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Red light kills bacteria via photodynamic action. 总被引:4,自引:0,他引:4
K K?nig M Teschke B Sigusch E Glockmann S Eick W Pfister 《Cellular and molecular biology, including cyto-enzymology》2000,46(7):1297-1303
With the increase in the number of antibiotic resistant strains of microorganism, the search for alternative treatments of microbial infections becomes all the more important. We report a novel method for bacterial inactivation based on the optical excitation of the naturally occurring (endogenous) photosensitzing porphyrins by red light. In particular, the pathogenic Gram-positive porphyrin producing ATCC strains Propionibacterium acnes, Actinomyces odontolyticus and Porphyromonas gingivalis were investigated. Sensitive autofluorescence spectroscopy revealed that these bacteria naturally synthezise the fluorescent photosensitizer protoporphyrin IX. In addition, bacterial plaque samples of periodontitis patients were studied. Non-labeled fluorescent bacterial colonies were exposed to red light at 632.8 nm, 100 mW/cm2 light intensity and 360 J/cm2 energy density using a helium-neon laser. The survival rate after a single phototreatment with red light was found to be 0.58 +/- 0.09 in the case of Propionibacterium acnes, 0.30 +/- 0.04 in Actinomyces odontolyticus and 0.59 +/- 0.10 in Porphyrormonas gingivalis compared to non-exposed bacteria suspensions. No photoeffect was found for the bacterium Streptococcus mutans which exhibited no detectable porphyrin autofluorescence. Red-light exposed plaque samples of patients showed significant reduction of colony forming units by 50% as well as a pronounced photoeffect on the pigmented species Prevotella intermedia. Taken together, these results suggest the treatment with red light can be potentially employed as an therapeutic method to inactivate certain pathogenic strains of porphyrin producing bacteria without the use of external photosensitizers. 相似文献
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Dominant-negative Pes1 mutants inhibit ribosomal RNA processing and cell proliferation via incorporation into the PeBoW-complex 总被引:3,自引:1,他引:3 下载免费PDF全文
Grimm T Hölzel M Rohrmoser M Harasim T Malamoussi A Gruber-Eber A Kremmer E Eick D 《Nucleic acids research》2006,34(10):3030-3043
The nucleolar PeBoW-complex, consisting of Pes1, Bop1 and WDR12, is essential for cell proliferation and processing of ribosomal RNA in mammalian cells. Here we have analysed the physical and functional interactions of Pes1 deletion mutants with the PeBoW-complex. Pes1 mutants M1 and M5, with N- and C-terminal truncations, respectively, displayed a dominant-negative phenotype. Both mutants showed nucleolar localization, blocked processing of the 36S/32S precursors to mature 28S rRNA, inhibited cell proliferation, and induced high p53 levels in proliferating, but not in resting cells. Mutant M1 and M5 proteins associated with large pre-ribosomal complexes and co-immunoprecipitated Bop1 and WDR12 proteins indicating their proper incorporation into the PeBoW-complex. We conclude that the dominant-negative effect of the M1 and M5 mutants is mediated by the impaired function of the PeBoW-complex. 相似文献
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Expression of normal and translocated c-myc alleles in Burkitt''s lymphoma cells: evidence for different regulation. 总被引:4,自引:3,他引:4 下载免费PDF全文
In Burkitt's lymphoma (BL) cells the normal c-myc allele is usually silent or expressed at very low levels. Here we demonstrate that the normal c-myc allele can be induced in BL cells by 12-O-tetradecanoylphorbol-13-acetate (TPA). TPA did activate the normal c-myc alleles in Raji(P207), BL36, P3HR1, Jijoye and LY91 cells, but not in Raji(DE88), BL41, BL67, LY47 and KK124 cells. C-myc RNA derived from the normal allele appeared 6 h after treatment with TPA and showed the characteristic preferential usage of the second promoter. This induction could not be inhibited by cycloheximide. Despite the differences in c-myc induction in Raji(P207) and Raji(DE88) cells, c-fos and the early Epstein-Barr virus gene DR were induced to a similar extent and with similar kinetics by TPA. Nuclear run-on experiments suggest that the normal c-myc allele in Raji cells is activated at least in part by releasing a block to RNA elongation at the end of c-myc exon 1. Expression of the translocated c-myc alleles was also affected by TPA; however, only if cycloheximide was simultaneously present. TPA plus cycloheximide induced a rapid decrease of c-myc RNA derived from the translocated allele within 6 h, whereas cycloheximide alone led to abolition of c-myc RNA after 16-24 h. This rapid decline of c-myc RNA was observed in Raji and BL41 cells, but not in three cell lines with variant t(2;8) and t(8;22) translocations. 相似文献
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Geeta N. Eick Paul Kowal Tyler Barrett Elizabeth A. Thiele J. Josh Snodgrass 《Biodemography and social biology》2017,63(2):116-130
Apolipoprotein B (ApoB) is a strong predictor of cardiovascular disease, which remains the leading cause of mortality in both higher and lower income countries. Here, we adapted an enzyme-linked immunosorbent assay (ELISA) development kit for quantitative determination of ApoB levels in serum and plasma for use with dried blood spots (DBS). After confirming the dilution linearity of the assay for DBS, we measured ApoB in 208 venous DBS samples. Then, using Passing-Bablok regression analysis and Spearman rank correlation analysis, we evaluated the correspondence in ApoB values between matched plasma and finger-prick DBS samples from 40 individuals who had ApoB values spanning the range of ApoB values observed in the 208 vDBS samples. We also evaluated assay precision and recovery, the effects of hematocrit, number of freeze-thaw cycles, and different storage temperatures on ApoB levels in DBS. There was a strong, significant correlation between plasma and DBS ApoB levels with little bias. Assay precision and recovery were within the range recommended by the U.S. government’s industry guidelines for bioanalytical assay validation. The assay was not affected by the DBS matrix or physiological hematocrit levels. This DBS-based ELISA assay will facilitate population-scale assessment of cardiovascular risk in previously unexplored populations. 相似文献
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The potential reactivity and structural properties of oxiranes (epoxides) are advantageous when considering polymers for medical devices. However, epoxy compounds are widely known to have genotoxic properties. The objective of the study was to evaluate the cytotoxicity and primary DNA damage effects induced by oxiranes and siloranes, silicon containing oxiranes. The siloranes, Ph-Sil, Tet-Sil, and Sil-Mix and the oxiranes Cyracure UVR-6105 and 1,3-bis[2-(2-oxiranylmethyl) phenoxy]pentane (OMP-5) were dissolved in organic solvents and dilutions containing less than 0.5% solvent were used in biological assays. The concentration that reduced the viability of 50% (TC(50)) of L929 cells was measured using the MTT assay and guided the selection of subtoxic doses for evaluation of DNA damage. Ph-Sil was more cytotoxic than OMP-5, Cyracure UVR-6105 and Sil-Mix. However, the TC(50) value of Tet-Sil could not be determined due to its poor solubility. DNA damage was evaluated in the sister chromatid exchange (SCE) assay with CHO cells, and the alkaline comet assay with L929 cells. In contrast to the siloranes, the oxiranes exhibited significant increases (p>0.05) in SCE frequencies and DNA migration relative to their solvent controls. Our findings support previous reports that siloranes have low genotoxic potential and can be suitable components for development of biomaterials. 相似文献
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