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      1. Author :
        Kadurugamuwa, J. L.; Sin, L.; Albert, E.; Yu, J.; Francis, K.; DeBoer, M.; Rubin, M.; Bellinger-Kawahara, C.; Jr, T. R. Parr; Contag, P. R.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2003
      5. Publication :
        Infection and Immunity
      6. Products :
      7. Volume :
        71
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        Animals, Bioware, Xen29, Xen5, Biofilms/ growth & development, Catheterization, Central Venous/adverse effects, Chemiluminescent Measurements, Colony Count, Microbial, Disease Models, Animal, Female, Humans, Luciferases/genetics/metabolism, Mice, Mice, Inbred BALB C, Pseudomonas Infections/ microbiology, Pseudomonas aeruginosa/genetics/ growth & development, Staphylococcal Infections/ microbiology, Staphylococcus aureus/genetics/ growth & development IVIS, Xenogen
      12. Abstract :
        We have developed a rapid, continuous method for real-time monitoring of biofilms, both in vitro and in a mouse infection model, through noninvasive imaging of bioluminescent bacteria colonized on Teflon catheters. Two important biofilm-forming bacterial pathogens, Staphylococcus aureus and Pseudomonas aeruginosa, were made bioluminescent by insertion of a complete lux operon. These bacteria produced significant bioluminescent signals for both in vitro studies and the development of an in vivo model, allowing effective real-time assessment of the physiological state of the biofilms. In vitro viable counts and light output were parallel and highly correlated (S. aureus r = 0.98; P. aeruginosa r = 0.99) and could be maintained for 10 days or longer, provided that growth medium was replenished every 12 h. In the murine model, subcutaneous implantation of the catheters (precolonized or postimplant infected) was well tolerated. An infecting dose of 10 (3) to 10 (5) CFU/catheter for S. aureus and P. aeruginosa resulted in a reproducible, localized infection surrounding the catheter that persisted until the termination of the experiment on day 20. Recovery of the bacteria from the catheters of infected animals showed that the bioluminescent signal corresponded to the CFU and that the lux constructs were highly stable even after many days in vivo. Since the metabolic activity of viable cells could be detected directly on the support matrix, nondestructively, and noninvasively, this method is especially appealing for the study of chronic biofilm infections and drug efficacy studies in vivo.
      13. URL :
        http://www.ncbi.nlm.nih.gov/pubmed/12540570
      14. Call Number :
        139339
      15. Serial :
        5926
      1. Author :
        Kadurugamuwa, J. L.; Sin, L. V.; Yu, J.; Francis, K. P.; Kimura, R.; Purchio, T.; Contag, P. R.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2003
      5. Publication :
        Antimicrobial Agents and Chemotherapy
      6. Products :
      7. Volume :
        47
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        Animals, Anti-Bacterial Agents/ pharmacology, Bacterial Infections/drug therapy/microbiology, Biofilms/ drug effects/growth & development, Bioware; Catheterization/adverse effects, Chemiluminescent Measurements, Ciprofloxacin/pharmacology, Colony Count, Microbial, Disease Models, Animal, Dose-Response Relationship, Drug, Drug Monitoring/methods, Mice, Rifampin/pharmacology, Staphylococcus aureus/drug effects/genetics/growth & development, Tobramycin/pharmacology IVIS, Xenogen; Xen29
      12. Abstract :
        We have developed a rapid, continuous method for monitoring the effectiveness of several antibacterial agents in real time, noninvasively, by using a recently described mouse model of chronic biofilm infection (J. L. Kadurugamuwa et al., Infect. Immun. 71:882-890, 2003), which relies on biophotonic imaging of bioluminescent bacteria. To facilitate real-time monitoring of infection, we used a Staphylococcus aureus isolate that was made bioluminescent by inserting a modified lux operon into the bacterial chromosome. This bioluminescent reporter bacterium was used to study the antimicrobial effects of several antibiotics belonging to different molecular families. Treatment with rifampin, tobramycin, and ciprofloxacin was started 7 days after subcutaneous implantation of catheters precolonized with 10(4) CFU of S. aureus. Three different doses of antibiotics were administered twice a day for 4 consecutive days. The number of metabolically active bacteria in untreated mice and the tobramycin- and ciprofloxacin-treated groups remained relatively unchanged over the 4-week observation period, indicating poor efficacies for tobramycin and ciprofloxacin. A rapid dose-dependent decline in metabolic activity in rifampin-treated groups was observed, with almost a 90% reduction after two doses and nearly undetectable levels after three doses. The disappearance of light emission correlated with colony counts. After the final treatment, cell numbers rebounded as a function of concentration in a time-dependent manner. The staphylococci isolated from the catheters of mice treated with rifampin were uniformly resistant to rifampin but retained their in vitro susceptibilities to tobramycin and ciprofloxacin. Since the metabolic activities of viable cells and a postantibiotic effect could be detected directly on the support matrix nondestructively and noninvasively, the methodology is specifically appealing for investigating the effects of antibiotics on biofilms in vivo. Moreover, our study points to the possible use of biophotonic imaging for the detection of the development of resistance to therapeutic agents during treatment of chronic infections in vivo.
      13. URL :
        http://www.ncbi.nlm.nih.gov/pubmed/14506020
      14. Call Number :
        139345
      15. Serial :
        7448
      1. Author :
        Kim, J. B.; Urban, K.; Cochran, E.; Lee, S.; Ang, A.; Rice, B.; Bata, A.; Campbell, K.; Coffee, R.; Gorodinsky, A.; Lu, Z.; Zhou, H.; Kishimoto, T. K.; Lassota, P.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2010
      5. Publication :
        PLoS One
      6. Products :
      7. Volume :
        5
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        IVIS, Xenogen, VIS, 4T1-luc2, Animals; Cell Line, Tumor; Diagnostic Imaging/*methods; Female; Genetic Vectors/genetics; Lentivirus/genetics; Luciferases/genetics/*metabolism; Luminescent Measurements/instrumentation/*methods; Lung Neoplasms/diagnosis/metabolism/secondary; Mammary Neoplasms, Experimental/diagnosis/genetics/*metabolism; Mice; Mice, Inbred BALB C; Mice, Nude; Neoplasm Transplantation; Neoplasms/genetics/metabolism/pathology; Sensitivity and Specificity; Time Factors; Transfection; Tumor Burden
      12. Abstract :
        Early detection of tumors can significantly improve the outcome of tumor treatment. One of the most frequently asked questions in cancer imaging is how many cells can be detected non-invasively in a live animal. Although many factors limit such detection, increasing the light emission from cells is one of the most effective ways of overcoming these limitations. Here, we describe development and utilization of a lentiviral vector containing enhanced firefly luciferase (luc2) gene. The resulting single cell clones of the mouse mammary gland tumor (4T1-luc2) showed stable light emission in the range of 10,000 photons/sec/cell. In some cases individual 4T1-luc2 cells inserted under the skin of a nu/nu mouse could be detected non-invasively using a cooled CCD camera in some cases. In addition, we showed that only few cells are needed to develop tumors in these mice and tumor progression can be monitored right after the cells are implanted. Significantly higher luciferase activity in these cells allowed us to detect micrometastases in both, syngeneic Balb/c and nu/nu mice.
      13. URL :
        http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=20186331
      14. Call Number :
        139615
      15. Serial :
        7111
      1. Author :
        Kirby, A. C.; Beattie, L.; Maroof, A.; Rooijen, N. van; Kaye, P. M.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2009
      5. Publication :
        American Journal of Pathology
      6. Products :
      7. Volume :
        175
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        IVIS, Xenogen, Xen10
      12. Abstract :
        Marginal zone macrophages in the murine spleen play an important role in the capture of blood-borne pathogens and are viewed as an essential component of host defense against the development of pneumococcal sepsis. However, we and others have previously described the loss of marginal zone macrophages associated with the splenomegaly that follows a variety of viral and protozoal infections; this finding raises the question of whether these infected mice would become more susceptible to secondary pneumococcal infection. Contrary to expectations, we found that mice lacking marginal zone macrophages resulting from Leishmania donovani infection have increased resistance to Streptococcus pneumoniae type 3 and do not develop sepsis. Using biophotonic imaging, we observed that pneumococci are rapidly trapped in the spleens of L. donovani-infected mice. By selective depletion studies using clodronate liposomes, depleting monoclonal antibodies specific for Ly6C/G and Ly6G, and CD11c-DTR mice, we show that the enhanced early resistance in L. donovani-infected mice is entirely due to the activity of SIGNR1? red pulp macrophages. Our data demonstrate, therefore, that the normal requirement for SIGNR1+ marginal zone macrophages to protect against a primary pneumococcal infection can, under conditions of splenomegaly, be readily compensated for by activated red pulp macrophages.
      13. URL :
        http://www.ncbi.nlm.nih.gov/pubmed/19644016
      14. Call Number :
        139699
      15. Serial :
        7610
      1. Author :
        Malley, R.; Henneke, P.; Morse, S. C.; Cieslewicz, M. J.; Lipsitch, M.; Thompson, C. M.; Kurt-Jones, E.; Paton, J. C.; Wessels, M. R.; Golenbock, D. T.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2003
      5. Publication :
        Proceedings of the National Academy of Sciences of the United States of America
      6. Products :
      7. Volume :
        100
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        IVIS, Xenogen, Xen10
      12. Abstract :
        Streptococcus pneumoniae is one of the leading causes of invasive bacterial disease worldwide. Fragments of the cell wall and the cytolytic toxin pneumolysin have been shown to contribute substantially to inflammatory damage, although the interactions between pneumococcal components and host-cell structures have not been elucidated completely. Results of a previous study indicated that cell-wall components of pneumococci are recognized by Toll-like receptor (TLR)2 but suggested that pneumolysin induces inflammatory events independently of this receptor. In this study we tested the hypothesis that pneumolysin interacts with surface proteins of the TLR family other than TLR2. We found that pneumolysin stimulates tumor necrosis factor-? and IL-6 release in wild-type macrophages but not in macrophages from mice with a targeted deletion of the cytoplasmic TLR-adapter molecule myeloid differentiation factor 88, suggesting the involvement of the TLRs in pneumolysin recognition. Purified pneumolysin synergistically activated macrophage responses together with preparations of pneumococcal cell walls or staphylococcal peptidoglycan, which are known to activate TLR2. Furthermore, when compared with wild-type macrophages, macrophages from mice that carry a spontaneous mutation in TLR4 (P712H) were hyporesponsive to both pneumolysin alone and the combination of pneumolysin with pneumococcal cell walls. Finally, these TLR4-mutant mice were significantly more susceptible to lethal infection after intranasal colonization with pneumolysin-positive pneumococci than were control mice. We conclude that the interaction of pneumolysin with TLR4 is critically involved in the innate immune response to pneumococcus.
      13. URL :
        http://www.ncbi.nlm.nih.gov/pubmed/12569171
      14. Call Number :
        140854
      15. Serial :
        7487
      1. Author :
        Mann, B.; Orihuela, C.; Antikainen, J.; Gao, G.; Sublett, J.; Korhonen, T. K.; Tuomanen, E.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2006
      5. Publication :
        Infection and Immunity
      6. Products :
      7. Volume :
        74
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        IVIS, Xenogen, Xen7
      12. Abstract :
        Members of the choline binding protein (Cbp) family are noncovalently bound to phosphorylcholine residues on the surface of Streptococcus pneumoniae. It has been suggested that CbpG plays a role in adherence and increase virulence both at the mucosal surface and in the bloodstream, but the function of this protein has been unclear. A new sequence analysis indicated that CbpG is a possible member of the S1 family of multifunctional surface-associated serine proteases. Clinical isolates contained two alleles of cbpG, and one-third of the strains expressed a truncated protein lacking the C-terminal, cell wall-anchoring choline binding domain. CbpG on the surface of pneumococci (full length) or released into the supernatant (truncated) showed proteolytic activity for fibronectin and casein, as did CbpG expressed on lactobacilli or as a purified full-length or truncated recombinant protein. Recombinant CbpG (rCbpG)-coated beads adhered to eukaryotic cells, and TIGR4 mutants lacking CbpG or having a truncated CbpG protein showed decreased adherence in vitro and attenuation of disease in mouse challenge models of colonization, pneumonia, and bacteremia. Immunization with rCbpG was protective in an animal model of colonization and sepsis. We propose that CbpG is a multifunctional surface protein that in the cell-attached or secreted form cleaves host extracellular matrix and in the cell-attached form participates in bacterial adherence. This is the first example of distinct functions in virulence that are dependent on natural variation in expression of a choline binding domain.
      13. URL :
        http://www.ncbi.nlm.nih.gov/pubmed/16428724
      14. Call Number :
        140887
      15. Serial :
        6992
      1. Author :
        Nguyen, V. H.; Kim, H. S.; Ha, J. M.; Hong, Y.; Choy, H. E.; Min, J. J.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2010
      5. Publication :
        Cancer Res
      6. Products :
      7. Volume :
        70
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        Animals, Blotting, Western, Xen26, Cell Line, Tumor, Diagnostic Imaging/methods, Gene Therapy/*methods, Genetic Engineering/*methods, Genetic Vectors/*therapeutic use, Humans, Male, Mice, Mice, Inbred BALB C, Neoplasms/*therapy, Perforin/*genetics/therapeutic use, Promoter Regions, Genetic, Salmonella typhimurium/*genetics, bcl-Associated Death Protein/genetics IVIS, Xenogen
      12. Abstract :
        Tumor-targeting bacteria have been studied in terms of their ability to visualize the infection pathway (through imaging probes) or to carry therapeutic molecules to tumors. To integrate these monitoring and therapeutic functions, we engineered attenuated Salmonella typhimurium defective in guanosine 5'-diphosphate-3'-diphosphate synthesis to carry cytotoxic proteins (cytolysin A) and express reporter genes. We successfully visualized the therapeutic process with these engineered bacteria in mice and found that they often mediated complete tumor (CT-26) eradication on cytotoxic gene induction. Furthermore, treatment with the engineered bacteria markedly suppressed metastatic tumor growth.
      13. URL :
        http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=20028866
      14. Call Number :
        141643
      15. Serial :
        6246
      1. Author :
        Ogunniyi, A. D.; Paton, J. C.; Kirby, A. C.; McCullers, J. A.; Cook, J.; Hyodo, M.; Hayakawa, Y.; Karaolis, D. K.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2008
      5. Publication :
        Vaccine
      6. Products :
      7. Volume :
        26
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        IVIS, Xenogen, Xen10
      12. Abstract :
        Cyclic diguanylate (c-di-GMP) is a unique bacterial intracellular signaling molecule capable of stimulating enhanced protective innate immunity against various bacterial infections. The effects of intranasal pretreatment with c-di-GMP, or intraperitoneal coadministration of c-di-GMP with the pneumolysin toxoid (PdB) or pneumococcal surface protein A (PspA) before pneumococcal challenge, were investigated in mice. We found that c-di-GMP had no significant direct short-term effect on the growth rate of Streptococcus pneumoniae either in vitro or in vivo. However, intranasal pretreatment of mice with c-di-GMP resulted in a significant decrease in bacterial load in lungs and blood after serotypes 2 and 3 challenge, and a significant decrease in lung titers after serotype 4 challenge. Potential cellular mediators of these enhanced protective responses were identified in lungs and draining lymph nodes. Intraperitoneal coadministration of c-di-GMP with PdB or PspA before challenge resulted in significantly higher antigen-specific antibody titers and increased survival of mice, compared to that obtained with alum adjuvant. These findings demonstrate that local or systemic c-di-GMP administration stimulates innate and adaptive immunity against invasive pneumococcal disease. We propose that c-di-GMP can be used as an effective broad spectrum immunomodulator and vaccine adjuvant to prevent infectious diseases.
      13. URL :
        http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Citation&list_uids=18640167
      14. Call Number :
        141772
      15. Serial :
        5663
      1. Author :
        Orihuela, C. J.; Radin, J. N.; Sublett, J. E.; Gao, G.; Kaushal, D.; Tuomanen, E. I.
      2. Title :
      3. Type :
        Journal Article
      4. Year :
        2004
      5. Publication :
        Infection and Immunity
      6. Products :
      7. Volume :
        72
      8. Issue :
        N/A
      9. Page Numbers :
        N/A
      10. Research Area :
        N/A
      11. Keywords :
        IVIS, Xenogen, Xen7, Xen35
      12. Abstract :
        Streptococcus pneumoniae is a leading cause of invasive bacterial disease. This is the first study to examine the expression of S. pneumoniae genes in vivo by using whole-genome microarrays available from The Institute for Genomic Research. Total RNA was collected from pneumococci isolated from infected blood, infected cerebrospinal fluid, and bacteria attached to a pharyngeal epithelial cell line in vitro. Microarray analysis of pneumococcal genes expressed in these models identified body site-specific patterns of expression for virulence factors, transporters, transcription factors, translation-associated proteins, metabolism, and genes with unknown function. Contributions to virulence predicted for several unknown genes with enhanced expression in vivo were confirmed by insertion duplication mutagenesis and challenge of mice with the mutants. Finally, we cross-referenced our results with previous studies that used signature-tagged mutagenesis and differential fluorescence induction to identify genes that are potentially required by a broad range of pneumococcal strains for invasive disease.
      13. URL :
        http://www.ncbi.nlm.nih.gov/pubmed/15385455
      14. Call Number :
        141856
      15. Serial :
        6874
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