As antidepressant usage by the global population continues to increase, their persistent detection in aquatic habitats from municipal wastewater effluent release has led to concerns of possible impacts on non-target organisms, including fish. These pharmaceuticals have been marketed as mood-altering drugs, specifically targeting the monoaminergic signaling in the brain of humans. However, the monoaminergic systems are highly conserved and involved in the modulation of a multitude of endocrine functions in vertebrates. While most studies exploring possible impact of antidepressants on fish have focused on behavioural perturbations, a smaller spotlight has been placed on the endocrine functions, especially related to reproduction, growth, and the stress response. The purpose of this review is to highlight the possible role of antidepressants as endocrine disruptors in fish. While studies linking the effects of environmentally relevant levels of antidepressant on the endocrine system in fish are sparse, the emerging evidence suggests that early-life exposure to these compounds have the potential to alter the developmental programming of the endocrine system, which could persist as long-term and multigenerational effects in teleosts.
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http://dx.doi.org/10.3389/fendo.2022.895064 | DOI Listing |
Naunyn Schmiedebergs Arch Pharmacol
January 2025
Department of Pharmacology, College of Medicine and Health Sciences, Afe Babalola University, Ado-Ekiti, Ekiti State, Nigeria.
Stress is linked to oxidative imbalance, neuroendocrine system malfunction, and cognitive dysfunction. It is a recognized cause of neuropsychiatric diseases. Natural flavonoid apigenin (API) has neuroprotective and antidepressant properties, but little is known about its potential in restoring memory function under stress-related circumstances.
View Article and Find Full Text PDFFront Pharmacol
January 2025
Department of Dermatology, The First Affiliated Hospital of Heilongjiang University of Chinese Medicine, Harbin, China.
Total glucosides of paeony (TGP) are a group of monoterpenes extracted from , primarily including metabolites such as paeoniflorin and oxypaeoniflorin. Modern pharmacological studies have shown that TGP possesses a variety of biological effects, including immunomodulatory, anti-inflammatory, hepatoprotective, nephroprotective, antidepressant, and cell proliferation regulatory activities. In recent years, clinical research has demonstrated favorable therapeutic effects of TGP on disorders of the liver, cardiovascular, nervous, endocrine, and skeletal systems.
View Article and Find Full Text PDFJ Mol Histol
December 2024
The Departments of Medical Physiology, Faculty of Medicine, Fayoum University, Fayoum, Egypt.
Traditional antidiabetic treatments often carry the risk of beta-cell exhaustion, highlighting the need for therapies that promote beta-cell regeneration. This study investigates the comparative effects of Liraglutide, naltrexone/bupropion (NTX + BUP), and caloric restriction on metabolic control and beta-cell regeneration in a rat model of obese type 2 diabetes. Fifty male albino rats were randomized into five groups: normal control, diabetic control, diabetic + caloric restriction (50%), diabetic + NTX + BUP (4 mg/45 mg /kg/day orally), and diabetic + liraglutide (0.
View Article and Find Full Text PDFZhongguo Zhong Yao Za Zhi
November 2024
Longhua Hospital, Shanghai University of Traditional Chinese Medicine Shanghai 200032, China.
Depression, a heterogeneous disorder with symptoms involving emotion, cognition, and behavior, is characterized by high morbidity, low treatment acceptance, and recurrent episodes. It is expected to become a major disease in the global healthcare burden by 2030. The pathogenesis of depression is complex, involving genetic, environmental, neurological, immune, endocrine and other factors, among which neuroplasticity plays a key role in the development of depression and antidepressant treatment.
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