| Melatonin, mitochondria, and Ca2+ homeostasis in the exocrine pancreas: an overview | Antonio GONZALEZ,Patricia SANTOFIMIA-CASTAÃ'O,Gines Maria SALIDO | 801–812 |
| Role of melatonin on calcium signaling and mitochondrial oxidativestress in epilepsy: focus on TRP channels | Mustafa NAZIROĞLU | 813–821 |
| Melatonin as a stabilizer of mitochondrial function: role in diseases and aging | Cristina CARRASCO,Ana B. RODRIGUEZ,Jose A. PARIENTE | 822–831 |
| Prooxidant effects of melatonin: a brief review | Malwina S MUNIK,Cem EKMEKÇİOĞLU | 832–839 |
| Mitochondrial DNA-related disorders: emphasis on mechanisms and heterogeneity | Umut CAGIN,Jose Antonio ENRIQUEZ | 840–855 |
| Expression profiles of genes related to melatonin and oxidative stress in human renal proximal tubule cells treated with antibiotic amphotericin B and its modified forms | Joanna GOLA,Aleksandra SKUBIS,Bartosz SIKORA,Celina KRUSZNIEWSKA-RAJS,Jolanta ADAMSKA,Urszula MAZUREK,Barbara STRZALKA-MROZIK,Grzegorz CZERNEL,Mariusz GAGOS | 856–864 |
| The effects of midazolam and etomidate on the antioxidant system in the rat liver | Dilek BAYRAM,Meral ÖNCÜ,Efkan UZ,Haci Ramazan YILMAZ,Ayşe YİĞİT,Ahmet KOÇAK | 865–871 |
| Amelioration of subchronic acrylamide toxicity in large intestine of rats byorganic dried apricot intake | Mehmet Erman ERDEMLİ,Zümrüt DOĞAN,Yilmaz ÇİĞREMİŞ,Müslüm AKGÖZ,Eyüp ALTINÖZ,Murat GEÇER,Yusuf TÜRKÖZ | 872–878 |
| Melatonin induces antiproliferative activity through modulation of apoptoticpathway in H-ras oncogene transformed 5RP7 cells | Ayşe KAPLAN,Gülşen Akalin ÇİFTÇİ,Hatice Mehtap KUTLU | 879–887 |
| The effects of topical melatonin on oxidative stress, apoptosis signals,and p53 protein expression during cutaneous wound healing | Azize ŞENER,Özge ÇEVİK,Özge DOĞAN,Nazli Gül ALTINDİŞ,Halil AKSOY,Betül OKUYAN | 888–895 |
| Melatonin attenuates apoptosis and mitochondrial depolarization levels in hypoxic conditions of SH-SY5Y neuronal cells induced by cobalt chloride (CoCl2) |