neuroactive steroids
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Author(s):  
Francesca M. Manzella ◽  
Douglas F. Covey ◽  
Vesna Jevtovic‐Todorovic ◽  
Slobodan M. Todorovic

2021 ◽  
Vol 134 ◽  
pp. 105424
Author(s):  
Elizabeth S. Wenzel ◽  
Graziano Pinna ◽  
Tory Eisenlohr-Moul ◽  
Beatriz Penalver Bernabe ◽  
Raquel Romay Tallon ◽  
...  

2021 ◽  
Vol 22 (22) ◽  
pp. 12551
Author(s):  
Silvia Diviccaro ◽  
Valentina Caputi ◽  
Lucia Cioffi ◽  
Silvia Giatti ◽  
Joshua M. Lyte ◽  
...  

Steroid hormones are essential biomolecules for human physiology as they modulate the endocrine system, nervous function and behaviour. Recent studies have shown that the gut microbiota is directly involved in the production and metabolism of steroid hormones in the periphery. However, the influence of the gut microbiota on levels of steroids acting and present in the brain (i.e., neuroactive steroids) is not fully understood. Therefore, using liquid chromatography–tandem mass spectrometry, we assessed the levels of several neuroactive steroids in various brain areas and the plasma of germ-free (GF) male mice and conventionally colonized controls. The data obtained indicate an increase in allopregnanolone levels associated with a decrease in those of 5α-androstane-3α, 17β-diol (3α-diol) in the plasma of GF mice. Moreover, an increase of dihydroprogesterone and isoallopregnanolone in the hippocampus, cerebellum, and cerebral cortex was also reported. Changes in dihydrotestosterone and 3α-diol levels were also observed in the hippocampus of GF mice. In addition, an increase in dehydroepiandrosterone was associated with a decrease in testosterone levels in the hypothalamus of GF mice. Our findings suggest that the absence of microbes affects the neuroactive steroids in the periphery and the brain, supporting the evidence of a microbiota-mediated modulation of neuroendocrine pathways involved in preserving host brain functioning.


Biomolecules ◽  
2021 ◽  
Vol 11 (7) ◽  
pp. 1026
Author(s):  
Kristina Holubova ◽  
Marketa Chvojkova ◽  
Barbora Hrcka Krausova ◽  
Vojtech Vyklicky ◽  
Eva Kudova ◽  
...  

Evidence from clinical and preclinical studies implicates dysfunction of N-methyl-D-aspartate receptors (NMDARs) in schizophrenia progression and symptoms. We investigated the antipsychotic effect of two neuroactive steroids in an animal model of schizophrenia induced by systemic application of MK-801. The neuroactive steroids differ in their mechanism of action at NMDARs. MS-249 is positive, while PA-Glu is a negative allosteric NMDAR modulator. We hypothesized that the positive NMDA receptor modulator would attenuate deficits caused by MK-801 co-application more effectively than PA-Glu. The rats were tested in a battery of tests assessing spontaneous locomotion, anxiety and cognition. Contrary to our expectations, PA-Glu exhibited a superior antipsychotic effect to MS-249. The performance of MS-249-treated rats in cognitive tests differed depending on the level of stress the rats were exposed to during test sessions. In particular, with the increasing severity of stress exposure, the performance of animals worsened. Our results demonstrate that enhancement of NMDAR function may result in unspecific behavioral responses. Positive NMDAR modulation can influence other neurobiological processes besides memory formation, such as anxiety and response to stress.


2021 ◽  
pp. 114699
Author(s):  
Eva Dolejší ◽  
Nikolai Chetverikov ◽  
Eszter Szánti-Pintér ◽  
Dominik Nelic ◽  
Alena Randáková ◽  
...  

2021 ◽  
Vol 23 (6) ◽  
Author(s):  
Lindsay R. Standeven ◽  
Elizabeth Olson ◽  
Nicole Leistikow ◽  
Jennifer L. Payne ◽  
Lauren M. Osborne ◽  
...  

Abstract Purpose of Review To provide an overview of existing studies on alterations in gonadal and neuroactive steroids (NASs) and mood symptoms among women with polycystic ovary syndrome (PCOS). Recent Findings Recent studies have demonstrated a previously underappreciated association between PCOS and comorbid depression and anxiety. However, most studies on affective symptoms among women with PCOS have been cross-sectional, limiting our knowledge about fluctuations in symptoms over the menstrual cycle and reproductive lifespan for women with PCOS, as well as the potential interplay between NAS alterations and mood symptoms. Changes in the NAS allopregnanolone (ALLO) have been implicated in several reproductive-related psychiatric disorders (e.g., premenstrual dysphoric disorder (PMDD) and postpartum depression (PPD)) as well as in normal reproductive functioning, warranting further investigation for its potential role in the psychiatric symptoms observed in women with PCOS. Summary Prospective studies evaluating associations between psychiatric symptoms and NAS are needed to elucidate the biological causes of the increased rates of psychiatric symptoms among women with PCOS and inform clinical treatment. ALLO, with its role in normal reproductive function, menstrual dysregulation among women with PCOS, and reproductive-related psychiatric conditions, makes it a particularly intriguing candidate for future investigation.


Biomolecules ◽  
2021 ◽  
Vol 11 (4) ◽  
pp. 553
Author(s):  
Michal Kaleta ◽  
Jana Oklestkova ◽  
Ondřej Novák ◽  
Miroslav Strnad

Neuroactive steroids are a family of all steroid-based compounds, of both natural and synthetic origin, which can affect the nervous system functions. Their biosynthesis occurs directly in the nervous system (so-called neurosteroids) or in peripheral endocrine tissues (hormonal steroids). Steroid hormone levels may fluctuate due to physiological changes during life and various pathological conditions affecting individuals. A deeper understanding of neuroactive steroids’ production, in addition to reliable monitoring of their levels in various biological matrices, may be useful in the prevention, diagnosis, monitoring, and treatment of some neurodegenerative and psychiatric diseases. The aim of this review is to highlight the most relevant methods currently available for analysis of neuroactive steroids, with an emphasis on immunoanalytical methods and gas, or liquid chromatography combined with mass spectrometry.


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