2009

Design and pharmacophore modeling of biaryl methyl eugenol analogs as breast cancer invasion inhibitors.

Mohammed Khanfar,, Journal Article, , Design and pharmacophore modeling of biaryl methyl eugenol analogs as breast cancer invasion inhibitors. (2009). Design and pharmacophore modeling of biaryl methyl eugenol analogs as breast cancer invasion inhibitors. Bioorganic & Medicinal Chemistry, 18, 496–507.

2009

Design and pharmacophore modeling of biaryl methyl eugenol analogs as breast cancer invasion inhibitors.

Mohammed Khanfar,, Journal Article, , Design and pharmacophore modeling of biaryl methyl eugenol analogs as breast cancer invasion inhibitors. (2009). Design and pharmacophore modeling of biaryl methyl eugenol analogs as breast cancer invasion inhibitors. Bioorganic & Medicinal Chemistry, 18, 496–507.

2009

The marine natural-derived inhibitors of glycogen synthase kinase-3$\beta$ phenylmethylene hydantoins: In vitro and in vivo activities and pharmacophore modeling

Mohammed Khanfar,, Journal Article, , The marine natural-derived inhibitors of glycogen synthase kinase-3$\beta$ phenylmethylene hydantoins: In vitro and in vivo activities and pharmacophore modeling. (2009). The marine natural-derived inhibitors of glycogen synthase kinase-3$\beta$ phenylmethylene hydantoins: In vitro and in vivo activities and pharmacophore modeling. Bioorganic & Medicinal Chemistry, 17, 6032–6039.

2009

The marine natural-derived inhibitors of glycogen synthase kinase-3$\beta$ phenylmethylene hydantoins: In vitro and in vivo activities and pharmacophore modeling

Mohammed Khanfar,, Journal Article, , The marine natural-derived inhibitors of glycogen synthase kinase-3$\beta$ phenylmethylene hydantoins: In vitro and in vivo activities and pharmacophore modeling. (2009). The marine natural-derived inhibitors of glycogen synthase kinase-3$\beta$ phenylmethylene hydantoins: In vitro and in vivo activities and pharmacophore modeling. Bioorganic & Medicinal Chemistry, 17, 6032–6039.

2009

Rational design and semisynthesis of betulinic acid analogues as potent topoisomerase inhibitors

Mohammed Khanfar,, Journal Article, , Rational design and semisynthesis of betulinic acid analogues as potent topoisomerase inhibitors. (2009). Rational design and semisynthesis of betulinic acid analogues as potent topoisomerase inhibitors. Journal Of Natural Products 72 (9), 1643-1650, 2009, 72, 1643–1650.

2009

Rational design and semisynthesis of betulinic acid analogues as potent topoisomerase inhibitors

Mohammed Khanfar,, Journal Article, , Rational design and semisynthesis of betulinic acid analogues as potent topoisomerase inhibitors. (2009). Rational design and semisynthesis of betulinic acid analogues as potent topoisomerase inhibitors. Journal Of Natural Products, 72, 1643–1650.

2009

Discovery, design, and synthesis of anti-metastatic lead phenylmethylene hydantoins inspired by marine natural products

Mohammed Khanfar,, Journal Article, , Discovery, design, and synthesis of anti-metastatic lead phenylmethylene hydantoins inspired by marine natural products. (2009). Discovery, design, and synthesis of anti-metastatic lead phenylmethylene hydantoins inspired by marine natural products. Bioorganic & Medicinal Chemistry 17 (4), 1731-1738, 2009, 17, 1731–1738.

2009

Discovery, design, and synthesis of anti-metastatic lead phenylmethylene hydantoins inspired by marine natural products

Mohammed Khanfar,, Journal Article, , Discovery, design, and synthesis of anti-metastatic lead phenylmethylene hydantoins inspired by marine natural products. (2009). Discovery, design, and synthesis of anti-metastatic lead phenylmethylene hydantoins inspired by marine natural products. Bioorganic & Medicinal Chemistry, 17, 1731–1738.

2009

Identification of a small molecule class to enhance cell-cell adhesion and attenuate prostate tumor growth and metastasis

Mohammed Khanfar,, Journal Article, , Identification of a small molecule class to enhance cell-cell adhesion and attenuate prostate tumor growth and metastasis. (2009). Identification of a small molecule class to enhance cell-cell adhesion and attenuate prostate tumor growth and metastasis. Molecular Cancer Therapeutics 8 (3), 509-520, 2009, 8, 509–520.

2009

Identification of a small molecule class to enhance cell-cell adhesion and attenuate prostate tumor growth and metastasis

Mohammed Khanfar,, Journal Article, , Identification of a small molecule class to enhance cell-cell adhesion and attenuate prostate tumor growth and metastasis. (2009). Identification of a small molecule class to enhance cell-cell adhesion and attenuate prostate tumor growth and metastasis. Molecular Cancer Therapeutics, 8, 509–520.