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1.
Chronobiol Int ; 41(3): 329-346, 2024 03.
Artículo en Inglés | MEDLINE | ID: mdl-38516993

RESUMEN

The light/dark cycle, known as the photoperiod, plays a crucial role in influencing various physiological activities in fish, such as growth, feeding and reproduction. However, the underlying mechanisms of this influence are not fully understood. This study focuses on exploring the impact of different light regimes (LD: 12 h of light and 12 h of darkness; LL: 24 h of light and 0 h of darkness; DD: 0 h of light and 24 h of darkness) on the expression of clock genes (LcClocka, LcClockb, LcBmal, LcPer1, LcPer2) and the secretion of hormones (melatonin, GnRH, NPY) in the large yellow croaker, Larimichthys crocea. Real-time quantitative PCR (RT-qPCR) and enzyme-linked immunosorbent assays were utilized to assess how photoperiod variations affect clock gene expression and hormone secretion. The results indicate that changes in photoperiod can disrupt the rhythmic patterns of clock genes, leading to phase shifts and decreased expression. Particularly under LL conditions, the pineal LcClocka, LcBmal and LcPer1 genes lose their rhythmicity, while LcClockb and LcPer2 genes exhibit phase shifts, highlighting the importance of dark phase entrainment for maintaining rhythmicity. Additionally, altered photoperiod affects the neuroendocrine system of L. crocea. In comparison to the LD condition, LL and DD treatments showed a phase delay of GnRH secretion and an acceleration of NPY synthesis. These findings provide valuable insights into the regulatory patterns of circadian rhythms in fish and may contribute to optimizing the light environment in the L. crocea farming industry.


Asunto(s)
Melatonina , Perciformes , Glándula Pineal , Animales , Ritmo Circadiano/fisiología , Fotoperiodo , Glándula Pineal/metabolismo , Melatonina/metabolismo , Expresión Génica , Perciformes/genética , Perciformes/metabolismo , Hormona Liberadora de Gonadotropina/genética , Hormona Liberadora de Gonadotropina/metabolismo
2.
Pathol Res Pract ; 254: 155160, 2024 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-38277748

RESUMEN

Melatonin (MLT) is an endogenous hormone produced by pineal gland which possess promising anti-tumor effects. Anti-inflammatory and anti-oxidant properties of MLT, along with its immunomodulatory, proapoptotic, and anti-angiogenic properties, are often referred to the main mechanisms of its anti-tumor effects. Recent evidence has suggested that epigenetic alterations are also involved in the anti-tumor properties of MLT. Among these MLT-induced epigenetic alterations is modulation of the expression of several oncogenic and tumor suppressor microRNAs(miRNAs). MiRNAs are among the most promising and potential therapeutic and diagnostic tools in different diseases and enhanced the development of better therapeutic drugs. Suppression of oncomicroRNAs such as microRNA-21, - 20a, and - 27a as well as, up-regulation of microRNA-34 a/c are among the most important effects of MLT on microRNAs homeostasis. Recently, miR-21 has attracted the attention of scientists due to the its wide range of effects on different cancers and diseases. Regulation of this RNA may be a key to the development of better therapeutic targets. The present review will summarize the findings of in vitro and experimental studies of MLT-induced impacts on the expression of microRNAs which are involved in different models and numerous stages of tumor initiation, growth, metastasis, and chemo-resistance.


Asunto(s)
Melatonina , MicroARNs , Humanos , Melatonina/metabolismo , Melatonina/uso terapéutico , MicroARNs/genética , MicroARNs/uso terapéutico , Neoplasias/tratamiento farmacológico , Neoplasias/genética , Neoplasias/patología , Glándula Pineal/metabolismo , Glándula Pineal/patología , Animales
3.
Biochimie ; 219: 96-109, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-37541568

RESUMEN

Melatonin is a pleiotropic neurohormone found in different animal, plant, and microorganism species. It is a product resulting from tryptophan metabolism in the pineal gland and is widely known for its ability to synchronize the circadian rhythm to antitumor functions in different types of cancers. The molecular mechanisms responsible for its immunomodulatory, antioxidant and cytoprotective effects involve binding to high-affinity G protein-coupled receptors and interactions with intracellular targets that modulate signal transduction pathways. In vitro and in vivo studies have reported the therapeutic potential of melatonin in different infectious and parasitic diseases. In this review, the protective and pathophysiological roles of melatonin in fighting protozoan and helminth infections and the possible mechanisms involved against these stressors will be discussed.


Asunto(s)
Helmintos , Melatonina , Enfermedades Parasitarias , Glándula Pineal , Animales , Melatonina/metabolismo , Melatonina/uso terapéutico , Glándula Pineal/metabolismo , Antioxidantes/farmacología , Enfermedades Parasitarias/tratamiento farmacológico , Helmintos/metabolismo , Ritmo Circadiano/fisiología
4.
Stem Cell Rev Rep ; 20(1): 237-246, 2024 01.
Artículo en Inglés | MEDLINE | ID: mdl-37812364

RESUMEN

Hematopoietic stem progenitor cells (HSPCs) follow the diurnal circulation rhythm in peripheral blood (PB) with nadir during late night and peak at early morning hours. The level of these cells in PB correlates with activation of innate immunity pathways, including complement cascade (ComC) that drives activation of Nlrp3 inflammasome. To support this, mice both in defective ComC activation as well as Nlrp3 inflammasome do not show typical changes in the diurnal level of circulating HSPCs. Migration of HSPCs is also impaired at the intracellular level by the anti-inflammatory enzyme heme oxygenase-1 (HO-1) which is an inhibitor of Nlrp3 inflammasome. It is also well known that circadian rhythm mediates PB level of melatonin released from the pineal gland. Since trafficking of HSPCs is driven by innate immunity-induced sterile inflammation and melatonin has an anti-inflammatory effect, we hypothesized that melatonin could negatively impact the release of HSPCs from BM into PB by inhibiting Nlrp3 inflammasome activation. We provide an evidence that melatonin being a ''sleep regulating pineal hormone'' directly inhibits migration of HSPCs both in vitro migration assays and in vivo during pharmacological mobilization. This correlated with inhibition of cholesterol synthesis required for a proper membrane lipid raft (MLRs) formation and an increase in expression of HO-1-an inhibitor of Nlrp3 inflammasome. Since melatonin is a commonly used drug, this should be considered while preparing a patient for the procedure of HSPCs mobilization. More importantly, our studies shed more mechanistic light on a role of melatonin in the diurnal circulation of HSPCs.


Asunto(s)
Melatonina , Glándula Pineal , Humanos , Animales , Ratones , Inflamasomas/metabolismo , Melatonina/farmacología , Melatonina/metabolismo , Glándula Pineal/metabolismo , Hemo-Oxigenasa 1/metabolismo , Células Madre Hematopoyéticas , Antiinflamatorios , Proteína con Dominio Pirina 3 de la Familia NLR/metabolismo
5.
Microsc Microanal ; 29(6): 2037-2052, 2023 Dec 21.
Artículo en Inglés | MEDLINE | ID: mdl-37738357

RESUMEN

Poor sleep standards are common in everyday life; it is frequently linked to a rise in stress levels. The adrenal gland interacts physiologically with the pineal gland in the stress response. Pineal gland is a small endocrine organ that modulates sleep patterns. This work aimed to evaluate the inverted light-dark cycle rhythm on the histological changes within the adrenal cortex and pineal gland in adult male albino rats. Twenty adult male albino rats were equally divided into two groups: For the first control group, animals were kept on daylight-darkness for 12-12 h. The second group was kept under an inverted 12- to 12-h light-darkness cycle for 4 weeks. Adrenal sections were subjected to biochemical, histological, and immunohistochemical study. Inverted light-dark cycle group recorded a significant elevation of plasma corticosterone, tissue malondialdehyde, tumor necrosis factor-α, and interleukin-1ß (IL-1ß) associated with a significant reduction of catalase and superoxide dismutase. Adrenal cortex showed biochemical and histological changes. Pineal glands also showed loss of lobular architecture. A significant upregulation in activated inducible nitric oxide synthase (iNOS) and B-cell lymphoma-associated X (Bax) immunohistochemical expression was recorded in adrenal cortex associating with downregulation in B-cell lymphoma 2 (Bcl-2). It could be concluded that subchronic inverted light-dark cycle exerted direct effects on adrenal cortex and the pineal glands.


Asunto(s)
Corteza Suprarrenal , Melatonina , Glándula Pineal , Ratas , Masculino , Animales , Glándula Pineal/metabolismo , Fotoperiodo , Melatonina/metabolismo , Melatonina/farmacología , Ritmo Circadiano/fisiología , Luz
6.
Clin Oral Investig ; 27(9): 5353-5365, 2023 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-37454327

RESUMEN

OBJECTIVE: Herein, we evaluated pinealectomy-induced melatonin absence to determine its effects on craniofacial and dental development in the offspring. DESIGN: Female Wistar rats in three groups, i.e., intact pregnant rats, pinealectomized pregnant rats (PINX), and pinealectomized pregnant rats subjected to oral melatonin replacement therapy, were crossed 30 days after surgery. The heads of 7-day-old pups were harvested for cephalometric and histological analyses, and maxillae and incisors were collected for mRNA expression analysis. RESULTS: The PINX pups exhibited a reduction in neurocranial and facial parameters such as a decrease in alveolar bone area, incisor size and proliferation, and an increase in odontoblasts and the dentin layer. Based on incisor mRNA expression analysis, we found that Dmp1 expression was upregulated, whereas Col1a1 expression was downregulated. Maxillary mRNA expression revealed that Rankl expression was upregulated, whereas that of Opn and Osx was downregulated. CONCLUSION: Our results demonstrated that the absence of maternal melatonin during early life could affect dental and maxillary development in offspring, as well as delay odontogenesis and osteogenesis in maxillary tissues. CLINICAL RELEVANCE: Our findings suggest that disruptions or a lack of melatonin during pregnancy may cause changes in craniofacial and dental development, at least in animal experiments; however, in humans, these feedings are still poorly understood, and thus careful evaluations of melatonin levels in humans need to be investigated in craniofacial alterations.


Asunto(s)
Melatonina , Glándula Pineal , Embarazo , Humanos , Ratas , Animales , Femenino , Melatonina/farmacología , Melatonina/metabolismo , Ratas Wistar , Glándula Pineal/metabolismo , Glándula Pineal/cirugía , ARN Mensajero
7.
J Mol Endocrinol ; 71(2)2023 08 01.
Artículo en Inglés | MEDLINE | ID: mdl-37256589

RESUMEN

Arylalkylamine N-acetyltransferase (AANAT), a rate-limiting enzyme in melatonin synthesis, is present in extra-pineal tissues such as the hippocampus. The hippocampal AANAT activity in amyloid ß (Aß) neurotoxicity has not been exactly defined. Adult male rats received bilateral intra-CA1 Aß administration. The hippocampus tissue sampling was performed 2, 12, and 24 h after Aß injection in the morning and night. The inflammation was monitored using tumor necrosis factor-alpha (TNF-α) immunohistochemistry. The AANAT enzyme activity and melatonin levels were measured using western blotting and high-performance liquid chromatography. The sampling in the morning vs night showed no significant differences in the AANAT activity. The Aß increased the area of TNF-α positive staining 24 h after injection, which indicated the induction of an inflammatory context. It was accompanied by a significant reduction in AANAT activity and hippocampal melatonin. A reverse correlation was also detected between TNF-α and AANAT activity in the 24-h group. The TNF-α positive area was significantly increased in the 24-h group as compared to the 12-h group. Data showed that inflammatory processes began 12 h after the Aß injection and augmented 24 h later. In the second experiment, the impact of Aß injection on hippocampus AANAT activity was examined in the pinealectomized (PIN×) animals. The PIN× per se did not affect the hippocampal AANAT and melatonin levels. However, there was a significant decrease in hippocampal melatonin in the PIN×+Aß group. The findings suggest the accompanying hippocampal inflammatory context and AANAT enzyme activity reduction in early stages after Aß administration. Understanding the underlying mechanism of the decreased AANAT activity may suggest new treatment strategies.


Asunto(s)
Melatonina , Glándula Pineal , Ratas , Masculino , Animales , Melatonina/farmacología , N-Acetiltransferasa de Arilalquilamina/metabolismo , Péptidos beta-Amiloides , Factor de Necrosis Tumoral alfa , Glándula Pineal/metabolismo , Hipocampo/metabolismo , Ritmo Circadiano
8.
J Pineal Res ; 75(1): e12875, 2023 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-37070273

RESUMEN

In vertebrates, arylalkylamine N-acetyltransferase (AANAT; EC 2.3.1.87) is the time-keeping and key regulatory enzyme in melatonin (Mel) biosynthesis. AANAT is present in the pineal gland, retina, and other regions where it is controlled by light, cyclic adenosine monophosphate (cAMP) levels, and the molecular clock. AANAT converts serotonin to N-acetyl serotonin (NAS) and the last enzyme in the pathway, hydroxy-o-methyltransferase (HIOMT), forms Mel by NAS methylation. We have previously shown that AANAT is expressed in chicken retinal ganglion cells (RGCs) during daytime at the level of mRNA and enzyme activity. Here we investigated the presence of AANAT protein and mRNA throughout development in the chicken embryonic retina as well as AANAT expression, phosphorylation, and its sub-cellular localization in primary cultures of retinal neurons from E10 embryonic retinas exposed to blue light (BL) and controls kept in the dark (D). From embryonic days 7-10 (E7-10) AANAT mRNA and protein were visualized mainly concentrated in the forming ganglion cell layer (GCL), while from E17 through postnatal days, expression was detectable all through the different retinal cell layers. At postnatal day 10 (PN10) when animals were subjected to a 12:12 h LD cycle, AANAT was mainly expressed in the GCL and inner nuclear layer cells at noon (Zeitgeber Time (ZT 6)) and in the photoreceptor cell layer at night (ZT 21). Primary cultures of retinal neurons exhibited an induction of AANAT protein when cells were exposed to BL for 1 h as compared with D controls. After BL exposure, AANAT showed a significant change in intracellular localization from the cytoplasm to the nucleus in the BL condition, remaining in the nucleus 1-2 h in the D after BL stimulation. BL induction of nuclear AANAT was substantially inhibited when cultures were treated with the protein synthesis inhibitor cycloheximide (CHD). Furthermore, the phosphorylated form of the enzyme (pAANAT) increased after BL in nuclear fractions obtained from primary cultures as compared with D controls. Finally, the knockdown of AANAT by sh-RNA in primary cultures affected cell viability regardless of the light condition. AANAT knockdown also affected the redox balance, sh-AANAT treated cultures showing higher levels of reactive oxygen species (ROS) than in the sh-control. Our results support the idea that AANAT is a BL-sensing enzyme in the inner retina of diurnal vertebrates, undergoing phosphorylation and nuclear importation in response to BL stimulation. Moreover, it can be inferred that AANAT plays a novel role in nuclear function, cell viability, and, likely, through redox balance regulation.


Asunto(s)
N-Acetiltransferasa de Arilalquilamina , Melatonina , Glándula Pineal , Animales , Embrión de Pollo , N-Acetiltransferasa de Arilalquilamina/genética , N-Acetiltransferasa de Arilalquilamina/metabolismo , Pollos/genética , Pollos/metabolismo , Ritmo Circadiano/fisiología , Luz , Melatonina/metabolismo , Glándula Pineal/metabolismo , Retina/metabolismo , ARN Mensajero/metabolismo , Serotonina/metabolismo
9.
Int J Mol Sci ; 24(3)2023 Jan 18.
Artículo en Inglés | MEDLINE | ID: mdl-36768253

RESUMEN

The circadian clock is a regulatory system, with a periodicity of approximately 24 h, that generates rhythmic changes in many physiological processes. Increasing evidence links chronodisruption with aberrant functionality in clock gene expression, resulting in multiple diseases, including cancer. In this context, tumor cells have an altered circadian machinery compared to normal cells, which deregulates the cell cycle, repair mechanisms, energy metabolism and other processes. Melatonin is the main hormone produced by the pineal gland, whose production and secretion oscillates in accordance with the light:dark cycle. In addition, melatonin regulates the expression of clock genes, including those in cancer cells, which could play a key role in the numerous oncostatic effects of this hormone. This review aims to describe and clarify the role of clock genes in cancer, as well as the possible mechanisms of the action of melatonin through which it regulates the expression of the tumor's circadian machinery, in order to propose future anti-neoplastic clinical treatments.


Asunto(s)
Relojes Circadianos , Melatonina , Neoplasias , Glándula Pineal , Melatonina/metabolismo , Ritmo Circadiano/genética , Glándula Pineal/metabolismo , Relojes Circadianos/genética , Fotoperiodo , Neoplasias/tratamiento farmacológico , Neoplasias/genética , Neoplasias/metabolismo
10.
Cell Mol Neurobiol ; 43(6): 2437-2458, 2023 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-36752886

RESUMEN

Melatonin is ubiquitous molecule with wide distribution in nature and is produced by many living organisms. In human beings, pineal gland is the major site for melatonin production and to lesser extent by retina, lymphocytes, bone marrow, gastrointestinal tract, and thymus. Melatonin as a neurohormone is released into circulation wherein it penetrates all tissues of the body. Melatonin synthesis and secretion is supressed by light and enhanced by dark. Melatonin mostly exerts its effect through different pathways with melatonin receptor 1 (MT1) and melatonin receptor 2 (MT2) being the predominant type of receptor that are mainly expressed by many mammalian organs. Melatonin helps to regulate sleep patterns and circadian rhythms. In addition, melatonin acts as an antioxidant and scavenges excessive free radicals generated in the body by anti-excitatory and anti-inflammatory properties. A multiple array of other functions are displayed by melatonin that include oncostatic, hypnotic, immune regulation, reproduction, puberty timing, mood disorders, and transplantation. Deficiencies in the production or synthesis of melatonin have been found to be associated with onset of many disorders like breast cancer and neurodegenerative disorders. Melatonin could be used as potential analgesic drug in diseases associated with pain and it has quite promising role there. In the past century, a growing interest has been developed regarding the wide use of melatonin in treating various diseases like inflammatory, gastrointestinal, cancer, mood disorders, and others. Several melatonin agonists have been synthesized and are widely used in disease treatment. In this review, an effort has been made to describe the biochemistry of melatonin along with its therapeutic potential in various diseases of humans.


Asunto(s)
Melatonina , Glándula Pineal , Animales , Humanos , Melatonina/metabolismo , Receptores de Melatonina/metabolismo , Antioxidantes/uso terapéutico , Ritmo Circadiano/fisiología , Glándula Pineal/metabolismo , Mamíferos/metabolismo
11.
Genome Res ; 33(2): 269-282, 2023 02.
Artículo en Inglés | MEDLINE | ID: mdl-36650051

RESUMEN

Pediatric pineoblastomas (PBs) are rare and aggressive tumors of grade IV histology. Although some oncogenic drivers are characterized, including germline mutations in RB1 and DICER1, the role of epigenetic deregulation and cis-regulatory regions in PB pathogenesis and progression is largely unknown. Here, we generated genome-wide gene expression, chromatin accessibility, and H3K27ac profiles covering key time points of PB initiation and progression from pineal tissues of a mouse model of CCND1-driven PB. We identified PB-specific enhancers and super-enhancers, and found that in some cases, the accessible genome dynamics precede transcriptomic changes, a characteristic that is underexplored in tumor progression. During progression of PB, newly acquired open chromatin regions lacking H3K27ac signal become enriched for repressive state elements and harbor motifs of repressor transcription factors like HINFP, GLI2, and YY1. Copy number variant analysis identified deletion events specific to the tumorigenic stage, affecting, among others, the histone gene cluster and Gas1, the growth arrest specific gene. Gene set enrichment analysis and gene expression signatures positioned the model used here close to human PB samples, showing the potential of our findings for exploring new avenues in PB management and therapy. Overall, this study reports the first temporal and in vivo cis-regulatory, expression, and accessibility maps in PB.


Asunto(s)
Neoplasias Encefálicas , Glándula Pineal , Pinealoma , Animales , Ratones , Humanos , Niño , Cromatina , Pinealoma/genética , Histonas/metabolismo , Glándula Pineal/metabolismo , Neoplasias Encefálicas/genética , Elementos de Facilitación Genéticos , Ribonucleasa III/genética , ARN Helicasas DEAD-box/genética
12.
J Pineal Res ; 74(3): e12854, 2023 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-36692235

RESUMEN

Photoreceptors in the vertebrate eye are dependent on the retinal pigmented epithelium for a variety of functions including retinal re-isomerization and waste disposal. The light-sensitive pineal gland of fish, birds, and amphibians is evolutionarily related to the eye but lacks a pigmented epithelium. Thus, it is unclear how these functions are performed. Here, we ask whether a subpopulation of zebrafish pineal cells, which express glial markers and visual cycle genes, is involved in maintaining photoreceptors. Selective ablation of these cells leads to a loss of pineal photoreceptors. Moreover, these cells internalize exorhodopsin that is secreted by pineal rod-like photoreceptors, and in turn release CD63-positive extracellular vesicles (EVs) that are taken up by pdgfrb-positive phagocytic cells in the forebrain meninges. These results identify a subpopulation of glial cells that is critical for pineal photoreceptor survival and indicate the existence of cells in the forebrain meninges that receive EVs released by these pineal cells and potentially function in waste disposal.


Asunto(s)
Neuroglía , Células Fotorreceptoras de Vertebrados , Glándula Pineal , Percepción Visual , Animales , Vesículas Extracelulares/genética , Vesículas Extracelulares/metabolismo , Expresión Génica , Melatonina , Meninges/citología , Meninges/fisiología , Neuroglía/citología , Neuroglía/metabolismo , Células Fotorreceptoras/citología , Células Fotorreceptoras/metabolismo , Células Fotorreceptoras de Vertebrados/metabolismo , Células Fotorreceptoras de Vertebrados/fisiología , Glándula Pineal/citología , Glándula Pineal/metabolismo , Rodopsina/metabolismo , Tetraspanina 30/metabolismo , Percepción Visual/genética , Percepción Visual/fisiología , Pez Cebra/genética , Pez Cebra/metabolismo
13.
Med Phys ; 50(3): 1601-1613, 2023 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-36309985

RESUMEN

BACKGROUND: The formation of concrements in human pineal gland (PG) is a physiological process and, according to many researchers, is associated with the involution of PG structures. The majority of scientific publications concern progressive calcification of PG, leaving out studies on the destruction of already formed calcified concrements. Our study fills the gap in knowledge about calcified zones destruction in PG in normal aging and neuropathological conditions, which has not been addressed until now. PURPOSE: Our objective is to gain insight into human PG tissue impairment in both normal aging and neurodegenerative conditions. X-ray phase-contrast tomography (XPCT) allowed us to study PG tissue degeneration at high spatial resolution and, for the first time, to examine the damaged PG concrements in detail. Our research finding could potentially enhance the understanding of the PG involvement in the process of aging as well as in Alzheimer's disease (AD) and vascular dementia (VD). METHODS: The research was carried out on human PG autopsy material in normal aging, VD, and AD conditions. Laboratory-based micro-computed tomography (micro-CT) was used to collect and evaluate samples of native, uncut, and unstained PG with different degrees of pineal calcification. The detailed high-resolution 3D images of the selected PGs were produced using synchrotron-based XPCT. Histology and immunohistochemistry of soft PG tissue confirmed XPCT results. RESULTS: We performed via micro-CT the evaluation of the morphometric parameters of PG such as total sample volume, calcified concrements volume, and percentage of concrements in the total volume of the sample. XPCT imaging revealed high-resolution details of age-related PG alteration. In particular, we noted signs of moderate degradation of concrements in some PGs from elderly donors. In addition, our analysis revealed noticeable degenerative change in both concrements and soft tissue of PGs with neuropathology. In particular, we observed a hollow core and separated layers as well as deep ragged cracks in PG concrements of AD and VD samples. In parenchyma of some samples, we detected wide pinealocyte-free fluid-filled areas adjacent to the calcified zones. CONCLUSION: The present work provides the basis for future scientific research focused on the dynamic nature of PG calcium deposits and PG soft tissue in normal aging and neurodegenerative diseases.


Asunto(s)
Enfermedad de Alzheimer , Calcinosis , Enfermedades Neurodegenerativas , Glándula Pineal , Humanos , Anciano , Glándula Pineal/diagnóstico por imagen , Glándula Pineal/metabolismo , Glándula Pineal/patología , Microtomografía por Rayos X , Enfermedades Neurodegenerativas/diagnóstico por imagen , Enfermedades Neurodegenerativas/metabolismo , Enfermedades Neurodegenerativas/patología , Calcinosis/diagnóstico por imagen , Calcinosis/patología
14.
Int J Mol Sci ; 23(24)2022 Dec 07.
Artículo en Inglés | MEDLINE | ID: mdl-36555116

RESUMEN

The circadian rhythm of melatonin secretion in the pineal gland is highly conserved in vertebrates. Melatonin levels are always elevated at night. Acetylserotonin O-methyltransferase (ASMT) is the last enzyme in the regulation of melatonin biosynthesis (N-acetyl-5-hydroxytryptamine-melatonin). S-adenosylmethionine (SAM) is an important methyl donor in mammals and can be used as a substrate for the synthesis of melatonin. Methionine adenosyltransferase (MAT) catalyzes the synthesis of SAM from methionine and ATP and has a circadian rhythm. CircRNA is an emerging type of endogenous noncoding RNA with a closed loop. Whether circRNAs in the pineal gland can participate in the regulation of melatonin synthesis by binding miRNAs to target mat2a as part of the circadian rhythm is still unclear. In this study, we predicted the targeting relationship of differentially expressed circRNAs, miRNAs and mRNAs based on the results of rat pineal RNA sequencing. Mat2a siRNA transfection confirmed that mat2a is involved in the synthesis of melatonin. Circ-ERC2 and miR-125a-5p were screened out by software prediction, dual-luciferase reporter experiments, cell transfection, etc. Finally, we constructed a rat superior cervical ganglionectomy model (SCGx), and the results showed that circ-ERC2 could participate in the synthesis of melatonin through the miR-125a-5p/MAT2A axis. The results of the study revealed that circ-ERC2 can act as a molecular sponge of miR-125a-5p to regulate the synthesis of melatonin in the pineal gland by targeting mat2a. This experiment provides a basis for research on the circadian rhythm of noncoding RNA on pineal melatonin secretion.


Asunto(s)
Melatonina , Metionina Adenosiltransferasa , MicroARNs , Glándula Pineal , ARN Circular , Animales , Ratas , Ritmo Circadiano/genética , Melatonina/metabolismo , Metionina Adenosiltransferasa/metabolismo , MicroARNs/genética , MicroARNs/metabolismo , Glándula Pineal/metabolismo , ARN Circular/genética , ARN Circular/metabolismo , S-Adenosilmetionina/metabolismo
15.
Curr Oncol ; 29(10): 7558-7568, 2022 10 10.
Artículo en Inglés | MEDLINE | ID: mdl-36290872

RESUMEN

The clinical behaviors, prognosis, and appropriate treatments of papillary tumors of the pineal region (PTPR) are not fully defined due to the rarity of these tumors. At diagnosis, PTPR may present with clinical symptoms, including headache with obstructive hydrocephalus, diplopia, vomiting, and lethargy, as well as neurological signs, including Argyll Robertson pupils and Parinaud's syndrome due to compression of the dorsal midbrain, specifically the periaqueductal region with horizontal nystagmus. Radiological assessment of pineal region lesions is challenging, with a wide range of potential differential diagnoses. PTPR typically presents as a heterogeneous, well-circumscribed mass in the pineal region, which might contain cystic areas, calcifications, hemorrhages, or protein accumulations. Here, we report three female pediatric patients with PTPR treated in King Fahad Medical City (KFMC) in Saudi Arabia. Histological and immunohistochemical diagnosis was confirmed by analysis of genome-wide DNA methylation profiles. This case series expands on the available reports on the clinical presentations of PTPR and provides important information on the responses to different treatment modalities.


Asunto(s)
Neoplasias Encefálicas , Glándula Pineal , Pinealoma , Humanos , Femenino , Niño , Pinealoma/diagnóstico por imagen , Pinealoma/terapia , Neoplasias Encefálicas/diagnóstico , Glándula Pineal/diagnóstico por imagen , Glándula Pineal/metabolismo , Glándula Pineal/patología
16.
Methods Mol Biol ; 2550: 63-74, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-36180678

RESUMEN

Pineal microdialysis is characterized by the real-time monitoring of melatonin, neurotransmitters, metabolites, and other compounds released by the pineal gland throughout 24 h. It is a technique with great advantages that allows in vivo study of the ongoing pineal gland metabolism. In this chapter, we describe the entire process of pineal microdialysis that includes probe manufacturing, surgical procedure for its implantation, and the sample collection process.


Asunto(s)
Melatonina , Glándula Pineal , Ritmo Circadiano , Melatonina/metabolismo , Microdiálisis/métodos , Glándula Pineal/metabolismo
17.
Neuroscience ; 499: 12-22, 2022 09 01.
Artículo en Inglés | MEDLINE | ID: mdl-35798261

RESUMEN

The pineal gland is a key player in surveillance and defense responses. In healthy conditions, nocturnal circulating melatonin (MEL) impairs the rolling and adhesion of leukocytes to the endothelial layer. Fungi, bacteria, and pro-inflammatory cytokines block nocturnal pineal MEL synthesis, facilitating leukocyte migration to injured areas. ATP is a cotransmitter of the noradrenergic signal and potentiates noradrenaline (NAd)-induced MEL synthesis via P2Y1 receptor (P2Y1R) activation. Otherwise, ATP low-affinity P2X7 receptor (P2X7R) activation impairs N-acetylserotonin (NAS) into MEL conversion in NAd incubated pineals. Here we mimicked a focal increase of ATP by injecting low (0.3 and 1.0 µg) and high (3.0 µg) ATP in the right lateral ventricle of adult rats. Nocturnal pineal activity mimicked the in culture data. Low ATP doses increased MEL output, while high ATP dose and the P2X7R agonist BzATP (15.0-50.0 ng) increased NAS pineal and blood content. In the brain, the response was structure-dependent. There was an increase in cortical and no change in cerebellar MEL. These effects were mediated by changes in the expression of coding genes to synthetic and metabolizing melatonergic enzymes. Thus, the pineal gland plays a role as a first-line structure to respond to the death of cells inside the brain by turning NAS into the darkness hormone.


Asunto(s)
Melatonina , Glándula Pineal , Acetilserotonina O-Metiltransferasa/genética , Acetilserotonina O-Metiltransferasa/metabolismo , Adenosina Trifosfato/metabolismo , Adenosina Trifosfato/farmacología , Animales , Melatonina/farmacología , NAD/metabolismo , Norepinefrina/metabolismo , Norepinefrina/farmacología , Glándula Pineal/metabolismo , Ratas , Receptores Purinérgicos P2X7/metabolismo , Serotonina/análogos & derivados
18.
Horm Mol Biol Clin Investig ; 43(4): 485-503, 2022 Dec 01.
Artículo en Inglés | MEDLINE | ID: mdl-35728260

RESUMEN

Lung cancer is the second most common cancer and the most lethal cancer worldwide. Melatonin, an indoleamine produced in the pineal gland, shows anticancer effects on a variety of cancers, especially lung cancer. Herein, we clarify the pathophysiology of lung cancer, the association of circadian rhythm with lung, and the relationship between shift work and the incidence of lung cancer. Special focus is placed on the role of melatonin receptors in lung cancer, the relationship between inflammation and lung cancer, control of cell proliferation, apoptosis, autophagy, and immunomodulation in lung cancer by melatonin. A review of the drug synergy of melatonin with other anticancer drugs suggests its usefulness in combination therapy. In summary, the information compiled may serve as a comprehensive reference for the various mechanisms of action of melatonin against lung cancer, as a guide for the design of future experimental research and for advancing melatonin as a therapeutic agent for lung cancer.


Asunto(s)
Antineoplásicos , Neoplasias Pulmonares , Melatonina , Glándula Pineal , Humanos , Melatonina/farmacología , Melatonina/uso terapéutico , Neoplasias Pulmonares/tratamiento farmacológico , Neoplasias Pulmonares/etiología , Neoplasias Pulmonares/prevención & control , Glándula Pineal/metabolismo , Antineoplásicos/farmacología , Antineoplásicos/uso terapéutico , Receptores de Melatonina/metabolismo , Ritmo Circadiano/fisiología
19.
Biochimie ; 202: 15-25, 2022 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-35636690

RESUMEN

Currently, cancer is ranked among the top ten causes of death worldwide. Despite the advances made in the field of cancer treatment, 5-year survival rates of various types of cancer are still low due to the recurrence of the disease and/or metastasis. Dissemination of cancer cells, infiltration into the blood vessels, migration to the targeted organs, extravasation, and colonization are the main steps of metastasis. Various factors and signaling pathways are involved in each of these steps. Melatonin (MLT) is a hormone derived from tryptophan and secreted by the pineal gland. This hormone has shown a variety of anti-tumor effects, including anti-oxidative activities, inhibiting the proliferation of tumor cells, inducing apoptosis, and suppressing metastasis. Due to these extensive effects, several studies have been conducted on the applications of MLT in treating different types of cancer. Herein, we review the mechanisms of MLT's effects on the metastasis inhibition of the most lethal types of cancer including the cancer of lung, breast, stomach, kidney, colon, liver, bladder, and pancreas. We discuss how MLT targets different molecules and signaling pathways in each step of the metastasis, such as angiogenesis, remodeling of the extracellular matrix, migration, and epithelial-to-mesenchymal transition.


Asunto(s)
Melatonina , Neoplasias , Glándula Pineal , Humanos , Melatonina/farmacología , Melatonina/uso terapéutico , Melatonina/metabolismo , Glándula Pineal/metabolismo , Neoplasias/tratamiento farmacológico , Neoplasias/metabolismo , Transición Epitelial-Mesenquimal , Transducción de Señal
20.
Environ Sci Pollut Res Int ; 29(40): 60371-60384, 2022 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-35419691

RESUMEN

Exposure to light at night, pineal gland impairment, and the environmental pollutant trichloroethylene (TCE) have serious implications for health and contribute to illness, including liver cancer. The adverse effect of the association of continuous exposure to light with decreased melatonin levels and TCE-induced toxicity is not disclosed in target organs. This work explored the role of light and pineal impairment in increasing susceptibility to liver toxicity and cancer upon exposure to TCE. Male albino mice were divided into groups as follows: control group (12-h light/12-h dark cycle), constant light (24-h light), pinealectomized (Pnx) mice, sham surgically treated group, TCE-treated groups subjected to two doses (500 and 1000 mg/kg) at two different light regimens, and combination of Pnx and TCE-treated mice kept at a 12-h light/12-h dark cycle. Melatonin levels were significantly decreased in both Pnx mice and TCE-treated animals at both light regimens. Aspartate transaminase, alanine aminotransferase, activities, and serum bilirubin levels were significantly elevated, whereas albumin levels were markedly decreased in Pnx mice, TCE-treated mice, and the combination group. Histopathological investigations reflected changes in liver function parameters indicating liver injury and induction of cancer. These effects were accompanied by significant increase of the liver cancer biomarker alpha-fetoprotein and the expression of the metastatic markers CD44, TGFß-1, and VEGF, along with increased oxidative stress indicators and inflammatory cytokines (IL-6, IL-1ß, and TNF-α) in both Pnx and TCE-treated mice and the combination group at both light regimens. Taken together, our findings indicated that low melatonin levels, exposure to constant light, and the combination of both factors increases susceptibility to the toxic and carcinogenic effects of TCE on the liver.


Asunto(s)
Enfermedad Hepática Inducida por Sustancias y Drogas , Neoplasias Hepáticas , Melatonina , Glándula Pineal , Tricloroetileno , Animales , Enfermedad Hepática Inducida por Sustancias y Drogas/metabolismo , Hígado , Masculino , Melatonina/metabolismo , Ratones , Glándula Pineal/metabolismo , Pinealectomía , Solventes/farmacología , Tricloroetileno/metabolismo , Tricloroetileno/toxicidad
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