Benign prostatic hyperplasia (BPH) is the most common benign tumor in males. Androgen/androgen receptor (AR) signaling plays a key role in the development of BPH; its alterations cause an imbalance between prostate cell growth and apoptosis. Furthermore, chronic inflammation and oxidative stress, which are common conditions in BPH, contribute to disrupting the homeostasis between cell proliferation and cell death. With this background in mind, we investigated the effect of ultramicronized palmitoylethanolamide (um-PEA), baicalein (Baic) and co-ultramicronized um-PEA/Baic in a fixed ratio of 10:1 in an experimental model of BPH. BPH was induced in rats by daily administration of testosterone propionate (3 mg/kg) for 14 days. Baic (1 mg/kg), um-PEA (9 mg/kg) and um-PEA/Baic (10 mg/kg) were administered orally every day for 14 days. This protocol led to alterations in prostate morphology and increased levels of dihydrotestosterone (DHT) and of androgen receptor and 5α-reductase expression. Moreover, testosterone injections induced a significant increase in markers of inflammation, apoptosis and oxidative stress. Our results show that um-PEA/Baic is capable of decreasing prostate weight and DHT production in BPH-induced rats, as well as being able to modulate apoptotic and inflammatory pathways and oxidative stress. These effects were most likely related to the synergy between the anti-inflammatory properties of um-PEA and the antioxidant effects of Baic. These results support the view that um-PEA/Baic should be further studied as a potent candidate for the management of BPH.
Palmitoylethanolamide/Baicalein Regulates the Androgen Receptor Signaling and NF-κB/Nrf2 Pathways in Benign Prostatic Hyperplasia.
棕榈酰乙醇胺/黄芩苷调节良性前列腺增生中的雄激素受体信号传导和 NF-κB/Nrf2 通路
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作者:D'Amico Ramona, Genovese Tiziana, Cordaro Marika, Siracusa Rosalba, Gugliandolo Enrico, Peritore Alessio Filippo, Interdonato Livia, Crupi Rosalia, Cuzzocrea Salvatore, Di Paola Rosanna, Fusco Roberta, Impellizzeri Daniela
| 期刊: | Antioxidants | 影响因子: | 6.600 |
| 时间: | 2021 | 起止号: | 2021 Jun 24; 10(7):1014 |
| doi: | 10.3390/antiox10071014 | 研究方向: | 信号转导 |
| 信号通路: | NF-κB | ||
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