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1.
J Transl Med ; 22(1): 82, 2024 01 20.
Article in English | MEDLINE | ID: mdl-38245790

ABSTRACT

BACKGROUND: Non-alcoholic fatty liver disease (NAFLD) is a liver disorder characterized by the ac-cumulation of fat in hepatocytes without alcohol consumption. Mitochondrial dysfunction and endoplasmic reticulum (ER) stress play significant roles in NAFLD pathogenesis. The unfolded protein response in mitochondria (UPRmt) is an adaptive mechanism that aims to restore mitochondrial protein homeostasis and mitigate cellular stress. This study aimed to investigate the effects of ( +)-Lipoic acid (ALA) on UPRmt, inflammation, and oxidative stress in an in vitro model of NAFLD using HepG2 cells treated with palmitic acid and oleic acid to induce steatosis. RESULTS: Treatment with palmitic and oleic acids increased UPRmt-related proteins HSP90 and HSP60 (heat shock protein), and decreased CLPP (caseinolytic protease P), indicating ER stress activation. ALA treatment at 1 µM and 5 µM restored UPRmt-related protein levels. PA:OA (palmitic acid:oleic acid)-induced ER stress markers IRE1α (Inositol requiring enzyme-1), CHOP (C/EBP Homologous Protein), BIP (Binding Immunoglobulin Protein), and BAX (Bcl-2-associated X protein) were significantly reduced by ALA treatment. ALA also enhanced ER-mediated protein glycosylation and reduced oxidative stress, as evidenced by decreased GPX1 (Glutathione peroxidase 1), GSTP1 (glutathione S-transferase pi 1), and GSR (glutathione-disulfide reductase) expression and increased GSH (Glutathione) levels, and improved cellular senescence as shown by the markers ß-galactosidase, γH2Ax and Klotho-beta. CONCLUSIONS: In conclusion, ALA ameliorated ER stress, oxidative stress, and inflammation in HepG2 cells treated with palmitic and oleic acids, potentially offering therapeutic benefits for NAFLD providing a possible biochemical mechanism underlying ALA beneficial effects.


Subject(s)
Non-alcoholic Fatty Liver Disease , Thioctic Acid , Humans , Non-alcoholic Fatty Liver Disease/pathology , Thioctic Acid/pharmacology , Thioctic Acid/therapeutic use , Thioctic Acid/metabolism , Endoribonucleases/metabolism , Oleic Acid/pharmacology , Oleic Acid/metabolism , Protein Serine-Threonine Kinases/metabolism , Unfolded Protein Response , Oxidative Stress , Endoplasmic Reticulum Stress , Hepatocytes/pathology , Cellular Senescence , Inflammation/pathology , Palmitic Acids/metabolism , Palmitic Acids/pharmacology , Liver/pathology , Palmitic Acid/pharmacology , Palmitic Acid/metabolism
2.
Article in English | MEDLINE | ID: mdl-38578562

ABSTRACT

Muscle damage resulting from physical activities such as exercise triggers an immune response crucial for tissue repair and recovery. This study investigates the immune cell profiles in muscle biopsies of individuals engaged in resistance exercise (RE) and explores the impact of age and sex on the immune response following exercise-induced muscle damage. Microarray datasets from muscle biopsies of young and old subjects were analyzed, focusing on the gene expression patterns associated with immune cell activation. Genes were compared with immune cell signatures to reveal the cellular landscape during exercise. Results show that the most significant modulated gene after RE was Folliculin Interacting Protein 2 (FNIP2) a crucial regulator in cellular homeostasis. Moreover, the transcriptome was stratified based on the expression of FNIP2 and the 203 genes common to the groups obtained based on sex and age. Gene ontology analysis highlighted the FLCN-FNIP1-FNIP2 complex, which exerts as a negative feedback loop to Pi3k-Akt-mTORC1 pathway. Furthermore, we highlighted that the young females exhibit a distinct innate immune cell activation signature compared to males after a RE session. Specifically, young females demonstrate a notable overlap with dendritic cells (DCs), M1 macrophages, M2 macrophages, and neutrophils, while young males overlap with M1 macrophages, M2 macrophages, and motor neurons. Interestingly, in elderly subjects, both sexes display M1 macrophage activation signatures. Comparison of young and elderly signatures reveals an increased M1 macrophage percentage in young subjects. Additionally, common genes were identified in both sexes across different age groups, elucidating biological functions related to cell remodeling and immune activation. This study underscores the intricate interplay between sex, age, and the immune response in muscle tissue following RE, offering potential directions for future research. Nevertheless, there is a need for further studies to delve deeper and confirm the dynamics of immune cells in response to exercise-induced muscle damage.

3.
Int J Mol Sci ; 24(19)2023 Sep 23.
Article in English | MEDLINE | ID: mdl-37833939

ABSTRACT

Non-alcoholic fatty liver disease (NAFLD) is characterized by the accumulation of lipids within hepatocytes, which compromises liver functionality following mitochondrial dysfunction and increased production of reactive oxygen species (ROS). Lipoic acid is one of the prosthetic groups of the pyruvate dehydrogenase complex also known for its ability to confer protection from oxidative damage because of its antioxidant properties. In this study, we aimed to investigate the effects of lipoic acid on lipotoxicity and mitochondrial dynamics in an in vitro model of liver steatosis. HepG2 cells were treated with palmitic acid and oleic acid (1:2) to induce steatosis, without and with 1 and 5 µM lipoic acid. Following treatments, cell proliferation and lipid droplets accumulation were evaluated. Mitochondrial functions were assessed through the evaluation of membrane potential, MitoTracker Red staining, expression of genes of the mitochondrial quality control, and analysis of energy metabolism by HPLC and Seahorse. We showed that lipoic acid treatment restored membrane potential to values comparable to control cells, as well as protected cells from mitochondrial fragmentation following PA:OA treatment. Furthermore, our data showed that lipoic acid was able to determine an increase in the expression of mitochondrial fusion genes and a decrease in mitochondrial fission genes, as well as to restore the bioenergetics of cells after treatment with palmitic acid and oleic acid. In conclusion, our data suggest that lipoic acid reduces lipotoxicity and improves mitochondrial functions in an in vitro model of steatosis, thus providing a potentially valuable pharmacological tool for NAFLD treatment.


Subject(s)
Non-alcoholic Fatty Liver Disease , Thioctic Acid , Humans , Thioctic Acid/pharmacology , Thioctic Acid/metabolism , Non-alcoholic Fatty Liver Disease/drug therapy , Non-alcoholic Fatty Liver Disease/metabolism , Palmitic Acid/pharmacology , Palmitic Acid/metabolism , Oleic Acid/pharmacology , Oleic Acid/metabolism , Mitochondria/metabolism , Hepatocytes/metabolism , Oxidative Stress , Energy Metabolism , Liver/metabolism
4.
Int J Mol Sci ; 24(1)2022 Dec 20.
Article in English | MEDLINE | ID: mdl-36613471

ABSTRACT

Uveal melanoma (UM), the most common primary intraocular cancer in adults, is among the tumors with poorer prognosis. Recently, the role of the oncometabolite lactate has become attractive due to its role as hydroxycarboxylic acid receptor 1 (HCAR1) activator, as an epigenetic modulator inducing lysine residues lactylation and, of course, as a glycolysis end-product, bridging the gap between glycolysis and oxidative phosphorylation. The aim of the present study was to dissect in UM cell line (92.1) the role of lactate as either a metabolite or a signaling molecule, using the known modulators of HCAR1 and of lactate transporters. Our results show that lactate (20 mM) resulted in a significant decrease in cell proliferation and migration, acting and switching cell metabolism toward oxidative phosphorylation. These results were coupled with increased euchromatin content and quiescence in UM cells. We further showed, in a clinical setting, that an increase in lactate transporters MCT4 and HCAR1 is associated with a spindle-shape histological type in UM. In conclusion, our results suggest that lactate metabolism may serve as a prognostic marker of UM progression and may be exploited as a potential therapeutic target.


Subject(s)
Melanoma , Uveal Neoplasms , Humans , Lactic Acid/metabolism , Melanoma/metabolism , Signal Transduction , Receptors, G-Protein-Coupled/metabolism , Uveal Neoplasms/pathology , Cell Line, Tumor
5.
Exp Cell Res ; 395(2): 112204, 2020 10 15.
Article in English | MEDLINE | ID: mdl-32735892

ABSTRACT

BACKGROUND: SARS-CoV2, the agent responsible for the current pandemic, is also causing respiratory distress syndrome (RDS), hyperinflammation and high mortality. It is critical to dissect the pathogenetic mechanisms in order to reach a targeted therapeutic approach. METHODS: In the present investigation, we evaluated the effects of SARS-CoV2 on human bronchial epithelial cells (HBEC). We used RNA-seq datasets available online for identifying SARS-CoV2 potential genes target on human bronchial epithelial cells. RNA expression levels and potential cellular gene pathways have been analyzed. In order to identify possible common strategies among the main pandemic viruses, such as SARS-CoV2, SARS-CoV1, MERS-CoV, and H1N1, we carried out a hypergeometric test of the main genes transcribed in the cells of the respiratory tract exposed to these viruses. RESULTS: The analysis showed that two mechanisms are highly regulated in HBEC: the innate immunity recruitment and the disassembly of cilia and cytoskeletal structure. The granulocyte colony-stimulating factor (CSF3) and dynein heavy chain 7, axonemal (DNAH7) represented respectively the most upregulated and downregulated genes belonging to the two mechanisms highlighted above. Furthermore, the carcinoembryonic antigen-related cell adhesion molecule 7 (CEACAM7) that codifies for a surface protein is highly specific of SARS-CoV2 and not for SARS-CoV1, MERS-CoV, and H1N1, suggesting a potential role in viral entry. In order to identify potential new drugs, using a machine learning approach, we highlighted Flunisolide, Thalidomide, Lenalidomide, Desoximetasone, xylazine, and salmeterol as potential drugs against SARS-CoV2 infection. CONCLUSIONS: Overall, lung involvement and RDS could be generated by the activation and down regulation of diverse gene pathway involving respiratory cilia and muscle contraction, apoptotic phenomena, matrix destructuration, collagen deposition, neutrophil and macrophages recruitment.


Subject(s)
Bronchi/metabolism , Coronavirus Infections/genetics , Gene Regulatory Networks , Pneumonia, Viral/genetics , Respiratory Mucosa/metabolism , Transcriptome , Bronchi/pathology , COVID-19 , Carcinoembryonic Antigen/genetics , Carcinoembryonic Antigen/metabolism , Coronavirus Infections/metabolism , Drug Discovery/methods , Dyneins/genetics , Dyneins/metabolism , GPI-Linked Proteins/genetics , GPI-Linked Proteins/metabolism , Granulocyte Colony-Stimulating Factor/genetics , Granulocyte Colony-Stimulating Factor/metabolism , Humans , Immunity, Innate , Machine Learning , Pandemics , Pneumonia, Viral/metabolism , Up-Regulation
6.
Int J Mol Sci ; 22(5)2021 Feb 28.
Article in English | MEDLINE | ID: mdl-33671104

ABSTRACT

In recent years, there has been a growth in scientific interest in nutraceuticals, which are those nutrients in foods that have beneficial effects on health. Nutraceuticals can be extracted, used for food supplements, or added to foods. There has long been interest in the antiviral properties of nutraceuticals, which are especially topical in the context of the ongoing COVID-19 pandemic. Therefore, the purpose of this review is to evaluate the main nutraceuticals to which antiviral roles have been attributed (either by direct action on viruses or by modulating the immune system), with a focus on the pediatric population. Furthermore, the possible applications of these substances against SARS-CoV-2 will be considered.


Subject(s)
Antiviral Agents/therapeutic use , COVID-19/prevention & control , Dietary Supplements , Virus Diseases/prevention & control , Child , Humans , Probiotics/therapeutic use , Randomized Controlled Trials as Topic , SARS-CoV-2/drug effects
7.
Cell Tissue Res ; 379(3): 421-428, 2020 Mar.
Article in English | MEDLINE | ID: mdl-31776822

ABSTRACT

Regenerative medicine is a branch of translational research that aims to reestablish irreparably damaged tissues and organs by stimulating the body's own repair mechanisms via the implantation of stem cells differentiated into specialized cell types. A rich source of adult stem cells is located inside the tooth and is represented by human dental pulp stem cells, or hDPSCs. These cells are characterized by a high proliferative rate, have self-renewal and multi-lineage differentiation properties and are often used for tissue engineering and regenerative medicine. The present review will provide an overview of hDPSCs and related features with a special focus on their potential applications in regenerative medicine of the nervous system, such as, for example, after spinal cord injury. Recent advances in the identification and characterization of dental stem cells and in dental tissue engineering strategies suggest that bioengineering approaches may successfully be used to regenerate districts of the central nervous system, previously considered irreparable.


Subject(s)
Cell- and Tissue-Based Therapy/methods , Dental Pulp/cytology , Mesenchymal Stem Cells/physiology , Nerve Regeneration/physiology , Spinal Cord Injuries/therapy , Animals , Dental Pulp/metabolism , Humans , Mesenchymal Stem Cells/cytology , Mesenchymal Stem Cells/metabolism
8.
Mol Biol Rep ; 47(3): 1949-1964, 2020 Mar.
Article in English | MEDLINE | ID: mdl-32056044

ABSTRACT

Non-small cell lung cancer (NSCLC) remains the leading cause of cancer-related death mainly due to its high metastatic rate. Impairment of redox homeostasis mechanisms has been previously described in NSCLC and is associated with the disease itself as well as with comorbidities such as smoking. The aim of the present in vitro study was to evaluate the effect of selective and non-competitive inhibition of heme oxygenase-1 (HO-1) on cancer redox homeostasis with particular regards to glutathione (GSH) metabolism related enzymes. NSCLC cell line (A549) was treated with the HO-1 activity inhibitor VP13/47 (10 µM) and we further evaluated cell viability, apoptosis, mitochondrial dysfunction and oxidative stress. Our results showed that VP13/47 significantly reduced HO-1 expression and total HO activity thus, resulting in a significant reduction of cell viability, proliferation and increased apoptosis, mitochondrial dysfunction and oxidative stress. Consistently with increased oxidative stress, we also showed that reduced GSH was significantly decreased and such effect was also accompanied by a significant downregulation of the enzymes involved in its biosynthesis. Taken all together our results show that selective HO-1 inhibition significantly impairs NSCLC progression and may represent a possible pharmacological strategy for new chemotherapy agents.


Subject(s)
Carcinoma, Non-Small-Cell Lung/metabolism , Enzyme Inhibitors/pharmacology , Glutathione/metabolism , Heme Oxygenase-1/antagonists & inhibitors , Hydrocarbons, Brominated/pharmacology , Imidazoles/pharmacology , Lung Neoplasms/metabolism , A549 Cells , Carcinoma, Non-Small-Cell Lung/drug therapy , Cell Proliferation/drug effects , Cell Survival/drug effects , Down-Regulation , Enzyme Inhibitors/chemistry , Humans , Hydrocarbons, Brominated/chemistry , Imidazoles/chemistry , Lung Neoplasms/drug therapy , Mitochondria/drug effects , Mitochondria/metabolism , Oxidative Stress
9.
Int J Mol Sci ; 21(8)2020 Apr 22.
Article in English | MEDLINE | ID: mdl-32331228

ABSTRACT

Primary myelofibrosis (PMF) is a rare myeloproliferative neoplasm characterized by stem-cell-derived clonal over-proliferation of mature myeloid lineages, bone marrow fibrosis, osteosclerosis, defective erythropoiesis, and pro-inflammatory cytokine over-expression. The aim of the present study was to highlight possible differences in the transcriptome among CD34+ cells from peripheral blood (PB) of PMF patients. Therefore, we merged two microarray datasets of healthy control subjects and PMF (34 JAK2V617F MUTATED and 28 JAK2 wild-type). The GO analysis of upregulated genes revealed enrichment for JAK2/STAT1 pathway gene set in PB CD34+ cells of PMF patients with and without the JAK2V617F mutation comparing to the healthy control subjects, and in particular a significant upregulation of immunoproteasome (IP)-belonging genes as PSMB8, PSMB9, and PSMB10. A more detailed investigation of the IFN-gamma (IFNG) pathway also revealed that IFNG, IRF1, and IFNGR2 were significantly upregulated in PB CD34+ cells of PMF patients carrying the mutation for JAK2V617F compared to JAK2 wild-type PMF patients. Finally, we showed an upregulation of HLA-class I genes in PB CD34+ cells from PMF JAK2V617F mutated patients compared to JAK2 wild-type and healthy controls. In conclusion, our results demonstrate that IPs and IFNG pathways could be involved in PMF disease and in particular in patients carrying the JAK2V617F mutation.


Subject(s)
Immunomodulation/genetics , Janus Kinase 2/genetics , Mutation , Primary Myelofibrosis/genetics , Proteasome Endopeptidase Complex/genetics , Alleles , Antigens/metabolism , Antigens, CD34/metabolism , Cells, Cultured , Computational Biology/methods , Disease Susceptibility , Gene Expression Profiling , Gene Expression Regulation , Genetic Association Studies , Humans , Models, Biological , Primary Myelofibrosis/diagnosis , Primary Myelofibrosis/immunology , Primary Myelofibrosis/metabolism , Prognosis , Proteasome Endopeptidase Complex/metabolism , ROC Curve , Signal Transduction
10.
Int J Mol Sci ; 21(15)2020 Jul 27.
Article in English | MEDLINE | ID: mdl-32727075

ABSTRACT

Brain and other nervous system cancers are the 10th leading cause of death worldwide. Genome instability, cell cycle deregulation, epigenetic mechanisms, cytoarchitecture disassembly, redox homeostasis as well as apoptosis are involved in carcinogenesis. A diet rich in fruits and vegetables is inversely related with the risk of developing cancer. Several studies report that cruciferous vegetables exhibited antiproliferative effects due to the multi-pharmacological functions of their secondary metabolites such as isothiocyanate sulforaphane deriving from the enzymatic hydrolysis of glucosinolates. We treated human astrocytoma 1321N1 cells for 24 h with different concentrations (0.5, 1.25 and 2.5% v/v) of sulforaphane plus active myrosinase (Rapha Myr®) aqueous extract (10 mg/mL). Cell viability, DNA fragmentation, PARP-1 and γH2AX expression were examined to evaluate genotoxic effects of the treatment. Cell cycle progression, p53 and p21 expression, apoptosis, cytoskeleton morphology and cell migration were also investigated. In addition, global DNA methylation, DNMT1 mRNA levels and nuclear/mitochondrial sirtuins were studied as epigenetic biomarkers. Rapha Myr® exhibited low antioxidant capability and exerted antiproliferative and genotoxic effects on 1321N1 cells by blocking the cell cycle, disarranging cytoskeleton structure and focal adhesions, decreasing the integrin α5 expression, renewing anoikis and modulating some important epigenetic pathways independently of the cellular p53 status. In addition, Rapha Myr® suppresses the expression of the oncogenic p53 mutant protein. These findings promote Rapha Myr® as a promising chemotherapeutic agent for integrated cancer therapy of human astrocytoma.


Subject(s)
Anoikis/drug effects , Antineoplastic Combined Chemotherapy Protocols/pharmacology , Astrocytoma/metabolism , DNA Methylation/drug effects , DNA, Neoplasm/metabolism , Neoplasm Proteins/metabolism , Sirtuins/metabolism , Astrocytoma/drug therapy , Astrocytoma/pathology , Cell Line, Tumor , Glycoside Hydrolases/pharmacology , Humans , Isothiocyanates/pharmacology , Sulfoxides
11.
Am J Perinatol ; 36(S 02): S110-S114, 2019 07.
Article in English | MEDLINE | ID: mdl-31238370

ABSTRACT

OBJECTIVE: Delivery room (DR) management may play an important role in the development and prevention of lung injury. Therefore, in a cohort of low birth weight infants (LBW), we investigated the effects of two different lung recruitment maneuvers, such as positive pressure ventilation (PPV) and sustained inflation (SI) on adrenomedullin (AM), a well-established lung-specific vasoactive agent. STUDY DESIGN: This is a prospective case-control randomized study in 44 LBW infants spontaneously breathing with respiratory failure at birth requiring respiratory support. LBW were randomized to receive PPV (n = 22) or SI (n = 22) support. AM was measured from blood in samples collected at birth from arterial artery (BLT0) and at 1-hour (BLT1) and at 24-hour (BLT2) from peripheral venous site. AM assessment in urine samples was performed at 1-hour (URT1) and at 24-hour (URT2). RESULTS: No significant differences in AM (p > 0.05) blood (T0-T2) and urine (T1, T2) levels were observed between groups. CONCLUSION: The present data, showing the absence of any differences in AM blood and urine levels, suggest that PPV and SI are both feasible and equally effective DR maneuvers. The findings open the way to further studies evaluating the effects of PPV and SI on short-/long-term respiratory outcome through biomarkers assessment.


Subject(s)
Adrenomedullin/blood , Adrenomedullin/urine , Continuous Positive Airway Pressure , Infant, Low Birth Weight/blood , Positive-Pressure Respiration , Respiratory Insufficiency/therapy , Biomarkers/blood , Biomarkers/urine , Case-Control Studies , Female , Humans , Infant, Low Birth Weight/urine , Infant, Newborn , Infant, Premature/blood , Infant, Premature/urine , Male , Prospective Studies , Respiratory Distress Syndrome, Newborn/prevention & control , Respiratory Insufficiency/blood , Respiratory Insufficiency/urine
12.
Int J Mol Sci ; 20(13)2019 Jun 29.
Article in English | MEDLINE | ID: mdl-31261958

ABSTRACT

Natural bioactive compounds may be used in obese patients because of their ability to impact on various key mechanisms involved in the complex pathophysiological mechanisms of such condition. The aim of this study was to investigate the effect of a Mangifera indica L. leaf extract (MLE) on adipogenic differentiation of murine preadipocyte cells. 3T3-L1 cells were treated during their differentiation with various concentrations of (Mangifera indica L.) leaves extract (MLE) (750, 380, 150, 75 and 35 µg) in order to assess their lipid content, adiponectin production, expression profile of genes involved in lipid metabolism, oxidative stress and inflammation. Our results showed that MLE was particularly enriched in polyphenols (46.30 ± 0.083 mg/g) and that pharmacological treatment of cells resulted in a significant increase of adiponectin levels and reduction of intracellular lipid content. Consistently with these results, MLE resulted in a significant decrease of the expression of genes involved in lipid metabolism (FAS, PPARG, DGAT1, DGAT2, and SCD-1). In conclusion, our results suggest that MLE may represent a possible pharmacological tool for obese or metabolic syndrome patients.


Subject(s)
Adipocytes/drug effects , Adipogenesis , Adiponectin/metabolism , Antioxidants/pharmacology , Mangifera/chemistry , Plant Extracts/pharmacology , 3T3-L1 Cells , Adipocytes/metabolism , Animals , Antioxidants/chemistry , Lipid Metabolism , Mice , Oxidative Stress , Plant Extracts/chemistry , Plant Leaves/chemistry , Polyphenols/analysis , Xanthones/analysis
13.
Int J Mol Sci ; 20(10)2019 May 27.
Article in English | MEDLINE | ID: mdl-31137785

ABSTRACT

High levels of heme oxygenase (HO)-1 have been frequently reported in different human cancers, playing a major role in drug resistance and regulation of cancer cell redox homeostasis. Metformin (MET), a drug widely used for type 2 diabetes, has recently gained interest for treating several cancers. Recent studies indicated that the anti-proliferative effects of metformin in cancer cells are highly dependent on glucose concentration. The present work was directed to determine whether use of a specific inhibitor of HO-1 activity, alone or in combination with metformin, affected metastatic prostate cancer cell viability under different concentrations of glucose. MTT assay and the xCELLigence system were used to evaluate cell viability and cell proliferation in DU145 human prostate cancer cells. Cell apoptosis and reactive oxygen species were analyzed by flow cytometry. The activity of HO-1 was inhibited using a selective imidazole-based inhibitor; genes associated with antioxidant systems and cell death were evaluated by qRT-PCR. Our study demonstrates that metformin suppressed prostate cancer growth in vitro and increased oxidative stress. Disrupting the antioxidant HO-1 activity, especially under low glucose concentration, could be an attractive approach to potentiate metformin antineoplastic effects and could provide a biochemical basis for developing HO-1-targeting drugs against solid tumors.


Subject(s)
Apoptosis/drug effects , Enzyme Inhibitors/pharmacology , Glucose/metabolism , Heme Oxygenase-1/antagonists & inhibitors , Metformin/pharmacology , Prostatic Neoplasms/metabolism , Cell Line, Tumor , Heme Oxygenase-1/metabolism , Humans , Male , Reactive Oxygen Species/metabolism
14.
Int J Mol Sci ; 20(3)2019 Feb 01.
Article in English | MEDLINE | ID: mdl-30717203

ABSTRACT

Ozone therapy has been widely used in everyday clinical practice over the last few years, leading to significant clinical results in the treatment of herniated discs and pain management. Nevertheless, further studies have demonstrated its potential efficacy and safety under other clinical and experimental conditions. However, some of these studies showed controversial results regarding the safety and efficacy of ozone therapy, thus mining its potential use in an everyday clinical practice. To this regard, it should be considered that extensive literature review reported the use of ozone in a significant different dose range and with different delivery systems. The aim of the present review is to describe the various pharmacological effects of ozone in different organs and clinical conditions and to provide possible biochemical and molecular insights for ozone biological properties, thus providing a possible explanation for various controversial clinical outcomes described in the scientific literature.


Subject(s)
Cardiovascular Diseases/therapy , Intervertebral Disc Degeneration/therapy , Intervertebral Disc Displacement/therapy , Ozone/administration & dosage , Pain/prevention & control , Protective Agents/administration & dosage , Skin Diseases/therapy , Acute Disease , Cardiovascular Diseases/genetics , Cardiovascular Diseases/immunology , Cardiovascular Diseases/pathology , Chemotaxis/drug effects , Chemotaxis/immunology , Chronic Disease , Gene Expression Profiling , Gene Expression Regulation , Humans , Immunity, Innate/drug effects , Intervertebral Disc/drug effects , Intervertebral Disc/immunology , Intervertebral Disc/pathology , Intervertebral Disc Degeneration/genetics , Intervertebral Disc Degeneration/immunology , Intervertebral Disc Degeneration/pathology , Intervertebral Disc Displacement/genetics , Intervertebral Disc Displacement/immunology , Intervertebral Disc Displacement/pathology , Oxidative Stress , Ozone/adverse effects , Pain/genetics , Pain/immunology , Pain/pathology , Pain Management/methods , Protective Agents/adverse effects , Skin Diseases/genetics , Skin Diseases/immunology , Skin Diseases/pathology
15.
Int J Mol Sci ; 19(9)2018 Sep 17.
Article in English | MEDLINE | ID: mdl-30227596

ABSTRACT

BACKGROUND: Juvenile dermatomyositis (JDM) is a systemic, autoimmune, interferon (IFN)-mediated inflammatory muscle disorder that affects children younger than 18 years of age. JDM primarily affects the skin and the skeletal muscles. Interestingly, the role of viral infections has been hypothesized. Mammalian 2'-5'-oligoadenylate synthetase (OAS) genes have been thoroughly characterized as components of the IFN-induced antiviral system, and they are connected to several innate immune-activated diseases. The main purpose of the paper is to define the potential interrelationship between the OAS gene family network and the molecular events that characterize JDM along with double-stranded RNA (dsRNA) molecular pathways. METHODS: We analyzed three microarray datasets obtained from the NCBI in order to verify the expression levels of the OAS gene family network in muscle biopsies (MBx) of JDM patients compared to healthy controls. Furthermore, From GSE51392, we decided to select significant gene expression profiles of primary nasal and bronchial epithelial cells isolated from healthy subjects and treated with polyinosinic-polycytidylic acid (poly(I:C)), a synthetic analog of double-stranded RNA (dsRNA), a molecular pattern associated with viral infection. RESULTS: The analysis showed that all OAS genes were modulated in JDM muscle biopsies. Furthermore, 99% of OASs gene family networks were significantly upregulated. Of importance, 39.9% of modulated genes in JDM overlapped with those of primary epithelial cells treated with poly(I:C). Moreover, the microarray analysis showed that the double-stranded dsRNA virus gene network was highly expressed. In addition, we showed that the innate/adaptive immunity markers were significantly expressed in JDM muscles biopsies. and that their levels were positively correlated to OAS gene family expression. CONCLUSION: OAS gene expression is extremely modulated in JDM as well as in the dsRNA viral gene network. These data lead us to speculate on the potential involvement of a viral infection as a trigger moment for this systemic autoimmune disease. Further in vitro and translational studies are needed to verify this hypothesis in order to strategically plan treatment interventions.


Subject(s)
2',5'-Oligoadenylate Synthetase/genetics , Dermatomyositis/genetics , Gene Regulatory Networks , Multigene Family , Transcriptome , 2',5'-Oligoadenylate Synthetase/immunology , Adaptive Immunity , Adolescent , Dermatomyositis/immunology , Female , Gene Expression Regulation , Humans , Immunity, Innate , Male , Poly I-C/immunology , RNA Virus Infections/immunology , RNA, Double-Stranded/immunology , RNA, Viral/immunology
16.
Am J Physiol Heart Circ Physiol ; 313(2): H368-H380, 2017 Aug 01.
Article in English | MEDLINE | ID: mdl-28576832

ABSTRACT

We have previously reported that epoxyeicosatrienoic acid (EET) has multiple beneficial effects on vascular function; in addition to its antiapoptotic action, it increases insulin sensitivity and inhibits inflammation. To uncover the signaling mechanisms by which EET reduces cardiomyopathy, we hypothesized that EET infusion might ameliorate obesity-induced cardiomyopathy by improving heme oxygenase (HO)-1, Wnt1, thermogenic gene levels, and mitochondrial integrity in cardiac tissues and improved pericardial fat phenotype. EET reduced levels of fasting blood glucose and proinflammatory adipokines, including nephroblastoma overexpressed (NOV) signaling, while increasing echocardiographic fractional shortening and O2 consumption. Of interest, we also noted a marked improvement in mitochondrial integrity, thermogenic genes, and Wnt 1 and HO-1 signaling mechanisms. Knockout of peroxisome proliferator-activated receptor-γ coactivator-1α (PGC-1α) in EET-treated mice resulted in a reversal of these beneficial effects including a decrease in myocardial Wnt1 and HO-1 expression and an increase in NOV. To further elucidate the effects of EET on pericardial adipose tissues, we observed EET treatment increases in adiponectin, PGC-1α, phospho-AMP-activated protein kinase, insulin receptor phosphorylation, and thermogenic genes, resulting in a "browning" pericardial adipose phenotype under high-fat diets. Collectively, these experiments demonstrate that an EET agonist increased Wnt1 and HO-1 signaling while decreasing NOV pathways and the progression of cardiomyopathy. Furthermore, this report presents a portal into potential therapeutic approaches for the treatment of heart failure and metabolic syndrome.NEW & NOTEWORTHY The mechanism by which EET acts on obesity-induced cardiomyopathy is unknown. Here, we describe a previously unrecognized function of EET infusion that inhibits nephroblastoma overexpressed (NOV) levels and activates Wnt1, hence identifying NOV inhibition and enhanced Wnt1 expression as novel pharmacological targets for the prevention and treatment of cardiomyopathy and heart failure.Listen to this article's corresponding podcast at http://ajpheart.physiology.org/content/early/2017/05/31/ajpheart.00093.2017.


Subject(s)
Adipose Tissue/drug effects , Cardiomyopathies/prevention & control , Eicosanoids/pharmacology , Heme Oxygenase-1/metabolism , Membrane Proteins/metabolism , Myocytes, Cardiac/drug effects , Nephroblastoma Overexpressed Protein/metabolism , Obesity/drug therapy , Wnt Signaling Pathway/drug effects , Wnt1 Protein/metabolism , 3T3-L1 Cells , Adipokines/metabolism , Adipose Tissue/enzymology , Adipose Tissue/physiopathology , Animals , Biomarkers/blood , Blood Glucose/drug effects , Blood Glucose/metabolism , Blood Pressure , Cardiomyopathies/enzymology , Cardiomyopathies/etiology , Cardiomyopathies/physiopathology , Disease Models, Animal , Inflammation Mediators/metabolism , Mice , Mice, Knockout , Mitochondria, Heart/drug effects , Mitochondria, Heart/enzymology , Myocytes, Cardiac/enzymology , Obesity/complications , Obesity/enzymology , Obesity/physiopathology , Oxygen Consumption , Peroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alpha/deficiency , Peroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alpha/genetics , Ventricular Remodeling , Weight Gain/drug effects , Wnt Proteins/metabolism , beta Catenin
17.
Mar Drugs ; 15(11)2017 Nov 01.
Article in English | MEDLINE | ID: mdl-29104260

ABSTRACT

Resistance to chemotherapy occurs in various diseases (i.e., cancer and infection), and for this reason, both are very difficult to treat. Therefore, novel antimicrobial and chemotherapic drugs are needed for effective antibiotic therapy. The aim of the present study was to assess the antimicrobial and anti-proliferative effects of skin mucus derived from Dasyatis pastinaca (Linnaeus, 1758). Our results showed that skin mucus exhibited a significant and specific antibacterial activity against Gram-negative bacteria but not against Gram-positive bacteria. Furthermore, we also observed a significant antifungal activity against some strains of Candida spp. Concerning anti-proliferative activity, we showed that fish mucus was specifically toxic for acute leukemia cells (HL60) with an inhibition of proliferation in a dose dependent manner (about 52% at 1000 µg/mL of fish skin mucous, FSM). Moreover, we did not observe effects in healthy cells, in neuroblastoma cells (SH-SY5Y), and multiple myeloma cell lines (MM1, U266). Finally, it exhibited strong expression and activity of chitinase which may be responsible, at least in part, for the aforementioned results.


Subject(s)
Anti-Bacterial Agents/pharmacology , Antineoplastic Agents/pharmacology , Aquatic Organisms , Gram-Negative Bacteria/drug effects , Gram-Positive Bacteria/drug effects , Mucus/chemistry , Skates, Fish , Animals , Anti-Bacterial Agents/chemistry , Antineoplastic Agents/chemistry , Dose-Response Relationship, Drug , HL-60 Cells/drug effects , Humans , Microbial Sensitivity Tests
18.
Crit Rev Food Sci Nutr ; 54(12): 1599-616, 2014.
Article in English | MEDLINE | ID: mdl-24580561

ABSTRACT

Diabetes affects different people of all ages, race, and sex. This is a condition characterized by a state of chronic hyperglycaemia that leads to an increase of intracellular oxidative stress linked to the overproduction of free radicals. In the present review, we focus our attention on the molecular mechanisms leading to oxidative stress-mediates complications with particular regard to central nervous system (CNS). Furthermore, the present review reports the effects of different kind of antioxidants with enzymatic and nonenzymatic action that may significantly decrease the intracellular free radicals' overproduction and prevents the hyperglycaemia-mediated complications.


Subject(s)
Antioxidants/administration & dosage , Diabetes Mellitus/drug therapy , Animals , Central Nervous System/drug effects , Central Nervous System/metabolism , Diet , Disease Models, Animal , Humans , Hyperglycemia/drug therapy , Oxidative Stress/drug effects
20.
Aging (Albany NY) ; 16(12): 10203-10215, 2024 06 26.
Article in English | MEDLINE | ID: mdl-38942607

ABSTRACT

Down Syndrome (DS) is a common genetic disorder characterized by an extra copy of chromosome 21, leading to dysregulation of various metabolic pathways. Oxidative stress in DS is associated with neurodevelopmental defects, neuronal dysfunction, and a dementia onset resembling Alzheimer's disease. Additionally, chronic oxidative stress contributes to cardiovascular diseases and certain cancers prevalent in DS individuals. This study investigates the impact of ageing on oxidative stress and liver fibrosis using a DS murine model (Ts2Cje mice). Our results show that DS mice show increased liver oxidative stress and impaired antioxidant defenses, as evidenced by reduced glutathione levels and increased lipid peroxidation. Therefore, DS liver exhibits an altered inflammatory response and mitochondrial fitness as we showed by assaying the expression of HMOX1, CLPP, and the heat shock proteins Hsp90 and Hsp60. DS liver also displays dysregulated lipid metabolism, indicated by altered expression of PPARα, PPARγ, FATP5, and CTP2. Consistently, these changes might contribute to non-alcoholic fatty liver disease development, a condition characterized by liver fat accumulation. Consistently, histological analysis of DS liver reveals increased fibrosis and steatosis, as showed by Col1a1 increased expression, indicative of potential progression to liver cirrhosis. Therefore, our findings suggest an increased risk of liver pathologies in DS individuals, particularly when combined with the higher prevalence of obesity and metabolic dysfunctions in DS patients. These results shed a light on the liver's role in DS-associated pathologies and suggest potential therapeutic strategies targeting oxidative stress and lipid metabolism to prevent or mitigate liver-related complications in DS individuals.


Subject(s)
Aging , Disease Models, Animal , Down Syndrome , Liver Cirrhosis , Oxidative Stress , Animals , Down Syndrome/metabolism , Down Syndrome/pathology , Down Syndrome/genetics , Liver Cirrhosis/metabolism , Liver Cirrhosis/pathology , Aging/metabolism , Mice , Liver/metabolism , Liver/pathology , Lipid Metabolism , Male , Lipid Peroxidation , Non-alcoholic Fatty Liver Disease/metabolism , Non-alcoholic Fatty Liver Disease/pathology
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