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1.
Toxicology ; 505: 153846, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38815618

ABSTRACT

Atrazine (ATR) is one of the most widely utilized herbicides globally and is prevalent in the environment due to its extensive use and long half-life. It can infiltrate the human body through drinking water, ingestion, and dermal contact, and has been recognized as an environmental endocrine disruptor. This study aims to comprehensively outline the detrimental impacts of ATR on the endocrine system. Previous research indicates that ATR is harmful to various bodily systems, including the reproductive system, nervous system, adrenal glands, and thyroi d gland. The toxic effects of ATR on the endocrine system and its underlying molecular mechanisms are summarized as follows: influencing the expression of kisspeptin in the HPG axis, consequently affecting steroid synthesis; disrupting DNA synthesis and meiosis, as well as modifying DNA methylation levels, leading to reproductive and developmental toxicity; impacting dopamine by altering Nurr1, VMAT2, and DAT expression, consequently affecting dopamine synthesis and transporter expression, and influencing other neurotransmitters, resulting in neurotoxicity; and changing adipose tissue synthesis and metabolism by reducing basal metabolism, impairing cellular oxidative phosphorylation, and inducing insulin resistance. Additionally, a compilation of natural products used to mitigate the toxic effects of ATR has been provided, encompassing melatonin, curcumin, quercetin, lycopene, flavonoids, vitamin C, vitamin E, and other natural remedies. It is important to note that existing research predominantly relies on in vitro and ex vivo experiments, with limited population-based empirical evidence available.


Subject(s)
Atrazine , Endocrine Disruptors , Herbicides , Atrazine/toxicity , Humans , Animals , Endocrine Disruptors/toxicity , Herbicides/toxicity , Endocrine System/drug effects
2.
World J Gastroenterol ; 30(9): 1073-1095, 2024 Mar 07.
Article in English | MEDLINE | ID: mdl-38577191

ABSTRACT

Hepatocrinology explores the intricate relationship between liver function and the endocrine system. Chronic liver diseases such as liver cirrhosis can cause endocrine disorders due to toxin accumulation and protein synthesis disruption. Despite its importance, assessing endocrine issues in cirrhotic patients is frequently neglected. This article provides a comprehensive review of the epidemiology, pathophysiology, diagnosis, and treatment of endocrine disturbances in liver cirrhosis. The review was conducted using the PubMed/Medline, EMBASE, and Scielo databases, encompassing 172 articles. Liver cirrhosis is associated with endocrine disturbances, including diabetes, hypoglycemia, sarcopenia, thyroid dysfunction, hypogonadotropic hypogonadism, bone disease, adrenal insufficiency, growth hormone dysfunction, and secondary hyperaldosteronism. The optimal tools for diagnosing diabetes and detecting hypoglycemia are the oral glucose tolerance test and continuous glucose monitoring system, respectively. Sarcopenia can be assessed through imaging and functional tests, while other endocrine disorders are evaluated using hormonal assays and imaging studies. Treatment options include metformin, glucagon-like peptide-1 analogs, sodium-glucose co-transporter-2 inhibitors, and insulin, which are effective and safe for diabetes control. Established standards are followed for managing hypoglycemia, and hormone replacement therapy is often necessary for other endocrine dysfunctions. Liver transplantation can address some of these problems.


Subject(s)
Diabetes Mellitus , Hypoglycemia , Sarcopenia , Humans , Blood Glucose Self-Monitoring , Sarcopenia/diagnosis , Sarcopenia/etiology , Sarcopenia/therapy , Blood Glucose/metabolism , Liver Cirrhosis/complications , Liver Cirrhosis/diagnosis , Liver Cirrhosis/therapy , Endocrine System/metabolism , Diabetes Mellitus/epidemiology , Insulin/therapeutic use , Hypoglycemia/complications
4.
Environ Toxicol Pharmacol ; 107: 104435, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38588759

ABSTRACT

This study investigated the impact of neonatal exposure to endocrine-active compounds (EACs): flutamide (antiandrogen), 4-tert-octylphenol (an estrogenic compound), and methoxychlor (an organochlorine insecticide exhibiting estrogenic, antiestrogenic and antiandrogenic activities) on androgen production within porcine adrenal glands. The expression of genes related to androgen synthesis and the level of androgen production were analyzed (i) in the adrenal glands of piglets exposed to EACs during the first 10 days of life (in vivo study), and (ii) in adrenal explants from sow-fed or formula-fed 10-day-old piglets incubated with EACs (ex vivo study). EACs affected the expression of genes linked to adrenal androgen biosynthesis. The prominent effect of methoxychlor on downregulation of StAR, CYP11A1 and HSD3B and upregulation of CYP17A1 and SULT2A1 were demonstrated. Furthermore, our study revealed divergent response to EACs between sow-fed and formula-fed piglets, suggesting that natural feeding may provide protection against adverse EACs effects, particularly those interfering with estrogens action.


Subject(s)
Androgens , Methoxychlor , Animals , Female , Swine , Methoxychlor/metabolism , Endocrine System , Estrogens , Androgen Antagonists/toxicity
5.
Int J Mol Sci ; 25(7)2024 Mar 29.
Article in English | MEDLINE | ID: mdl-38612627

ABSTRACT

The aryl hydrocarbon receptor (AHR) serves as a ligand-activated transcription factor crucial for regulating fundamental cellular and molecular processes, such as xenobiotic metabolism, immune responses, and cancer development. Notably, a spectrum of endocrine-disrupting chemicals (EDCs) act as agonists or antagonists of AHR, leading to the dysregulation of pivotal cellular and molecular processes and endocrine system disruption. Accumulating evidence suggests a correlation between EDC exposure and the onset of diverse pancreatic diseases, including diabetes, pancreatitis, and pancreatic cancer. Despite this association, the mechanistic role of AHR as a linchpin molecule in EDC exposure-related pathogenesis of pancreatic diseases and cancer remains unexplored. This review comprehensively examines the involvement of AHR in EDC exposure-mediated regulation of pancreatic pathogenesis, emphasizing AHR as a potential therapeutic target for the pathogenesis of pancreatic diseases and cancer.


Subject(s)
Pancreatic Diseases , Pancreatic Neoplasms , Pancreatitis , Humans , Receptors, Aryl Hydrocarbon/genetics , Pancreatic Diseases/etiology , Pancreatic Neoplasms/etiology , Pancreatitis/chemically induced , Endocrine System
6.
Article in English | MEDLINE | ID: mdl-38460577

ABSTRACT

Estrogens and androgens are typical steroid hormones and often occur together in contaminated aquatic environments, but their mixed effects in aquatic organisms have been less well reported. In this study, the endocrine disrupting effects of binary mixtures of 17ß-estradiol (E2) and testosterone (T) in western mosquitofish (Gambusia affinis) were assessed by analyzing the sex ratio, secondary sex characteristics, gonadal histology, and transcriptional expression of target genes related to the hypothalamic-pituitary-gonadal (HPG) axis in G. affinis (from embryos) continuously exposed to E2 (50 ng/L), T (T1: 50 ng/L; T2: 200 ng/L), and mixtures of both (E2 + T1: 50 + 50 ng/L; E2 + T2: 50 + 200 ng/L) for 119 d. The results showed that exposure to E2 + T1 and E2 + T2 reduced the length ratio of ray 4/6 ratio in male G. affinis, suggesting feminized phenomenon in male G. affinis. Furthermore, 16.7-38.5 % of female G. affinis showed masculinized anal fins and hemal spines when exposed to T alone and in combination with E2. Importantly, the transcriptional levels of certain target genes related to the HPG axis were significantly altered in G. affinis following exposure to E2 and T alone and in combinations. Moreover, exposure to E2 and T in combinations can lead to combined effects (such as synergistic and antagonistic effects) on the transcriptional levels of some genes. These results collectively suggest that exposure to environmentally relevant concentrations of E2 and T alone and in mixtures can impact the endocrine system of G. affinis, and may pose potential risks in aquatic systems.


Subject(s)
Cyprinodontiformes , Water Pollutants, Chemical , Male , Female , Animals , Testosterone/metabolism , Estradiol/metabolism , Androgens/toxicity , Endocrine System , Cyprinodontiformes/genetics , Cyprinodontiformes/metabolism , Water Pollutants, Chemical/metabolism
8.
J Hazard Mater ; 469: 134108, 2024 May 05.
Article in English | MEDLINE | ID: mdl-38521039

ABSTRACT

Numerous pesticides pose a threat to aquatic ecosystems, jeopardizing aquatic animal species and impacting human health. While the contamination of aquatic environment by flutolanil and its adverse effects on animal in the treatment of rich sheath blight have been reported, the neuro-visual effects of flutolanil at environmentally relevant concentrations remain unknown. In this study, we administered flutolanil to zebrafish embryos (0, 0.125, 0.50 and 2.0 mg/L) for 4 days to investigate its impact on the neuro and visual system. The results revealed that flutolanil induced abnormal behavior in larvae, affecting locomotor activity, stimuli response and phototactic response. Additionally, it led to defective brain and ocular development and differentiation. The disruption extended to the neurological system and visual phototransduction of larvae, evidenced by significant disturbances in genes and proteins related to neurodevelopment, neurotransmission, eye development, and visual function. Untargeted metabolomics analysis revealed that the GABAergic signaling pathway and increased levels of glutamine, glutamate, andγ-aminobutyric acid were implicated in the response to neuro and visual system injury induced by flutolanil, contributing to aberrant development, behavioral issues, and endocrine disruption. This study highlights the neuro-visual injury caused by flutolanil in aquatic environment, offering fresh insights into the mechanisms underlying image and non-image effects.


Subject(s)
Anilides , Water Pollutants, Chemical , Zebrafish , Animals , Humans , Zebrafish/metabolism , Larva , Ecosystem , Endocrine System , Water Pollutants, Chemical/metabolism
9.
J Hazard Mater ; 469: 133778, 2024 May 05.
Article in English | MEDLINE | ID: mdl-38460255

ABSTRACT

Information on the indoor environment as a source of exposure with potential adverse health effects is mostly limited to a few pollutant groups and indoor types. This study provides a comprehensive toxicological profile of chemical mixtures associated with dust from various types of indoor environments, namely cars, houses, prefabricated apartments, kindergartens, offices, public spaces, and schools. Organic extracts of two different polarities and bioaccessible extracts mimicking the gastrointestinal conditions were prepared from two different particle size fractions of dust. These extracts were tested on a battery of human cell-based bioassays to assess endocrine disrupting potentials. Furthermore, 155 chemicals from different pollutant groups were measured and their relevance for the bioactivity was determined using concentration addition modelling. The exhaustive and bioaccessible extracts of dust from the different microenvironments interfered with aryl hydrocarbon receptor, estrogen, androgen, glucocorticoid, and thyroid hormone (TH) receptor signalling, and with TH transport. Noteably, bioaccessible extracts from offices and public spaces showed higher estrogenic effects than the organic solvent extracts. 114 of the 155 targeted chemicals were detectable, but the observed bioactivity could be only marginally explained by the detected chemicals. Diverse toxicity patterns across different microenvironments that people inhabit throughout their lifetime indicate potential health and developmental risks, especially for children. Limited data on the endocrine disrupting potency of relevant chemical classes, especially those deployed as replacements for legacy contaminants, requires further study.


Subject(s)
Air Pollution, Indoor , Environmental Pollutants , Child , Humans , Dust/analysis , Endocrine System , Estrogens , Androgens , Air Pollution, Indoor/analysis
10.
Horm Behav ; 161: 105529, 2024 May.
Article in English | MEDLINE | ID: mdl-38492501

ABSTRACT

Central to the navigation of an ever-changing environment is the ability to form positive associations with places and conspecifics. The functions of location and social conditioned preferences are often studied independently, limiting our understanding of their interplay. Furthermore, a de-emphasis on natural functions of conditioned preferences has led to neurobiological interpretations separated from ecological context. By adopting a naturalistic and ethological perspective, we uncover complexities underlying the expression of conditioned preferences. Development of conditioned preferences is a combination of motivation, reward, associative learning, and context, including for social and spatial environments. Both social- and location-dependent reward-responsive behaviors and their conditioning rely on internal state-gating mechanisms that include neuroendocrine and hormone systems such as opioids, dopamine, testosterone, estradiol, and oxytocin. Such reinforced behavior emerges from mechanisms integrating past experience and current social and environmental conditions. Moreover, social context, environmental stimuli, and internal state gate and modulate motivation and learning via associative reward, shaping the conditioning process. We highlight research incorporating these concepts, focusing on the integration of social neuroendocrine mechanisms and behavioral conditioning. We explore three paradigms: 1) conditioned place preference, 2) conditioned social preference, and 3) social conditioned place preference. We highlight nonclassical species to emphasize the naturalistic applications of these conditioned preferences. To fully appreciate the complex integration of spatial and social information, future research must identify neural networks where endocrine systems exert influence on such behaviors. Such research promises to provide valuable insights into conditioned preferences within a broader naturalistic context.


Subject(s)
Reward , Animals , Motivation/physiology , Humans , Endocrine System/physiology , Social Behavior , Conditioning, Psychological/physiology , Association Learning/physiology
11.
Mol Cell Endocrinol ; 587: 112211, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38494046

ABSTRACT

The endocrine system plays a pivotal role in shaping the mechanisms that ensure successful reproduction. With over a million known insect species, understanding the endocrine control of reproduction has become increasingly complex. Some of the key players include the classic insect lipid hormones juvenile hormone (JH) and ecdysteroids, and neuropeptides such as insulin-like peptides (ILPs). Individual endocrine factors not only modulate their own target tissue but also play crucial roles in crosstalk among themselves, ensuring successful vitellogenesis and oogenesis. Recent advances in omics, gene silencing, and genome editing approaches have accelerated research, offering both fundamental insights and practical applications for studying in-depth endocrine signaling pathways. This review provides an updated and integrated view of endocrine factors modulating vitellogenesis and oogenesis in insect females.


Subject(s)
Oogenesis , Vitellogenesis , Animals , Female , Insecta , Juvenile Hormones/metabolism , Endocrine System/metabolism
12.
Cell Tissue Res ; 396(2): 197-212, 2024 May.
Article in English | MEDLINE | ID: mdl-38369645

ABSTRACT

The natriuretic peptide (NP) family consists of cardiac NPs (ANP, BNP, and VNP) and brain NPs (CNPs) in teleosts. In addition to CNP1-4, a paralogue of CNP4 (named CNP4b) was recently discovered in basal teleosts including Japanese eel. Mammals have lost most Cnps during the evolution, but teleost cnps were conserved and diversified, suggesting that CNPs are important hormones for maintaining brain functions in teleost. The present study evaluated the potency of each Japanese eel CNP to their NP receptors (NPR-A, NPR-B, NPR-C, and NPR-D) overexpressed in CHO cells. A comprehensive brain map of cnps- and nprs-expressing neurons in Japanese eel was constructed by integrating the localization results obtained by in situ hybridization. The result showed that CHO cells expressing NPR-A and NPR-B induced strong cGMP productions after stimulation by cardiac and brain NPs, respectively. Regarding brain distribution of cnps, cnp1 is engaged in the ventral telencephalic area and periventricular area including the parvocellular preoptic nucleus (Pp), anterior/posterior tuberal nuclei, and periventricular gray zone of the optic tectum. cnp3 is found in the habenular nucleus and prolactin cells in the pituitary. cnp4 is expressed in the ventral telencephalic area, while cnp4b is expressed in the motoneurons in the medullary area. Such CNP isoform-specific localizations suggest that function of each CNP has diverged in the eel brain. Furthermore, the Pp lacking the blood-brain barrier expressed both npra and nprb, suggesting that endocrine and paracrine NPs interplay for regulating the Pp functions in Japanese eels.


Subject(s)
Brain , Cricetulus , Natriuretic Peptides , Animals , Brain/metabolism , Natriuretic Peptides/metabolism , CHO Cells , Receptors, Atrial Natriuretic Factor/metabolism , Paracrine Communication , Ligands , Anguilla/metabolism , Endocrine System/metabolism
14.
Mol Cell Endocrinol ; 585: 112189, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38365065

ABSTRACT

A significant advance has been made, especially during the last two decades, in the knowledge of the effects on crustacean species of pollutants proven to be endocrine disruptors in vertebrates. Such effects have been also interpreted in the light of recent studies on crustacean endocrinology. Year after year, the increased number of reports refer to the effects of endocrine disruptors on several processes hormonally controlled. This review is aimed at summarizing and discussing the effects of several kinds of endocrine disruptors on the hormonal control of reproduction (including gonadal growth, sexual differentiation, and offspring development), molting, and intermediate metabolism of crustaceans. A final discussion about the state of the art, as well as the perspective of this toxicological research line is given.


Subject(s)
Endocrine Disruptors , Environmental Pollutants , Animals , Endocrine Disruptors/toxicity , Endocrine System , Crustacea , Reproduction , Environmental Pollutants/pharmacology
15.
Philos Trans R Soc Lond B Biol Sci ; 379(1898): 20220503, 2024 Mar 25.
Article in English | MEDLINE | ID: mdl-38310931

ABSTRACT

Fishes are exposed to natural and anthropogenic changes in their environment, which can have major effects on their behaviour and their physiology, including feeding behaviour, food intake and digestive processes. These alterations are owing to the direct action of environmental physico-chemical parameters (i.e. temperature, pH, turbidity) on feeding physiology but can also be a consequence of variations in food availability. Food intake is ultimately regulated by feeding centres of the brain, which receive and process information from endocrine signals from both brain and peripheral tissues such as the gastrointestinal tract. These endocrine signals stimulate or inhibit food intake, and interact with each other to maintain energy homeostasis. Changes in environmental conditions might change feeding habits and rates, thus affecting levels of energy stores, and the expression of endocrine appetite regulators. This review provides an overview of how environmental changes and food availability could affect feeding and these endocrine networks in fishes. This article is part of the theme issue 'Endocrine responses to environmental variation: conceptual approaches and recent developments'.


Subject(s)
Appetite , Endocrine System , Animals , Endocrine System/physiology , Appetite/physiology , Fishes/physiology , Feeding Behavior/physiology , Gastrointestinal Tract
16.
Philos Trans R Soc Lond B Biol Sci ; 379(1898): 20220515, 2024 Mar 25.
Article in English | MEDLINE | ID: mdl-38310937

ABSTRACT

Hormones regulate most physiological functions and life history from embryonic development to reproduction. In addition to their roles in growth and development, hormones also mediate responses to the abiotic, social and nutritional environments. Hormone signalling is responsive to environmental changes to adjust phenotypes to prevailing conditions. Both hormone levels and receptor densities can change to provide a flexible system of regulation. Endocrine flexibility connects the environment to organismal function, and it is central to understanding environmental impacts and their effect on individuals and populations. Hormones may also act as a 'sensor' to link environmental signals to epigenetic processes and thereby effect phenotypic plasticity within and across generations. Many environmental parameters are now changing in unprecedented ways as a result of human activity. The knowledge base of organism-environmental interactions was established in environments that differ in many ways from current conditions as a result of ongoing human impacts. It is an urgent contemporary challenge to understand how evolved endocrine responses will modulate phenotypes in response to anthropogenic environmental impacts including climate change, light-at-night and chemical pollution. Endocrine responses play a central role in ecology, and their integration into conservation can lead to more effective outcomes. This article is part of the theme issue 'Endocrine responses to environmental variation: conceptual approaches and recent developments'.


Subject(s)
Endocrine System , Hormones , Humans , Endocrine System/physiology , Environment , Signal Transduction , Ecology
17.
Philos Trans R Soc Lond B Biol Sci ; 379(1898): 20220505, 2024 Mar 25.
Article in English | MEDLINE | ID: mdl-38310939

ABSTRACT

Environmental variation in the Anthropocene involves several factors that interfere with endocrine systems of wildlife and humans, presenting a planetary boundary of still unknown dimensions. Here, we focus on chemical compounds and other impacts of anthropogenic and natural origins that are adversely affecting reproduction and development. The main sink of these endocrine disruptors (EDs) is surface waters, where they mostly endanger aquatic vertebrates, like teleost fish and amphibians. For regulatory purposes, EDs are categorized into EATS modalities (oestrogenic, androgenic, thyroidal, steroidogenesis), only addressing endocrine systems being assessable by validated tests. However, there is evidence that non-EATS modalities-and even natural sources, such as decomposition products of plants or parasitic infections-can affect vertebrate endocrine systems. Recently, the disturbance of natural circadian light rhythms by artificial light at night (ALAN) has been identified as another ED. Reviewing the knowledge about EDs affecting teleosts and amphibians leads to implications for risk assessment. The generally accepted WHO-definition for EDs, which focuses exclusively on 'exogenous substances' and neglects parasitic infections or ALAN, seems to require some adaptation. Natural EDs have been involved in coevolutionary processes for ages without resulting in a general loss of biodiversity. Therefore, to address the 'One Health'-principle, future research and regulatory efforts should focus on minimizing anthropogenic factors for endocrine disruption. This article is part of the theme issue 'Endocrine responses to environmental variation: conceptual approaches and recent developments'.


Subject(s)
Endocrine System , Parasitic Diseases , Animals , Humans , Amphibians/physiology , Vertebrates , Risk Assessment
18.
Front Endocrinol (Lausanne) ; 15: 1340432, 2024.
Article in English | MEDLINE | ID: mdl-38318293

ABSTRACT

Introduction: Hormones play a vital role in development from conception to birth and throughout the human lifespan. These periods are logically divided into fetal development, pre-pubertal growth, puberty, and adulthood. Deviations from standard physiological levels and release patterns of constituent hormones can lead to pathology affecting the normal developmental trajectory. Research is ongoing to better understand the mechanisms of these hormones and how their modulation affects development. Methods: This article focuses on recent developments in understanding the role hormones play in development. We also cover recent discoveries in signaling pathways and hormonal regulation. Results: New and continuing research into functional hormone regulation focuses on sex hormones, gonadotropic hormones, growth hormones, insulin-like growth factor, thyroid hormone, and the interconnectedness of each of these functional axes. Currently, the abundance of work focuses on fertility and correction of sex hormone levels based on an individual's condition and stage in life. Discussion: Continuing research is needed to fully understand the long-term effects of hormone modulation in growth and sexual development. The role of each hormone in parallel endocrine axes should also be more thoroughly investigated to help improve the safety and efficacy in endocrine pharmacotherapeutics.


Subject(s)
Gonadal Steroid Hormones , Growth Hormone , Humans , Gonadal Steroid Hormones/physiology , Growth Hormone/physiology , Endocrine System , Gonadotropins , Thyroid Hormones
19.
Nursing (Ed. bras., Impr.) ; 27(308): 10125-10130, fev.2024.
Article in English, Portuguese | LILACS, BDENF - Nursing | ID: biblio-1537501

ABSTRACT

O objetivo desse trabalho é descrever a sistematização da Assistência de Enfermagem a pessoas com agravos endócrinos e metabólicos pautado na teoria de Calista Roy. Metodologia: Trata-se de um relato de experiência através da aplicação da Sistematização da Assistência de Enfermagem (SAE), voltado para pessoas com agravos endócrinos e metabólicos no contexto hospitalar. Resultados e discussão: Foi aplicado a teoria da adaptação nas seis fases da Teoria de Calista Roy e foi elaborado diagnósticos de enfermagem para os quatro modos de adaptação: fisiológico, interdependência, autoconceito e função de papel. Considerações finais: Ao aplicar a SAE no indivíduo com agravos endócrinos e metabólicos a enfermeira deve realizá-lo em todas as suas etapas, e utilizar os protocolos para oferecer um cuidado holístico e integral, visando a promoção da saúde, prevenção de risco potencial e adaptação diante das necessidades em saúde.(AU)


The aim of this study is to describe the systematization of nursing care for people with endocrine and metabolic disorders, based on Calista Roy's theory. Methodology: This is an experience report on the application of the Systematization of Nursing Care (SNC) to people with endocrine and metabolic disorders in a hospital setting. Results and discussion: The theory of adaptation was applied in the six phases of Calista Roy's theory and nursing diagnoses were drawn up for the four modes of adaptation: physiological, interdependence, self-concept and role function. Final considerations: When applying the SNC to individuals with endocrine and metabolic disorders, the nurse must carry it out in all its stages, and use the protocols to offer holistic and comprehensive care, aimed at promoting health, preventing potential risks and adapting to health needs.(AU)


El objetivo de este estudio es describir la sistematización de los cuidados de enfermería a personas con trastornos endocrinos y metabólicos, basándose en la teoría de Calista Roy. Metodología: Se trata de un informe de experiencia sobre la aplicación de la Sistematización de los Cuidados de Enfermería (SNC) a personas con trastornos endocrinos y metabólicos en un entorno hospitalario. Resultados y discusión: Se aplicó la teoría de la adaptación en las seis fases de la teoría de Calista Roy y se elaboraron diagnósticos de enfermería para los cuatro modos de adaptación: fisiológica, interdependencia, autoconcepto y función de rol. Consideraciones finales: Al aplicar el SNC a individuos con trastornos endocrinos y metabólicos, la enfermera debe llevarlo a cabo en todas sus fases, y utilizar los protocolos para ofrecer cuidados holísticos e integrales, dirigidos a promover la salud, prevenir riesgos potenciales y adaptarse a las necesidades de salud.(AU)


Subject(s)
Patient Care Team , Family , Empathy , Endocrine System
20.
Gen Comp Endocrinol ; 351: 114481, 2024 05 15.
Article in English | MEDLINE | ID: mdl-38408711

ABSTRACT

The pituitary gland is a small endocrine gland located below the hypothalamus. This gland releases several important hormones and controls the function of many other endocrine system glands to release hormones. Fish pituitary hormonal cells are controlled by neuroendocrine and sex steroid feedback. To study the complex pituitary function in vivo, we established an in vitro pituitary spheroid assay and evaluated its suitability for monitoring the annual reproductive physiological conditions in Takifugu rubripes, also known as torafugu, is one of the most economically important species distributed in the northwestern part of the Pacific Ocean, in the western part of the East China Sea, and in more northern areas near Hokkaido, Japan. Fish pituitary spheroids can be easily constructed in liquid or solid plates. The culture medium (L-15) made the aggregation faster than MEM (Hank's). A Rho-kinase inhibitor (Y-27632, 10 µM) and/or fish serum (2.5 %) also promoted spheroid formation. Laser confocal microscopy analysis of spheroids cultured with annual serum of both sexes revealed that luteinizing hormone (LH) synthesis has the highest peak in the final maturation stage (3 years old, May) in accordance with the highest serum sex steroid levels; in contrast, follicle stimulating hormone (FSH) synthesis has no correlation with the dose of serum or nutrients. Similarly, 3D cell propagation assays using female serum showed that total pituitary cells displayed the highest proliferation at puberty onset (2 years old, October) before half a year of the spawning season. These results indicate that pituitary spheroids are useful in vitro models for monitoring the reproductive physiological status of fish in vivo and may be applicable to the in vitro screening of environmental chemicals and bioactive compounds affecting reproductive efficiency in aquaculture.


Subject(s)
Pituitary Gland , Sexual Maturation , Animals , Male , Female , Luteinizing Hormone , Follicle Stimulating Hormone , Endocrine System , Gonadal Steroid Hormones , Steroids , Gonadotropin-Releasing Hormone/physiology
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