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1.
Chinese journal of integrative medicine ; (12): 1121-1132, 2023.
Article Dans Anglais | WPRIM | ID: wpr-1010316

Résumé

OBJECTIVE@#To interpret the pharmacology of quercetin in treatment of atherosclerosis (AS).@*METHODS@#Fourteen apolipoprotein E-deficient (ApoE-/-) mice were divided into 2 groups by a random number table: an AS model (ApoE-/-) group and a quercetin treatment group (7 in each). Seven age-matched C57 mice were used as controls (n=7). Quercetin [20 mg/(kg·d)] was administered to the quercetin group intragastrically for 8 weeks for pharmacodynamic evaluation. Besides morphological observation, the distribution of CD11b, F4/80, sirtuin 1 (Sirt1) and P21 was assayed by immunohistochemistry and immunofluorescence to evaluate macrophage infiltration and tissue senescence. Ultra-performance liquid chromatography/tandem mass spectrometry (UPLC-MSC/MS) was performed to study the pharmacology of quercetin against AS. Then, simultaneous administration of an apelin receptor antagonist (ML221) with quercetin was conducted to verify the possible targets of quercetin. Key proteins in apelin signaling pathway, such as angiotensin domain type 1 receptor-associated proteins (APJ), AMP-activated protein kinase (AMPK), peroxisome proliferator-activated receptor-γ coactivator-1α (PGC-1α), tissue plasminogen activator (TPA), uncoupling protein 1 (UCP1) and angiotensin II receptor 1 (AT1R), were assayed by Western blot.@*RESULTS@#Quercetin administration decreased lipid deposition in arterial lumen and improved the morphology of ApoE-/- aortas in vivo. Quercetin decreased the densities of CD11b, F4/80 and P21 in the aorta and increased the level of serum apelin and the densities of APJ and Sirt1 in the aorta in ApoE-/- mice (all P<0.05). Plasma metabolite profiling identified 118 differential metabolites and showed that quercetin affected mainly glycerophospholipids and fatty acyls. Bioinformatics analysis suggested that the apelin signaling pathway was one of the main pathways. Quercetin treatment increased the protein expressions of APJ, AMPK, PGC-1α, TPA and UCP1, while decreased the AT1R level (all P<0.05). After the apelin pathway was blocked by ML221, the effect of quercetin was abated significantly, confirming that quercetin attenuated AS by modulating the apelin signaling pathway (all P<0.05).@*CONCLUSION@#Quercetin alleviated AS lesions by up-regulation the apelin signaling pathway.


Sujets)
Souris , Animaux , Apeline , Activateur tissulaire du plasminogène/métabolisme , Quercétine/usage thérapeutique , AMP-Activated Protein Kinases/métabolisme , Sirtuine-1/métabolisme , Transduction du signal/physiologie , Athérosclérose/métabolisme , Apolipoprotéines E
2.
Journal of Zhejiang University. Medical sciences ; (6): 738-749, 2023.
Article Dans Anglais | WPRIM | ID: wpr-971085

Résumé

Fibroblast growth factors (FGF) are a group of structurally related polypeptides which constitute an elaborate signaling system with their receptors. Evidence accumulated in the years suggests that the FGF family plays a key role in the repair of central nervous system injury. The main protective mechanisms include activating the expression of PI3K-Akt, peroxisome proliferator-activated receptor (PPARγ) and other signals; inhibiting NF-κB-mediated inflammatory response, oxidative stress and apoptosis; regulating neuronal differentiation and neuronal excitability as well as participating in protection of neurovascular units and nerve function repair. This paper comprehensively summarizes the latest research progress in FGF signaling related to diseases of the central nervous system such as cerebral infarction, cerebral hemorrhage, traumatic brain injury, Alzheimer's disease, Parkinson's disease, epilepsy and depression, aiming to provide scientific basis and reference for the development of innovative FGF drugs for the prevention and treatment of neurological diseases.


Sujets)
Humains , Facteurs de croissance fibroblastique , Phosphatidylinositol 3-kinases/métabolisme , Système nerveux central/métabolisme , Transduction du signal/physiologie , Maladie d'Alzheimer
3.
Acta Physiologica Sinica ; (6): 339-350, 2023.
Article Dans Chinois | WPRIM | ID: wpr-981010

Résumé

This paper aimed to investigate the role and potential mechanism of p53 on primordial follicle activation. Firstly, the p53 mRNA expression in the ovary of neonatal mice at 3, 5, 7 and 9 days post-partum (dpp) and the subcellular localization of p53 were detected to confirm the expression pattern of p53. Secondly, 2 dpp and 3 dpp ovaries were cultured with p53 inhibitor Pifithrin-μ (PFT-μ, 5 μmol/L) or equal volume of dimethyl sulfoxide for 3 days. The function of p53 in primordial follicle activation was determined by hematoxylin staining and whole ovary follicle counting. The proliferation of cell was detected by immunohistochemistry. The relative mRNA levels and protein levels of the key molecules involved in the classical pathways associated with the growing follicles were examined by immunofluorescence staining, Western blot and real-time PCR, respectively. Finally, rapamycin (RAP) was used to intervene the mTOR signaling pathway, and ovaries were divided into four groups: Control, RAP (1 μmol/L), PFT-μ (5 μmol/L), PFT-μ (5 μmol/L) + RAP (1 μmol/L) groups. The number of follicles in each group was determined by hematoxylin staining and whole ovary follicle counting. The results showed that the expression of p53 mRNA was decreased with the activation of primordial follicles in physiological condition. p53 was expressed in granulosa cells and oocyte cytoplasm of the primordial follicles and growing follicles, and the expression of p53 in the primordial follicles was higher than that in the growing follicles. Inhibition of p53 promoted follicle activation and reduced the primordial follicle reserve. Inhibition of p53 promoted the proliferation of the granulosa cells and oocytes. The mRNA and protein expression levels of key molecules in the PI3K/AKT signaling pathway including AKT, PTEN, and FOXO3a were not significantly changed after PFT-μ treatment, while the expression of RPS6/p-RPS6, the downstream effectors of the mTOR signaling pathway, was upregulated. Inhibition of both p53 and mTOR blocked p53 inhibition-induced primordial follicle activation. Collectively, these findings suggest that p53 may inhibit primordial follicle activation through the mTOR signaling pathway to maintain the primordial follicle reserve.


Sujets)
Femelle , Animaux , Souris , Protéine p53 suppresseur de tumeur/métabolisme , Protéines proto-oncogènes c-akt/métabolisme , Phosphatidylinositol 3-kinases/métabolisme , Hématoxyline , Transduction du signal/physiologie , Sérine-thréonine kinases TOR , Sirolimus , ARN messager
4.
Chinese Acupuncture & Moxibustion ; (12): 239-244, 2023.
Article Dans Chinois | WPRIM | ID: wpr-969978

Résumé

Electroacupuncture may play a role in treatment of learning and memory impairment after ischemic stroke by regulating phosphatidylinositol-3-kinase (PI3K)/protein kinase B (Akt) signaling pathway, cyclic adenosine monophosphate (cAMP)-dependent protein kinase A (PKA)/cAMP response element binding protein (CREB) signaling pathway, nerve growth factor (NGF)/tyrosine kinase-A (TrkA) signaling pathway, Janus kinase 2 (JAK2)/signal transducer and activator of transcription 3 (STAT3) signaling pathway, Notch signaling pathway, erythropoietin-producing hepatocyte (Eph)/ephrin signaling pathway. The interactions among these pathways should be further explored in treatment of learning and memory impairment after ischemic stroke.


Sujets)
Humains , Électroacupuncture , Accident vasculaire cérébral ischémique , Apprentissage , Transduction du signal/physiologie
5.
Neuroscience Bulletin ; (6): 911-928, 2023.
Article Dans Anglais | WPRIM | ID: wpr-982435

Résumé

Increased intestinal barrier permeability, leaky gut, has been reported in patients with autism. However, its contribution to the development of autism has not been determined. We selected dextran sulfate sodium (DSS) to disrupt and metformin to repair the intestinal barrier in BTBR T+tf/J autistic mice to test this hypothesis. DSS treatment resulted in a decreased affinity for social proximity; however, autistic behaviors in mice were improved after the administration of metformin. We found an increased affinity for social proximity/social memory and decreased repetitive and anxiety-related behaviors. The concentration of lipopolysaccharides in blood decreased after the administration of metformin. The expression levels of the key molecules in the toll-like receptor 4 (TLR4)-myeloid differentiation factor 88 (MyD88)-nuclear factor kappa B (NF-κB) pathway and their downstream inflammatory cytokines in the cerebral cortex were both repressed. Thus, "leaky gut" could be a trigger for the development of autism via activation of the lipopolysaccharide-mediated TLR4-MyD88-NF-κB pathway.


Sujets)
Souris , Animaux , Facteur de transcription NF-kappa B , Facteur de différenciation myéloïde-88/métabolisme , Lipopolysaccharides/pharmacologie , Récepteur de type Toll-4/métabolisme , Trouble autistique/métabolisme , Transduction du signal/physiologie
6.
Chinese Critical Care Medicine ; (12): 1321-1326, 2023.
Article Dans Chinois | WPRIM | ID: wpr-1010947

Résumé

Notch signaling pathway is a highly conserved signaling pathway in the process of evolution. It is composed of three parts: Notch receptor, ligand and effector molecules responsible for intracellular signal transduction. It plays an important role in cell proliferation, differentiation, development, migration, apoptosis and other processes, and has a regulatory effect on tissue homeostasis and homeostasis. Mitochondria are the sites of oxidative metabolism in eukaryotes, where sugars, fats and proteins are finally oxidized to release energy. In recent years, the regulation of Notch signaling pathway on mitochondrial energy metabolism has attracted more and more attention. A large number of data have shown that Notch signaling pathway has a significant effect on mitochondrial energy metabolism, but the relationship between Notch signaling pathway and mitochondrial energy metabolism needs to be specifically and systematically discussed. In this paper, the relationship between Notch signaling pathway and mitochondrial energy metabolism is reviewed, in order to improve the understanding of them and provide new ideas for the treatment of related diseases.


Sujets)
Transduction du signal/physiologie , Mitochondries , Récepteurs Notch/métabolisme , Différenciation cellulaire/physiologie , Métabolisme énergétique
7.
Frontiers of Medicine ; (4): 855-866, 2023.
Article Dans Anglais | WPRIM | ID: wpr-1010821

Résumé

Biomolecular condensates formed by phase separation are widespread and play critical roles in many physiological and pathological processes. cGAS-STING signaling functions to detect aberrant DNA signals to initiate anti-infection defense and antitumor immunity. At the same time, cGAS-STING signaling must be carefully regulated to maintain immune homeostasis. Interestingly, exciting recent studies have reported that biomolecular phase separation exists and plays important roles in different steps of cGAS-STING signaling, including cGAS condensates, STING condensates, and IRF3 condensates. In addition, several intracellular and extracellular factors have been proposed to modulate the condensates in cGAS-STING signaling. These studies reveal novel activation and regulation mechanisms of cGAS-STING signaling and provide new opportunities for drug discovery. Here, we summarize recent advances in the phase separation of cGAS-STING signaling and the development of potential drugs targeting these innate immune condensates.


Sujets)
Humains , Nucleotidyltransferases/composition chimique , Transduction du signal/physiologie , Protéines membranaires/composition chimique ,
8.
Acta Physiologica Sinica ; (6): 569-574, 2023.
Article Dans Chinois | WPRIM | ID: wpr-1007772

Résumé

Sleep is an extremely important physiological state to maintain human life. Sleep disorders can not only cause anxiety and depression, but also induce multi-system diseases that seriously affect brain function and physical health. The neuroinflammation is a key pathological process after sleep disorders, which can induce a series of nervous system diseases. In recent years, the role of microglia activation in neuroinflammation has been paid more and more attention and become a research hotspot in this field. The imbalance of the central microenvironment after sleep disorders leads to changes in the activation and polarization of microglia, which triggers neuroinflammatory response. The activation and polarization of microglia in the sleep disorders are regulated by multiple signaling pathways and complex molecular mechanisms. This paper summarizes five signaling pathways of microglia activation in central inflammation induced by sleep disorders, including P2X7 receptor (P2X7R), p38MAPK, Toll-like receptor 4 (TLR4)/NF-κB, JAK/STAT, and α7 nicotinic acetylcholine receptor (α7-nAChR) pathways, in order to provide reference for further research and clinical treatment targets selection of sleep disorders.


Sujets)
Humains , Maladies neuro-inflammatoires , Microglie/métabolisme , Transduction du signal/physiologie , Facteur de transcription NF-kappa B/métabolisme , Inflammation/métabolisme , Troubles de la veille et du sommeil/métabolisme
9.
Chinese Medical Journal ; (24): 1839-1847, 2023.
Article Dans Anglais | WPRIM | ID: wpr-1007525

Résumé

BACKGROUND@#Perturbations in bone marrow mesenchymal stem cell (BMSC) differentiation play an important role in steroid-induced osteonecrosis of the femoral head (SONFH). At present, studies on SONFH concentrate upon the balance within BMSC osteogenic and adipogenic differentiation. However, BMSC apoptosis as well as proliferation are important prerequisites in their differentiation. The hedgehog (HH) signaling pathway regulates bone cell apoptosis. Baicalin (BA), a well-known compound in traditional Chinese medicine, can affect the proliferation and apoptosis of numerous cell types via HH signaling. However, the potential role and mechanisms of BA on BMSCs are unclear. Thus, we aimed to explore the role of BA in dexamethasone (Dex)-induced BMSC apoptosis in this study.@*METHODS@#Primary BMSCs were treated with 10 -6 mol/L Dex alone or with 5.0 μmol/L, 10.0 μmol/L, or 50.0 μmol/L BA for 24 hours followed by co-treatment with 5.0 μmol/L, 10.0 μmol/L, or 50.0 μmol/L BA and 10 -6 mol/L Dex. Cell viability was assayed through the Cell Counting Kit-8 (CCK-8). Cell apoptosis was evaluated using Annexin V-fluorescein isothiocyanate/propidium iodide (PI) staining followed by flow cytometry. The imaging and counting, respectively, of Hochest 33342/PI-stained cells were used to assess the morphological characteristics and proportion of apoptotic cells. To quantify the apoptosis-related proteins (e.g., apoptosis regulator BAX [Bax], B-cell lymphoma 2 [Bcl-2], caspase-3, and cleaved caspase-3) and HH signaling pathway proteins, western blotting was used. A HH-signaling pathway inhibitor was used to demonstrate that BA exerts its anti-apoptotic effects via the HH signaling pathway.@*RESULTS@#The results of CCK-8, Hoechst 33342/PI-staining, and flow cytometry showed that BA did not significantly promote cell proliferation (CCK-8: 0 μmol/L, 100%; 2.5 μmol/L, 98.58%; 5.0 μmol/L, 95.18%; 10.0 μmol/L, 98.11%; 50.0 μmol/L, 99.38%, F   =  2.33, P   >  0.05), but it did attenuate the effect of Dex on apoptosis (Hoechst 33342/PI-staining: Dex+ 50.0 μmol/L BA, 12.27% vs. Dex, 39.27%, t  = 20.62; flow cytometry: Dex + 50.0 μmol/L BA, 12.68% vs. Dex, 37.43%, t  = 11.56; Both P  < 0.05). The results of western blotting analysis showed that BA reversed Dex-induced apoptosis by activating the HH signaling pathway, which down-regulated the expression of Bax, cleaved-caspase 3, and suppressor of fused (SUFU) while up-regulating Bcl-2, sonic hedgehog (SHH), and zinc finger protein GLI-1 (GLI-1) expression (Bax/Bcl-2: Dex+ 50.0 μmol/L BA, 1.09 vs. Dex, 2.76, t  = 35.12; cleaved caspase-3/caspase-3: Dex + 50.0 μmol/L BA, 0.38 vs . Dex, 0.73, t  = 10.62; SHH: Dex + 50.0 μmol/L BA, 0.50 vs . Dex, 0.12, t  = 34.01; SUFU: Dex+ 50.0 μmol/L BA, 0.75 vs . Dex, 1.19, t  = 10.78; GLI-1: Dex+ 50.0 μmol/L BA, 0.40 vs . Dex, 0.11, t  = 30.68. All P  < 0.05).@*CONCLUSIONS@#BA antagonizes Dex-induced apoptosis of human BMSCs by activating the HH signaling pathway. It is a potential candidate for preventing SONFH.


Sujets)
Humains , Protéines Hedgehog/métabolisme , Protéine Bax , Caspase-3/métabolisme , Transduction du signal/physiologie , Apoptose , Protéines régulatrices de l'apoptose/pharmacologie , Dexaméthasone/pharmacologie , Cellules souches mésenchymateuses/métabolisme , Cellules de la moelle osseuse
10.
Trends psychiatry psychother. (Impr.) ; 42(2): 195-206, Apr.-June 2020. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1139820

Résumé

Abstract Introduction In addition to their role in regulation of the hypothalamic-pituitary-adrenal-axis, corticotropin-releasing factor (CRF) and its related peptides, the urocortins, are important mediators of physiological and pathophysiological processes of the central nervous, cardiovascular, gastrointestinal, immune, endocrine, reproductive, and skin systems. Altered regulation of CRF-mediated adaptive responses to various stressful stimuli disrupts healthy function and might confer vulnerability to several disorders, including depression and anxiety. Methodology This narrative review was conducted through search and analysis of studies retrieved from online databases using a snowball method. Results This review covers aspects beginning with the discovery of CRF, CRF binding protein and their actions via interaction with CRF receptors type 1 and type 2. These are surface plasma membrane receptors, activation of which is associated with conformational changes and interaction with a variety of G-proteins and signaling pathways. We also reviewed the pharmacology and mechanisms of the receptor signaling modulatory activity of these receptors. Conclusion This review compiles and presents knowledge regarding the CRFergic system, including CRF related peptides, CRF binding protein, and CRF receptors, as well as some evidence that is potentially indicative of the biological roles of these entities in several physiological and pathophysiological processes.


Sujets)
Animaux , Humains , Stress psychologique/métabolisme , Corticolibérine/physiologie , Transduction du signal/physiologie , Récepteur CRH/physiologie , Axe hypothalamohypophysaire/métabolisme , Corticolibérine/métabolisme , Récepteur CRH/métabolisme
11.
Braz. oral res. (Online) ; 34: e006, 2020. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1055522

Résumé

Abstract Induced pluripotent stem (iPS) cells could be induced into ameloblast-like cells by ameloblasts serum-free conditioned medium (ASF-CM), and bone morphogenetic proteins (BMPs) might be essential during the regulation of this process. The present study investigates the signal transduction that regulates the ameloblastic differentiation of iPS cells induced by ASF-CM. Mouse iPS cells were characterized and then cultured for 14 days in epithelial cell medium (control) or ASF-CM. Bone morphogenetic protein receptor II (BMPR-II) siRNA, inhibitor of Smad1/5 phosphorylation activated by activin receptor-like kinase (ALK) receptors, and inhibitors of mitogen-activated protein kinases (MAPKs) phosphorylation were used to treat the iPS cells in combination with ASF-CM. Real-time PCR, western blotting, and immunofluorescent staining were used to evaluate the expressions of ameloblast markers ameloblastin, enamelin, and cytokeratin-14. BMPR-II gene and protein levels increased markedly in ASF-CM-treated iPS cells compared with the controls, while the mRNA levels of Bmpr-Ia and Bmpr-Ib were similar between the ASF-CM and control groups. ASF-CM stimulation significantly increased the gene and protein expression of ameloblastin, enamelin and cytokeratin-14, and phosphorylated SMAD1/5, p38 MAPK, and ERK1/2 MAPK compared with the controls. Knockdown of BMPR-II and inhibition of Smad1/5 phosphorylation both could significantly reverse the increased expression of ameloblastin, enamelin, and cytokeratin-14 induced by ASF-CM, while neither inhibition of p38 nor ERK1/2 phosphorylation had significant reversing effects. We conclude that smad1/5 signaling transduction, activated by ALK receptors, regulates the ameloblastic differentiation of iPS cells induced by ameloblast-conditioned medium.


Sujets)
Transduction du signal/physiologie , Protéine Smad-1/physiologie , Cellules souches pluripotentes induites/cytologie , Améloblastes/cytologie , Phosphorylation , Facteurs temps , Expression des gènes , Différenciation cellulaire/physiologie , Différenciation cellulaire/génétique , Cellules cultivées , Technique de Western , Technique d'immunofluorescence , Milieux de culture sans sérum , RT-PCR , Système de signalisation des MAP kinases/physiologie , Récepteur activine/analyse , Récepteur activine/physiologie , Interférence par ARN , p38 Mitogen-Activated Protein Kinases/analyse , p38 Mitogen-Activated Protein Kinases/physiologie , Récepteurs de la protéine morphogénique osseuse de type II/analyse , Récepteurs de la protéine morphogénique osseuse de type II/physiologie , Protéine Smad-1/analyse
12.
Braz. oral res. (Online) ; 34: e006, 2020. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1089380

Résumé

Abstract Induced pluripotent stem (iPS) cells could be induced into ameloblast-like cells by ameloblasts serum-free conditioned medium (ASF-CM), and bone morphogenetic proteins (BMPs) might be essential during the regulation of this process. The present study investigates the signal transduction that regulates the ameloblastic differentiation of iPS cells induced by ASF-CM. Mouse iPS cells were characterized and then cultured for 14 days in epithelial cell medium (control) or ASF-CM. Bone morphogenetic protein receptor II (BMPR-II) siRNA, inhibitor of Smad1/5 phosphorylation activated by activin receptor-like kinase (ALK) receptors, and inhibitors of mitogen-activated protein kinases (MAPKs) phosphorylation were used to treat the iPS cells in combination with ASF-CM. Real-time PCR, western blotting, and immunofluorescent staining were used to evaluate the expressions of ameloblast markers ameloblastin, enamelin, and cytokeratin-14. BMPR-II gene and protein levels increased markedly in ASF-CM-treated iPS cells compared with the controls, while the mRNA levels of Bmpr-Ia and Bmpr-Ib were similar between the ASF-CM and control groups. ASF-CM stimulation significantly increased the gene and protein expression of ameloblastin, enamelin and cytokeratin-14, and phosphorylated SMAD1/5, p38 MAPK, and ERK1/2 MAPK compared with the controls. Knockdown of BMPR-II and inhibition of Smad1/5 phosphorylation both could significantly reverse the increased expression of ameloblastin, enamelin, and cytokeratin-14 induced by ASF-CM, while neither inhibition of p38 nor ERK1/2 phosphorylation had significant reversing effects. We conclude that smad1/5 signaling transduction, activated by ALK receptors, regulates the ameloblastic differentiation of iPS cells induced by ameloblast-conditioned medium.


Sujets)
Transduction du signal/physiologie , Protéine Smad-1/physiologie , Cellules souches pluripotentes induites/cytologie , Améloblastes/cytologie , Phosphorylation , Facteurs temps , Expression des gènes , Différenciation cellulaire/physiologie , Différenciation cellulaire/génétique , Cellules cultivées , Technique de Western , Technique d'immunofluorescence , Milieux de culture sans sérum , RT-PCR , Système de signalisation des MAP kinases/physiologie , Récepteur activine/analyse , Récepteur activine/physiologie , Interférence par ARN , p38 Mitogen-Activated Protein Kinases/analyse , p38 Mitogen-Activated Protein Kinases/physiologie , Récepteurs de la protéine morphogénique osseuse de type II/analyse , Récepteurs de la protéine morphogénique osseuse de type II/physiologie , Protéine Smad-1/analyse
13.
Journal of Zhejiang University. Science. B ; (12): 690-702, 2020.
Article Dans Anglais | WPRIM | ID: wpr-1010548

Résumé

Autophagy is a conserved catabolic process characterized by degradation and recycling of cytosolic components or organelles through a lysosome-dependent pathway. It has a complex and close relationship to drug resistance in breast cancer. MicroRNAs (miRNAs) are small noncoding molecules that can influence numerous cellular processes including autophagy, through the posttranscriptional regulation of gene expression. Autophagy is regulated by many proteins and pathways, some of which in turn have been found to be regulated by miRNAs. These miRNAs may affect the drug resistance of breast cancer. Drug resistance is the main cause of distant recurrence, metastasis and death in breast cancer patients. In this review, we summarize the causative relationship between autophagy and drug resistance of breast cancer. The roles of autophagy-related proteins and pathways and their associated miRNAs in drug resistance of breast cancer are also discussed.


Sujets)
Femelle , Humains , Autophagie/physiologie , Tumeurs du sein/anatomopathologie , Résistance aux médicaments antinéoplasiques , Régulation de l'expression des gènes tumoraux , microARN/physiologie , Transduction du signal/physiologie
14.
Journal of Zhejiang University. Science. B ; (12): 204-217, 2020.
Article Dans Anglais | WPRIM | ID: wpr-1010528

Résumé

Microglia are important cells involved in the regulation of neuropathic pain (NPP) and morphine tolerance. Information on their plasticity and polarity has been elucidated after determining their physiological structure, but there is still much to learn about the role of this type of cell in NPP and morphine tolerance. Microglia mediate multiple functions in health and disease by controlling damage in the central nervous system (CNS) and endogenous immune responses to disease. Microglial activation can result in altered opioid system activity, and NPP is characterized by resistance to morphine. Here we investigate the regulatory mechanisms of microglia and review the potential of microglial inhibitors for modulating NPP and morphine tolerance. Targeted inhibition of glial activation is a clinically promising approach to the treatment of NPP and the prevention of morphine tolerance. Finally, we suggest directions for future research on microglial inhibitors.


Sujets)
Humains , Peptide relié au gène de la calcitonine/antagonistes et inhibiteurs , Tolérance aux médicaments , Hypoglycémiants/pharmacologie , Microglie/physiologie , microARN/physiologie , Minocycline/pharmacologie , Morphine/pharmacologie , Névralgie/étiologie , Extraits de plantes/pharmacologie , Transduction du signal/physiologie
15.
Arch. endocrinol. metab. (Online) ; 63(6): 582-591, Nov.-Dec. 2019. tab
Article Dans Anglais | LILACS | ID: biblio-1055018

Résumé

ABSTRACT GH is one of the insulin counterregulatory hormones which acts in the opposite way to insulin, increasing the glucose production by the liver and kidneys and decreasing glucose uptake from peripheral tissues, thus being a hyperglycemic hormone. When in excess, as in acromegaly, it induces glucose intolerance and diabetes. As expected, patients with GH deficiency (GHD) have hypoglycemia, especially in early childhood, but as GH is also a lipolytic hormone, these patients are becoming obese with higher percentages of body fat. Although obesity in general is directly related to insulin resistance, in patients with GH secretion disorders this relationship may be altered. In acromegaly there is a decrease in fat mass with worsening insulin sensitivity and mice with isolated GHD are characterized by greater insulin sensitivity despite excess fat mass. In humans with GHD, body composition shows increased body fat and decreased free fat mass, but the results regarding insulin sensitivity are still controversial in these patients. These discrepant results regarding insulin sensitivity in patients with GHD suggest the existence of other variables influencing these results. In the present review, we will try to follow the path of the different researches conducted on this subject, both in animal and human models, with the goal of understanding the current knowledge of insulin sensitivity across the spectrum of GHD. Arch Endocrinol Metab. 2019;63(6):582-91


Sujets)
Humains , Animaux , Insulinorésistance/physiologie , Transduction du signal/physiologie , Hormone de croissance humaine/déficit , Hormone de croissance humaine/physiologie , Glucose/physiologie , Glucose/métabolisme
16.
Rev. Soc. Bras. Clín. Méd ; 17(3): 120-123, jul.-set. 2019. ilus.
Article Dans Anglais | LILACS | ID: biblio-1284144

Résumé

Objective: To demonstrate the interaction between obstructive sleep apnea/hypopnea syndrome, insulin resistance, and non-alcoholic fatty pancreatic disease through the signaling pathway diagram. Methods: To investigate the involvement of metabolic signaling pathway, a search was performed using the Kyoto Encyclopedia of Genes and Genomes. The signaling pathway mapping was performed using the automatic annotation server of this encyclopedia. The Modeller 9.19 package was used to predict 3-dimensional structures based on the homology modeling protocol. The signaling pathway map was performed using PathVisio software, which is a free available signaling pathway drawing software. Based on the 3-dimensional structures, we have designed several peptide activators of the signaling pathway of non-alcoholic fatty pancreatic disease. Results: The contigs were taken from the Kyoto Encyclopedia of Genes and Genomes database and their mapped transcription represented the signaling pathway of the main biomolecules that triggered non-alcoholic fatty pancreatic disease. The interaction between obstructive sleep apnea/hypopnea syndrome, insulin resistance, and inflammatory factors contributes to the possible development of fatty infiltration of pancreas, leading to the loss of function of the pancreatic ß-cells, and even to the development of other metabolic diseases. Conclusion: The interaction between obstructive sleep apnea/hypopnea syndrome and insulin resistance demonstrated through the signaling pathway contributes to the possible development of non-alcoholic fatty pancreatic disease. (AU)


Objetivo: Demonstrar a interação entre a síndrome de apneia/ hipopneia obstrutiva do sono, a resistência à insulina e a doença pancreática gordurosa não alcoólica considerando o desenho de uma via de sinalização. Métodos: Para avaliar o envolvimento da via de sinalização metabólica, realizou-se uma pesquisa usando a Enciclopédia de Genes e Genomas de Kyoto. O mapeamento da via de sinalização foi realizado com o servidor de anotação automático desta enciclopédia. O software MODELLER 9.19 foi usado para prever estruturas tridimensionais, com base no protocolo de modelagem por homologia. O desenho da via de sinalização foi realizado por meio do programa PathVisio, um software de domínio público para desenho de via de sinalização. Com base nas estruturas tridimensionais, desenhamos os vários ativadores peptídicos da via de sinalização da esteatose pancreática. Resultados: Os contigs foram retirados do banco de dados da Enciclopédia de Genes e Genomas de Kyoto, e sua transcrição mapeada representou a via de sinalização das principais biomoléculas que desencadearam doença pancreática gordurosa não alcoólica. A interação entre síndrome de apneia/hipopneia obstrutiva do sono, resistência à insulina e fatores inflamatórios contribuiu para o possível desenvolvimento de infiltração gordurosa do pâncreas, levando à perda de função das células beta pancreáticas e até mesmo ao desenvolvimento de outras doenças metabólicas. Conclusão: A interação entre síndrome de apneia/hipopneia obstrutiva do sono e resistência à insulina demonstrada pela via de sinalização contribui para o possível desenvolvimento de doença pancreática gordurosa não alcoólica. (AU)


Sujets)
Humains , Mâle , Femelle , Maladies du pancréas/étiologie , Insulinorésistance/physiologie , Syndrome d'apnées obstructives du sommeil/complications , Transduction du signal/physiologie , Syndrome métabolique X/étiologie , Diabète de type 2/étiologie , Dyslipidémies/étiologie , Stéatose hépatique non alcoolique/étiologie , Obésité/étiologie
17.
Braz. j. med. biol. res ; 52(11): e8371, 2019. graf
Article Dans Anglais | LILACS | ID: biblio-1039257

Résumé

Oxiracetam (ORC) is a commonly used nootropic drug for improving cognition and memory impairments. The therapeutic effect and underlying mechanism of ORC in vascular dementia (VaD) treatment remain unknown. In this study, 3-month-old male Sprague-Dawley rats with permanent bilateral common carotid artery occlusion-induced VaD were treated orally with low (100 mg/kg) or high (200 mg/kg) dose ORC once a day for 4 weeks. The results of the Morris water maze test and Nissl staining showed that ORC treatment significantly alleviated learning and memory deficits and neuronal damage in rats with VaD. Mechanistically, the protein levels of a panel of genes associated with neuronal apoptosis (Bcl-2, Bax) and autophagy (microtubule-associated protein 1 chain 3, Beclin1, p62) were significantly altered by ORC treatment compared with VaD, suggesting a protective role of ORC against VaD-induced neuronal apoptosis and autophagy. Moreover, the Akt/mTOR pathway, which is known to be the upstream signaling governing apoptosis and autophagy, was found to be activated in ORC-treated rats, suggesting an involvement of Akt/mTOR activation in ORC-rendered protection in VaD rats. Taken together, this study demonstrated that ORC may alleviate learning and memory impairments and neuronal damage in VaD rats by altering the expression of apoptosis/autophagy-related genes and activation of the Akt/mTOR signaling pathway in neurons.


Sujets)
Animaux , Mâle , Rats , Pyrrolidines/administration et posologie , Démence vasculaire/traitement médicamenteux , Transduction du signal/physiologie , Neuroprotecteurs/administration et posologie , Protéines proto-oncogènes c-akt/métabolisme , Dysfonctionnement cognitif/traitement médicamenteux , Autophagie/effets des médicaments et des substances chimiques , Démence vasculaire/physiopathologie , Démence vasculaire/métabolisme , Rat Sprague-Dawley , Apoptose/effets des médicaments et des substances chimiques , Apprentissage du labyrinthe/effets des médicaments et des substances chimiques , Modèles animaux de maladie humaine , Sérine-thréonine kinases TOR/métabolisme , Dysfonctionnement cognitif/physiopathologie , Dysfonctionnement cognitif/métabolisme
18.
Biol. Res ; 52: 41, 2019. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1019505

Résumé

BACKGROUND: Di-N-butyl-phthalate (DBP) is an endocrine disrupting substance. We investigated the adverse effect of DBP on testis of male rat and reveal its potential mechanism of MAPK signaling pathway involved this effect in vivo and in vitro. Gonadal hormone, sperm quality, morphological change and the activation status of JNK, ERK1/2 and p38 was determined in vivo. Primary Sertoli cell was established and cultivated with JNK, ERK1/2 inhibitors, then determine the cell viability, apoptosis and the expression of p-JNK, p-ERK1/2. Data in this study were presented as mean ± SD and determined by one-way analysis of variance (ANOVA) followed by Bonferroni's test. Difference was considered statistically significant at P < 0.05. RESULTS: In vivo experiment, DBP impaired the normal structure of testicular tissue, reduced testosterone levels in blood serum, decreased sperm count and increased sperm abnormality, p-ERK1/2 and p-JNK in rat testicular tissue increased in a dose-dependent manner. In vitro studies, DBP could decrease the viability of Sertoli cells and increase p-ERK1/2 and p-JNK. Cell apoptosis in SP600125 + DBP group was significantly lower than in DBP group (P < 0.05). p-JNK was not significantly decreased in SP600125 + DBP group, while p-ERK1/2 was significantly decreased in U0126 + DBP group. CONCLUSIONS: These results suggest that DBP can lead to testicular damage and the activation of ERK1/2 and JNK pathways, the JNK signaling pathway may be primarily associated with its effect.


Sujets)
Animaux , Mâle , Rats , Testicule/traumatismes , Testicule/métabolisme , Transduction du signal/physiologie , Mitogen-Activated Protein Kinases/métabolisme , Système de signalisation des MAP kinases/physiologie , JNK Mitogen-Activated Protein Kinases/métabolisme , Phtalate de dibutyle/pharmacologie , Testicule/effets des médicaments et des substances chimiques , Rat Sprague-Dawley , Mitogen-Activated Protein Kinases/physiologie , JNK Mitogen-Activated Protein Kinases/physiologie
19.
Biol. Res ; 52: 8, 2019. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1011404

Résumé

BACKGROUND: Cervical cancer (CC) ranks third in the morbidity and mortality of female cancer around the world. Derlin1 has been found to be overexpressed in several human cancers. However, it is still unclear about its roles in CC. The research aims to explore the relationship between Derlin1 and CC. METHODS: We purchased a human CC tissues microarray, which contained CC tissues and corresponding para-cancerous tissues from 93 patients with primary cervical squamous cell carcinoma. Immunohistochemical staining was used to confirm the expression of Derlin1 in these tissues. And we detected the differential expression of Derlin1 in cervical cancer cell lines and normal cervical epithelial cells (H8). Further, the cervical cancer cell lines SiHa and C33A were used as an in vitro model, which was down-regulated the expression of Derlin1 using siRNA interference technology. The effects of Derlin1 down-regulating in CC cell lines on cell proliferation and migration were detected by CCK8 assay and transwell assay, respectively. The effect of Derlin1 down-regulating on apoptosis was analyzed by flow cytometry, and apoptosis-related proteins were detected using western blotting. In-depth mechanisms were studied using western blotting. In addition, the effects of Derlin1 up-regulating in normal cervical epithelial cells also were exposed. RESULTS: Derlin1 was significantly elevated in CC tissues (81.7%, 76/93), and the expression of Derlin 1 was positively correlated with the tumor size, pathological grade, and lymph node metastasis in CC patients. And Derlin 1 was high expressed in cervical cancer cell lines compared to H8 cells. Knockdown of Derlin 1 in cervical cancer cell lines inhibited cell proliferation and migration. Moreover, knockdown of Derlin 1 induced apoptosis and affected the expression of apoptosis-related proteins, including Bcl-2, Bax, Bim, caspase3 and caspase9. Further experiments showed that AKT/mTOR signal pathway might be involve in this processes that knockdown of Derlin 1 inhibited the expression of p-AKT and p-mTOR. Over-expression of Derlin 1 in H8 cells promoted cell proliferation and migration via up-regulated the expression of p-AKT and p-mTOR. CONCLUSION: Derlin 1 is an oncogene in CC via AKT/mTOR pathway. It might be a potential therapeutic target for CC.


Sujets)
Humains , Femelle , Carcinome épidermoïde/métabolisme , Transduction du signal/physiologie , Tumeurs du col de l'utérus/métabolisme , Protéines proto-oncogènes c-akt/métabolisme , Sérine-thréonine kinases TOR/métabolisme , Protéines membranaires/métabolisme , Immunohistochimie , Carcinome épidermoïde/anatomopathologie , Tumeurs du col de l'utérus/anatomopathologie , Apoptose , Analyse par réseau de protéines , Lignée cellulaire tumorale , Prolifération cellulaire , Protéines proto-oncogènes c-akt/physiologie
20.
Braz. j. med. biol. res ; 52(7): e8732, 2019. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1011598

Résumé

Inflammation plays an important role in the development of cardiovascular diseases (CVDs), suggesting that the immune system is a target of therapeutic interventions used for treating CVDs. This study evaluated mechanisms underlying inflammatory response and cardiomyocyte hypertrophy associated with bacterial lipopolysaccharide (LPS)- or heat shock protein 60 (HSP60)-induced Toll-like receptor (TLR) stimulation and the effect of a small interfering RNA (siRNA) against Ca2+/calmodulin-dependent kinase II delta B (CaMKIIδB) on these outcomes. Our results showed that treatment with HSP60 or LPS (TLR agonists) induced cardiomyocyte hypertrophy and complement system C3 and factor B gene expression. In vitro silencing of CaMKIIδB prevented complement gene transcription and cardiomyocyte hypertrophy associated with TLR 2/4 activation but did not prevent the increase in interleukin-6 and tumor necrosis factor-alfa gene expression in primary cultured cardiomyocytes. Moreover, CaMKIIδB silencing attenuated nuclear factor-kappa B expression. These findings supported the hypothesis that CaMKIIδB acts as a link between inflammation and cardiac hypertrophy. Furthermore, the present study is the first to show that extracellular HSP60 activated complement gene expression through CaMKIIδB. Our results indicated that a stress stimulus induced by LPS or HSP60 treatment promoted cardiomyocyte hypertrophy and initiated an inflammatory response through the complement system. However, CaMKIIδB silencing prevented the cardiomyocyte hypertrophy independent of inflammatory response induced by LPS or HSP60 treatment.


Sujets)
Animaux , Rats , Myocytes cardiaques/anatomopathologie , Récepteurs de type Toll/métabolisme , Calcium-Calmodulin-Dependent Protein Kinase Type 2/métabolisme , Transduction du signal/physiologie , Expression des gènes , Lipopolysaccharides/pharmacologie , Facteur de transcription NF-kappa B/métabolisme , Rat Wistar , Chaperonine-60/pharmacologie , Myocytes cardiaques/effets des médicaments et des substances chimiques , Myocytes cardiaques/métabolisme , Petit ARN interférent , Inflammation/métabolisme
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