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Spray freeze drying with polyvinylpyrrolidone and sodium caprate for improved dissolution and oral bioavailability of oleanolic acid, a BCS Class IV compound Journal article
International Journal of Pharmaceutics, 2011,Volume: 404,Issue: 2018-01-02,Page: 148
Authors:  Tong H.H.Y.;  Du Z.;  Wang G.N.;  Chan H.M.;  Chang Q.;  Lai L.C.M.;  Chow A.H.L.;  Zheng Y.
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Dissolution  Oleanolic acid  Oral bioavailability  Sodium caprate  Sodium oleanolate  Spray freeze drying  
Formulation development and bioavailability evaluation of a self-nanoemulsified drug delivery system of oleanolic acid Journal article
AAPS PharmSciTech, 2009,Volume: 10,Issue: 1,Page: 172
Authors:  Xi J.;  Chang Q.;  Chan C.K.;  Meng Z.Y.;  Wang G.N.;  Sun J.B.;  Wang Y.T.;  Tong H.H.Y.;  Zheng Y.
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Bioavailability  Dissolution  Oleanolic Acid  Self-nanoemulsified Drug Delivery System (Snedds)  Triterpenoid  
Cytokine responses of human gingival fibroblasts to Actinobacillus actinomycetemcomitans cytolethal distending toxin Journal article
Cytokine, 2005,Volume: 30,Issue: 2,Page: 56-63
Authors:  Belibasakis G.N.;  Johansson A.;  Wang Y.;  Chen C.;  Lagergard T.;  Kalfas S.;  Lerner U.H.
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Actinobacillus actinomycetemcomitans  Cytokines  Cytolethal distending toxin  Gingival fibroblasts  
The cytolethal distending toxin induces receptor activator of NF-κB ligand expression in human gingival fibroblasts and periodontal ligament cells Journal article
Infection and Immunity, 2005,Volume: 73,Issue: 1,Page: 342-351
Authors:  Belibasakis G.N.;  Johansson A.;  Wang Y.;  Chen C.;  Kalfas S.;  Lerner U.H.
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Cell cycle arrest of human gingival fibroblasts and periodontal ligament cells by Actinobacillus actinomycetemcomitans: Involvement of the cytolethal distending toxin Journal article
APMIS, 2004,Volume: 112,Issue: 10,Page: 674-685
Authors:  Belibasakis G.N.;  Mattsson A.;  Wang Y.;  Chen C.;  Johansson A.
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Actinobacillus actinomycetemcomitans  Cell cycle arrest  Cytolethal distending toxin  Flow cytometry  Periodontal connective tissue cells  
Genome sequence and comparative analysis of the solvent-producing bacterium Clostridium acetobutylicum Journal article
Journal of Bacteriology, 2001,Volume: 183,Issue: 16,Page: 4823-4838
Authors:  Nolling J.;  Breton G.;  Omelchenko M.V.;  Makarova K.S.;  Zeng Q.;  Gibson G.;  Hong Mei Lee;  Dubois J.;  Qiu D.;  Hitti J.;  Aldredge T.;  Ayers M.;  Bashirzadeh R.;  Bochner H.;  Boivin M.;  Bross S.;  Bush D.;  Butler C.;  Caron A.;  Caruso A.;  Cook R.;  Daggett P.;  Deloughery C.;  Egan J.;  Ellston D.;  Engelstein M.;  Ezedi J.;  Gilbert K.;  Goyal A.;  Guerin J.;  Ho T.;  Holtham K.;  Joseph P.;  Keagle P.;  Kozlovsky J.;  LaPlante M.;  LeBlanc G.;  Lumm W.;  Majeski A.;  McDougall S.;  Mank P.;  Mao J.-I.;  Nocco D.;  Patwell D.;  Phillips J.;  Pothier B.;  Prabhakar S.;  Richterich P.;  Rice P.;  Rosetti D.;  Rossetti M.;  Rubenfield M.;  Sachdeva M.;  Snell P.;  Spadafora R.;  Spitzer L.;  Shimer G.;  Thomann H.-U.;  Vicaire R.;  Wall K.;  Wang Y.;  Weinstock K.;  Lai Peng Wong;  Wonsey A.;  Xu Q.;  Zhang L.;  Wolf Y.I.;  Tatusov R.L.;  Sabathe F.;  Doucette-Stamm L.;  Soucaille P.;  Daly M.J.;  Bennett G.N.;  Koonin E.V.;  Smith D.R.
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