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1.
J Neurosci ; 44(19)2024 May 08.
Article in English | MEDLINE | ID: mdl-38553047

ABSTRACT

Glycinergic neurons regulate nociceptive and pruriceptive signaling in the spinal cord, but the identity and role of the glycine-regulated neurons are not fully known. Herein, we have characterized spinal glycine receptor alpha 3 (Glra3) subunit-expressing neurons in Glra3-Cre female and male mice. Glra3-Cre(+) neurons express Glra3, are located mainly in laminae III-VI, and respond to glycine. Chemogenetic activation of spinal Glra3-Cre(+) neurons induced biting/licking, stomping, and guarding behaviors, indicative of both a nociceptive and pruriceptive role for this population. Chemogenetic inhibition did not affect mechanical or thermal responses but reduced behaviors evoked by compound 48/80 and chloroquine, revealing a pruriceptive role for these neurons. Spinal cells activated by compound 48/80 or chloroquine express Glra3, further supporting the phenotype. Retrograde tracing revealed that spinal Glra3-Cre(+) neurons receive input from afferents associated with pain and itch, and dorsal root stimulation validated the monosynaptic input. In conclusion, these results show that spinal Glra3(+) neurons contribute to acute communication of compound 48/80- and chloroquine-induced itch in hairy skin.


Subject(s)
Pruritus , Receptors, Glycine , Spinal Cord , Animals , Pruritus/chemically induced , Pruritus/metabolism , Mice , Receptors, Glycine/metabolism , Male , Female , Spinal Cord/metabolism , Spinal Cord/drug effects , Chloroquine/pharmacology , Mice, Transgenic , Skin/innervation , Mice, Inbred C57BL , p-Methoxy-N-methylphenethylamine/pharmacology , Neurons/metabolism , Neurons/drug effects , Neurons/physiology
2.
Curr Opin Lipidol ; 34(4): 180-188, 2023 08 01.
Article in English | MEDLINE | ID: mdl-37431304

ABSTRACT

PURPOSE OF REVIEW: Sphingolipids are structurally diverse membrane lipids localized in lipid bilayers. Sphingolipids are not only important structural components of cellular membranes, but they are also important regulators of cellular trafficking and signal transduction and are implicated in several diseases. Here, we review the latest insights into sphingolipids and their role in cardiac function and cardiometabolic disease. RECENT FINDINGS: The underlying mechanisms linking sphingolipids to cardiac dysfunction are still not fully clarified. Sphingolipids, and in particular ceramides, have emerged as important players in lipotoxicity, mediating inflammation, impaired insulin signalling and apoptosis. In addition, recent findings highlight the importance of glycosphingolipid homeostasis in cardiomyocyte membranes, where they are required to maintain ß-adrenergic signalling and contractile capacity to preserve normal heart function. Thus, glycosphingolipid homeostasis in cardiac membranes characterizes a novel mechanism linking sphingolipids to cardiac disease. SUMMARY: Modulation of cardiac sphingolipids may represent a promising therapeutic approach. Sustained investigation of the link between sphingolipids and cardiomyocyte function is therefore needed and we hope that this review may inspire researchers to further elucidate the action of these lipids.


Subject(s)
Myocytes, Cardiac , Sphingolipids , Humans , Myotoxicity , Ceramides , Membrane Lipids
3.
BMC Neurosci ; 24(1): 32, 2023 06 01.
Article in English | MEDLINE | ID: mdl-37264306

ABSTRACT

BACKGROUND: The glycinergic system plays an important inhibitory role in the mouse central nervous system, where glycine controls the excitability of spinal itch- and pain-mediating neurons. Impairments of the glycine receptors can cause motor and sensory deficits. Glycine exerts inhibition through interaction with ligand-gated ion channels composed of alpha and beta subunits. We have investigated the mRNA expression of the glycine receptor alpha 3 (Glra3) subunit in the nervous system as well as in several peripheral organs of female and male mice. RESULTS: Single-cell RNA sequencing (scRNA-seq) data analysis on the Zeisel et al. (2018) dataset indicated widespread but low expression of Glra3 in vesicular glutamate transporter 2 (Vglut2, Slc17a6) positive and vesicular inhibitory amino acid transporter (Viaat, Slc32a1)positive neurons of the mouse central nervous system. Highest occurrence of Glra3 expression was identified in the cortex, amygdala, and striatal regions, as well as in the hypothalamus, brainstem and spinal cord. Bulk quantitative real-time-PCR (qRT-PCR) analysis demonstrated Glra3 expression in cortex, amygdala, striatum, hypothalamus, thalamus, pituitary gland, hippocampus, cerebellum, brainstem, and spinal cord. Additionally, male mice expressed higher levels of Glra3 in all investigated brain areas compared with female mice. Lastly, RNAscope spatially validated Glra3 expression in the areas indicated by the single-cell and bulk analyses. Moreover, RNAscope analysis confirmed co-localization of Glra3 with Slc17a6 or Slc32a1 in the central nervous system areas suggested from the single-cell data. CONCLUSIONS: Glra3 expression is low but widespread in the mouse central nervous system. Clear sex-dependent differences have been identified, indicating higher levels of Glra3 in several telencephalic and diencephalic areas, as well as in cerebellum and brainstem, in male mice compared with female mice.


Subject(s)
Glycine , Receptors, Glycine , Mice , Male , Female , Animals , Receptors, Glycine/metabolism , Glycine/metabolism , Neurons/metabolism , Brain/metabolism , Spinal Cord/metabolism , RNA, Messenger
4.
Arterioscler Thromb Vasc Biol ; 42(8): 1037-1047, 2022 08.
Article in English | MEDLINE | ID: mdl-35652335

ABSTRACT

BACKGROUND: The initiating step in atherogenesis is the electrostatic binding of LDL (low-density lipoprotein) to proteoglycan glycosaminoglycans in the arterial intima. However, although proteoglycans are widespread throughout the intima of most coronary artery segments, LDL is not evenly distributed, indicating that LDL retention is not merely dependent on the presence of proteoglycans. We aim to identify factors that promote the interaction between LDL and the vessel wall of human coronary arteries. METHODS: We developed an ex vivo model to investigate binding of labeled human LDL to human coronary artery sections without the interference of cellular processes. RESULTS: By staining consecutive sections of human coronary arteries, we found strong staining of sulfated glycosaminoglycans throughout the arterial intima, whereas endogenous LDL deposits were focally distributed. Ex vivo binding of LDL was uniform at all intimal areas with sulfated glycosaminoglycans. However, lowering the pH from 7.4 to 6.5 triggered a 35-fold increase in LDL binding. The pH-dependent binding was abolished by pretreating LDL with diethyl-pyrocarbonate, which blocks the protonation of histidine residues, or cyclohexanedione, which inhibits the positive charge of site B on LDL. Thus, both histidine protonation and site B are required for strong electrostatic LDL binding to the intima. CONCLUSIONS: This study identifies histidine protonation as an important component for electrostatic LDL binding to human coronary arteries. Our findings show that the local pH will have a profound impact on LDL's affinity for sulfated glycosaminoglycans, which may influence the retention and accumulation pattern of LDL in the arterial vasculature.


Subject(s)
Coronary Vessels , Lipoproteins, LDL , Coronary Vessels/metabolism , Glycosaminoglycans/metabolism , Histidine , Humans , Hydrogen-Ion Concentration , Lipoproteins, LDL/metabolism , Proteoglycans/metabolism , Static Electricity
5.
Clin Exp Rheumatol ; 41(1): 32-40, 2023 Jan.
Article in English | MEDLINE | ID: mdl-35579086

ABSTRACT

OBJECTIVES: MicroRNAs (miRs) are non-translated RNA sequences that elicit negative control over protein expression. The adipose tissue (AT) is considered the major producer of miRs and inflammatory interleukin 6 (IL-6). This study aims to investigate the relationship between production of IL-6 and miRs in AT. METHODS: IL-6 gene expression was analysed in RNA extracts from subcutaneous AT of 75 patients with rheumatoid arthritis (RA), with qPCR. Genome-wide profile of human miRs (2565 miRs, 96.6%) was analysed in 35 AT samples on 3D microarray. The miR-processing proteins Dicer, Drosha and DGCR8 were analysed with qPCR. In silico prediction of protein targets for the differentially expressed (DE) miRs (p<0.05; log2FC >±0.5) was conducted by DIANA software. Seven AT samples were stimulated in vitro with IL-6 or IL-6+IL-6R antibody tocilizumab and analysed for the miR processing proteins. RESULTS: We identified 30 DE miRs between AT with high and low IL-6 mRNA, of which 26 miRs were inversely related with IL-6 levels. DE miRs were predicted to interfere in oestrogen (p=0.001), FoxO (p=0.006) and insulin (p=0.03) signalling pathways. High expression of IL-6 in AT was associated with significantly higher expression of Dicer (p=0.04) and Drosha (p=0.04), while inhibition of IL-6 signalling with tocilizumab decreased the levels of total miRs processing enzymes (p=0.003). CONCLUSIONS: IL-6 mRNA production in AT has a negative effect on the miRs expression profile and it increases miR-production capacity.


Subject(s)
Arthritis, Rheumatoid , MicroRNAs , Humans , MicroRNAs/genetics , Interleukin-6/metabolism , RNA-Binding Proteins , Arthritis, Rheumatoid/genetics , Adipose Tissue/metabolism
6.
Bioinformatics ; 37(20): 3501-3508, 2021 Oct 25.
Article in English | MEDLINE | ID: mdl-33974001

ABSTRACT

MOTIVATION: Cell to cell communication is critical for all multicellular organisms, and single-cell sequencing facilitates the construction of full connectivity graphs between cell types in tissues. Such complex data structures demand novel analysis methods and tools for exploratory analysis. RESULTS: We propose a method to predict the putative ligand-receptor interactions between cell types from single-cell RNA-sequencing data. This is achieved by inferring and incorporating interactions in a multi-directional graph, thereby enabling contextual exploratory analysis. We demonstrate that our approach can detect common and specific interactions between cell types in mouse brain and human tumors, and that these interactions fit with expected outcomes. These interactions also include predictions made with molecular ligands integrating information from several types of genes necessary for ligand production and transport. Our implementation is general and can be appended to any transcriptome analysis pipeline to provide unbiased hypothesis generation regarding ligand to receptor interactions between cell populations or for network analysis in silico. AVAILABILITY AND IMPLEMENTATION: scConnect is open source and available as a Python package at https://github.com/JonETJakobsson/scConnect. scConnect is directly compatible with Scanpy scRNA-sequencing pipelines. SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.

7.
Am J Pathol ; 191(11): 2023-2038, 2021 11.
Article in English | MEDLINE | ID: mdl-34400131

ABSTRACT

Angiogenesis supplies oxygen and nutrients to growing tumors. Inhibiting angiogenesis may stop tumor growth, but vascular endothelial growth factor inhibitors have limited effect in most tumors. This limited effect may be explained by an additional, less vascular endothelial growth factor-driven form of angiogenesis known as intussusceptive angiogenesis. The importance of intussusceptive angiogenesis in human tumors is not known. Epifluorescence and confocal microscopy was used to visualize intravascular pillars, the hallmark structure of intussusceptive angiogenesis, in tumors. Human malignant melanoma metastases, patient-derived melanoma xenografts in mice (PDX), and genetically engineered v-raf murine sarcoma viral oncogene homolog B1 (BRAF)-induced, phosphatase and TENsin homolog deleted on chromosome 10 (PTEN)-deficient (BPT) mice (BrafCA/+Ptenf/fTyr-Cre+/0-mice) were analyzed for pillars. Gene expression in human melanoma metastases and PDXs was analyzed by RNA sequencing. Matrix metalloproteinase 9 (MMP9) protein expression and T-cell and macrophage infiltration in tumor sections were determined with multiplex immunostaining. Intravascular pillars were detected in human metastases but rarely in PDXs and not in BPT mice. The expression of MMP9 mRNA was higher in human metastases compared with PDXs. High expression of MMP9 protein as well as infiltration of macrophages and T-cells were detected in proximity to intravascular pillars. MMP inhibition blocked formation of pillars, but not tubes or tip cells, in vitro. In conclusion, intussusceptive angiogenesis may contribute to the growth of human melanoma metastases. MMP inhibition blocked pillar formation in vitro and should be further investigated as a potential anti-angiogenic drug target in metastatic melanoma.


Subject(s)
Melanoma/pathology , Neovascularization, Pathologic/pathology , Skin Neoplasms/pathology , Aged , Aged, 80 and over , Animals , Female , Heterografts , Humans , Male , Matrix Metalloproteinase 9/metabolism , Melanoma/metabolism , Mice , Middle Aged , Neovascularization, Pathologic/metabolism , Skin Neoplasms/metabolism , Melanoma, Cutaneous Malignant
8.
J Autoimmun ; 130: 102843, 2022 06.
Article in English | MEDLINE | ID: mdl-35643017

ABSTRACT

Conditional mutation of protein geranylgeranyltransferase type I (GGTase-I) in macrophages (GLC) activates Rho-GTPases and causes arthritis in mice. Knocking out Rag1 in GLC mice alleviates arthritis which indicates that lymphocytes are required for arthritis development in those mice. To study GLC dependent changes in the adaptive immunity, we isolated CD4+ T cells from GLC mice (CD4+GLCs). Spleen and joint draining lymph nodes (dLN) CD4+GLCs exhibited high expression of Cdc42 and Rac1, which repressed the caudal HOXA proteins and activated the mechanosensory complex to facilitate migration. These CDC42/RAC1 rich CD4+GLCs presented a complete signature of GARP+NRP1+IKZF2+FOXP3+ regulatory T cells (Tregs) of thymic origin. Activation of the ß-catenin/Lef1 axis promoted a pro-inflammatory Th1 phenotype of Tregs, which was strongly associated with arthritis severity. Knockout of Cdc42 in macrophages of GLC mice affected CD4+ cell biology and triggered development of non-thymic Tregs. Knockout of Rac1 and RhoA had no such effects on CD4+ cells although it alleviated arthritis in GLC mice. Disrupting macrophage and T cell interaction with CTLA4 fusion protein reduced the Th1-driven inflammation and enrichment of thymic Tregs into dLNs. Antigen challenge reinforced the CD4+GLC phenotype in non-arthritic heterozygote GLC mice and increased accumulation of Rho-GTPase expressing thymic Tregs in dLNs. Our study demonstrates an unexpected role of macrophages in stimulating the development of pro-inflammatory thymic Tregs and reveal activation of Rho-GTPases behind their arthritogenic phenotype.


Subject(s)
Arthritis , Thymus Gland , rho GTP-Binding Proteins , Animals , Forkhead Transcription Factors/metabolism , Macrophages/metabolism , Mice , Mice, Knockout , T-Lymphocytes, Regulatory , Thymus Gland/immunology , rho GTP-Binding Proteins/genetics , rho GTP-Binding Proteins/metabolism
9.
Eur Heart J ; 42(43): 4481-4492, 2021 11 14.
Article in English | MEDLINE | ID: mdl-34297830

ABSTRACT

AIMS: Cardiac injury and remodelling are associated with the rearrangement of cardiac lipids. Glycosphingolipids are membrane lipids that are important for cellular structure and function, and cardiac dysfunction is a characteristic of rare monogenic diseases with defects in glycosphingolipid synthesis and turnover. However, it is not known how cardiac glycosphingolipids regulate cellular processes in the heart. The aim of this study is to determine the role of cardiac glycosphingolipids in heart function. METHODS AND RESULTS: Using human myocardial biopsies, we showed that the glycosphingolipids glucosylceramide and lactosylceramide are present at very low levels in non-ischaemic human heart with normal function and are elevated during remodelling. Similar results were observed in mouse models of cardiac remodelling. We also generated mice with cardiomyocyte-specific deficiency in Ugcg, the gene encoding glucosylceramide synthase (hUgcg-/- mice). In 9- to 10-week-old hUgcg-/- mice, contractile capacity in response to dobutamine stress was reduced. Older hUgcg-/- mice developed severe heart failure and left ventricular dilatation even under baseline conditions and died prematurely. Using RNA-seq and cell culture models, we showed defective endolysosomal retrograde trafficking and autophagy in Ugcg-deficient cardiomyocytes. We also showed that responsiveness to ß-adrenergic stimulation was reduced in cardiomyocytes from hUgcg-/- mice and that Ugcg knockdown suppressed the internalization and trafficking of ß1-adrenergic receptors. CONCLUSIONS: Our findings suggest that cardiac glycosphingolipids are required to maintain ß-adrenergic signalling and contractile capacity in cardiomyocytes and to preserve normal heart function.


Subject(s)
Glucosyltransferases , Myocytes, Cardiac , Animals , Cardiomegaly , Glucosyltransferases/genetics , Mice , Receptors, Adrenergic
10.
J Synchrotron Radiat ; 28(Pt 6): 1672-1683, 2021 Nov 01.
Article in English | MEDLINE | ID: mdl-34738921

ABSTRACT

Uranium speciation and redox behaviour is of critical importance in the nuclear fuel cycle. X-ray absorption near-edge spectroscopy (XANES) is commonly used to probe the oxidation state and speciation of uranium, and other elements, at the macroscopic and microscopic scale, within nuclear materials. Two-dimensional (2D) speciation maps, derived from microfocus X-ray fluorescence and XANES data, provide essential information on the spatial variation and gradients of the oxidation state of redox active elements such as uranium. In the present work, we elaborate and evaluate approaches to the construction of 2D speciation maps, in an effort to maximize sensitivity to the U oxidation state at the U L3-edge, applied to a suite of synthetic Chernobyl lava specimens. Our analysis shows that calibration of speciation maps can be improved by determination of the normalized X-ray absorption at excitation energies selected to maximize oxidation state contrast. The maps are calibrated to the normalized absorption of U L3 XANES spectra of relevant reference compounds, modelled using a combination of arctangent and pseudo-Voigt functions (to represent the photoelectric absorption and multiple-scattering contributions). We validate this approach by microfocus X-ray diffraction and XANES analysis of points of interest, which afford average U oxidation states in excellent agreement with those estimated from the chemical state maps. This simple and easy-to-implement approach is general and transferrable, and will assist in the future analysis of real lava-like fuel-containing materials to understand their environmental degradation, which is a source of radioactive dust production within the Chernobyl shelter.


Subject(s)
Chernobyl Nuclear Accident , Uranium , Synchrotrons , X-Ray Absorption Spectroscopy , X-Rays
11.
Inorg Chem ; 60(23): 18112-18121, 2021 Dec 06.
Article in English | MEDLINE | ID: mdl-34787401

ABSTRACT

The synthesis, characterization, and crystal structure of a novel (dominant) uranium(V) brannerite of composition U1.09(6)Ti1.29(3)Al0.71(3)O6 is reported, as determined from Rietveld analysis of the high-resolution neutron powder diffraction data. Examination of the UTi2-xAlxO6 system demonstrated the formation of brannerite-structured compounds with varying Al3+ and U5+ contents, from U0.93(6)Ti1.64(3)Al0.36(3)O6 to U0.89(6)Ti1.00(3)Al1.00(3)O6. Substitution of Al3+ for Ti4+, with U5+ charge compensation, resulted in near-linear changes in the b and c unit cell parameters and the overall unit cell volume, as expected from ionic radii considerations. The presence of U5+ as the dominant oxidation state in near-single-phase brannerite compositions was evidenced by complementary laboratory U L3-edge and high-energy-resolution fluorescence-detected U M4-edge X-ray absorption near-edge spectroscopy. No brannerite phase was found for compositions with Al3+/Ti4+ > 1, which would require a U6+ contribution for charge compensation. These data expand the crystal chemistry of uranium brannerites to the stabilization of dominant uranium(V) brannerites by the substitution of trivalent cations, such as Al3+, on the Ti4+ site.

12.
Proc Natl Acad Sci U S A ; 115(51): E12063-E12072, 2018 12 18.
Article in English | MEDLINE | ID: mdl-30509997

ABSTRACT

Rheumatoid arthritis (RA) is an inflammatory joint disease with a neurological component including depression, cognitive deficits, and pain, which substantially affect patients' quality of daily life. Insulin-like growth factor 1 receptor (IGF1R) signaling is one of the factors in RA pathogenesis as well as a known regulator of adult neurogenesis. The purpose of this study was to investigate the association between IGF1R signaling and the neurological symptoms in RA. In experimental RA, we demonstrated that arthritis induced enrichment of IBA1+ microglia in the hippocampus. This coincided with inhibitory phosphorylation of insulin receptor substrate 1 (IRS1) and up-regulation of IGF1R in the pyramidal cell layer of the cornus ammoni and in the dentate gyrus, reproducing the molecular features of the IGF1/insulin resistance. The aberrant IGF1R signaling was associated with reduced hippocampal neurogenesis, smaller hippocampus, and increased immobility of RA mice. Inhibition of IGF1R in experimental RA led to a reduction of IRS1 inhibition and partial improvement of neurogenesis. Evaluation of physical functioning and brain imaging in RA patients revealed that enhanced functional disability is linked with smaller hippocampus volume and aberrant IGF1R/IRS1 signaling. These results point to abnormal IGF1R signaling in the brain as a mediator of neurological sequelae in RA and provide support for the potentially reversible nature of hippocampal changes.


Subject(s)
Arthritis, Rheumatoid/metabolism , Hippocampus/drug effects , Hippocampus/metabolism , Inflammation/metabolism , Receptor, IGF Type 1/antagonists & inhibitors , Receptor, IGF Type 1/metabolism , Signal Transduction/drug effects , Adult , Aged , Animals , Arthritis, Rheumatoid/drug therapy , Brain/diagnostic imaging , Brain/drug effects , Brain/pathology , Dentate Gyrus/metabolism , Disease Models, Animal , Female , Gene Expression , Humans , Insulin Receptor Substrate Proteins/metabolism , Insulin Resistance , Male , Mice , Middle Aged , Neurogenesis/drug effects , Pain , Pain Measurement , Phosphorylation , Receptors, Somatomedin/antagonists & inhibitors , Receptors, Somatomedin/metabolism , Up-Regulation , Young Adult
13.
J Neuroinflammation ; 17(1): 123, 2020 Apr 22.
Article in English | MEDLINE | ID: mdl-32321525

ABSTRACT

BACKGROUND: Itch is an unpleasant sensation that can be debilitating, especially if it is chronic and of non-histaminergic origin, as treatment options are limited. Endothelin-1 (ET-1) is a potent endogenous vasoconstrictor that also has the ability to induce a burning, non-histaminergic pruritus when exogenously administered, by activating the endothelin A receptor (ETAR) on primary afferents. ET-1 is released endogenously by several cell-types found in the skin, including macrophages and keratinocytes. Mast cells express ETARs and can thereby be degranulated by ET-1, and mast cell proteases chymase and carboxypeptidase A3 (CPA3) are known to either generate or degrade ET-1, respectively, suggesting a role for mast cell proteases in the regulation of ET-1-induced itch. The mouse mast cell proteases (mMCPs) mMCP4 (chymase), mMCP6 (tryptase), and CPA3 are found in connective tissue type mast cells and are the closest functional homologs to human mast cell proteases, but little is known about their role in endothelin-induced itch. METHODS: In this study, we evaluated the effects of mast cell protease deficiency on scratching behavior induced by ET-1. To investigate this, mMCP knock-out and transgenic mice were injected intradermally with ET-1 and their scratching behavior was recorded and analyzed. RESULTS: CPA3-deficient mice and mice lacking all three proteases demonstrated highly elevated levels of scratching behavior compared with wild-type controls. A modest increase in the number of scratching bouts was also seen in mMCP6-deficient mice, while mMCP4-deficiency did not have any effect. CONCLUSION: Altogether, these findings identify a prominent role for the mast cell proteases, in particular CPA3, in the protection against itch induced by ET-1.


Subject(s)
Carboxypeptidases A/metabolism , Mast Cells/enzymology , Pruritus/metabolism , Tryptases/metabolism , Animals , Connective Tissue/metabolism , Endothelin-1/metabolism , Endothelin-1/toxicity , Mice , Mice, Transgenic , Pruritus/chemically induced
14.
J Pharmacol Exp Ther ; 372(1): 73-82, 2020 01.
Article in English | MEDLINE | ID: mdl-31771994

ABSTRACT

Itch stimuli are detected by specialized primary afferents that convey the signal to the spinal cord, but how itch transmission is regulated is still not completely known. Here, we investigated the roles of the neuropeptide Y (NPY)/Y2 receptor system on scratch behavior. The inhibitory Y2 receptor is expressed on mouse primary afferents, and intrathecal administration of the Y2 agonist peptide YY (PYY)3-36 reduced scratch episode frequency and duration induced by compound 48/80, an effect that could be reversed by intrathecal preadministration of the Y2 antagonist BIIE0246. Also, scratch episode duration induced by histamine could be reduced by PYY3-36 In contrast, scratch behavior induced by α-methyl-5HT, protease-activated receptor-2-activating peptide SLIGRL, chloroquine, topical dust mite extract, or mechanical itch induced by von Frey filaments was unaffected by stimulation of Y2 Primary afferent neurons expressing the Npy2r gene were found to coexpress itch-associated markers such as natriuretic peptide precursor b, oncostatin M receptor, and interleukin (IL) 31 receptor A. Accordingly, intrathecal PYY3-36 reduced the scratch behavior induced by IL-31. Our findings imply that the NPY/Y2 system reduces histaminergic and IL-31-associated itch through presynaptic inhibition of a subpopulation of itch-associated primary afferents. SIGNIFICANCE STATEMENT: The spinal neuropeptide Y system dampens scratching behavior induced by histaminergic compounds and interleukin 31, a cytokine involved in atopic dermatitis, through interactions with the Y2 receptor. The Y2 receptor is expressed by primary afferent neurons that are rich in itch-associated neurotransmitters and receptors such as somatostatin, natriuretic peptide precursor b, and interleukin 31 receptors.


Subject(s)
Antipruritics/pharmacology , Dermatitis, Atopic/metabolism , Neurons, Afferent/metabolism , Peptide Fragments/pharmacology , Peptide YY/pharmacology , Pruritus/metabolism , Receptors, Neuropeptide Y/metabolism , Animals , Antipruritics/administration & dosage , Antipruritics/therapeutic use , Arginine/analogs & derivatives , Arginine/toxicity , Benzazepines/toxicity , Cells, Cultured , Chloroquine/pharmacology , Dermatitis, Atopic/drug therapy , Ganglia, Spinal/cytology , Histamine/pharmacology , Histamine/toxicity , Interleukins/pharmacology , Interleukins/toxicity , Male , Mice , Mice, Inbred C57BL , Natriuretic Peptide, Brain/genetics , Natriuretic Peptide, Brain/metabolism , Neurons, Afferent/drug effects , Neurons, Afferent/physiology , Oligopeptides/pharmacology , Peptide Fragments/administration & dosage , Peptide Fragments/therapeutic use , Peptide YY/administration & dosage , Peptide YY/therapeutic use , Pruritus/drug therapy , Pruritus/etiology , Receptors, Neuropeptide Y/genetics , Receptors, Oncostatin M/genetics , Receptors, Oncostatin M/metabolism , Serotonin/pharmacology
15.
Inorg Chem ; 59(23): 17364-17373, 2020 Dec 07.
Article in English | MEDLINE | ID: mdl-33175500

ABSTRACT

Aliquots of well-characterized Ce-brannerite were annealed at different temperatures under N2 and synthetic air atmospheres. The autoreduction of cerium at temperature was observed using thermogravimetry to monitor the mass lost as O2 was evolved. It has been shown that the brannerite structure is stable with a small fraction of Ce3+, charge-balanced by O vacancies. The range of stability was determined to be Ce4+0.975Ti2O5.95, the fully oxidized end-member, to Ce3.87+0.975Ti2O5.886, as reduced by annealing under N2 at 1075 °C. Higher temperatures under N2 led to further reduction of Ce and collapse of the brannerite structure. Ce-brannerite remained stable on heating to 1300 °C in synthetic air, with multiple steps of oxidation and reduction corresponding to changes in the average Ce oxidation state. We propose that the autoreduction of Ce at temperature is an important factor in the overall thermodynamic stability of Ce-brannerite at temperature and has a large impact on the energetics of formation of Ce-brannerite.

16.
Inorg Chem ; 59(24): 18407-18419, 2020 Dec 21.
Article in English | MEDLINE | ID: mdl-33296192

ABSTRACT

The synthesis, structure, and thermal stability of the periodate double perovskites A2NaIO6 (A= Ba, Sr, Ca) were investigated in the context of potential application for the immobilization of radioiodine. A combination of X-ray diffraction and neutron diffraction, Raman spectroscopy, and DFT simulations were applied to determine accurate crystal structures of these compounds and understand their relative stability. The compounds were found to exhibit rock-salt ordering of Na and I on the perovskite B-site; Ba2NaIO6 was found to adopt the Fm-3m aristotype structure, whereas Sr2NaIO6 and Ca2NaIO6 adopt the P21/n hettotype structure, characterized by cooperative octahedral tilting. DFT simulations determined the Fm-3m and P21/n structures of Ba2NaIO6 to be energetically degenerate at room temperature, whereas diffraction and spectroscopy data evidence only the presence of the Fm-3m phase at room temperature, which may imply an incipient phase transition for this compound. The periodate double perovskites were found to exhibit remarkable thermal stability, with Ba2NaIO6 only decomposing above 1050 °C in air, which is apparently the highest recorded decomposition temperature so far recorded for any iodine bearing compound. As such, these compounds offer some potential for application in the immobilization of iodine-129, from nuclear fuel reprocessing, with an iodine incorporation rate of 25-40 wt%. The synthesis of these compounds, elaborated here, is also compatible with both current conventional and future advanced processes for iodine recovery from the dissolver off-gas.

17.
Environ Sci Technol ; 54(21): 13748-13758, 2020 11 03.
Article in English | MEDLINE | ID: mdl-33054185

ABSTRACT

Toxicokinetic interactions with catabolic cytochrome P450 (CYP) enzymes can inhibit chemical elimination pathways and cause synergistic mixture effects. We have created a mathematical bottom-up model for a synergistic mixture effect where we fit a multidimensional function to a given data set using an auxiliary nonadditive approach. The toxicokinetic model is based on the data from a previous study on a fish cell line, where the CYP1A enzyme activity was measured over time after exposure to various combinations of the aromatic hydrocarbon ß-naphthoflavone and the azole nocodazole. To describe the toxicokinetic mechanism in this pathway and how that affects the CYP1A biomarker, the model uses ordinary differential equations. Local sensitivity and identifiability analyses revealed that all the 10 parameters estimated in the model were identified uniquely while fitting the model to the data for measuring the CYP1A enzyme activity. The model has a good prediction power and is a promising tool to test the synergistic toxicokinetic interactions between different chemicals.


Subject(s)
Cytochrome P-450 CYP1A1 , Hydrocarbons, Aromatic , Animals , Azoles , Biomarkers/metabolism , Cell Line , Cytochrome P-450 CYP1A1/metabolism , Nocodazole , Receptors, Aryl Hydrocarbon/metabolism , Toxicokinetics , beta-Naphthoflavone/toxicity
18.
BMC Med ; 17(1): 141, 2019 07 22.
Article in English | MEDLINE | ID: mdl-31327319

ABSTRACT

OBJECTIVES: Since low insulin-like growth factor (IGF) 1 is often linked to inflammation, we analyze whether serum levels of IGF1 are associated with cardiovascular disease (CVD) in rheumatoid arthritis (RA) in a longitudinal observational study. METHODS: A CVD risk was estimated (eCVR) in 184 female RA patients (mean age 52 years) and in 132 female patients after ischemic stroke (mean age 56 years) with no rheumatic disease, using the Framingham algorithm. The median level of IGF1 divided the cohorts in IGF1high and IGF1low groups. A 5-year prospective follow-up for new CVD events was completed in all RA patients. The Mantel-Cox analysis and event-free survival curves were prepared. Unsupervised clustering of proteins within the IGF1 signaling pathway was employed to identify their association with eCVR. RESULTS: Low IGF1 resulted in a higher eCVR in RA patients (7.2% and 3.3%, p = 0.0063) and in stroke (9.3% and 7.1%, p = 0.033). RA had higher rate for new CVD events at prospective follow-up (OR 4.96, p = 0.028). Hypertension was the major risk factor associated with low IGF1 in RA and stroke. In hypertension, IGF1 was no longer responsible for intracellular activation and lost its correlation to IRS1/2 adaptor proteins. The clustering analysis confirmed that combination of low IGF1 and IRS1/2 with high IL6, insulin, and glucose predisposed to high eCVR and emphasized the functional role of serum IGF1. CONCLUSIONS: Low serum IGF1 precedes and predicts development of early CVD events in female RA patients. Hypertension and aberrant IGF1 receptor signaling are highlighted as the important contributors to IGF1-related CVD events.


Subject(s)
Arthritis, Rheumatoid/blood , Arthritis, Rheumatoid/complications , Cardiovascular Diseases/diagnosis , Hypertension/blood , Hypertension/complications , Insulin-Like Growth Factor I/metabolism , Adult , Aged , Arthritis, Rheumatoid/diagnosis , Cardiovascular Diseases/blood , Cardiovascular Diseases/complications , Cohort Studies , Female , Humans , Hypertension/diagnosis , Insulin-Like Growth Factor I/analysis , Longitudinal Studies , Middle Aged , Predictive Value of Tests , Prognosis , Risk Factors , Stroke/blood , Stroke/complications , Stroke/diagnosis
19.
Nat Rev Neurosci ; 15(2): 98-110, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24588018

ABSTRACT

The melanocortin system has a well-established role in the regulation of energy homeostasis, but there is growing evidence of its involvement in memory, nociception, mood disorders and addiction. In this Review, we focus on the role of the melanocortin 4 receptor and provide an integrative view of the molecular mechanisms that lead to melanocortin-induced changes in synaptic plasticity within these diverse physiological systems. We also highlight the importance of melanocortin peptides and receptors in chronic pain syndromes, memory impairments, depression and drug abuse, and the possibility of targeting them for therapeutic purposes.


Subject(s)
Melanocortins/metabolism , Receptor, Melanocortin, Type 4/physiology , Signal Transduction/physiology , Synapses/physiology , Synaptic Transmission/physiology , Animals , Cell Adhesion Molecules, Neuronal , Depressive Disorder/drug therapy , Depressive Disorder/metabolism , Energy Metabolism/physiology , Humans , Memory Disorders/drug therapy , Memory Disorders/metabolism , Pain/drug therapy , Pain/metabolism
20.
Glob Chang Biol ; 25(5): 1868-1876, 2019 05.
Article in English | MEDLINE | ID: mdl-30737900

ABSTRACT

Elevated CO2 (eCO2 ) generally promotes increased grain yield (GY) and decreased grain protein concentration (GPC), but the extent to which these effects depend on the magnitude of fertilization remains unclear. We collected data on the eCO2 responses of GY, GPC and grain protein yield and their relationships with nitrogen (N) application rates across experimental data covering 11 field grown wheat (Triticum aestivum) cultivars studied in eight countries on four continents. The eCO2 -induced stimulation of GY increased with N application rates up to ~200 kg/ha. At higher N application, stimulation of GY by eCO2 stagnated or even declined. This was valid both when the yield stimulation was expressed as the total effect and using per ppm CO2 scaling. GPC was decreased by on average 7% under eCO2 and the magnitude of this effect did not depend on N application rate. The net effect of responses on GY and protein concentration was that eCO2 typically increased and decreased grain protein yield at N application rates below and above ~100 kg/ha respectively. We conclude that a negative effect on wheat GPC seems inevitable under eCO2 and that substantial N application rates may be required to sustain wheat protein yields in a world with rising CO2 .


Subject(s)
Carbon Dioxide/pharmacology , Edible Grain/chemistry , Greenhouse Gases/pharmacology , Nitrogen/pharmacology , Triticum/drug effects , Triticum/growth & development , Carbon Dioxide/metabolism , Edible Grain/drug effects , Edible Grain/growth & development , Edible Grain/metabolism , Fertilizers/analysis , Grain Proteins/analysis , Greenhouse Gases/metabolism , Nitrogen/analysis , Nitrogen/metabolism
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