Jianzhong Liu, Ph.D.
Affiliations: | 2004 | University of Illinois at Chicago, Health Sciences Center, Chicago, IL 60612, United States |
Area:
Pharmacy, PharmacologyGoogle:
"Jianzhong Liu"Mean distance: (not calculated yet)
Parents
Sign in to add mentorA J. Hopfinger | grad student | 2004 | University of Illinois at Chicago, Health Sciences Center | |
(Spatial comparison of pharmacophores and molecular similarity clustering as QSAR tools.) |
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Publications
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Feng Q, Liu J, Yang Y, et al. (2016) Catalytic growth and characterization of single crystalline Zn doped p-type β-Ga |
Thipnate P, Liu J, Hannongbua S, et al. (2009) 3D pharmacophore mapping using 4D QSAR analysis for the cytotoxicity of lamellarins against human hormone-dependent T47D breast cancer cells. Journal of Chemical Information and Modeling. 49: 2312-22 |
Liu J, Yang L, Hopfinger AJ. (2009) Affinity of drugs and small biologically active molecules to carbon nanotubes: a pharmacodynamics and nanotoxicity factor? Molecular Pharmaceutics. 6: 873-82 |
Lapenna S, Dinan L, Friz J, et al. (2009) Semi-synthetic ecdysteroids as gene-switch actuators: synthesis, structure-activity relationships, and prospective ADME properties. Chemmedchem. 4: 55-68 |
Zheng T, Hopfinger AJ, Esposito EX, et al. (2008) Membrane-interaction quantitative structure--activity relationship (MI-QSAR) analyses of skin penetration enhancers. Journal of Chemical Information and Modeling. 48: 1238-56 |
Liu J, Kern PS, Gerberick GF, et al. (2008) Categorical QSAR models for skin sensitization based on local lymph node assay measures and both ground and excited state 4D-fingerprint descriptors. Journal of Computer-Aided Molecular Design. 22: 345-66 |
Liu J, Hopfinger AJ. (2008) Identification of possible sources of nanotoxicity from carbon nanotubes inserted into membrane bilayers using membrane interaction quantitative structure--activity relationship analysis. Chemical Research in Toxicology. 21: 459-66 |
Li Y, Pan D, Liu J, et al. (2007) Categorical QSAR Models for skin sensitization based upon local lymph node assay classification measures part 2: 4D-fingerprint three-state and two-2-state logistic regression models. Toxicological Sciences : An Official Journal of the Society of Toxicology. 99: 532-44 |
Iyer M, Tseng YJ, Senese CL, et al. (2007) Prediction and mechanistic interpretation of human oral drug absorption using MI-QSAR analysis. Molecular Pharmaceutics. 4: 218-31 |
Li Y, Tseng YJ, Pan D, et al. (2007) 4D-fingerprint categorical QSAR models for skin sensitization based on the classification of local lymph node assay measures. Chemical Research in Toxicology. 20: 114-28 |