synthetic steroids
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Author(s):  
Jill Escher ◽  
Wei Yan ◽  
Emilie F. Rissman ◽  
Hsiao-Lin V. Wang ◽  
Arturo Hernandez ◽  
...  

AbstractInvestigations into the etiology of autism spectrum disorders have been largely confined to two realms: variations in DNA sequence and somatic developmental exposures. Here we suggest a third route—disruption of the germline epigenome induced by exogenous toxicants during a parent’s gamete development. Similar to cases of germline mutation, these molecular perturbations may produce dysregulated transcription of brain-related genes during fetal and early development, resulting in abnormal neurobehavioral phenotypes in offspring. Many types of exposures may have these impacts, and here we discuss examples of anesthetic gases, tobacco components, synthetic steroids, and valproic acid. Alterations in parental germline could help explain some unsolved phenomena of autism, including increased prevalence, missing heritability, skewed sex ratio, and heterogeneity of neurobiology and behavior.


Cells ◽  
2021 ◽  
Vol 10 (8) ◽  
pp. 1907
Author(s):  
George E. Barreto ◽  
Andrew J. McGovern ◽  
Luis M. Garcia-Segura

Estradiol exerts neuroprotective actions that are mediated by the regulation of a variety of signaling pathways and homeostatic molecules. Among these is neuroglobin, which is upregulated by estradiol and translocated to the mitochondria to sustain neuronal and glial cell adaptation to injury. In this paper, we will discuss the role of neuroglobin in the neuroprotective mechanisms elicited by estradiol acting on neurons, astrocytes and microglia. We will also consider the role of neuroglobin in the neuroprotective actions of clinically relevant synthetic steroids, such as tibolone. Finally, the possible contribution of the estrogenic regulation of neuroglobin to the generation of sex differences in brain pathology and the potential application of neuroglobin as therapy against neurological diseases will be examined.


Molecules ◽  
2021 ◽  
Vol 26 (9) ◽  
pp. 2643
Author(s):  
Danni Wu ◽  
Kathleen Joyce Carillo ◽  
Jiun-Jie Shie ◽  
Steve S.-F. Yu ◽  
Der-Lii M. Tzou

For decades, high-resolution 1H NMR spectroscopy has been routinely utilized to analyze both naturally occurring steroid hormones and synthetic steroids, which play important roles in regulating physiological functions in humans. Because the 1H signals are inevitably superimposed and entangled with various JH–H splitting patterns, such that the individual 1H chemical shift and associated JH–H coupling identities are hardly resolved. Given this, applications of thess information for elucidating steroidal molecular structures and steroid/ligand interactions at the atomic level were largely restricted. To overcome, we devoted to unraveling the entangled JH–H splitting patterns of two similar steroidal compounds having fully unsaturated protons, i.e., androstanolone and epiandrosterone (denoted as 1 and 2, respectively), in which only hydroxyl and ketone substituents attached to C3 and C17 were interchanged. Here we demonstrated that the JH–H values deduced from 1 and 2 are universal and applicable to other steroids, such as testosterone, 3β, 21-dihydroxygregna-5-en-20-one, prednisolone, and estradiol. On the other hand, the 1H chemical shifts may deviate substantially from sample to sample. In this communication, we propose a simple but novel scheme for resolving the complicate JH–H splitting patterns and 1H chemical shifts, aiming for steroidal structure determinations.


Biomolecules ◽  
2020 ◽  
Vol 10 (4) ◽  
pp. 572
Author(s):  
Sukhmeen Kaur Kohli ◽  
Abhay Bhardwaj ◽  
Vinay Bhardwaj ◽  
Anket Sharma ◽  
Namarta Kalia ◽  
...  

Steroids are a pivotal class of hormones with a key role in growth modulation and signal transduction in multicellular organisms. Synthetic steroids are widely used to cure large array of viral, fungal, bacterial, and cancerous infections. Brassinosteroids (BRs) are a natural collection of phytosterols, which have structural similarity with animal steroids. BRs are dispersed universally throughout the plant kingdom. These plant steroids are well known to modulate a plethora of physiological responses in plants leading to improvement in quality as well as yield of food crops. Moreover, they have been found to play imperative role in stress-fortification against various stresses in plants. Over a decade, BRs have conquered worldwide interest due to their diverse biological activities in animal systems. Recent studies have indicated anticancerous, antiangiogenic, antiviral, antigenotoxic, antifungal, and antibacterial bioactivities of BRs in the animal test systems. BRs inhibit replication of viruses and induce cytotoxic effects on cancerous cell lines. Keeping in view the biological activities of BRs, this review is an attempt to update the information about prospects of BRs in biomedical and clinical application.


2020 ◽  
Vol 25 (1) ◽  
pp. 23-27
Author(s):  
Mădălina-Georgiana Bătrînu ◽  
Amelia Tero-Vescan

AbstractThe nervous system is not just a target organ for synthetic steroids. It is also controlled in a certain manner by steroids synthesized de novo in the brain, at the level of both neurones and glial cells. The impressive recent number of literature studies, clearly demonstrates the presence of enzymes necessary for syntheses of central neurosteroids and also the mechanism by which they act. Neurosteroids play a considerable part as an endogenous modulator of brain function and behaviour processes, and the decrease of their concentration can be associated with the pathophysiology of different neurological diseases accompanied by cognitive disorders such as depression, anxiety, schizophrenia, Alzheimer disease.


Neuroscience ◽  
2015 ◽  
Vol 290 ◽  
pp. 138-146 ◽  
Author(s):  
M. Rey ◽  
A.S. Veleiro ◽  
A.A. Ghini ◽  
M.S. Kruse ◽  
G. Burton ◽  
...  

2014 ◽  
Vol 66 (4) ◽  
pp. 195-202 ◽  
Author(s):  
Isabel Cristina Cherici Camargo ◽  
Gabriel Adan Araújo Leite ◽  
Tiago Pinto ◽  
João Tadeu Ribeiro-Paes

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