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1.
Sci Rep ; 9(1): 3938, 2019 03 08.
Article in English | MEDLINE | ID: mdl-30850706

ABSTRACT

Community-associated acquisition of extended-spectrum beta-lactamase- (ESBL) and carbapenemase-producing Enterobacteriaceae has significantly increased in recent years, necessitating greater inquiry into potential exposure routes, including food and water sources. In high-income countries, drinking water is often neglected as a possible source of community exposure to antibiotic-resistant organisms. We screened coliform-positive tap water samples (n = 483) from public and private water systems in six states of the United States for blaCTX-M, blaSHV, blaTEM, blaKPC, blaNDM, and blaOXA-48-type genes by multiplex PCR. Positive samples were subcultured to isolate organisms harboring ESBL or carbapenemase genes. Thirty-one samples (6.4%) were positive for blaCTX-M, ESBL-type blaSHV or blaTEM, or blaOXA-48-type carbapenemase genes, including at least one positive sample from each state. ESBL and blaOXA-48-type Enterobacteriaceae isolates included E. coli, Kluyvera, Providencia, Klebsiella, and Citrobacter species. The blaOXA-48-type genes were also found in non-fermenting Gram-negative species, including Shewanella, Pseudomonas and Acinetobacter. Multiple isolates were phenotypically non-susceptible to third-generation cephalosporin or carbapenem antibiotics. These findings suggest that tap water in high income countries could serve as an important source of community exposure to ESBL and carbapenemase genes, and that these genes may be disseminated by non-Enterobacteriaceae that are not detected as part of standard microbiological water quality testing.


Subject(s)
Bacterial Proteins/genetics , Carbapenem-Resistant Enterobacteriaceae/genetics , Drinking Water/microbiology , Enterobacteriaceae/genetics , beta-Lactamases/genetics , Carbapenem-Resistant Enterobacteriaceae/drug effects , Carbapenem-Resistant Enterobacteriaceae/enzymology , Enterobacteriaceae/drug effects , Enterobacteriaceae/enzymology , Genes, Bacterial/genetics , Microbial Sensitivity Tests , Multiplex Polymerase Chain Reaction , United States
2.
J Invest Dermatol ; 131(8): 1677-83, 2011 Aug.
Article in English | MEDLINE | ID: mdl-21593770

ABSTRACT

The lipophilic fungus Malassezia furfur (M. furfur) is a commensal microbe associated with several chronic diseases such as pityriasis versicolor, folliculitis, and seborrheic dermatitis. Because M. furfur-related diseases are difficult to treat and require prolonged use of medications, the treatment for M. furfur-related skin diseases is supposed to gain control over M. furfur growth and the inflammation associated with it, as well as to prevent secondary infections. In this study, we investigated the antifungal and anti-inflammatory effects of cecropin A(1-8)-magainin 2(1-12) hybrid peptide analog P5 on M. furfur. The minimal inhibitory concentration of P5 against M. furfur was 0.39 µM, making it 3-4 times more potent than commonly used antifungal agents such as ketoconazole (1.5 µM) or itraconazole (1.14 µM). P5 efficiently inhibited the expression of IL-8 and Toll-like receptor 2 in M. furfur-infected human keratinocytes without eukaryotic cytotoxicity at its fungicidal concentration. Moreover, P5 significantly downregulated NF-κB activation and intracellular calcium fluctuation, which are closely related with enhanced responses of keratinocyte inflammation induced by M. furfur infection. Taken together, these observations suggest P5 may be a potential therapeutic agent for M. furfur-associated human skin diseases because of its distinct antifungal and anti-inflammatory action.


Subject(s)
Antifungal Agents/pharmacology , Antimicrobial Cationic Peptides/pharmacology , Dermatomycoses/drug therapy , Keratinocytes/microbiology , Malassezia/drug effects , Calcium/metabolism , Calcium Signaling/drug effects , Calcium Signaling/immunology , Cell Nucleus/immunology , Cell Nucleus/metabolism , Cells, Cultured , Dermatomycoses/immunology , Dose-Response Relationship, Drug , Humans , Interleukin-8/metabolism , Keratinocytes/cytology , Keratinocytes/immunology , Malassezia/immunology , Microbial Sensitivity Tests , NF-kappa B/metabolism
3.
Am J Physiol Endocrinol Metab ; 299(6): E1016-27, 2010 Dec.
Article in English | MEDLINE | ID: mdl-20841504

ABSTRACT

Adipose tissue macrophages are associated with insulin resistance and are linked to changes in the extracellular matrix. To better characterize adipose macrophages, the extracellular matrix, and adipocyte-macrophage interactions, gene expression from adipose tissue and the stromal vascular fraction was assessed for markers of inflammation and fibrosis, and macrophages from obese and lean subjects were counted and characterized immunohistochemically. Coculture experiments examined the effects of adipocyte-macrophage interaction. Collagen VI gene expression was associated with insulin sensitivity and CD68 (r = -0.56 and 0.60, P < 0.0001) and with other markers of inflammation and fibrosis. Compared with adipose tissue from lean subjects, adipose tissue from obese subjects contained increased areas of fibrosis, which correlated inversely with insulin sensitivity (r = -0.58, P < 0.02) and positively with macrophage number (r = 0.70, P < 0.01). Although macrophages in crownlike structures (CLS) were more abundant in obese adipose tissue, the majority of macrophages were associated with fibrosis and were not organized in CLS. Macrophages in CLS were predominantly M1, but most other macrophages, particularly those in fibrotic areas, were M2 and also expressed CD150, a marker of M2c macrophages. Coculture of THP-1 macrophages with adipocytes promoted the M2 phenotype, with a lower level of IL-1 expression and a higher ratio of IL-10 to IL-12. Transforming growth factor-ß (TGF-ß) was more abundant in M2 macrophages and was further increased by coculture with adipocytes. Downstream effectors of TGF-ß, such as plasminogen activator inhibitor-1, collagen VI, and phosphorylated Smad, were increased in macrophages and adipocytes. Thus adipose tissue of insulin-resistant humans demonstrated increased fibrosis, M2 macrophage abundance, and TGF-ß activity.


Subject(s)
Adipose Tissue/metabolism , Collagen Type VI/metabolism , Glucose Intolerance/metabolism , Macrophages/metabolism , Adipose Tissue/pathology , Adult , Cell Line , Cells, Cultured , Coculture Techniques , Collagen Type VI/genetics , Cytokines/genetics , Cytokines/metabolism , Female , Fibrosis/genetics , Fibrosis/metabolism , Fibrosis/pathology , Fluorescent Antibody Technique , Glucose Intolerance/genetics , Glucose Intolerance/pathology , Humans , Inflammation/genetics , Inflammation/metabolism , Inflammation/pathology , Insulin/genetics , Insulin/metabolism , Insulin Resistance/physiology , Macrophages/pathology , Male , Middle Aged , Obesity/genetics , Obesity/metabolism , Obesity/pathology , Reverse Transcriptase Polymerase Chain Reaction
4.
J Gerontol A Biol Sci Med Sci ; 63(6): 566-79, 2008 Jun.
Article in English | MEDLINE | ID: mdl-18559630

ABSTRACT

We report an age-dependent increase in nonimmunohematopoietic cells (CD45neg) in regenerating muscle characterized by high stem-cell antigen (Sca-1) expression. In aged regenerating muscle, only 14% of these CD45negSca-1pos cells express MyoD, whereas 82% of CD45negSca-1(pos) cells are MyoDpos in young adult muscle. In vitro, CD45negMyoDnegSca-1pos cells overexpress fibrosis-promoting genes, potentially controlled by Wnt2. The cells are proliferative, nonmyogenic, and nonadipogenic, and arise in clonally derived myoblast cultures from aged mice. MyoDneg Sca-1pos nonmyogenic cells also emerge in C2C12 myoblast cultures at late passage. Both in vitro and in vivo studies suggest that MyoDnegSca-1pos cells from aged muscle are more susceptible to apoptosis than myoblasts, which may contribute to depletion of the satellite cell pool. Thus, with age, a subset of myoblasts takes on an altered phenotype, which is marked by high Sca-1 expression. These cells do not participate in muscle regeneration, and instead may contribute to muscle fibrosis in aged muscle.


Subject(s)
Aging/pathology , Antigens, Ly/analysis , Membrane Proteins/analysis , Muscle, Skeletal/pathology , Animals , Cells, Cultured , Female , Fibrosis , Leukocyte Common Antigens/analysis , Mice , Mice, Inbred DBA , Muscle, Skeletal/physiology , MyoD Protein , Regeneration/physiology
5.
PPAR Res ; 2008: 453120, 2008.
Article in English | MEDLINE | ID: mdl-18584038

ABSTRACT

Microglia and astrocytes express numerous members of the Toll-like receptor (TLR) family that are pivotal for recognizing conserved microbial motifs expressed by a wide array of pathogens. Despite the critical role for TLRs in pathogen recognition, when dysregulated these pathways can also exacerbate CNS tissue destruction. Therefore, a critical balance must be achieved to elicit sufficient immunity to combat CNS infectious insults and downregulate these responses to avoid pathological tissue damage. We performed a comprehensive survey on the efficacy of various PPAR-gamma agonists to modulate proinflammatory mediator release from primary microglia and astrocytes in response to numerous TLR ligands relevant to CNS infectious diseases. The results demonstrated differential abilities of select PPAR-gamma agonists to modulate glial activation. For example, 15d-PGJ(2) and pioglitazone were both effective at reducing IL-12 p40 release by TLR ligand-activated glia, whereas CXCL2 expression was either augmented or inhibited by 15d-PGJ(2), effects that were dependent on the TLR ligand examined. Pioglitazone and troglitazone demonstrated opposing actions on microglial CCL2 production that were TLR ligand-dependent. Collectively, this information may be exploited to modulate the host immune response during CNS infections to maximize host immunity while minimizing inappropriate bystander tissue damage that is often characteristic of such diseases.

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