Endocrinology · 1997 · 459 citations · 24 references
Leptin Treatment RescuesFertilityReproductive HealthFood IntakeGynecologyReproductive BiologyReproductive PhysiologyObesityReproductive EndocrinologyBody CompositionHypothalamic PeptidePublic HealthInfertilityLeptin TreatmentObesity ManagementDevelopmental EndocrinologyEndocrinologyPhysiologyMedicineReproductive HormoneWhite Adipose Tissue
Leptin, a hormone secreted from white adipose tissue, has been shown to normalize the body weight of ob/ob but not db/db mice as postulated by Coleman in his classical parabiosis experiments. The major effect of leptin is therefore to decrease food intake, thus resulting in a breakdown of fat stores. Recently, we have suggested that leptin plays a role in reproductive physiology based on the observation that leptin treatment but not food restriction rescues the sterility of ob/ob females. In the present communication, we treated sterile ob/ob males with leptin and asked whether fertility could be induced, thus selecting their reproductive ability as the endpoint of the experiment. Our results show that all food-restricted ob/ob males are unable to impregnate normal C57BL/6J females. However, all leptin-treated ob/ob males fertilized normal females mice that carried out normal pregnancies and deliveries, demonstrating that the reproductive capacity of ob/ob males was corrected only with leptin treatment. Furthermore, reproductive indices such as testicular weight and histology are normalized in leptin-treated animals. Therefore, as in ob/ob females, leptin plays a significant role in the male mouse reproductive pathways.
24
Positional cloning of the mouse obese gene and its human homologue
Yiying Zhang, Ricardo Proenca, Margherita Maffei et al. · Nature · 1994 · 13.3K citations
Weight-Reducing Effects of the Plasma Protein Encoded by the <i>obese</i> Gene
Jeffrey L. Halaas, K.S. Gajiwala, Margherita Maffei et al. · Science · 1995 · 4.4K citations
Identification and expression cloning of a leptin receptor, OB-R
Louis A. Tartaglia, Marlene Dembski, Xun Weng et al. · Cell · 1995 · 3.5K citations · Full text
Signal Transduction, Molecular Physiology, Hypothalamic Peptide +7