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1.
JCI Insight ; 9(10)2024 May 22.
Article in English | MEDLINE | ID: mdl-38775153

ABSTRACT

Small cell lung cancer (SCLC) is the most aggressive lung cancer entity with an extremely limited therapeutic outcome. Most patients are diagnosed at an extensive stage. However, the molecular mechanisms driving SCLC invasion and metastasis remain largely elusive. We used an autochthonous SCLC mouse model and matched samples from patients with primary and metastatic SCLC to investigate the molecular characteristics of tumor metastasis. We demonstrate that tumor cell invasion and liver metastasis in SCLC are triggered by an Angiopoietin-2 (ANG-2)/Integrin ß-1-dependent pathway in tumor cells, mediated by focal adhesion kinase/Src kinase signaling. Strikingly, CRISPR-Cas9 KO of Integrin ß-1 or blocking Integrin ß-1 signaling by an anti-ANG-2 treatment abrogates liver metastasis formation in vivo. Interestingly, analysis of a unique collection of matched samples from patients with primary and metastatic SCLC confirmed a strong increase of Integrin ß-1 in liver metastasis in comparison with the primary tumor. We further show that ANG-2 blockade combined with PD-1-targeted by anti-PD-1 treatment displays synergistic treatment effects in SCLC. Together, our data demonstrate a fundamental role of ANG-2/Integrin ß-1 signaling in SCLC cells for tumor cell invasion and liver metastasis and provide a potentially new effective treatment strategy for patients with SCLC.


Subject(s)
Angiopoietin-2 , Integrin beta1 , Liver Neoplasms , Lung Neoplasms , Signal Transduction , Small Cell Lung Carcinoma , Animals , Angiopoietin-2/metabolism , Angiopoietin-2/genetics , Small Cell Lung Carcinoma/pathology , Small Cell Lung Carcinoma/metabolism , Small Cell Lung Carcinoma/genetics , Small Cell Lung Carcinoma/drug therapy , Mice , Lung Neoplasms/secondary , Lung Neoplasms/pathology , Lung Neoplasms/metabolism , Lung Neoplasms/genetics , Lung Neoplasms/drug therapy , Humans , Integrin beta1/metabolism , Integrin beta1/genetics , Liver Neoplasms/secondary , Liver Neoplasms/metabolism , Liver Neoplasms/pathology , Liver Neoplasms/genetics , Liver Neoplasms/drug therapy , Cell Line, Tumor , Neoplasm Invasiveness , Neoplasm Metastasis
2.
Methods Mol Biol ; 2764: 165-176, 2024.
Article in English | MEDLINE | ID: mdl-38393595

ABSTRACT

The macro-metastasis/organ parenchyma interface (MMPI) is gaining increasing significance due to its prognostic relevance for cancer (brain) metastasis. We have developed an organotypic 3D ex vivo co-culture model that mimics the MMPI and allows us to evaluate the histopathological growth pattern (HGP) and infiltration grade of the tumor cells into the neighboring brain tissue and to study the interactions of cancer and glial cells ex vivo. This system consists of a murine brain slice and a 3D tumor plug that can be co-cultured for several days. After slicing the brain of 5- to 8-day-old mice, a Matrigel plug containing fluorescent-labelled tumor cells is placed next to it, so that tumor cells in the 3D plug and glial cells in the brain slice can interact at the interface for up to 96 h. To facilitate the positioning of the co-culture and increase the reproducibility of the model, a brain spacer can be used. The HGP and infiltration of the tumor cells into the brain slice as well as the activation of the glial cells can be assessed by live and/or confocal microscopy after immunofluorescence staining of microglia and/or astrocytes. Alternatively, the co-culture can also be used for other purposes, such as RNA analysis. This organotypic 3D ex vivo co-culture offers a perfect tool for preliminary screenings before in vivo experiments and reduces the number of animals, thus contributing to the 3R concept as a central precept in preclinical research.


Subject(s)
Brain Neoplasms , Neuroglia , Mice , Animals , Coculture Techniques , Reproducibility of Results , Neuroglia/pathology , Brain Neoplasms/pathology , Brain/pathology , Organ Culture Techniques
3.
Acta Physiol (Oxf) ; 239(3): e14023, 2023 11.
Article in English | MEDLINE | ID: mdl-37553856

ABSTRACT

AIM: In addition to functioning as an energy sensor switch, AMPK plays a key role in the maintenance of cardiovascular homeostasis. However, obesity disrupts AMPK signaling, contributing to endothelial dysfunction and cardiovascular disease. This study aimed to elucidate if a short-term dietary intervention consisting in replacing the high-fat diet with a standard diet for 2 weeks could reverse obesity-induced endothelial dysfunction via AMPK-CREB activation. METHODS: For this, 5-week-old male C57BL6J mice were fed a standard (Chow) or a high-fat (HF) diet for 8 weeks. The HF diet was replaced by the chow diet for the last 2 weeks in half of HF mice, generating 3 groups: Chow, HF and HF-Chow. Vascular reactivity and western-blot assays were performed in the thoracic aorta. RESULTS: Returning to a chow diet significantly reduced body weight and glucose intolerance. Relaxant responses to acetylcholine and the AMPK activator (AICAR) were significantly impaired in HF mice but improved in HF-Chow mice. The protein levels of AMPKα, p-CREB and antioxidant systems (heme oxygenase-1 (HO-1) and catalase) were significantly reduced in HF but normalized in HF-Chow mice. CONCLUSION: Improving dietary intake by replacing a HF diet with a standard diet improves AMPK-mediated responses due to the upregulation of the AMPK/CREB/HO-1 signaling pathway.


Subject(s)
AMP-Activated Protein Kinases , Vascular Diseases , Mice , Male , Animals , AMP-Activated Protein Kinases/metabolism , Up-Regulation , Obesity/metabolism , Signal Transduction , Diet, High-Fat/adverse effects , Mice, Inbred C57BL
4.
Biofactors ; 49(6): 1106-1120, 2023.
Article in English | MEDLINE | ID: mdl-37286331

ABSTRACT

The angiotensin II type 2 receptor (AT2R) exerts vasorelaxant, anti-inflammatory, and antioxidant properties. In obesity, its activation counterbalances the adverse cardiovascular effects of angiotensin II mediated by the AT1R. Preliminary results indicate that it also promotes brown adipocyte differentiation in vitro. Our hypothesis is that AT2R activation could increase BAT mass and activity in obesity. Five-week-old male C57BL/6J mice were fed a standard or a high-fat (HF) diet for 6 weeks. Half of the animals were treated with compound 21 (C21), a selective AT2R agonist, (1 mg/kg/day) in the drinking water. Electron transport chain (ETC), oxidative phosphorylation, and UCP1 proteins were measured in the interscapular BAT (iBAT) and thoracic perivascular adipose tissue (tPVAT) as well as inflammatory and oxidative parameters. Differentiation and oxygen consumption rate (OCR) in the presence of C21 was tested in brown preadipocytes. In vitro, C21-differentiated brown adipocytes showed an AT2R-dependent increase of differentiation markers (Ucp1, Cidea, Pparg) and increased basal and H+ leak-linked OCR. In vivo, HF-C21 mice showed increased iBAT mass compared to HF animals. Both their iBAT and tPVAT showed higher protein levels of the ETC protein complexes and UCP1, together with a reduction of inflammatory and oxidative markers. The activation of the AT2R increases BAT mass, mitochondrial activity, and reduces markers of tissue inflammation and oxidative stress in obesity. Therefore, insulin reduction and better vascular responses are achieved. Thus, the activation of the protective arm of the renin-angiotensin system arises as a promising tool in the treatment of obesity.


Subject(s)
Adipose Tissue, Brown , Receptor, Angiotensin, Type 2 , Animals , Male , Mice , Adipocytes, Brown , Mice, Inbred C57BL , Obesity/drug therapy , Obesity/genetics , Obesity/metabolism , Receptor, Angiotensin, Type 2/genetics , Receptor, Angiotensin, Type 2/agonists , Receptor, Angiotensin, Type 2/metabolism , Uncoupling Protein 1/genetics , Uncoupling Protein 1/metabolism
5.
Nat Cancer ; 4(3): 401-418, 2023 03.
Article in English | MEDLINE | ID: mdl-36797502

ABSTRACT

Brain metastasis still encompass very grim prognosis and therefore understanding the underlying mechanisms is an urgent need toward developing better therapeutic strategies. We uncover the intricate interactions between recruited innate immune cells and resident astrocytes in the brain metastatic niche that facilitate metastasis of melanoma and breast cancer. We show that granulocyte-derived lipocalin-2 (LCN2) induces inflammatory activation of astrocytes, leading to myeloid cell recruitment to the brain. LCN2 is central to inducing neuroinflammation as its genetic targeting or bone-marrow transplantation from LCN2-/- mice was sufficient to attenuate neuroinflammation and inhibit brain metastasis. Moreover, high LCN2 levels in patient blood and brain metastases in multiple cancer types were strongly associated with disease progression and poor survival. Our findings uncover a previously unknown mechanism, establishing a central role for the reciprocal interactions between granulocytes and astrocytes in promoting brain metastasis and implicate LCN2 as a prognostic marker and potential therapeutic target.


Subject(s)
Astrocytes , Brain Neoplasms , Mice , Animals , Lipocalin-2/genetics , Lipocalin-2/metabolism , Astrocytes/metabolism , Neuroinflammatory Diseases , Brain Neoplasms/genetics , Immunity, Innate
6.
Oncogene ; 41(46): 5008-5019, 2022 11.
Article in English | MEDLINE | ID: mdl-36224342

ABSTRACT

Brain metastasis in breast cancer remains difficult to treat and its incidence is increasing. Therefore, the development of new therapies is of utmost clinical relevance. Recently, toll-like receptor (TLR) 4 was correlated with IL6 expression and poor prognosis in 1 215 breast cancer primaries. In contrast, we demonstrated that TLR4 stimulation reduces microglia-assisted breast cancer cell invasion. However, the expression, prognostic value, or therapeutic potential of TLR signaling in breast cancer brain metastasis have not been investigated. We thus tested the prognostic value of various TLRs in two brain-metastasis gene sets. Furthermore, we investigated different TLR agonists, as well as MyD88 and TRIF-deficient microenvironments in organotypic brain-slice ex vivo co-cultures and in vivo colonization experiments. These experiments underline the ambiguous roles of TLR4, its adapter MyD88, and the target nitric oxide (NO) during brain colonization. Moreover, analysis of the gene expression datasets of breast cancer brain metastasis patients revealed associations of TLR1 and IL6 with poor overall survival. Finally, our finding that a single LPS application at the onset of colonization shapes the later microglia/macrophage reaction at the macro-metastasis brain-parenchyma interface (MMPI) and reduces metastatic infiltration into the brain parenchyma may prove useful in immunotherapeutic considerations.


Subject(s)
Brain Neoplasms , Breast Neoplasms , Humans , Female , Toll-Like Receptor 4/metabolism , Myeloid Differentiation Factor 88/genetics , Myeloid Differentiation Factor 88/metabolism , Interleukin-6/metabolism , Adaptor Proteins, Signal Transducing/metabolism , Breast Neoplasms/genetics , Brain/pathology , Brain Neoplasms/drug therapy , Adaptor Proteins, Vesicular Transport/metabolism , Tumor Microenvironment
7.
Front Oncol ; 12: 849880, 2022.
Article in English | MEDLINE | ID: mdl-35444944

ABSTRACT

Purpose: Brain metastases (BM) can present a displacing or infiltrating growth pattern, independent of the primary tumor type. Previous studies have shown that tumor cell infiltration at the macro-metastasis/brain parenchyma interface (MMPI) is correlated with poor outcome. Therefore, a pre-therapeutic, non-invasive detection tool for potential metastatic cell infiltration at the MMPI would be desirable to help identify patients who may benefit from a more aggressive local treatment strategy. The aim of this study was to identify specific magnetic resonance imaging (MRI) patterns at the MMPI in patients with BM and to correlate these patterns with patient outcome. Patients and Methods: In this retrospective analysis of a prospective BM registry, we categorized preoperative MR images of 261 patients with BM according to a prespecified analysis system, which consisted of four MRI contrast enhancement (CE) patterns: two with apparently regularly shaped borders (termed "rim-enhancing" and "spherical") and two with irregular delineation (termed "breakout" and "diffuse"). The primary outcome parameter was overall survival (OS). Additionally analyzed prognostic parameters were the Karnofsky Performance Index, tumor size, edema formation, extent of resection, and RPA class. Results: OS of patients with a breakout pattern was significantly worse than OS of all other groups. Conclusion: Our data show that BM with a breakout pattern have a highly aggressive clinical course. Patients with such a pattern potentially require a more aggressive local and systemic treatment strategy.

8.
Clin Sci (Lond) ; 135(24): 2763-2780, 2021 12 22.
Article in English | MEDLINE | ID: mdl-34854902

ABSTRACT

The aim of the present study was to evaluate the effect of Compound 21 (C21), a selective AT2R agonist, on the prevention of endothelial dysfunction, extracellular matrix (ECM) remodeling and arterial stiffness associated with diet-induced obesity (DIO). Five-week-old male C57BL/6J mice were fed a standard (Chow) or high-fat diet (HF) for 6 weeks. Half of the animals of each group were simultaneously treated with C21 (1 mg/kg/day, in the drinking water), generating four groups: Chow C, Chow C21, HF C, and HF C21. Vascular function and mechanical properties were determined in the abdominal aorta. To evaluate ECM remodeling, collagen deposition and TGF-ß1 concentrations were determined in the abdominal aorta and the activity of metalloproteinases (MMP) 2 and 9 was analyzed in the plasma. Abdominal aortas from HF C mice showed endothelial dysfunction as well as enhanced contractile but reduced relaxant responses to Ang II. This effect was abrogated with C21 treatment by preserving NO availability. A left-shift in the tension-stretch relationship, paralleled by an augmented ß-index (marker of intrinsic arterial stiffness), and enhanced collagen deposition and MMP-2/-9 activities were also detected in HF mice. However, when treated with C21, HF mice exhibited lower TGF-ß1 levels in abdominal aortas together with reduced MMP activities and collagen deposition compared with HF C mice. In conclusion, these data demonstrate that AT2R stimulation by C21 in obesity preserves NO availability and prevents unhealthy vascular remodeling, thus protecting the abdominal aorta in HF mice against the development of endothelial dysfunction, ECM remodeling and arterial stiffness.


Subject(s)
Aorta, Abdominal/drug effects , Diet, High-Fat/adverse effects , Imidazoles/pharmacology , Sulfonamides/pharmacology , Thiophenes/pharmacology , Vascular Stiffness/drug effects , Animals , Anti-Inflammatory Agents/pharmacology , Collagen/metabolism , Male , Matrix Metalloproteinase 2/blood , Matrix Metalloproteinase 9/blood , Mice, Inbred C57BL , Obesity/metabolism , Receptor, Angiotensin, Type 2/agonists , Transforming Growth Factor beta1/blood
9.
Nutrients ; 13(3)2021 Mar 19.
Article in English | MEDLINE | ID: mdl-33808927

ABSTRACT

Vegetable oils such as palm oil (enriched in saturated fatty acids, SFA) and high-oleic-acid sunflower oil (HOSO, containing mainly monounsaturated fatty acids, MUFA) have emerged as the most common replacements for trans-fats in the food industry. The aim of this study is to analyze the impact of SFA and MUFA-enriched high-fat (HF) diets on endothelial function, vascular remodeling, and arterial stiffness compared to commercial HF diets. Five-week-old male C57BL6J mice were fed a standard (SD), a HF diet enriched with SFA (saturated oil-enriched Food, SOLF), a HF diet enriched with MUFA (unsaturated oil-enriched Food, UOLF), or a commercial HF diet for 8 weeks. Vascular function was analyzed in the thoracic aorta. Structural and mechanical parameters were assessed in mesenteric arteries by pressure myography. SOLF, UOLF, and HF diet reduced contractile responses to phenylephrine and induced endothelial dysfunction in the thoracic aorta. A significant increase in the ß-index, and thus in arterial stiffness, was also detected in mesenteric arteries from the three HF groups, due to enhanced deposition of collagen in the vascular wall. SOLF also induced hypotrophic inward remodeling. In conclusion, these data demonstrate a deleterious effect of HF feeding on obesity-related vascular alterations that is exacerbated by SFA.


Subject(s)
Arteries/drug effects , Dietary Fats/pharmacology , Fatty Acids, Monounsaturated/pharmacology , Vascular Stiffness/drug effects , Animals , Aorta, Thoracic/drug effects , Arteries/physiology , Body Weight , Collagen/metabolism , Diet, High-Fat , Dietary Fats, Unsaturated/pharmacology , Elastin , Fatty Acids/pharmacology , Fuchs' Endothelial Dystrophy , Glucose/metabolism , Male , Mice , Mice, Inbred C57BL , Nitric Oxide/metabolism , Oleic Acid , Plant Oils , Sunflower Oil , Vascular Remodeling/drug effects
10.
Metabolites ; 11(5)2021 Apr 27.
Article in English | MEDLINE | ID: mdl-33925735

ABSTRACT

Lipids are a ubiquitous class of structurally complex molecules involved in various biological processes. In the fast-growing field of lipidomics, preanalytical issues are frequently neglected. Here, we investigated the stability of lipid profiles of murine liver, brain, lung, heart, and spleen homogenates by quantitative flow injection analysis using tandem mass spectrometry and high-resolution mass spectrometry. Storage of tissue homogenates at room temperature showed substantial alterations of the lipid profiles reflecting lipolytic action. Therefore, ratios of ceramide to sphingomyelin, lysophosphatidylethanolamine to phosphatidylethanolamine, lysophosphatidylcholine to phosphatidylcholine, and diglyceride to triglyceride were applied to monitor sample stability and the effect of sodium dodecyl sulfate (SDS) as a potential stabilizing agent. The addition of SDS led to a concentration-dependent stabilization of lipid profiles in liver, brain, and heart homogenates, while in lung and spleen homogenates, in particular, the lysophosphatidylethanolamine to phosphatidylethanolamine ratio increased upon addition of SDS. In conclusion, we demonstrated that lipid class ratios reflecting lipolytic activity could be applied to evaluate both the stability of samples and the influence of stabilizers.

11.
Clin Sci (Lond) ; 135(9): 1145-1163, 2021 05 14.
Article in English | MEDLINE | ID: mdl-33899912

ABSTRACT

Compound 21 (C21), a selective agonist of angiotensin II type 2 receptor (AT2R), induces vasodilation through NO release. Since AT2R seems to be overexpressed in obesity, we hypothesize that C21 prevents the development of obesity-related vascular alterations. The main goal of the present study was to assess the effect of C21 on thoracic aorta endothelial function in a model of diet-induced obesity (DIO) and to elucidate the potential cross-talk among AT2R, Mas receptor (MasR) and/or bradykinin type 2 receptor (B2R) in this response. Five-week-old male C57BL6J mice were fed a standard (CHOW) or a high-fat diet (HF) for 6 weeks and treated daily with C21 (1 mg/kg p.o) or vehicle, generating four groups: CHOW-C, CHOW-C21, HF-C, HF-C21. Vascular reactivity experiments were performed in thoracic aorta rings. Human endothelial cells (HECs; EA.hy926) were used to elucidate the signaling pathways, both at receptor and intracellular levels. Arteries from HF mice exhibited increased contractions to Ang II than CHOW mice, effect that was prevented by C21. PD123177, A779 and HOE-140 (AT2R, Mas and B2R antagonists) significantly enhanced Ang II-induced contractions in CHOW but not in HF-C rings, suggesting a lack of functionality of those receptors in obesity. C21 prevented those alterations and favored the formation of AT2R/MasR and MasR/B2R heterodimers. HF mice also exhibited impaired relaxations to acetylcholine (ACh) due to a reduced NO availability. C21 preserved NO release through PKA/p-eNOS and AKT/p-eNOS signaling pathways. In conclusion, C21 favors the interaction among AT2R, MasR and B2R and prevents the development of obesity-induced endothelial dysfunction by stimulating NO release through PKA/p-eNOS and AKT/p-eNOS signaling pathways.


Subject(s)
Endothelium, Vascular/drug effects , Imidazoles/therapeutic use , Proto-Oncogene Proteins/metabolism , Receptor, Angiotensin, Type 2/agonists , Receptor, Bradykinin B2/metabolism , Receptors, G-Protein-Coupled/metabolism , Sulfonamides/therapeutic use , Thiophenes/therapeutic use , Vascular Diseases/prevention & control , Animals , Aorta, Thoracic/drug effects , Cyclic AMP-Dependent Protein Kinases/metabolism , Diet, High-Fat , Drug Evaluation, Preclinical , Human Umbilical Vein Endothelial Cells , Humans , Imidazoles/pharmacology , Male , Mice, Inbred C57BL , Nitric Oxide/metabolism , Nitric Oxide Synthase Type III/metabolism , Obesity/complications , Obesity/metabolism , Proto-Oncogene Mas , Proto-Oncogene Proteins c-akt/metabolism , Receptor Cross-Talk , Receptor, Angiotensin, Type 2/metabolism , Renin-Angiotensin System/drug effects , Signal Transduction/drug effects , Sulfonamides/pharmacology , Thiophenes/pharmacology , Vascular Diseases/etiology , Vascular Diseases/metabolism
12.
Int J Mol Sci ; 22(1)2020 Dec 28.
Article in English | MEDLINE | ID: mdl-33379399

ABSTRACT

Fetal undernutrition programs cardiometabolic diseases, with higher susceptibility in males. The mechanisms implicated are not fully understood and may be related to sex differences in placental adaptation. To evaluate this hypothesis, we investigated placental oxidative balance, vascularization, glucocorticoid barrier, and fetal growth in rats exposed to 50% global nutrient restriction from gestation day 11 (MUN, n = 8) and controls (n = 8). At gestation day 20 (G20), we analyzed maternal, placental, and fetal weights; oxidative damage, antioxidants, corticosterone, and PlGF (placental growth factor, spectrophotometry); and VEGF (vascular endothelial growth factor), 11ß-HSD2, p22phox, XO, SOD1, SOD2, SOD3, catalase, and UCP2 expression (Western blot). Compared with controls, MUN dams exhibited lower weight and plasma proteins and higher corticosterone and catalase without oxidative damage. Control male fetuses were larger than female fetuses. MUN males had higher plasma corticosterone and were smaller than control males, but had similar weight than MUN females. MUN male placenta showed higher XO and lower 11ß-HSD2, VEGF, SOD2, catalase, UCP2, and feto-placental ratio than controls. MUN females had similar feto-placental ratio and plasma corticosterone than controls. Female placenta expressed lower XO, 11ß-HSD2, and SOD3; similar VEGF, SOD1, SOD2, and UCP2; and higher catalase than controls, being 11ß-HSD2 and VEGF higher compared to MUN males. Male placenta has worse adaptation to undernutrition with lower efficiency, associated with oxidative disbalance and reduced vascularization and glucocorticoid barrier. Glucocorticoids and low nutrients may both contribute to programming in MUN males.


Subject(s)
Fetal Development , Fetus/metabolism , Malnutrition/complications , Maternal Nutritional Physiological Phenomena , Placenta Growth Factor/metabolism , Placenta/metabolism , Sex Characteristics , Vascular Endothelial Growth Factor A/metabolism , Animals , Body Weight , Female , Lipid Peroxidation , Male , Malnutrition/blood , Oxidation-Reduction , Pregnancy , Rats, Sprague-Dawley , Reactive Oxygen Species/metabolism
13.
Sci Rep ; 10(1): 2902, 2020 02 19.
Article in English | MEDLINE | ID: mdl-32076010

ABSTRACT

The experimental approach for the study of cardiometabolic disorders requires the use of animal models fed with commercial diets whose composition differs notably, even between diets used for control groups. While chow diets are usually made of agricultural by-products, purified low-fat diets (LF) contain a higher percentage of easy metabolizable carbohydrates, together with a reduced amount of polyunsaturated fatty acids, micronutrients and fiber, all associated with metabolic and vascular dysfunction. We hypothesize that the LF diet, commonly used in control animals, could promote adverse vascular and metabolic outcomes. To address this issue, 5-week-old male C57BL6J mice were fed with a standard (Chow) or a LF diet for 6 weeks. Changes in body weight, adiposity, biochemical parameters, systemic and aortic insulin sensitivity and endothelial function were recorded. LF diet did not modify body weight but significantly impaired systemic glucose tolerance and increased triglycerides and cholesterol levels. Endothelial function and aortic insulin sensitivity were significantly impaired in the LF group, due to a reduction of NO availability. These findings highlight the importance of selecting the proper control diet in metabolic studies. It may also suggest that some cardiometabolic alterations obtained in experimental studies using LF as a control diet may be underestimated.


Subject(s)
Aorta, Thoracic/physiology , Diet , Glucose/metabolism , Homeostasis , Acetylcholine/pharmacology , Adiposity/drug effects , Animals , Aorta, Thoracic/drug effects , Biological Availability , Body Weight/drug effects , Carbohydrate Metabolism/drug effects , Cholesterol/metabolism , Diet, Fat-Restricted , Dietary Fiber/pharmacology , Fatty Acids, Unsaturated/pharmacology , Glucose/administration & dosage , Insulin/pharmacology , Lipid Metabolism/drug effects , Male , Mice, Inbred C57BL , Nitric Oxide/metabolism , Phenylephrine/metabolism , Solubility , Subcutaneous Fat/drug effects , Vasodilation/drug effects
14.
Am J Nephrol ; 51(4): 294-303, 2020.
Article in English | MEDLINE | ID: mdl-32088716

ABSTRACT

BACKGROUND: Development of albuminuria and arterial stiffness in Munich Wistar Frömter (MWF) rats, a model of chronic kidney disease, is related to alterations in extracellular matrix, increased oxidative stress, and endothelial dysfunction. Finerenone (FIN), a novel, nonsteroidal, potent, and selective mineralocorticoid receptor antagonist, improves endothelial dysfunction through enhancing nitric oxide (NO) bioavailability and decreasing superoxide anion levels due to an upregulation in vascular and renal superoxide dismutase activity. We hypothesize that FIN reduces arterial stiffness in this model associated to the reduction in albuminuria and matrix metalloproteinase (MMP)-2/9 activity. METHODS: Twelve-week-old MWF rats with established albuminuria and age-matched normoalbuminuric Wistar (W) rats were treated with FIN (10 mg/kg/day, once-daily oral gavage) or with vehicle (control, C) for 4 weeks. RESULTS: Arterial stiffness was significantly higher in mesenteric arteries (MA) of MWF-C as compared to W-C. FIN treatment significantly lowered ß-index, a measure of intrinsic stiffness independent of geometry, in MWF (ßMWF-FIN = 7.7 ± 0.4 vs. ßMWF-C = 9.2 ± 0.5, p < 0.05) positively correlating with urinary albumin excretion. Elastin fenestrae area in the internal elastic lamina of MA from MWF-FIN was significantly larger (+377%, p < 0.05). FIN increased plasma pro-MMP-2 and decreased plasma MMP-2 and MMP-9 activities, correlating with reductions in ß-index. MA from MWF-FIN exhibited higher NO bioavailability and reduced superoxide anion levels compared to MWF-C. CONCLUSION: FIN treatment reduces intrinsic arterial stiffness in MA from MWF rats associated with changes in elastin organization, normalization of MMP-2 and MMP-9 activities, and reduction of oxidative stress. Moreover, reduction of arterial stiffness correlates with reduction in albuminuria.


Subject(s)
Albuminuria/drug therapy , Cardiovascular Diseases/prevention & control , Mineralocorticoid Receptor Antagonists/administration & dosage , Naphthyridines/administration & dosage , Renal Insufficiency, Chronic/complications , Vascular Stiffness/drug effects , Animals , Cardiovascular Diseases/etiology , Disease Models, Animal , Endothelium, Vascular/drug effects , Endothelium, Vascular/pathology , Humans , Kidney/blood supply , Kidney/drug effects , Male , Matrix Metalloproteinase 2/metabolism , Matrix Metalloproteinase 9/metabolism , Mesenteric Arteries/pathology , Oxidative Stress/drug effects , Rats , Rats, Wistar , Renal Insufficiency, Chronic/urine , Signal Transduction/drug effects
15.
J Nutr Biochem ; 78: 108342, 2020 04.
Article in English | MEDLINE | ID: mdl-32004927

ABSTRACT

The activation of endoplasmic reticulum (ER) stress and a reduction of AMP-dependent protein kinase (AMPK) phosphorylation have been described in obesity. We hypothesize that a moderate caloric restriction (CR) might contribute to reducing ER stress and increasing AMPK phosphorylation in peripheral tissues from genetically obese Zucker fa/fa rats and in peripheral blood mononuclear cells (PBMCs). Zucker Lean and Zucker fa/fa rats were fed with chow diet either ad libitum (AL) (C, as controls) or 80% of AL (CR) for 2 weeks, giving rise to four experimental groups: Lean C, Lean CR, fa/fa C and fa/fa CR. CR significantly increased AMPK phosphorylation in the liver, perirenal adipose tissue (PRAT) and PBMCs from fa/fa rats but not in the subcutaneous AT (SCAT), suggesting a reduced response of SCAT to CR. Liver samples of fa/fa rats exhibited an increased mRNA expression of PERK, EIF-2α, XBP-1(s), Chop and caspase 3, which was significantly reduced by CR. PRAT exhibited an overexpression of Edem and PDIA-4 in fa/fa rats, but only PDIA-4 expression was reduced by CR. eIF-2α phosphorylation was significantly increased in all studied tissues from fa/fa rats and reduced by CR. A negative correlation was detected between p-AMPK and p-eIF-2α in the liver, PRAT and PBMCs from fa/fa rats but not in SCAT. This study shows that a moderate CR reduces ER stress and improves AMPK phosphorylation in several peripheral tissues and in circulating PBMCs, suggesting that alterations observed in PBMCs could reflect metabolic alterations associated with obesity.


Subject(s)
AMP-Activated Protein Kinases/metabolism , Caloric Restriction , Endoplasmic Reticulum Stress , Leukocytes, Mononuclear/metabolism , Adipocytes/metabolism , Adipose Tissue/metabolism , Animals , Body Weight , Lipid Metabolism , Liver/metabolism , Male , Obesity/metabolism , Phosphorylation , Rats , Rats, Zucker
16.
Int J Cancer ; 146(11): 3170-3183, 2020 06 01.
Article in English | MEDLINE | ID: mdl-31626715

ABSTRACT

More than half of all brain metastases show infiltrating rather than displacing growth at the macro-metastasis/organ parenchyma interface (MMPI), a finding associated with shorter survival. The lymphoid enhancer-binding factor-1 (LEF1) is an epithelial-mesenchymal transition (EMT) transcription factor that is commonly overexpressed in brain-colonizing cancer cells. Here, we overexpressed LEF1 in an in vivo breast cancer brain colonization model. It shortened survival, albeit without engaging EMT at the MMPI. By differential proteome analysis, we identified a novel function of LEF1 as a regulator of the glutathione (GSH) system, the principal cellular redox buffer. LEF1 overexpression also conferred resistance against therapeutic GSH depletion during brain colonization and improved management of intracellular ROS. We conclude that besides EMT, LEF1 facilitates metastasis by improving the antioxidative capacity of epithelial breast cancer cells, in particular during colonization of the brain parenchyma.


Subject(s)
Brain Neoplasms/pathology , Brain Neoplasms/secondary , Breast Neoplasms/pathology , Glutathione/metabolism , Lymphoid Enhancer-Binding Factor 1/metabolism , Reactive Oxygen Species/metabolism , Brain/pathology , Cell Line, Tumor , Cell Movement/physiology , Epithelial-Mesenchymal Transition/physiology , Female , Gene Expression Regulation, Neoplastic/genetics , Humans , Parenchymal Tissue/pathology
17.
Cell Rep ; 29(1): 135-150.e9, 2019 10 01.
Article in English | MEDLINE | ID: mdl-31577944

ABSTRACT

Tumor-derived lactic acid inhibits T and natural killer (NK) cell function and, thereby, tumor immunosurveillance. Here, we report that melanoma patients with high expression of glycolysis-related genes show a worse progression free survival upon anti-PD1 treatment. The non-steroidal anti-inflammatory drug (NSAID) diclofenac lowers lactate secretion of tumor cells and improves anti-PD1-induced T cell killing in vitro. Surprisingly, diclofenac, but not other NSAIDs, turns out to be a potent inhibitor of the lactate transporters monocarboxylate transporter 1 and 4 and diminishes lactate efflux. Notably, T cell activation, viability, and effector functions are preserved under diclofenac treatment and in a low glucose environment in vitro. Diclofenac, but not aspirin, delays tumor growth and improves the efficacy of checkpoint therapy in vivo. Moreover, genetic suppression of glycolysis in tumor cells strongly improves checkpoint therapy. These findings support the rationale for targeting glycolysis in patients with high glycolytic tumors together with checkpoint inhibitors in clinical trials.


Subject(s)
Glycolysis/physiology , T-Lymphocytes/physiology , Animals , Anti-Inflammatory Agents, Non-Steroidal/pharmacology , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Proliferation/physiology , Glucose/metabolism , Glycolysis/drug effects , Humans , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , T-Lymphocytes/drug effects , T-Lymphocytes/metabolism , Xenopus laevis
18.
Cell Rep ; 28(7): 1785-1798.e6, 2019 08 13.
Article in English | MEDLINE | ID: mdl-31412247

ABSTRACT

Melanoma is the deadliest skin cancer due to its high rate of metastasis, frequently to the brain. Brain metastases are incurable; therefore, understanding melanoma brain metastasis is of great clinical importance. We used a mouse model of spontaneous melanoma brain metastasis to study the interactions of melanomas with the brain microenvironment. We find that CXCL10 is upregulated in metastasis-associated astrocytes in mice and humans and is functionally important for the chemoattraction of melanoma cells. Moreover, CXCR3, the receptor for CXCL10, is upregulated in brain-tropic melanoma cells. Targeting melanoma expression of CXCR3 by nanoparticle-mediated siRNA delivery or by shRNA transduction inhibits melanoma cell migration and attenuates brain metastasis in vivo. These findings suggest that the instigation of pro-inflammatory signaling in astrocytes is hijacked by brain-metastasizing tumor cells to promote their metastatic capacity and that the CXCL10-CXCR3 axis may be a potential therapeutic target for the prevention of melanoma brain metastasis.


Subject(s)
Astrocytes/pathology , Brain Neoplasms/secondary , Chemokine CXCL10/metabolism , Disease Models, Animal , Inflammation/immunology , Melanoma/pathology , Receptors, CXCR3/metabolism , Animals , Astrocytes/immunology , Astrocytes/metabolism , Brain Neoplasms/immunology , Brain Neoplasms/metabolism , Cell Movement , Chemokine CXCL10/genetics , Humans , Inflammation/metabolism , Inflammation/pathology , Male , Melanoma/immunology , Melanoma/metabolism , Mice , Mice, Inbred C57BL , Middle Aged , Receptors, CXCR3/genetics , T-Lymphocytes/immunology , T-Lymphocytes/metabolism , T-Lymphocytes/pathology , Tumor Microenvironment
19.
Free Radic Biol Med ; 139: 35-45, 2019 08 01.
Article in English | MEDLINE | ID: mdl-31100477

ABSTRACT

Caloric restriction (CR) improves endothelial function through the upregulation of adenosine monophosphate-activated protein kinase (AMPK) and endothelial nitric oxide synthase (eNOS). Moreover, hydrogen peroxide (H2O2) is upregulated in yeast subjected to CR. Our aim was to assess if mild short-term CR increases vascular H2O2 formation as a link with AMPK and eNOS activation. Twelve-week old Zucker obese (fa/fa) and control Zucker lean male rats were fed a standard chow either ad libitum (AL, n=10) or with a 20% CR (CR, n=10) for two weeks. CR significantly improved relaxation to ACh in fa/fa rats because of an enhanced endogenous production of H2O2 in aortic rings (H2O2 levels fa/faAL=0.5 ±â€¯0.05 nmol/mg vs. H2O2 levels fa/faCR=0.76 ±â€¯0.07 nmol/mg protein; p<0.05). Expression of mitochondrial superoxide dismutase (Mn-SOD) and total SOD activity were increased in aorta from fa/fa animals after CR. In cultured aortic endothelial cells, serum deprivation or 2-deoxy-d-glucose induced a significant increase in: i) superoxide anion and H2O2 levels, ii) p-AMPK/AMPK and p-eNOS/eNOS expression and iii) nitric oxide levels. This effect was reduced by catalase and strongly inhibited by Ca2+/calmodulin-dependent kinase II (CamkII) silencing. In conclusion, we propose that mild short-term CR might be a trigger of mechanisms aimed at protecting the vascular wall by the increase of H2O2, which then activates AMPK and nitric oxide release, thus improving endothelium-dependent relaxation. In addition, we demonstrate that CAMKII plays a key role in mediating CR-induced AMPK activation through H2O2 increase.


Subject(s)
AMP-Activated Protein Kinases/genetics , Calcium-Calmodulin-Dependent Protein Kinase Type 2/genetics , Caloric Restriction , Hydrogen Peroxide/metabolism , Nitric Oxide Synthase Type III/genetics , Obesity/genetics , AMP-Activated Protein Kinases/metabolism , Animals , Aorta, Thoracic/metabolism , Aorta, Thoracic/pathology , Calcium-Calmodulin-Dependent Protein Kinase Type 2/metabolism , Catalase/genetics , Catalase/metabolism , Deoxyglucose/pharmacology , Endothelial Cells/cytology , Endothelial Cells/drug effects , Endothelial Cells/metabolism , Gene Expression Regulation , Male , Nitric Oxide/metabolism , Nitric Oxide Synthase Type III/metabolism , Obesity/metabolism , Obesity/pathology , Rats , Rats, Zucker , Signal Transduction , Superoxide Dismutase/genetics , Superoxide Dismutase/metabolism , Superoxides/metabolism , Vasodilation
20.
Sci Rep ; 9(1): 599, 2019 01 24.
Article in English | MEDLINE | ID: mdl-30679477

ABSTRACT

Infusions of murtilla leaves exhibit antioxidant, analgesic, and anti-inflammatory properties. Several compounds that are structurally similar to madecassic acid (MA), a component of murtilla leaf extract (ethyl acetate extract, EAE), have been shown to inhibit protein tyrosine phosphatase 1B (PTP1P). The aim of this study was to evaluate if EAE and two compounds identified in EAE (MA and myricetin [MYR]) could have a beneficial effect on systemic and vascular insulin sensitivity and endothelial function in a model of diet-induced obesity. Experiments were performed in 5-week-old male C57BL6J mice fed with a standard (LF) or a very high-fat diet (HF) for 4 weeks and treated with EAE, MA, MYR, or the vehicle as control (C). EAE significantly inhibited PTP1B. EAE and MA, but not MYR, significantly improved systemic insulin sensitivity in HF mice and vascular relaxation to Ach in aorta segments, due to a significant increase of eNOS phosphorylation and enhanced nitric oxide availability. EAE, MA, and MYR also accounted for increased relaxant responses to insulin in HF mice, thus evidencing that the treatments significantly improved aortic insulin sensitivity. This study shows for the first time that EAE and MA could constitute interesting candidates for treating insulin resistance and endothelial dysfunction associated with obesity.


Subject(s)
Diet, High-Fat , Endothelium, Vascular/drug effects , Myrtaceae/chemistry , Obesity/pathology , Plant Extracts/pharmacology , Triterpenes/pharmacology , Animals , Aorta/metabolism , Disease Models, Animal , Endothelium, Vascular/cytology , Endothelium, Vascular/metabolism , Insulin/pharmacology , Insulin Resistance , Male , Mice , Mice, Inbred C57BL , Myrtaceae/metabolism , Nitric Oxide/metabolism , Nitric Oxide Synthase Type III/metabolism , Obesity/metabolism , Phosphorylation , Plant Extracts/chemistry , Plant Extracts/metabolism , Plant Leaves/chemistry , Plant Leaves/metabolism , Protein Tyrosine Phosphatase, Non-Receptor Type 1/antagonists & inhibitors , Protein Tyrosine Phosphatase, Non-Receptor Type 1/genetics , Protein Tyrosine Phosphatase, Non-Receptor Type 1/metabolism , Proto-Oncogene Proteins c-akt/metabolism , Triterpenes/chemistry , Triterpenes/metabolism
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