| Regulation of E2F1 activity via PKA-mediated phosphorylations | Mustafa Gokhan ERTOSUN,Sayra DİLMAC,Fatma Zehra HAPİL,Gamze TANRİOVER,Sadi KOKSOY,Osman Nidai OZES | 215–229 |
| Regulation of E2F1 activity via PKA-mediated phosphorylations | Mustafa Gökhan ERTOSUN, Gamze TANRIÖVER, Sayra DİLMAÇ, Sadi KÖKSOY, Osman Nidai ÖZEŞ, Fatma Zehra HAPİL | 215–229 |
| E-cadherin might be a stage-dependent modulator in aggressiveness in pancreatic cancer cells | Esra AYDEMİR COBAN,Didem TECİMEL,Ezgi KASİKCİ,Omer Faruk BAYRAK,Fikrettin SAHİN | 230–237 |
| E-cadherin might be a stage-dependent modulator in aggressiveness in pancreatic cancer cells | Fikrettin ŞAHİN, Esra AYDEMİR ÇOBAN, Didem TECİMEL, Ezgi KAŞIKCI, Ömer Faruk BAYRAK | 230–237 |
| Anxiolytic, antioxidant, and neuroprotective effects of goji berry polysaccharides in ovariectomized rats: experimental evidence from behavioral, biochemical, and immunohistochemical analyses | Fatma PEHLİVAN KARAKAS,Hamit COSKUN,Hayriye SOYTURK,Bihter Gokce BOZAT | 238–251 |
| Anxiolytic, antioxidant, and neuroprotective effects of goji berry polysaccharides in ovariectomized rats: experimental evidence from behavioral, biochemical, and immunohistochemical analyses | Hayriye SOYTÜRK, Fatma PEHLİVAN KARAKAŞ, Hamit COŞKUN, Bihter Gökçe BOZAT | 238–251 |
| Comparison of anticarcinogenic properties of Viburnum opulus and its active compound p-coumaric acid on human colorectal carcinoma | Serdar KARAKURT,Gulsum ABUSOGLU,Zekiye Ceren ARİTULUK | 252–263 |
| Comparison of anticarcinogenic properties of Viburnum opulus and its active compound p-coumaric acid on human colorectal carcinoma | Serdar KARAKURT, Zekiye Ceren ARITULUK, Gülsüm ABUŞOĞLU | 252–263 |
| Caffeic acid phenethyl ester induces apoptosis in colorectal cancer cells via inhibition of survivin | Ceren SARİ,Ceren SUMER,Figen CELEP EYUPOGLU | 264–274 |
| Caffeic acid phenethyl ester induces apoptosis in colorectal cancer cells via inhibition of survivin | Ceren SÜMER, Ceren SARI, Figen CELEP EYÜPOĞLU | 264–274 |
| Upregulation of PSMD4 gene by hypoxia in prostate cancer cells |