞凋亡的分子機制研究. 國家自然科學基金, 2014.1-2017.12, 第一負責人。
藥用植物多糖的綠色提取工藝、結構鑒定及新劑型的關鍵技術研發. 湖北省科技支撐計劃項目2014BKB088, 2014.1-2015.12,第二負責人。
當歸多糖靶向性調節肝細胞胰島素敏感參與機體糖脂代謝的分子機制研究. 88858cc永利官网自主創新項目, 2014.12-2016.12,第一負責人。
當歸多糖調節機體糖脂代謝紊亂的分子機制研究,武漢市科技計劃,2016060101010059,2016/08-2018/08,15萬,第二負責人
中藥複方多糖提取工藝、降糖降脂功效及新劑型的關鍵技術研究,湖北省技術創新專項重大項目,2016ACA147,2017/01-2018/12,50萬,第二負責人
典型病種精準用藥模型集成、推廣與優化,國家重點研發計劃子課題,2017.07-2020.12,822萬,第一負責人,
生血甯片通過調節EPO表達改善腎性貧血的作用及分子機制研究.橫向課題.2018.03-2019.09,第二負責人。
中藥複方多糖提取工藝及降糖降脂功效研究. 橫向課題. 2018.06-2020.06,第二負責人。
天然多糖體内檢測方法的建立和藥代動力學機制研究. 省自然基金重點項目. 500萬.第一負責人。
Dectin-1介導的香菇多糖體内吸收代謝機制研究. 國家自然科學基金. 55萬. 2020.01-2023.12,第一負責人。
基于多組學的器官移植免疫抑制精準用藥技術研發及應用. 省重點研發計劃項目. 2020.08-2022.12, 200萬. 第一負責人。
endo-β-1,4-mannanase和MR介導的鐵皮石斛多糖胃腸道藥代動力學機制研究. 國家自然科學基金. 56萬. 2021.01-2024.12,第二負責人。
Cost-Effectiveness of Zoledronic Acid Versus Oral Alendronate for Postmenopausal Osteoporotic Women in China, Frontiers in Pharmacology, 2020, 11:1-10.
Cost-Effectiveness Analysis Of EGFR Mutation Testing And Afatinib Versus Gemcitabine-Cisplatin As First-Line Therapy For Advanced Non-Small-Cell Lung Cancer In China, Cancer Management and Research, 2019, 11:10239-10248.
Cost Effectiveness of Bosentan for Pulmonary Arterial Hypertension: A Systematic Review, Canadian Respiratory Journal, 2018, 1-12.
Pharmacy administration and pharmaceutical care practice in a module hospital during the COVID-19 epidemic. Journal of the American Pharmacists Association. 2020, 60:431-438.
國産和進口替莫唑胺膠囊治療腦膠質瘤的藥物經濟學評價[J].藥物評價研究,2021,44(01):111-115.
建設“健康中國” 公立醫院如何作為[N]. 人民政協報,2020-12-18(003).
新型冠狀病毒肺炎合并腦卒中患者的合理用藥與藥學監護[J].藥物評價研究,2020,43(12):2557-2564.
黨的領導在公立醫院防控新冠肺炎疫情中的實踐探析[J].中國醫院,2020,24(11):8-10.
生物信息學共表達外推法初構食管癌精準化療生物标志物模型[J].中國醫院藥學雜志,2020,40(23):2440-2444.
醫療機構藥品遴選指南計劃書[J].中國醫院藥學雜志,2020,40(24):2501-2505.
以人民為中心:新冠肺炎疫情防控工作的價值追求[J].決策與信息,2020(10):14-19.
供給側思維下三級綜合醫院學科建設[J].解放軍醫院管理雜志,2020,27(07):664-666.
針對單劑量口服分包藥品的病區“無紙化核對系統”的建立與應用[J].中國醫院藥學雜志,2020,40(13):1471-1473+1483.
COVID-19疫情期間捐贈藥品的管理實踐與思考[J].藥物評價研究,2020,43(06):1003-1007.
武漢協和醫院 當“績考”遇到“疫考”[J].中國衛生,2020(06):34-36.
“零接觸”信息化藥學服務在醫院防控新冠肺炎疫情中的應用[J].中國數字醫學,2020,15(05):51-54.
質子泵抑制劑優化應用專家共識[J/OL].中國醫院藥學雜志:1-24[2021-01-15].
回顧新冠肺炎合理用藥的關鍵點[N]. 健康報,2020-04-28(008).
COVID-19疫情期間門診藥學服務O2O模式的實踐與探讨[J].中國醫院藥學雜志,2020,40(14):1511-1515.
讓黨旗在抗疫一線高高飄揚[N]. 健康報,2020-04-15(007).
新型冠狀病毒肺炎(COVID-19)合并糖尿病患者的藥學服務和監護策略[J].藥物評價研究,2020,43(04):601-605.
“參與式問責”提升醫院民主管理效能實踐與探索[J].中國醫院,2020,24(04):72-73.
江漢方艙醫院藥事管理與藥學服務實踐[J].中國藥師,2020,23(04):702-706.
方艙醫院290名新型冠狀病毒肺炎患者用藥現狀分析與建議[J].中國醫院藥學雜志,2020,40(11):1189-1191.
新型冠狀病毒肺炎疫情下的合理用藥及藥學服務策略[J].中國醫院藥學雜志,2020,40(10):1071-1076.
方艙醫院線上藥學服務模式的實踐與探讨[J].中國醫院藥學雜志,2020,40(08):876-879.
新型冠狀病毒肺炎重型危重型患者的規範化營養治療藥學服務路徑[J].醫藥導報,2020,39(05):645-649.
方艙醫院新型冠狀病毒肺炎患者治療的藥學監護[J].醫藥導報,2020,39(05):650-653.
新型冠狀病毒肺炎疫情中後期重點工作與策略探析[J].中國醫院管理,2020,40(03):9-11.
基于疫情暴發地定點醫院視角的新型冠狀病毒肺炎防治實踐與思考[J].中國醫院管理,2020,40(03):18-21.
大型三甲醫院靜脈用藥調配中心COVID-19疫情防控策略[J].中國醫院藥學雜志,2020,40(04):359-363.
新型冠狀病毒肺炎疫情防控的藥學應急保障難點與應對[J].中國醫院藥學雜志,2020,40(03):243-249.
新型冠狀病毒感染肺炎重症患者的營養支持及監護建議[J].中國醫院藥學雜志,2020,40(05):471-473.
藥學應急保障應建四個機制[N]. 健康報,2020-02-17(005).
新型冠狀病毒肺炎疫情下治療藥物監測實驗室感染防控策略[J].醫藥導報,2020,39(03):330-333.
深學細悟 踐行為民服務宗旨[N]. 健康報,2020-02-03(005).
“開門”抓教育 “門口”解民憂 辦群衆滿意醫院[N]. 健康報,2020-01-15(002).
基于多因素評價法的醫院職能部門績效評價[J].中國衛生質量管理,2019,26(06):23-26.
以黨的建設全面引領醫院改革發展——武漢協和醫院貫徹落實黨委領導下的院長負責制工作實踐[J].學習月刊,2019(11):38-40.
三級公立醫院參與企業醫院改制實踐與探讨[J].中國醫院,2019,23(10):42-44.
綜合性醫院培養全科醫生的實踐與思考[J].中國醫院,2019,23(04):73-75.
應用Markov模型對厄貝沙坦和比索洛爾治療高血壓伴心衰的長期藥物經濟學評價[J].中國藥學雜志,2017,52(24):2209-2213.
讓“失責必問”成為常态[N]. 健康報,2016-10-24(006).
藥物基因檢測:實現精準醫療的階梯[J].中國醫院藥學雜志,2015:22-34+21.
武漢協和醫院:踐行群衆路線 開展特色管理[J].黨建,2014(07):48-49.
為執行力順暢抵達“拆牆建橋”[N]. 健康報,2014-06-16(005).
部管醫院參與區域衛生一體化建設的實踐與探讨[J].中國醫院,2013,17(06):73-75.
公立醫院與基層醫療衛生機構分工協作的現狀及策略[J].中國醫院管理,2013,33(04):11-13.
中外醫院管理隊伍職業化研究差異[J].中國醫院,2013,17(01):30-33.
做好幹部醫療保健工作的實踐體會[J].現代醫院管理,2009,7(05):59-61.
構建醫患溝通路徑的實踐與探讨[J].中國醫院,2008(04):58-60.
Lentinan inhibited colon cancer growth by inducing endoplasmic reticulum stress-mediated autophagic cell death and apoptosis. Carbohydrate Polymers. 2021,267,118154.
Molecular dynamics simulation of lentinan and its interaction with the innate receptor dectin-1. International Journal of Biological Macromolecules. 2021, 171, 527-538.
A multifunctional magnetic nanosystem based on “two strikes” effect for synergistic anticancer therapy in triple-negative breast cancer. Journal of Controlled Release. 2020, 322:401-415
Metabolic degradation of lentinan in liver mediated by CYP450 enzymes and epoxide hydrolase. Carbohydrate Polymers, 2020, 253.
Identification of the core active structure of a Dendrobium officinale polysaccharide and its protective effect against dextran sulfate sodium-induced colitis via alleviating gut microbiota dysbiosis. Food Research International, 2020, 137.
Angelica sinensis polysaccharide attenuates CCl4-induced liver fibrosis via the IL-22/STAT3 pathway. International Journal of Biological Macromolecules, 2020, 162.
The important role of polysaccharides from a traditional Chinese medicineLung Cleansing and Detoxifying Decoction against the COVID-19 pandemic. Carbohydrate Polymers. 2020, 240:116346.
Ultra-dispersed biomimetic nanoplatform fabricated by controlled etching agglomerated MnO2 for enhanced photodynamic therapy and immune activation. Chemical Engineering Journal. 2020, 397:125478
Dendrobium officinale polysaccharide protected CCl4-induced liver fibrosis through intestinal homeostasis and the LPS-TLR4-NF-kB signaling pathway. Front Pharmacol. 2020, 11
Self-assembled Angelica sinensis polysaccharide nanoparticles with an instinctive liver-targeting ability as a drug carrier for acute alcoholic liver damage protection. International Journal of Pharmaceutics. 2020, 577, 118996
Prediction of tacrolimus dosage in the early period after heart transplantation: a population pharmacokinetic approach. Pharmacogenomics. 2019, 20(1):21-35.
A comparative study on the structures of Grifola frondosa polysaccharides obtained by different decolourization methods and their in vitro antioxidant activities. Food & Function. 2019,10,6720-6731
Purification, structural elucidation and anti-inflammatory activity in vitro of polysaccharides from Smilax china L. International Journal of Biological Macromolecules, 2019, 139, 233-243.
A “turn-on” near-infrared fluorescent probe with high sensitivity for detecting reduced glutathione based on red shift in vitro and in vivo. Dyes and Pigments, 2020, 172, 107837
Angelica sinensis polysaccharide nanoparticles as a targeted drug delivery system for enhanced therapy of liver cancer. Carbohydrate Polymers, 2019,219:143-154
Oral administration of Angelica sinensis polysaccharide protects against pancreatic islets failure in type 2 diabetic mice: Pancreatic β-cell apoptosis inhibition. Journal of Functional Foods 54 (2019): 361-370
A sensitive and rapid radiolabelling method for the in vivo pharmacokinetic study of lentinan. Food Funct., 2018, 9, 3114-3125
Dendrobium officinale polysaccharide attenuates type 2 diabetes mellitus via the regulation of PI3K/Akt-mediated glycogen synthesis and glucose metabolism. Journal of Functional Foods. January 2018, Pages 261-271
Pharmacokinetics, biodistribution and receptor mediated endocytosis of a natural Angelica sinensis polysaccharide. Artificial Cells, Nanomedicine, and Biotechnology. 2017 1:1-10.
Investigation of the transport and absorption of Angelica sinensis polysaccharide through gastrointestinal tract both in vitro and in vivo. Drug Delivery. 2017 Nov;24(1):1360-1371.
Acidic Polysaccharide from Angelica sinensis Reverses Anemia of Chronic Disease Involving the Suppression of Inflammatory Hepcidin and NF-κB Activation, Oxidative Medicine and Cellular Longevit, Volume 2017,13 pages
Protective effects of Angelica sinensis polysaccharide against hyperglycemia and liver injury in multiple low-dose streptozotocininduced type 2 diabetic BALB/c mice. Food & Function. 2016, 7, 4889-4897
Filicinic acid based meroterpenoids with anti-Epstein–Barr virus activities from Hypericum japonicum, Org. Lett. 2016, 18:2272−2275
(±)-Japonones A and B, two pairs of new enantiomers with anti-KSHV activities from Hypericum japonicum, Sci. Rep. 2016, 6, 27588. DOI: 10.1038/srep27588
(±)-Japonicols A–D, acylphloroglucinol-based meroterpenoid enantiomers with anti-KSHV activities from Hypericum japonicum, J. Nat. Prod. 2016, 79, 1322−1328
A new megastigmane sesquiterpenoid from Zanthoxylum schinifolium Sieb. et Zucc., Molecules 2016, 21, 383. DOI:10.3390/molecules21030383.
Two new bioactive α-pyrones from Hypericum japonicum, Molecules 2016, 21, 515.
Chronic administration of Angelica sinensis polysaccharide effectively improves fatty liver and glucose homeostasis in high-fat diet-fed mice, Sci. Rep. 2016,6:26229
Polysaccharide from Lentinus edodes combined with oxaliplatin possesses the synergy and attenuation effect in hepatocellular carcinoma, cancer letters. 2016,377:117-125
Structural characterization and in vitro antitumor activity of an acidic polysaccharide from Angelica sinensis (Oliv.) Diels. Carbohydrate Polymers. 2016
The effects of polysaccharides from the root of Angelica sinensis on tumor growth and iron metabolism in H22-bearing mice. Food & Function. 2016,7:1033-1039
Angelica sinensis polysaccharide attenuates concanavalin A-induced liver injury in mice. International Immunopharmacology. 2016,31:140-148
Induction of apoptosis in S180 tumour bearing mice by polysaccharide from Lentinus edodes via mitochondria apoptotic pathway. Journal of functional foods. 2015 ,15:151-159.
Angelica sinensis polysaccharide regulates glucose and lipid metabolism disorder in prediabetic and streptozotocin-induced diabetic mice through the elevation of glycogen levels and reduction of inflammatory factors. Food & Function. 2015,6:902-909
The action of JAK, SMAD and ERK signal pathways on hepcidin suppression by polysaccharides from Angelica sinensis in rats with iron deficiency anemia. Food & Function,2014,5:1381-1388.
Structural differences and conformational characterization of five bioactive polysaccharides from Lentinus Edodes. Food Research International, 2014,62:223-232.
Alkali-Soluble Polysaccharide, Isolated from Lentinus edodes, Induces Apoptosis and G2/M Cell Cycle Arrest in H22 Cells Through Microtubule Depolymerization. Phytotherapy Research,2014,12:1837-1845
Structure and inducing tumor cell apoptosis activity of polysaccharide isolated from Lentinus edodes. Journal of agricultural and food chemistry, 2013,61(41):9849-9858.
Polysaccharide Isolated from Angelica sinensis Inhibits Hepcidin Expression in Rats with Iron Deficiency Anemia. Journal Of Medical Food, 2012,15 (10):923–929.
Study to establish the role of JAK2 and SMAD1/5/8 pathways in the inhibition of hepcidin by polysaccharides from Angelica sinensis. Journal of Ethnopharmacology, 2012, 144(10):433-440
Inhibitory effect of polysaccharides isolated from Angelica sinensis on hepcidin expression. Journal of Ethnopharmacology, 2011, 134(3):944-948
A comparison study between different molecular weight polysaccharides derived from Lentinus edodes and their antioxidant activities in vivo, 2011,49(12):1298-1305
Structure,Chain comformation and antitumor activity of a novel polysaccharide from Lentinus edodes. Fitoterapia, 2010, 81(8):1163-1170