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1.Liu, F.-R.; Jin, H.; Wang, Y.; Chen, C.; Li, M.; Mao, S.-J.; Wang, Q.T.*; Li, H.*, “Anti-CD123 antibody-modified niosomes for targeted delivery of daunorubicin against acute myeloid leukemia”, Drug Delivery, 2017, 24, 882-890 2.Deng, S.; Wang, Q.T.*; and Ren, P.Y.*, “Estimating and modeling charge transfer from the SAPT induction energy”, Journal of Computational Chemistry, 2017, 38, 2222-2231 3.Rockers, JA ; Wang, QT; Liu, CW; Piquemal, JP; Ren, PY; Ponder, JW, “An optimized charge penetration model for use with the AMOEBA force field”, Physical Chemistry and Chemical Physics, 2017, 19, 276-291 4.Edupuganti, R; Taliaferro, JM; Wang, QT; Xie, X; Cho, EJ; Vidhu, F; Ren, P; Anslyn, EV; Bartholomeusz, C; Dalby, KN, “Discovery of a potent inhibitor of MELK that inhibits expression of the anti-apoptotic protein Mcl-1 and TNBC cell growth”, Bioorganic & Medicinal Chemistry, 2017, 25, 2609-2616 5.Liu, CW; Qi, R; Wang, QT; Piquemal, JP; Ren, PY, “Capturing Many-Body Interactions with Classical Dipole Induction Models”, Journal of Chemical Theory and Computation, 2017, 13, 2751-2761 6.Wang, Y; Liu, FR; Wang, QT; Xiang, HL; Jin, H; Li, H; Mao, SJ, “A novel immunoliposome mediated by CD123 antibody targeting to acute myeloid leukemia cells”, International Journal of Pharmaceutics, 2017, 529, 531-542 7.Qi, R. ;† Wang, Q.T.;† and Ren, P.Y., “General van der Waals potential for common organic molecules”, Bioorgan. Med. Chem., 2016, 24, 4911-4919 (†共同一作) 8.Narth, C.; Lagardere, L.; Polack, E.; Gresh, N.; Wang, Q.T.; Bell, D.R.; Rackers, J.A.; Ponder, J.W.; Ren, P.Y.; Piquemal, J.-P., “Scalable improvement of SPME multipolar electrostatics in anisotropic polarizable molecular mechanics using a general short-range penetration correction up to quadrupoles”, J. Comp. Chem., 2016 ,37 (5), 494-506 9.Wang, Q.T.; Rackers, J.A.; He, C.; Qi, R.; Narth, C.; Lagardere, L.; Gresh, N.; Ponder, J.W.; Piquemal, J.-P.; Ren, P.Y., “General model for treating short-range electrostatic penetration in a molecular mechanics force field”, Journal of Chemical Theory and Computation, 2015, 11, 2609-2618 10.Wang, Q.T.; Edupuganti, R.; Tavares, C.D.J.; Dalby, K.N. and Ren, P., “Using docking and alchemical free energy perturbation to determine the binding mechanism of eEF2K inhibitors and prioritizing the compound synthesis”, Frontiers in Molecular Biosciences, section Molecular Recognition, 2015, 2, 9 11.Qi, R.; Wang, L.-P.; Wang, Q.T.; Pande, V.; Ren, P.Y., “United polarizable multipole water model for molecular mechanics simulation”, J. Chem. Phys., 2015, 143, 014504 12.Zhang, C.; Lu, C.; Wang, Q.T.; Ponder, J.W.; Ren, P., “Polarizable Multipole-Based Force Field for Dimethyl and Trimethyl Phosphate”, Journal of Chemical Theory and Computation, 2015, 11, 5326-39 13.Li, J.; Zheng, Y.; Yu, X.L.; Lv, S.Y.; Wang, Q.T.; Hai, L.; Wu, Y., “Synthesis of isatins by the palladium-catalyzed intramolecular acylation of unactivated aryl C(sp(2))-H bonds”, RCS Advances, 2015, 5 (125), 103280-103283 14.Wang, Q.T.; Park, J.H.; Devokota, A.; Cho, E.J.; Dalby, K.N. and Ren, P., “Identification and validation of novel PERK inhibitors”, J. Chem. Inf. Model., 2014, 54, 1467–1475 15.Mu, X.;† Wang, Q.T.;† Wang, L.P.; Fried, S.D.; Piquemal, J.P.; Dalby, K.N.; and Ren, P., “Modeling Organochlorine Compounds and the σ-hole Effect Using a Polarizable Multipole Force Field”, J. Phys. Chem. B, 2014, 118 (24), pp 6456–6465, (†共同一作 ) 16.Edupugantia, R.;† Wang, Q.T.;† Tavaresc, C.D.J.;† Chitjian, C.A.; Bachmanb, J.L.; Ren, P.; Anslynb, E.V. and Dalbya, K.N., “Synthesis and Biological Evaluation of Pyrido[2,3-d]pyrimidine-2,4-dione Derivatives as eEF-2K Inhibitors”, Bioorganic & Medicinal Chemistry, 2014, 22, 4910-4916, (†共同一作) 17.Abella, J.R.; Cheng,S.Y.; Wang, Q.T.; Yang, W. and Ren, P., “Hydration Free Energy from Orthogonal Space Random Walk and Polarizable Force Field”, J. Chem. Theory Comput., 2014, 10, 2792-2801 18.Devkota, A.K.; Edupugantia, R.; Yan, C.; Shi, Y.; Jose, J.; Wang, Q.T.; Kaoud, T.S.; Cho, E.J.; Ren, P. and Dalby, K.N., “Reversible Covalent Inhibition of eEF-2K by Carbonitriles”, ChemBioChem, 2014, 15, 2435-2442